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G21C 19/46 - Aqueous processes 8
G21F 9/30 - Processing 8
C25B 1/04 - Hydrogen or oxygen by electrolysis of water 7
B25J 21/02 - Glove-boxes, i.e. chambers in which manipulations are performed by the human hands in gloves built into the chamber wallsGloves therefor 6
C01G 56/00 - Compounds of transuranic elements 6
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1.

NOVEL DISSYMMETRIC N,N-DIALKYLAMIDES, THE SNYTHESIS THEREOF AND USES OF SAME

      
Application Number EP2016068016
Publication Number 2017/017193
Status In Force
Filing Date 2016-07-28
Publication Date 2017-02-02
Owner
  • AREVA NC (France)
  • COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (France)
Inventor
  • Miguirditchian, Manuel
  • Baron, Pascal
  • Lopes Moreira, Sandra
  • Milanole, Gaëlle
  • Marie, Cécile

Abstract

The invention relates to novel dissymmetric N,N-dialkylamides having formula (I), wherein R represents a straight or branched alkyl group at C8 to C15. The invention also relates to a method for synthesising said N,N-dialkylamides, and to the uses of same as extractants, alone or in admixture, in order to extract uranium and/or plutonium from an aqueous acid solution or to partially or fully separate uranium from plutonium in an aqueous acid solution and, in particular, an aqueous solution resulting from dissolving spent nuclear fuel in nitric acid. The invention further relates to a method for the treatment of an aqueous solution resulting from dissolving spent nuclear fuel in nitric acid, allowing the uranium and plutonium contained in the solution to be extracted, separated and decontaminated in a single cycle, without requiring any plutonium reduction operation, and in which one of the aforementioned N,N-dialkylamides or a mixture of same is used as an extractant. The invention is suitable for use in the treatment of spent nuclear fuel, in particular that comprising uranium (e.g. UOX) or uranium and plutonium (e.g. MOX).

IPC Classes  ?

  • C07C 233/05 - Carboxylic acid amides having carbon atoms of carboxamide groups bound to hydrogen atoms or to acyclic carbon atoms having nitrogen atoms of carboxamide groups bound to hydrogen atoms or to carbon atoms of unsubstituted hydrocarbon radicals with carbon atoms of carboxamide groups bound to carbon atoms of an acyclic saturated carbon skeleton having the nitrogen atoms of the carboxamide groups bound to hydrogen atoms or to acyclic carbon atoms
  • C22B 3/00 - Extraction of metal compounds from ores or concentrates by wet processes
  • C22B 60/00 - Obtaining metals of atomic number 87 or higher, i.e. radioactive metals

2.

METHOD FOR THE TREATMENT OF AN AQUEOUS NITRIC SOLUTION USED RESULTING FROM DISSOLVING SPENT NUCLEAR FUEL, SAID METHOD BEING PERFORMED IN A SINGLE CYCLE AND WITHOUT REQUIRING ANY OPERATION INVOLVING THE REDUCTIVE BACK-EXTRACTION OF PLUTONIUM

      
Application Number EP2016068040
Publication Number 2017/017207
Status In Force
Filing Date 2016-07-28
Publication Date 2017-02-02
Owner
  • COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Miguirditchian, Manuel
  • Sorel, Christian
  • Costenoble, Sylvain
  • Vanel, Vincent
  • Heres, Xavier
  • Baron, Pascal
  • Masson, Michel
  • Chareyre, Laurence

Abstract

The invention relates to a method for the treatment of an aqueous solution resulting from dissolving spent nuclear fuel in nitric acid, allowing the uranium and plutonium contained in the solution to be extracted, separated and decontaminated in a single cycle, without requiring any operation involving the reductive back-extraction of the plutonium. The invention is intended for the treatment of spent nuclear fuel comprising uranium and/or plutonium.

IPC Classes  ?

3.

APPARATUS AND PROCESS FOR THERMAL DENITRATION, USE OF SUCH AN APPARATUS AND PRODUCT OBTAINED BY MEANS OF SUCH A PROCESS

      
Application Number EP2016063377
Publication Number 2016/198654
Status In Force
Filing Date 2016-06-10
Publication Date 2016-12-15
Owner AREVA NC (France)
Inventor
  • Jourdan, Alex
  • Dupoizat, Marc

Abstract

The invention relates to an apparatus (1) for thermal denitration of a uranyl nitrate hydrate to uranium trioxide UO3. The apparatus (1) comprises a burner (114) and a reaction chamber (110) configured to carry out thermal denitration of uranyl nitrate hydrate and to form uranium trioxide UO3 in the form of particles. The apparatus also comprises a separating chamber (120) suitable for separating UO3 particles from the gases resulting from the thermal denitration carried out in the reaction chamber (110), and at least one filter (130) configured for purifying the gases. The separating chamber (120) is a decanting chamber into which the reaction chamber (110) directly opens out. The filter (130) is capable of performing the separation at a temperature greater than or equal to 350°C. The invention also relates to use of such an apparatus, to a thermal denitration process and to UO3 particles obtained by means of such a process.

IPC Classes  ?

  • C01G 43/01 - OxidesHydroxides
  • B01J 19/24 - Stationary reactors without moving elements inside
  • B01J 19/26 - Nozzle-type reactors, i.e. the distribution of the initial reactants within the reactor is effected by their introduction or injection through nozzles
  • B01J 4/00 - Feed devicesFeed or outlet control devices
  • B01J 8/00 - Chemical or physical processes in general, conducted in the presence of fluids and solid particlesApparatus for such processes

4.

TOOL FOR SMOOTHING IN A RADIOACTIVE ENVIRONMENT, COMPRISING A VIBRATING GRID

      
Application Number EP2016062464
Publication Number 2016/193357
Status In Force
Filing Date 2016-06-02
Publication Date 2016-12-08
Owner AREVA NC (France)
Inventor Cassany, Yohann

Abstract

The invention relates to a smoothing tool (3) configured for smoothing glass frit in a radioactive environment, in an induction-melting cold crucible. Smoothing tool (3) comprising a rod (30), a grid (50) designed to be in contact with glass frit (7) to be smoothed, and at least one vibrator (37, 55, 56) configured to make the grid (50) vibrate. The grid (50) is mechanically connected to the rod (30).

IPC Classes  ?

  • G21F 9/30 - Processing
  • B65G 69/04 - Spreading-out the materials conveyed over the whole surface to be loadedTrimming heaps of loose materials
  • C03B 5/00 - Melting in furnacesFurnaces so far as specially adapted for glass manufacture
  • C03C 1/00 - Ingredients generally applicable to manufacture of glasses, glazes or vitreous enamels
  • C03B 5/02 - Melting in furnacesFurnaces so far as specially adapted for glass manufacture in electric furnaces
  • B65D 88/66 - Large containers characterised by means facilitating filling or emptying preventing bridge formation using vibrating or knocking devices

5.

THERMAL SOLAR POWER PLANT COMPRISING A HEAT STORAGE ASSEMBLY AND CORRESPONDING METHOD

      
Application Number US2016032340
Publication Number 2016/183433
Status In Force
Filing Date 2016-05-13
Publication Date 2016-11-17
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Lebreton, Solenne
  • Peter, Emanuelle

Abstract

The thermal solar power plant comprises a turbine (4) for generating electricity using vapor of a working fluid, a superheating assembly (8) comprising solar vapor superheaters (14, 16, 18) fluidly connected in series for superheating vapor using insolation and feeding the turbine with superheated vapor, and a heat storage assembly (10) thermally coupled to the superheating assembly (8) by at least one heat exchanger (30, 32) provided between two superheaters of the superheating assembly (8) in such manner as to take heat from superheated vapor and store heat.

IPC Classes  ?

  • F03G 6/06 - Devices for producing mechanical power from solar energy with solar energy concentrating means
  • F01K 3/12 - Plants characterised by the use of steam or heat accumulators, or intermediate steam heaters, therein having two or more accumulators
  • F22B 1/00 - Methods of steam generation characterised by form of heating method

6.

Surface access borehole resource extraction method

      
Application Number 15108029
Grant Number 10267147
Status In Force
Filing Date 2013-12-31
First Publication Date 2016-11-10
Grant Date 2019-04-23
Owner AREVA Resources Canada Inc. (Canada)
Inventor
  • Healy, Daylan
  • Gagnon, Louis-Pierre
  • Eckert, Sylvain
  • Pederson, Tyson

Abstract

A non-human-entry method for extracting a desired subsurface material such as ore, wherein an access hole is drilled from surface downwardly to the material, a high-pressure fluid injection tool is lowered with or after the drill string to the material and injected outwardly to disaggregate the material and form a cavity, and the material is optionally ground to a desired size by a drill bit or other means to enable suction up production tubing with a carrier fluid to the surface. The injection tool and grinding means are preferably part of an integrated bottom hole assembly at the lowermost end of a drill string, which may include surveying equipment to measure the cavity dimensions at intervals during target material disaggregation to allow fluid injection adjustment to seek to achieve a desired cavity geometry. Deck cementing is optionally employed for ground support.

IPC Classes  ?

  • E21B 7/18 - Drilling by liquid or gas jets, with or without entrained pellets
  • E21C 37/12 - Other methods or devices for dislodging with or without loading by making use of hydraulic or pneumatic pressure in a borehole by injecting into the borehole a liquid, either initially at high pressure or subsequently subjected to high pressure, e.g. by pulses, by explosive cartridges acting on the liquid
  • E21B 43/29 - Obtaining a slurry of minerals, e.g. by using nozzles
  • E21B 7/00 - Special methods or apparatus for drilling
  • E21B 43/34 - Arrangements for separating materials produced by the well
  • E21C 45/00 - Methods of hydraulic miningHydraulic monitors

7.

TEMPERATURE-MEASURING STICK WITH AN EASILY REPLACEABLE THERMOCOUPLE

      
Application Number EP2015081275
Publication Number 2016/107838
Status In Force
Filing Date 2015-12-28
Publication Date 2016-07-07
Owner AREVA NC (France)
Inventor Saillard, Jean

Abstract

The invention relates to a thermocouple (17) suspended from a part (26, 27) that can be locked onto a connecting section of the measuring stick, which comprises an opening in the form of a guiding cone (30) for inserting the thermocouple. The thermocouple is contained in a flexible cable (24) that can slide in a sheath (35) of the central compartment (16) which houses the thermocouple (17). A spring (34) can be added to lightly press the end of the thermocouple to the end of the housing thereof.

IPC Classes  ?

  • G01K 1/08 - Protective devices, e.g. casings
  • G01K 1/14 - SupportsFastening devicesArrangements for mounting thermometers in particular locations
  • G01K 7/02 - Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat using thermoelectric elements, e.g. thermocouples

8.

PROCESS FOR MANUFACTURING A PELLET OF AT LEAST ONE METAL OXIDE

      
Application Number EP2015080266
Publication Number 2016/097171
Status In Force
Filing Date 2015-12-17
Publication Date 2016-06-23
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
Inventor Vaudez, Stéphane

Abstract

The present invention relates to a process for sintering a compacted powder of at least one oxide of a metal selected from an actinide and a lanthanide, this process comprising the following successive steps, carried out in a furnace and under an atmosphere comprising an inert gas, dihydrogen and water: (a) a temperature increase from an initial temperature Ti up to a hold temperature TP, (b) maintaining the temperature at the hold temperature TP, and (c) a temperature decrease from the hold temperature TP down to a final temperature TF, in which the P(H2)/P(H2O) ratio is such that: - 500 < P(H2)/P(H2O) ≤ 50 000, during step (a), from Ti until a first intermediate temperature Ti1 between 1000°C and TP is reached, and - P(H2)/P(H2O)≤ 500, at least during step (c), from a second intermediate temperature Ti2 between TP and 1000°C, until TF is reached. The invention also relates to a process for manufacturing a pellet of at least one oxide of a metal selected from an actinide and a lanthanide, especially a nuclear fuel pellet.

IPC Classes  ?

  • C04B 35/50 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on rare earth compounds
  • C04B 35/51 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on compounds of actinides
  • C04B 35/64 - Burning or sintering processes
  • G21C 3/62 - Ceramic fuel
  • G21C 21/02 - Manufacture of fuel elements or breeder elements contained in non-active casings

9.

METHOD FOR PASSIVATING A NICKEL-ALLOY ELEMENT, ELEMENT OBTAINED BY SAID METHOD, AND METHOD FOR MANUFACTURING AN ASSOCIATED PRIMARY CIRCUIT OF A NUCLEAR REACTOR

      
Application Number EP2015080665
Publication Number 2016/097374
Status In Force
Filing Date 2015-12-18
Publication Date 2016-06-23
Owner
  • AREVA (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
Inventor
  • Brussieux, Charles
  • Foucault, Marc
  • Engler, Nathalie
  • Perrin, Stéphane
  • Marchetti, Loic
  • Moeglen, Magali
  • Wouters, Yves

Abstract

The invention relates to a method (120) for passivating an element made of a nickel alloy, which is intended for limiting the corrosion and the cation release of said element in contact with a liquid. The method comprises a step of applying a thermal treatment (126) to at least one surface of the element, the thermal treatment (126) being carried out at a temperature of 500°C to 900°C, in an inert atmosphere made up of at least 99.9% of an inert gas or a mixture of inert gases. The inert atmosphere is at a pressure substantially equal to atmospheric pressure, and the thermal treatment (126) is carried out during a time ranging from ten to fifty hours.

IPC Classes  ?

10.

LASER-BEAM EMISSION DEVICE SUITABLE FOR USE IN A CONTAMINATED ENVIRONMENT, INCLUDING A REMOVABLE SHEATH FOR REMOVABLY HOUSING AN OPTICAL UNIT

      
Application Number EP2015072749
Publication Number 2016/050940
Status In Force
Filing Date 2015-10-01
Publication Date 2016-04-07
Owner AREVA NC (France)
Inventor Lacroix, Marc

Abstract

The invention relates to a laser-beam emission device (10) provided with an emission head including an optical unit (42) arranged in a generally longitudinal sheath (26), with a view to using same in contaminated environments. Said optical unit (42) includes a mirror (46) configured to deflect the initially longitudinal laser beam toward an outlet (20), thus enabling the laser beam to exit along an outlet axis (24) intersecting the longitudinal axis. The sheath (26) is configured to tightly confine the emission head such as to be impervious from dust. Thus, the emission head may be cleaned using decontamination products without the risk of damaging the optical unit (42) and the mirror thereof (46).

IPC Classes  ?

  • B23K 26/10 - Devices involving relative movement between laser beam and workpiece using a fixed support
  • B23K 26/14 - Working by laser beam, e.g. welding, cutting or boring using a fluid stream, e.g. a jet of gas, in conjunction with the laser beamNozzles therefor
  • B23K 26/36 - Removing material
  • B23K 26/38 - Removing material by boring or cutting
  • G02B 23/26 - Instruments for viewing the inside of hollow bodies, e.g. fibrescopes using light guides
  • G02B 6/26 - Optical coupling means

11.

CYCLONIC SEPARATION DEVICE COMPRISING TWO CYCLONES LINKED BY AN OPTIMISED PIPE UNIT

      
Application Number EP2015067478
Publication Number 2016/016360
Status In Force
Filing Date 2015-07-30
Publication Date 2016-02-04
Owner
  • AREVA NC (France)
  • ROLLS-ROYCE NUCLEAR FIELD SERVICES FRANCE (France)
Inventor
  • Jehanno, Jacky
  • Pilisi, Franck

Abstract

The invention proposes a device (10) for the cyclonic separation of solid particles contained in a fluid, comprising a primary cyclone chamber (12), a secondary cyclone chamber (14), an inlet channel (90) for fluid loaded with solid particles opening into the primary cyclone chamber, an outlet channel (18) for fluid cleaned of the solid particles connected to the secondary cyclone chamber, and a pipe unit (20) connecting the primary cyclone chamber to the secondary cyclone chamber and surrounded by the primary cyclone chamber. The pipe unit comprises a core (60) delimiting the secondary cyclone chamber and having at least one helical groove of which a bottom moves away from an axis (34) of the secondary cyclone chamber, moving towards the latter, and a cap (62) covering a part of the core in such a way as to delimit, with the groove, a channel (82) connecting the primary cyclone chamber to the secondary cyclone chamber.

IPC Classes  ?

  • B04C 5/04 - Tangential inlets
  • B04C 5/103 - Bodies or members, e.g. bulkheads, guides, in the vortex chamber
  • B04C 5/107 - CoresDevices for inducing an air-core in hydrocyclones
  • B04C 5/13 - Construction of the overflow ducting, e.g. diffusing or spiral exits formed as a vortex finder and extending into the vortex chamberDischarge from vortex finder otherwise than at the top of the cycloneDevices for controlling the overflow
  • B04C 5/26 - Multiple arrangement thereof for series flow

12.

GEL COMPOSITIONS FOR DETECTING AND LOCATING RADIOACTIVE SURFACE CONTAMINATION OF SOLID SUBSTRATES, AND DETECTION AND LOCATION METHOD USING SAID GELS

      
Application Number EP2015067305
Publication Number 2016/016261
Status In Force
Filing Date 2015-07-28
Publication Date 2016-02-04
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
Inventor
  • Azar, Fadi
  • Faure, Sylvain
  • Messalier, Marc
  • Venault, Laurent

Abstract

The invention relates to gels for detecting and locating radioactive surface contamination of a solid material substrate, particularly via change in the color of the gels within the visible range or via softening, i.e. fading, of the color of the gels. The invention also relates to a method for detecting and locating radioactive surface contamination of a solid material substrate that uses said gels.

IPC Classes  ?

  • G01T 1/04 - Chemical dosimeters
  • G01T 1/169 - Exploration, location of contaminated surface areas

13.

METHOD FOR SEPARATING THE COMPONENTS OF A SOLID SUBSTRATE COMPRISING A SUPPORT MADE FROM RARE EARTH OXIDE AND PARTICLES OF A NOBLE METAL, BY SELECTIVE DISSOLVING OF THE SUPPORT

      
Application Number EP2015066578
Publication Number 2016/012413
Status In Force
Filing Date 2015-07-20
Publication Date 2016-01-28
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (France)
Inventor
  • Virot, Matthieu
  • Beaudoux, Xavier
  • Chave, Tony
  • Leturcq, Gilles
  • Nikitenko, Sergueï

Abstract

A method for treating a solid substrate comprising a support comprising, preferably consisting of, at least one oxide chosen from the oxides of a first metal chosen from the rare earths, the mixed oxides of a first metal chosen from the rare earths and at least one second metal different from the first metal, and the mixtures of an oxide of a first metal chosen from the rare earths and at least one oxide of at least one second metal different from the first metal, said support comprising at least one surface on which there are deposited particles consisting of at least one noble metal, in order to separate the first metal, the optional second metal, and the noble metal which constitutes the particles, said method comprising a step of selectively dissolving the support, during which the substrate is brought into contact with a dissolving solution comprising at least one mineral acid and at least one reducing agent for reducing the rare earth or rare earths of the support chosen from natural antioxidant molecules such as ascorbic acid, catechol, gallic acid and the mixtures of same, thereby obtaining a solution containing the first metal and the possible second metal in the dissolved state, in which there are suspended the particles consisting of the noble metal.

IPC Classes  ?

  • C22B 3/00 - Extraction of metal compounds from ores or concentrates by wet processes
  • C22B 59/00 - Obtaining rare earth metals

14.

CONDITIONING BY CEMENTATION OF A NUCLEAR WASTE COMPRISING MAGNESIUM IN METAL FORM

      
Application Number EP2015062172
Publication Number 2015/193098
Status In Force
Filing Date 2015-06-01
Publication Date 2015-12-23
Owner AREVA NC (France)
Inventor
  • Stefan, Lavinia
  • Chartier, David
  • Avril, Damien
  • Sanchez-Canet, Jennifer

Abstract

The invention relates to a method of conditioning, by embedding in a cementitious matrix, a nuclear waste comprising magnesium metal and at least one material selected from graphite and steels, which method comprises the following steps: embedding the waste using a cementitious paste obtained by mixing a composition comprising a powder of a binder selected from hydraulic cements, vitrified blast-furnace slags and mixtures thereof, and an aqueous mixing solution; then - leaving the cementitious paste to harden in order to form the cementitious matrix; and is characterized in that the aqueous mixing solution comprises at least 1 mol/L of a strong base. The invention also relates to a composition suitable for being used in this conditioning method and also to a conditioning package obtained by said method. Applications: conditioning of waste from UNGG (for "Uranium Naturel - Graphite - Gaz carbonique [natural uranium - grapite - carbon dioxide]) or MAGNOX (for Magnesium Non OXidizing) nuclear reactors with a view to the storage thereof.

IPC Classes  ?

  • G21F 9/30 - Processing
  • G21D 1/00 - Details of nuclear power plant
  • G21F 9/34 - Disposal of solid waste
  • C04B 28/00 - Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements
  • C04B 28/02 - Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements containing hydraulic cements other than calcium sulfates
  • C04B 7/00 - Hydraulic cements
  • C04B 18/04 - Waste materialsRefuse

15.

METHOD FOR ACTIVATING U3O8 WITH A VIEW TO CONVERTING SAME INTO HYDRATED UO4

      
Application Number EP2015053520
Publication Number 2015/124682
Status In Force
Filing Date 2015-02-19
Publication Date 2015-08-27
Owner AREVA NC (France)
Inventor
  • Arab, Mehdi
  • Morel, Bertrand
  • Rivenet, Murielle

Abstract

An activation method for activating U3O8 with a view to converting said uranium oxide into hydrated UO4 by means of a reaction with hydrogen peroxide H2O2, which involves carrying out the following successive steps: a) preparing an aqueous suspension containing a U3O8 powder and hydrogen peroxide; b) bringing the aqueous suspension containing a U3O8 powder and hydrogen peroxide into contact with ozone, thereby obtaining an aqueous suspension of an activated U3O8 powder; c) optionally, separating the activated U3O8 powder from the aqueous suspension. A method for converting U3O8 into hydrated UO4 of formula UO4, nH2O in which n is 2 or 4, comprising a least a step of adding hydrogen peroxide H2O2 to the aqueous suspension of an activated U3O8 powder obtained at the end of step b) of the activation method, or to an aqueous suspension prepared by placing the activated U3O8 powder obtained at the end of step c) of the activation method in suspension in water.

IPC Classes  ?

  • C01G 43/01 - OxidesHydroxides
  • C01G 43/00 - Compounds of uranium
  • C01B 15/047 - Metal peroxides or peroxyhydrates thereofSuperoxidesOzonides of heavy metals

16.

PROCESS FOR PREPARING A METAL OXIDE POWDER, PROCESS FOR MANUFACTURING A METAL OXIDE PELLET, POWDER AND PELLET AS OBTAINED ACCORDING TO THESE PROCESSES AND USES THEREOF

      
Application Number EP2015050603
Publication Number 2015/107086
Status In Force
Filing Date 2015-01-14
Publication Date 2015-07-23
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
Inventor
  • Martinez, Julien
  • Audubert, Fabienne
  • Clavier, Nicolas
  • Dacheux, Nicolas

Abstract

The invention relates to a process for preparing a powder of an oxide of at least one metal, each metal having an oxidation number of between (III) and (VI). This process comprises, successively and in this order: (a) the reaction, with a compound comprising a hydroxide, of an aqueous solution comprising, for each metal, at least one salt of the cation of said metal, (b) the separation of the precipitate obtained, (c) the bringing of the separated precipitate into contact with an organic protic polar solvent, (d) the elimination of the organic protic polar solvent by drying of the precipitate under vacuum. The invention also relates to a process for manufacturing a pellet of an oxide of at least one metal and also to the powder and pellet obtained according to these processes and to the uses thereof.

IPC Classes  ?

17.

SURFACE ACCESS BOREHOLE RESOURCE EXTRACTION METHOD

      
Application Number CA2013001090
Publication Number 2015/100481
Status In Force
Filing Date 2013-12-31
Publication Date 2015-07-09
Owner AREVA RESOURCES CANADA INC. (Canada)
Inventor
  • Healy, Daylan
  • Gagnon, Louis-Pierre
  • Eckert, Sylvain
  • Pederson, Tyson

Abstract

A non-human-entry method for extracting a desired subsurface material such as ore, wherein an access hole is drilled from surface downwardly to the material, a high-pressure fluid injection tool is lowered with or after the drill string to the material and injected outwardly to disaggregate the material and form a cavity, and the material is optionally ground to a desired size by a drill bit or other means to enable suction up production tubing with a carrier fluid to the surface. The injection tool and grinding means are preferably part of an integrated bottom hole assembly at the lowermost end of a drill string, which may include surveying equipment to measure the cavity dimensions at intervals during target material disaggregation to allow fluid injection adjustment to seek to achieve a desired cavity geometry. Deck cementing is optionally employed for ground support.

IPC Classes  ?

  • E21C 37/12 - Other methods or devices for dislodging with or without loading by making use of hydraulic or pneumatic pressure in a borehole by injecting into the borehole a liquid, either initially at high pressure or subsequently subjected to high pressure, e.g. by pulses, by explosive cartridges acting on the liquid
  • E21B 43/29 - Obtaining a slurry of minerals, e.g. by using nozzles
  • E21B 43/40 - Separation associated with re-injection of separated materials

18.

PROBE FOR MEASURING CONDUCTIVITY AT HIGH PRESSURE AND HIGH TEMPERATURE

      
Application Number EP2014077917
Publication Number 2015/091452
Status In Force
Filing Date 2014-12-16
Publication Date 2015-06-25
Owner AREVA (France)
Inventor Nuguet, Jean-Christophe

Abstract

This probe for measuring the conductivity of a fluid, comprising: an envelope (20) delimiting internally a measurement chamber (44), the envelope (20) exhibiting a first front aperture (42) surrounded by a first flange (22); a first electrode (24) engaged in the measurement chamber (44) through the first front aperture (42); a second flange (26) integral with the first electrode (24), the second flange (26) being arranged opposite the first flange (22) and exhibiting a second front aperture (56) in coincidence with the first front aperture (42); a second electrode (28) engaged in the measurement chamber (44) through the first front aperture (42) and the second front aperture (56). A third flange (30) integral with the second electrode (28) is arranged opposite the second flange (26), and a rigid fixing (32) holds the first, second and third flanges (22, 26, 30) to one another.

IPC Classes  ?

  • G01N 27/07 - Construction of measuring vesselsElectrodes therefor
  • G01R 27/22 - Measuring resistance of fluids

19.

LARGE-CAPACITY ELECTRICAL-ENERGY STORAGE DEVICE

      
Application Number EP2014078008
Publication Number 2015/091516
Status In Force
Filing Date 2014-12-16
Publication Date 2015-06-25
Owner AREVA (France)
Inventor Cazenobe, Gilbert

Abstract

The invention relates to an energy storage device comprising a plurality of electrolytic cells (5) and a four-quadrant electrical inverter/charger (7). Each electrolytic cell (5) comprises a device (51) for recycling the gaseous hydrogen released in the cathode chamber, towards the anode chamber.

IPC Classes  ?

  • H01M 8/18 - Regenerative fuel cells, e.g. redox flow batteries or secondary fuel cells
  • H01M 10/36 - Accumulators not provided for in groups
  • H01M 10/42 - Methods or arrangements for servicing or maintenance of secondary cells or secondary half-cells

20.

PROCESS FOR THE SYNTHESIS OF A MIXED PEROXIDE OR HYDROXO-PEROXIDE OF AN ACTINYL AND OF AT LEAST ONE DOUBLY, TRIPLY OR QUADRUPLY CHARGED METAL CATION, MIXED PEROXIDE OR HYDROXO-PEROXIDE THUS OBTAINED AND USES THEREOF

      
Application Number EP2014078400
Publication Number 2015/091753
Status In Force
Filing Date 2014-12-18
Publication Date 2015-06-25
Owner AREVA NC (France)
Inventor
  • Blanchard, Florent
  • Abraham, Francis
  • Grandjean, Stéphane
  • Vigier, Nicolas
  • Hablot, Isabelle
  • Rivenet, Murielle

Abstract

The invention relates to a process for the synthesis of a mixed peroxide or hydroxo-peroxide of an actinyl and of at least one cation X1, in which the actinyl is a uranyl or a neptunyl and said at least one cation X1 is a doubly, triply or quadruply charged cation of a metal. This process comprises the reaction, in a solvent, of a salt of said at least one cation X1 with a compound C2 chosen from the mixed peroxides and hydroxo-peroxides of the actinyl and of at least one singly charged cation X2, as a result of which the compound C2 is converted into the peroxide or the hydroxo-peroxide by replacement of said at least one cation X2 with said at least one cation X1. It also relates to a process for the synthesis of a mixed oxide of an actinide chosen from uranium and neptunium, and of at least one metal capable of forming a doubly, triply or quadruply charged cation, which implements the preceding synthesis process. It also relates to a mixed peroxide or hydroxo-peroxide of an actinyl and of at least one doubly, triply or quadruply charged cation of a metal, and also to the use thereof for preparing a mixed oxide of an actinide and of at least this metal. Uses: manufacture of mixed oxides of actinides suitable for use in the manufacture of nuclear fuel pellets or of transmutation targets, decontamination of effluents contaminated with radionuclides from nuclear facilities, etc.

IPC Classes  ?

  • C01B 15/047 - Metal peroxides or peroxyhydrates thereofSuperoxidesOzonides of heavy metals
  • C01G 43/00 - Compounds of uranium
  • C01G 56/00 - Compounds of transuranic elements
  • C01F 11/00 - Compounds of calcium, strontium, or barium
  • C01F 17/00 - Compounds of rare earth metals

21.

METHOD FOR PROCESSING SPENT NUCLEAR FUEL COMPRISING A STEP OF DECONTAMINATING THE URANIUM (VI) INTO AT LEAST ONE ACTINIDE (IV) BY COMPLEXING THIS ACTINIDE (IV)

      
Application Number EP2014078453
Publication Number 2015/091791
Status In Force
Filing Date 2014-12-18
Publication Date 2015-06-25
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Bernier, Gilles
  • Sorel, Christian
  • Miguirditchian, Manuel
  • Balaguer, Coralie
  • Ameil, Estelle

Abstract

The invention relates to a method for processing spent nuclear fuel which method involves a step of decontaminating the uranium (VI) into one or more actinides (IV) and, more specifically, into neptunium and/or plutonium, by complexing this (these) actinide(s) (IV). This method involves a step of decontaminating the uranium (VI) into at least one actinide (IV), which decontamination step involves at least one operation of extracting actinide (IV) out of an organic phase, not miscible in water, and in which phase the uranium (VI) and the actinide (IV) are present, by bringing the organic phase into contact with an aqueous phase containing nitric acid and at least one complexing agent which complexes the actinides (IV) more strongly than uranium (VI), then separating the organic phase from the nitric aqueous phase and is characterized in that said at least one complexing agent is a diglycol amide. Applications: the processing of spent nuclear fuels.

IPC Classes  ?

22.

METHOD FOR MANUFACTURING A TREATED OPTICAL FIBER FOR RADIATION-RESISTANT TEMPERATURE SENSOR

      
Application Number EP2014077987
Publication Number 2015/091502
Status In Force
Filing Date 2014-12-16
Publication Date 2015-06-25
Owner
  • AREVA (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (C.N.R.S) (France)
  • UNIVERSITE JEAN MONNET SAINT ETIENNE (France)
Inventor
  • Perisse, Jocelyn
  • Morana, Adriana
  • Marin, Emmanuel
  • Macé, Jean-Reynald
  • Girard, Sylvain

Abstract

The invention relates to a method (110) for manufacturing a treated optical fiber (5) for temperature sensor. Said method includes the following steps: a) producing (120) an optical fiber (125) made of pure silica or silica doped with one or more element(s) selected from among fluorine and nitrogen; b) imprinting (130), using a femtosecond laser, at least one Bragg grating onto the optical fiber so as to produce an imprinted fiber (135), the Bragg grating longitudinally extending into one portion of the imprinted fiber and being suitable for reflecting light waves propagating along the imprinted optical fiber, the laser having power greater than or equal to 450 mW; and c) annealing (140) at least the imprinted fiber portion so as to produce the treated optical fiber. The invention also relates to the use of one such treated optical fiber in a temperature sensor.

IPC Classes  ?

23.

LARGE-CAPACITY ELECTRICAL-ENERGY STORAGE DEVICE

      
Application Number EP2014078002
Publication Number 2015/091512
Status In Force
Filing Date 2014-12-16
Publication Date 2015-06-25
Owner AREVA (France)
Inventor Cazenobe, Gilbert

Abstract

The invention relates to an energy storage device comprising a plurality of electrolytic cells (5) and a four-quadrant inverter/charger (7). In each electrolytic cell (5), the negative electrode (21) and the positive electrode (15) are disposed facing one another, said electrolytic cell (1) comprising a device (23) for rotating the negative electrode (21) in relation to the positive electrode (11) about a rotation axis (X).

IPC Classes  ?

  • C25D 5/04 - Electroplating with moving electrodes
  • C25D 17/12 - Shape or form
  • H01M 8/18 - Regenerative fuel cells, e.g. redox flow batteries or secondary fuel cells
  • H01M 10/36 - Accumulators not provided for in groups

24.

METHOD AND OPTICAL SYSTEM FOR DETECTING PARTICLES IN A FLOW

      
Application Number EP2014075366
Publication Number 2015/075217
Status In Force
Filing Date 2014-11-24
Publication Date 2015-05-28
Owner
  • AREVA (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (C.N.R.S) (France)
Inventor
  • Baudoin, Raphael
  • Zimmer, Laurent

Abstract

The invention relates to an optical system for determining, in three dimensions, the velocity profile and minimum concentration of particles in a flow, the system being characterised in that it comprises a first acquisition chain (100) comprising a first acquisition lens (130), a first photosensitive sensor (110), and a first shutter (120) formed by an opaque disk having at least two openings (121) in an arc, which can allow the transmission of light beams towards said first photosensitive sensor (110), said openings (121) being inscribed in the same circle.

IPC Classes  ?

  • G01N 15/06 - Investigating concentration of particle suspensions

25.

PROCESS FOR PREPARING A POWDER COMPRISING A SOLID SOLUTION OF URANIUM DIOXIDE AND OF A DIOXIDE OF AT LEAST ONE OTHER ACTINIDE AND/OR LANTHANIDE ELEMENT

      
Application Number EP2014072647
Publication Number 2015/059188
Status In Force
Filing Date 2014-10-22
Publication Date 2015-04-30
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Peter-Soldani, Guillaume
  • Grandjean, Stéphane
  • Abraham, Francis

Abstract

The invention relates to a process for preparing a powder of a solid solution of uranium dioxide and of a dioxide of at least one actinide and/or lanthanide element comprising a step of combustion of a solution comprising uranyl nitrate and at least one nitrate of the other actinide and/or lanthanide element and a nitrogen-containing fuel used in a specific predetermined amount in order to form, at the end of this step, said solid solution.

IPC Classes  ?

26.

OPTICAL FIBRE, PROCESS FOR MANUFACTURING SUCH AN OPTICAL FIBRE AND MEASURING DEVICE EQUIPPED WITH SUCH AN OPTICAL FIBRE AND INTENDED TO DETECT HYDROGEN

      
Application Number EP2014071919
Publication Number 2015/055593
Status In Force
Filing Date 2014-10-13
Publication Date 2015-04-23
Owner
  • AGENCE NATIONALE POUR LA GESTION DES DÉCHETS RADIOACTIFS (France)
  • AREVA (France)
Inventor
  • Lesoille, Sylvie
  • Bertrand, Johan
  • Mace, Jean-Reynald
  • Perisse, Jocelyn
  • Leparmentier, Stéphanie
  • Auguste, Jean-Louis
  • Delaizir, Gaelle

Abstract

The invention relates to an optical fibre (100) for detecting and/or quantitative measurement of hydrogen, comprising a fibre core (110) and at least one optical cladding (120) surrounding the core (110), at least one of the core (110) and the optical cladding (120) being made mainly of silica glass. The optical fibre (100) comprises palladium in metal form included in at least one fibre portion made mainly of silica glass, said portion being selected from the core (110) and the optical cladding (120). The invention also relates to a process for manufacturing such an optical fibre (100), to the use of this optical fibre (100), and to a system for detecting and/or quantitative measurement of hydrogen comprising such an optical fibre (100).

IPC Classes  ?

  • G02B 6/02 - Optical fibres with cladding
  • G01N 21/77 - Systems in which material is subjected to a chemical reaction, the progress or the result of the reaction being investigated by observing the effect on a chemical indicator
  • G01N 21/65 - Raman scattering
  • C03B 37/012 - Manufacture of preforms for drawing fibres or filaments

27.

HEAT SEALER WITH MAGNETIC CLAMPING DEVICE

      
Application Number EP2014069471
Publication Number 2015/036524
Status In Force
Filing Date 2014-09-12
Publication Date 2015-03-19
Owner
  • AREVA NC (France)
  • A.L.M. PACKAGING (France)
Inventor
  • Lantheaume, Noël
  • Moyne, Jean-Baptiste
  • Lagrange, Thierry

Abstract

The invention relates to a welding device (10) for welding the opening (16) of a plastic bag (12) in order to seal same hermetically, which comprises: a lower jaw (18) and an upper jaw (20) between which the bag (12) is clamped; at least one heating wire (22); and means (30) for clamping the upper jaw (20) against the lower jaw (18) which comprise a plurality of magnetic elements (32) with permanent magnets, and in which each magnetic element (32) comprises a first stationary permanent magnet (34) and a second permanent magnet (36) which is mounted so as to be movable relative to the first permanent magnet (34) between a locking position in which the combination of the magnetic fields produced by the two permanent magnets (34, 36) produces a high-intensity magnetic field in the upper jaw (20) and a released position in which the combination of the magnetic fields produced by the two permanent magnets (34, 36) produces a low-intensity magnetic field in the upper jaw (20), allowing an operator easily to separate the two jaws after welding the bag.

IPC Classes  ?

  • B29C 65/22 - Heated wire
  • B65B 51/10 - Applying or generating heat or pressure or combinations thereof
  • B29C 65/74 - Joining of preformed partsApparatus therefor by welding and severing

28.

METHOD AND FACILITY FOR INCINERATING, MELTING AND VITRIFYING ORGANIC AND METAL WASTE

      
Application Number EP2014067012
Publication Number 2015/018905
Status In Force
Filing Date 2014-08-07
Publication Date 2015-02-12
Owner AREVA NC (France)
Inventor
  • Boen, Roger
  • Charvin, Patrice
  • Lemont, Florent
  • Russello, Aldo

Abstract

The method according to the invention makes it possible to use a rather small facility to incinerate, melt and vitrify mixed waste (30) introduced into a reactor (10), using a basket (18) which in turn passes through an airlock (12). Plasma torches (14) burn all of the waste (30) contained in the basket (18). Said waste is then lowered into a molten bath of a furnace (20) with an inductor (24) comprising a container forming a crucible (23). The facility is completed by a combustion gas treatment chain. The furnace (20) can be disassembled, after a treatment series of several baskets (18) of waste (30), to disassemble the crucible-forming container (23) from the furnace (20). The invention is applicable to the treatment of various radiologically contaminated and/or toxic mixed waste.

IPC Classes  ?

  • G21F 9/30 - Processing
  • C03B 1/00 - Preparing the batches
  • F23G 5/32 - Methods or apparatus, e.g. incinerators, specially adapted for combustion of waste or low-grade fuels in which the waste or low-grade fuel is subjected to a whirling movement, e.g. cyclonic incinerators
  • F23G 7/00 - Methods or apparatus, e.g. incinerators, specially adapted for combustion of specific waste or low grade fuels, e.g. chemicals
  • F27B 14/06 - Crucible or pot furnacesTank furnaces heated electrically, e.g. induction crucible furnaces, with or without any other source of heat
  • G21F 9/32 - Processing by incineration

29.

WATER TREATMENT ASSEMBLY COMPRISING A SOLAR EVAPORATOR

      
Application Number EP2014059993
Publication Number 2014/195103
Status In Force
Filing Date 2014-05-15
Publication Date 2014-12-11
Owner AREVA (France)
Inventor
  • Muller, Thierry
  • Mourgues, Alejandro
  • Moussavi, Mehdi

Abstract

The assembly comprises: a source (3) generating a flow to be purified (5); a solar evaporation unit (7); a transfer duct (9); a device (11) for heating the transfer duct (9); and a mechanical ventilation device (13) for circulating air inside the solar evaporation unit (7).

IPC Classes  ?

  • C02F 1/14 - Treatment of water, waste water, or sewage by heating by distillation or evaporation using solar energy
  • B01D 1/00 - Evaporating
  • C02F 103/08 - Seawater, e.g. for desalination
  • C02F 103/10 - Nature of the water, waste water, sewage or sludge to be treated from quarries or from mining activities

30.

TOOL FOR THE MANUFACTURE OF CALIBRATED FISSURES

      
Application Number EP2014055289
Publication Number 2014/147018
Status In Force
Filing Date 2014-03-17
Publication Date 2014-09-25
Owner AREVA (France)
Inventor Calonne, Olivier

Abstract

The present invention relates to a tool (1) for the manufacture of calibrated fissures in a workpiece (30) having a body (32) delimited by two ends (31, 33), characterized in that this tool comprises: a supporting structure (20) comprising a means (21) able to accept and hold a first end (33) of said workpiece (30) in place; an expander (10) positioned between the supporting structure (20) and the second end (31) of the workpiece (30), the expander (10) comprising a first through-orifice (12) through which the body (32) of the workpiece (30) can pass, said expander (10) being made of a material that has a co-efficient of expansion higher than the co-efficient of expansion of the supporting structure (20) and of the workpiece (30) so that the expander (10) can apply a strain to the second end (31) of said workpiece (30) through expansion of this expander if the temperature increases.

IPC Classes  ?

  • G21C 17/00 - MonitoringTesting
  • G01M 3/00 - Investigating fluid tightness of structures
  • G01M 3/20 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point using special tracer materials, e.g. dye, fluorescent material, radioactive material
  • G01N 33/00 - Investigating or analysing materials by specific methods not covered by groups

31.

SYSTEM AND METHOD FOR ANALYSING, BY LASER INDUCED PLASMA SPECTROSCOPY, THE COMPOSITION OF A SURFACE LAYER AND FOR TAKING SAMPLES WITH A VIEW TO PERFORMING COMPLEMENTARY ANALYSES

      
Application Number EP2014053507
Publication Number 2014/131717
Status In Force
Filing Date 2014-02-24
Publication Date 2014-09-04
Owner AREVA NC (France)
Inventor
  • Picco, Bernard
  • Varet, Thierry

Abstract

System for analysing, by laser induced plasma spectroscopy, the composition of the surface layer of a material and for taking samples with a view to performing complementary analyses or examining this superficial layer, and method related thereto. The system comprises a single pulse laser (6), for generating a pulse laser beam, able to interact with the superficial layer of the material and produce a plasma on the surface of the material (4); a device (10, 12) for focusing the laser beam onto the surface of the material; a device (18, 20) for collecting the light emitted by the plasma; and a device (22) for analysing the spectrum of the collected light and for determining the elementary composition (nature and relative concentration of the elements) of the superficial layer from this spectral analysis. According to the invention, it furthermore comprises a device (30, 32, 34) for sucking up and collecting particles representative of the superficial layer, extracted from the latter, under the effect of the laser beam, with a view to performing qualitative or quantitative complementary analyses or examininations on the basis of said particles.

IPC Classes  ?

  • G01N 21/71 - Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light thermally excited
  • G01N 1/22 - Devices for withdrawing samples in the gaseous state
  • G01N 1/04 - Devices for withdrawing samples in the solid state, e.g. by cutting

32.

METHOD FOR CONTROLLING THE GAIN AND ZERO OF A MULTI-PIXEL PHOTON COUNTER DEVICE, AND LIGHT-MEASURING SYSTEM IMPLEMENTING SAID METHOD

      
Application Number EP2014053074
Publication Number 2014/128101
Status In Force
Filing Date 2014-02-18
Publication Date 2014-08-28
Owner AREVA NC (France)
Inventor
  • Fontbonne, Jean-Marc
  • Colin, Jean
  • Fontbonne, Cathy
  • Jehanno, Jacky

Abstract

According to the invention, which is especially applicable in high-energy physics, the signals supplied by the device (12) are collected over pre-defined periods until a pre-defined total measuring time is reached, a histogram of amplitudes is formed from the collected signals, the positions of two consecutive peaks, measurable on the histogram, are determined, and an error signal is produced, equal to the difference between the two peaks, which is used to adjust the voltage supplying the device, in such a way as to maintain the difference equal to a pre-defined nominal value.

IPC Classes  ?

  • G01T 1/24 - Measuring radiation intensity with semiconductor detectors
  • G01T 1/40 - Stabilisation of spectrometers

33.

METHOD FOR MEASURING DOSAGE BY MEANS OF A RADIATION DETECTOR, ESPECIALLY AN X-RADIATION OR GAMMA-RADIATION DETECTOR, USED IN THE SPECTROSCOPIC MODE, AND DOSAGE MEASUREMENT SYSTEM USING SAID METHOD

      
Application Number EP2014053253
Publication Number 2014/128174
Status In Force
Filing Date 2014-02-19
Publication Date 2014-08-28
Owner AREVA NC (France)
Inventor
  • Fontbonne, Jean-Marc
  • Colin, Jean
  • Fontbonne, Cathy
  • Jehanno, Jacky

Abstract

According to the invention, which is especially applicable in high-energy physics, an energy range and a dosage type H are selected, a radiation detector (14) of a given type is used, spectra measured by the detector are established for various radiations of the given type, the energies of which are within the selected range and the respective dosages of which are known, and on the basis of the spectra, a weighting function is established, i.e. a correspondence between an average dosage increment and an average energy, stored in the detector. This allows a person provided with a dosimeter identical to the detector to know, at all times, the average absorbed dosage flow expressed in the quantity H.

IPC Classes  ?

34.

METHOD AND DEVICE FOR DETERMINING THE RADIOLOGICAL ACTIVITY DEPOSITED IN A SEA BED

      
Application Number EP2014053386
Publication Number 2014/128238
Status In Force
Filing Date 2014-02-21
Publication Date 2014-08-28
Owner AREVA NC (France)
Inventor Messalier, Marc

Abstract

The invention relates to a device (1) for measuring the radiological activity deposited in a sea bed, comprising a sealed case (20) for a radiological detector (2), means (4) forming a truncated cone, containing a material suitable for having, passing therethrough, radiation to be measured by said radiological detector (2) comprising a small base (44) and a large base (42), the latter forming a surface (42) for letting in the radiation to be measured, said cone being sealingly assembled to said case, the small base (44) being arranged on the inlet surface side of the detector, the large base (42) being arranged opposite the sea bed.

IPC Classes  ?

  • G01T 7/00 - Details of radiation-measuring instruments

35.

INDUCTION FURNACE AND METHOD FOR TREATING METAL WASTE TO BE STORED

      
Application Number EP2014053027
Publication Number 2014/125107
Status In Force
Filing Date 2014-02-17
Publication Date 2014-08-21
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Boen, Roger
  • Bonnetier, Armand

Abstract

The invention relates to an induction melting furnace comprising shell (7) and a lower sole (11) forming the main part of the structure. In addition, the furnace comprises a removable inner crucible (1) formed by an inner layer (4) that is resistant to heat and to the aggressive nature of the molten bath (20), an outer layer (6) defining the crucible, and an intermediate insulating layer (5). The crucible (1) is a single-use crucible and can be stored, together with its charge, in a suitable container. Heat losses are low, even if the shell (7) is cooled. In addition, stresses due to differential thermal expansions are also very low.

IPC Classes  ?

  • F27B 14/06 - Crucible or pot furnacesTank furnaces heated electrically, e.g. induction crucible furnaces, with or without any other source of heat
  • F27B 14/10 - Crucibles
  • F27B 14/14 - Arrangements of heating devices
  • F27D 11/06 - Induction heating, i.e. in which the material being heated, or its container or elements embodied therein, form the secondary of a transformer

36.

FIBREGLASS BIN AND WASTE INCINERATION METHOD

      
Application Number EP2014052830
Publication Number 2014/125030
Status In Force
Filing Date 2014-02-13
Publication Date 2014-08-21
Owner AREVA NC (France)
Inventor
  • Boen, Roger
  • Charvin, Patrice

Abstract

The bin of the invention can be used to incinerate waste for a period of more than fifteen minutes in an incinerator without the waste being pre-melted, in particular as it is being inserted into the incinerator. The bin is mainly formed by a fibreglass casing (10) and is preferably reinforced with a lightweight metal structure (12) positioned outside or inside the casing or built into same. The assembly is topped with a gripping handle (14) and the upper portion of the assembly is stiffened by a metal tube (16) to which the lightweight metal structure (12) is secured, with a base formed by a drip pan (18) being secured to the base of the lightweight metal structure (12). The invention is suitable for the incineration of toxic waste.

IPC Classes  ?

  • G21F 9/14 - Processing by incinerationProcessing by calcination, e.g. desiccation
  • F23G 5/08 - Methods or apparatus, e.g. incinerators, specially adapted for combustion of waste or low-grade fuels including supplementary heating
  • G21F 9/32 - Processing by incineration
  • B29D 99/00 - Subject matter not provided for in other groups of this subclass

37.

METHOD FOR SORTING, IN A CONTINUOUS FLOW, CONTAMINATED MATERIALS AND CORRESPONDING DEVICE

      
Application Number EP2014051879
Publication Number 2014/122068
Status In Force
Filing Date 2014-01-31
Publication Date 2014-08-14
Owner
  • GRS VALTECH (France)
  • AREVA NC (France)
Inventor
  • Hirrien, Matthieu
  • Messalier, Marc

Abstract

The invention relates to a method for sorting, in a continuous flow, contaminated materials (100), which includes: conveying materials (100) from a point (A) to a point (B) by means of a conveyor (120); measuring the radioactive activity, by means of a first sensor (140), between the points (A) and (B) on the top surface (FSUP) of the first conveyor (120); and sorting the materials (100) by means of a sorting device (130). Said method is essentially characterized by: measuring the radioactive activity of the contaminated material by means of a second sensor (141), either on the top surface (FSUP) of the conveyor (120) and upstream from the point (A), or below the bottom surface (FINF) of said conveyor; calculating a differential measurement between a measurement from the second sensor (141) and from the first sensor (140); and restricting the sorting to the comparison between a threshold value and the measurement from the first sensor (140) or the differential measurement.

IPC Classes  ?

  • B07C 5/346 - Sorting according to other particular properties according to radioactive properties

38.

SYSTEM FOR THE IN-LINE CHARACTERISATION OF CORROSION PRODUCTS

      
Application Number EP2014050900
Publication Number 2014/111519
Status In Force
Filing Date 2014-01-17
Publication Date 2014-07-24
Owner AREVA (France)
Inventor Nowotka, Karsten

Abstract

The present invention relates to a system (100) for the in-line characterisation of corrosion products in a cooling system of a nuclear reactor, said characterisation system having a tube (10) connected to the cooling system of the reactor in which the coolant circulates, the system comprising at least two filtering means (13, 14, 15) in series, the downstream filtering means having a smaller pore size than the filtering means located upstream, the filtering means (13, 14, 15) being suitable for the coolant to pass therethrough; differential pressure sensors (16) combined with each of the filtering means (13, 14, 15) making it possible to determine in-line the obstruction rate of each of the filtering means.

IPC Classes  ?

  • B01D 46/00 - Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
  • G01N 15/06 - Investigating concentration of particle suspensions

39.

SYSTEM FOR THE IN-LINE CHARACTERIZATION OF PRODUCTS OF CORROSION

      
Application Number EP2014050904
Publication Number 2014/111523
Status In Force
Filing Date 2014-01-17
Publication Date 2014-07-24
Owner AREVA (France)
Inventor Karsten, Nowotka

Abstract

The present invention relates to a system (100) for characterizing products of corrosion which are present in a nuclear reactor cooling circuit, said characterization system having a pipe (20) connected to the reactor cooling circuit (1) through which the coolant flows, the system comprising at least two filtration means (13, 14, 15) in series, the downstream filtration means having a smaller pore size than the filtration means situated upstream, the filtration means (13, 14, 15) being able to have the cooling fluid passed through; differential-pressure sensors (16) associated with each of the filtration means make it possible to determine the extent to which each of the filtration means is plugged; a temperature-regulating means (22, 23) regulating the temperature of said liquid flowing through the pipe (20).

IPC Classes  ?

  • B01D 46/00 - Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
  • G01N 15/06 - Investigating concentration of particle suspensions
  • G21C 17/02 - Devices or arrangements for monitoring coolant or moderator

40.

DEVICE AND METHOD FOR TRANSPORTING FACETED PARTICLES

      
Application Number EP2013076412
Publication Number 2014/090952
Status In Force
Filing Date 2013-12-12
Publication Date 2014-06-19
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
  • UNIVERSITE AIX-MARSEILLE (France)
Inventor
  • Benedetti, Arnaud
  • Sornay, Philippe
  • Brothier, Méryl
  • Nicolas, Maxime
  • Dubrujeaud-Dalloz, Blanche

Abstract

The invention relates to a device and to a method for transporting powder made up of faceted particles on a vibrating conveyor surface (1) inclined by an angle Θ, in which method and device - Ra ≤ 0.2 μm, where Ra is the arithmetic mean deviation of the conveying surface (1); - θ ≤ 2/3 α, where α is the angle of friction of said powder on said conveying surface (1); - the vibrations are generated in the plane of said conveying surface (1) and in a direction (y) perpendicular or substantially perpendicular to the direction (x) of greatest gradient of the conveying surface (1) and have a frequency comprised between 5 Hz and 2kHz and an acceleration in excess of 1g.

IPC Classes  ?

41.

ULTRASOUND METHOD AND DEVICE FOR INSPECTING THE BULK OF A WELD FOR THE PRESENCE OF DEFECTS

      
Application Number EP2013075957
Publication Number 2014/090749
Status In Force
Filing Date 2013-12-09
Publication Date 2014-06-19
Owner AREVA (France)
Inventor Perrin, Gilles

Abstract

This method comprises a step of studying the weld (10) metallurgically; a step of dividing the weld (10) into a plurality of theoretical blocks and of jointly determining an elastic Hooke tensor for each theoretical block; a step of simulating by calculation the propagation of at least one incident ultrasound wave (73) through the weld (10); a step of simulating at least one reference diffracted ultrasound wave; a step of emitting at least one incident ultrasound wave (73) into the weld (10); a step of measuring each diffracted ultrasound wave (75); and a step of comparing each reference diffracted ultrasound wave with each measured diffracted ultrasound wave (75).

IPC Classes  ?

42.

ELECTROLYSER COMPRISING AN ANIONICALLY CONDUCTIVE ELECTROLYTIC MEMBRANE, AND METHOD FOR THE ELECTROLYSIS OF WATER VAPOUR

      
Application Number EP2013075019
Publication Number 2014/083134
Status In Force
Filing Date 2013-11-28
Publication Date 2014-06-05
Owner AREVA (France)
Inventor
  • Sala, Béatrice
  • Tetard, Elodie
  • Lacroix, Olivier
  • Grasset, Frédéric
  • Sirat, Abdelkader
  • Nizac, Sylvain

Abstract

The invention relates to an anionically conductive electrolyser comprising an electrochemical cell (10) formed by a solid electrolyte (13) formed by a ceramic; a first electrode (11) forming the anode of said electrochemical cell (10); and a second electrode (12) forming the cathode of said electrochemical cell (10), said solid electrolyte (13) being arranged between said first electrode (11) and said second electrode (12). Said electrolyser is characterised in that said solid electrolyte (13) consists of zirconium oxide doped with erbium oxide.

IPC Classes  ?

  • C25B 13/04 - DiaphragmsSpacing elements characterised by the material
  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water

43.

METHOD FOR BREAKING DOWN ORGANIC COMPOUNDS IN A LIQUID MEDIUM BY OXIDATION

      
Application Number EP2013066829
Publication Number 2014/029655
Status In Force
Filing Date 2013-08-12
Publication Date 2014-02-27
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (France)
  • UNIVERSITE DE MONTPELLIER II (France)
Inventor
  • Navarro, Nathalie
  • Pochon, Patrick
  • Nikitenko, Sergueï
  • Chave, Tony

Abstract

The invention relates to a method for breaking down, by oxidation, at least one organic compound, such as a carboxylic acid, in a liquid medium at a high concentration, i.e. no lower than 0.05 mol/L, in which the liquid medium is placed in contact, at atmospheric pressure and at room temperature, with a gas that contains oxygen, in the presence of a solid catalyst that enables the breakdown of the organic compound by the oxygen, and the liquid medium is simultaneously subjected to ultrasonic waves.

IPC Classes  ?

  • C02F 1/36 - Treatment of water, waste water, or sewage with mechanical oscillations ultrasonic vibrations
  • C02F 1/72 - Treatment of water, waste water, or sewage by oxidation
  • C02F 1/74 - Treatment of water, waste water, or sewage by oxidation with air
  • C02F 101/30 - Organic compounds

44.

DEVICE FOR HANDLING CASES CONTAINING OBJECTS

      
Application Number EP2013064691
Publication Number 2014/009476
Status In Force
Filing Date 2013-07-11
Publication Date 2014-01-16
Owner AREVA NC (France)
Inventor
  • Colin, Bruno
  • Collette, Luc

Abstract

The present invention relates to a device for handling cases and boxes contained in the cases, having a housing intended to receive a case, said housing being closed at a first longitudinal end and open at a second longitudinal end, a holding device (14) mounted in the region of the second end of the housing, said holding device (14) having two clamping jaws, said clamping jaws applying a clamping force to the case (E), an actuator for opening and closing said jaws, two abutment jaws (36, 38), each (36, 38) of which is carried by a clamping jaw and being articulated freely about and with respect to the clamping jaw, springs (40) connecting said abutment jaws (36, 38) such that the opening of the clamping jaws causes the opening of the abutment jaws (36, 38) and the abutment jaws (36, 38) may be opened independently of the clamping jaws.

IPC Classes  ?

45.

STORAGE DEVICE

      
Application Number EP2013060391
Publication Number 2013/174802
Status In Force
Filing Date 2013-05-21
Publication Date 2013-11-28
Owner AREVA NC (France)
Inventor
  • Colin, Bruno
  • Collette, Luc

Abstract

A position-indexed storage device comprising a support (1) and a basket (2) mounted on the support (1), the basket (2) comprising a plurality of cells (4) distributed about a longitudinal axis (X), the basket (2) comprising a central passage (8) of longitudinal axis (X), the support comprising a shaft (26) of longitudinal axis (X), the shaft (26) being housed in the passage (8) such that a relative movement between the basket (2) and the support (1) along the longitudinal axis (X) is allowed, and mechanical movement means for moving the basket relative to the support by a given angle about the longitudinal axis (X) are supported by the inner surface of the passage (8) and by the outer surface of the shaft (26), said mechanical movement means being activated in each cycle comprising a relative movement of the basket (2) and the support (1) away from and towards each other along the longitudinal axis (X).

IPC Classes  ?

  • G21F 5/06 - Details of, or accessories to, the containers
  • G21F 5/14 - Devices for handling containers or shipping-casks, e.g. transporting devices
  • G21F 7/00 - Shielded cells or rooms
  • G21F 7/06 - Structural combination with remotely-controlled apparatus, e.g. with manipulators
  • B65G 1/04 - Storage devices mechanical

46.

A SOLAR CONCENTRATOR FOR A SOLAR ENERGY COLLECTOR AND A METHOD OF ADJUSTING THE SOLAR CONCENTRATOR

      
Application Number IB2013051995
Publication Number 2013/136281
Status In Force
Filing Date 2013-03-13
Publication Date 2013-09-19
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Hoermann, Alexander
  • Ray, Forest

Abstract

This solar concentrator (6) comprises at least one row (12) of reflectors (14) comprising mirrors (34), said row (12) extending along a longitudinal direction (L), the reflector (14) of said row (12) being pivotally supported with respect to the ground about a pivot axis (A-A), said row comprising at least a first reflector (14) and a second reflector (14) and a connecting arrangement (42, 44) which connects adjacent longitudinal ends (26) of the first and second reflector assemblies (14), the connecting arrangement (42, 44) allowing a relative movement between the first and second reflector assemblies (14).

IPC Classes  ?

  • F24J 2/16 - having flat plates
  • F24J 2/54 - specially adapted for rotary movement
  • F24J 2/46 - Component parts, details or accessories of solar heat collectors
  • F24J 2/10 - having reflectors as concentrating elements

47.

REFLECTOR PANEL FOR SOLAR POWER PLANT, REFLECTOR ASSEMBLY COMPRISING SUCH A PANEL, AND RELATED MANUFACTURING METHOD

      
Application Number EP2013053442
Publication Number 2013/124349
Status In Force
Filing Date 2013-02-21
Publication Date 2013-08-29
Owner AREVA SOLAR, INC. (USA)
Inventor Sadlon, Scott

Abstract

The invention relates to a reflector panel (20) for a solar power plant, comprising: - a front reflective sheet (22), - a back sheet (24), the front (22) and back (24) sheets defining a cavity (34) between them, and - an inner frame structure (26), extending in the cavity (34). The inner frame structure (26) comprises at least two elongated beams (40) parallel to and spaced apart from one another, each beam (40) extending along each sheet (22, 24) and keeping the sheets (22, 24) spaced apart from one another, the beam (40) having a constant thickness between the sheets (22, 24). The invention also relates to a manufacturing method thereof, and a reflector assembly comprising such a reflector panel.

IPC Classes  ?

  • F24S 23/70 - Arrangements for concentrating solar rays for solar heat collectors with reflectors
  • F24S 23/74 - Arrangements for concentrating solar rays for solar heat collectors with reflectors with trough-shaped or cylindro-parabolic reflective surfaces
  • F24S 23/77 - Arrangements for concentrating solar rays for solar heat collectors with reflectors with flat reflective plates

48.

USE OF A MIXTURE COMPRISING ERBIUM AND PRASEODYMIUM AS A RADIATION ATTENUATING COMPOSITION, RADIATION ATTENUATING MATERIAL, AND ARTICLE PROVIDING PROTECTION AGAINST IONISING RADIATION AND COMPRISING SUCH A COMPOSITION

      
Application Number EP2012077037
Publication Number 2013/098382
Status In Force
Filing Date 2012-12-28
Publication Date 2013-07-04
Owner AREVA NC (France)
Inventor
  • Lantheaume, Noël
  • Pichegut, Marc
  • Jehanno, Jacky

Abstract

The invention relates to the use of a mixture comprising erbium and praseodymium as a radiation attenuating composition, i.e. as a composition that can attenuate ionising radiation, in particular X- and gamma-type electromagnetic radiation. The invention also relates to a radiation attenuating material comprising an erbium- and praseodymium-based composition, as well as a protective article which provides group or individual protection against ionising radiation and comprises said material. The invention is suitable for use in nuclear medicine (scintigraphy, radiotherapy, etc.) radiology, medical imaging, the nuclear industry, etc.

IPC Classes  ?

  • G21F 1/02 - Selection of uniform shielding materials
  • G21F 1/10 - Organic substancesDispersions in organic carriers
  • G21F 3/02 - Clothing

49.

METHOD FOR FORMULATING A CERAMIC POWDER FOR PRODUCING A PROTON-CONDUCTING ELECTROLYTIC MEMBRANE FOR AN ELECTROCHEMICAL CELL

      
Application Number EP2012076909
Publication Number 2013/098296
Status In Force
Filing Date 2012-12-26
Publication Date 2013-07-04
Owner AREVA (France)
Inventor
  • Sala, Béatrice
  • Grasset, Frédéric
  • Goeuriot, Dominique
  • Bendjeriou, Baroudi

Abstract

The present invention relates to a method for formulating a ceramic powder for producing a proton-conducting electrolytic membrane (12) for an electrochemical cell (10), said method comprising the following steps: forming a suspension of a previously synthesized, unprocessed ceramic powder in a solvent having a hydrogen potential greater than 7 so as to produce a slip, said unprocessed ceramic powder comprising agglomerates consisting of a plurality of ceramic grains; crushing said agglomerates contained in said slip so as to reduce said agglomerates; and drying said slip so as to mechanically separate said agglomerates of said solvent and recover said dried agglomerates.

IPC Classes  ?

  • C04B 35/462 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on oxides based on titanium oxides or titanates based on titanates
  • C04B 35/48 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on oxides based on zirconium or hafnium oxides or zirconates or hafnates
  • C04B 35/50 - Shaped ceramic products characterised by their compositionCeramic compositionsProcessing powders of inorganic compounds preparatory to the manufacturing of ceramic products based on rare earth compounds
  • C04B 35/634 - Polymers
  • C04B 35/626 - Preparing or treating the powders individually or as batches
  • B01D 71/02 - Inorganic material
  • C25B 13/04 - DiaphragmsSpacing elements characterised by the material
  • H01M 8/12 - Fuel cells with solid electrolytes operating at high temperature, e.g. with stabilised ZrO2 electrolyte
  • B01D 67/00 - Processes specially adapted for manufacturing semi-permeable membranes for separation processes or apparatus

50.

DECONTAMINATION GEL AND METHOD FOR DECONTAMINATING SURFACES BY WETTING USING SAID GEL

      
Application Number EP2012076026
Publication Number 2013/092633
Status In Force
Filing Date 2012-12-18
Publication Date 2013-06-27
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Cuer, Frédéric
  • Castellani, Romain

Abstract

The invention relates to a decontamination gel consisting of a colloidal solution including: at least one inorganic viscosity-increasing agent, at least one agent for rapidly altering the viscosity, which, when exposed to at least one stimulus, causes a rapid and large variation in the viscosity of the gel, at least one active decontamination agent, at least one surfactant, and optionally at least one superabsorbent polymer, the remainder consisting of a solvent. The invention also relates to a method for decontaminating a part, in particular a part that is small and/or has complex shape, by coating same with a film of said gel.

IPC Classes  ?

  • A61L 2/232 - Solid substances, e.g. granules, powders, blocks, tablets layered or coated
  • A61L 2/18 - Liquid substances

51.

DEVICE FOR HANDLING OBJECTS IN A GLOVE BOX

      
Application Number EP2012076806
Publication Number 2013/093076
Status In Force
Filing Date 2012-12-21
Publication Date 2013-06-27
Owner AREVA NC (France)
Inventor
  • Duval, Patrice
  • Marchal, Jean-Jacques
  • Collette, Luc

Abstract

Device for handling objects in a glove box comprising a carriage (2) for supporting the items that are to be handled, a base (6) with respect to which the carriage (2) can move along a horizontal axis (X), means of driving the carriage (2) along the axis (X), these drive means comprising an electric motor (14) arranged in such a way that its drive shaft is orthogonal to the axis (X) and projects away from the base (6), a transmission shaft (18) parallel to the motor (14), a rack (22) fixed to the base (6) along the axis (X) and a pinion (24) in direct engagement with the transmission shaft (18) and meshing with the rack (22), a drive belt (20) mechanically connecting the drive shaft of the motor (14) to the transmission shaft (18), the electric motor (14) being disengageable and the carriage being movable by hand along the axis (X).

IPC Classes  ?

  • B25J 9/02 - Programme-controlled manipulators characterised by movement of the arms, e.g. cartesian co-ordinate type
  • B25J 21/02 - Glove-boxes, i.e. chambers in which manipulations are performed by the human hands in gloves built into the chamber wallsGloves therefor
  • G21F 7/04 - Shielded glove-boxes

52.

PACKAGING OF RADIOACTIVE WASTE BY CEMENTING

      
Application Number EP2012076388
Publication Number 2013/092866
Status In Force
Filing Date 2012-12-20
Publication Date 2013-06-27
Owner AREVA NC (France)
Inventor
  • Avril, Damien
  • Chartier, David
  • Sanchez-Canet, Jennifer

Abstract

The invention relates to the field of packaging of radioactive waste by cementing. More specifically, the invention relates to the use of crystalline silica, mixed with cement powder, to reduce the heating of the cement paste caused by the hydration of said powder, during a process of packaging of radioactive waste. The invention also relates to a formulation for the packaging of radioactive waste by cementing, which comprises such silica. The invention further relates to a method for packaging radioactive waste implementing said formulation, and to a package for packaging of radioactive waste which is obtained by this method. Applications: processing of low- and medium-activity waste produced downstream of the nuclear fuel cycle.

IPC Classes  ?

  • C04B 14/06 - QuartzSand
  • C04B 28/02 - Compositions of mortars, concrete or artificial stone, containing inorganic binders or the reaction product of an inorganic and an organic binder, e.g. polycarboxylate cements containing hydraulic cements other than calcium sulfates
  • C04B 28/08 - Slag cements

53.

ACOUSTIC SENSOR FOR MEASURING A LINEAR MOVEMENT OF AN INTERNAL STRUCTURE OF A NUCLEAR REACTOR

      
Application Number EP2012074440
Publication Number 2013/083603
Status In Force
Filing Date 2012-12-05
Publication Date 2013-06-13
Owner AREVA (France)
Inventor
  • Perisse, Jocelyn
  • Mace, Jean-Reynald
  • Fayet, Patrick
  • Mazoyer, Thierry
  • Thirard, Christophe
  • Vouagner, Pascal

Abstract

The present invention relates to an acoustic sensor (10) for measuring the linear movement of an internal structure (20) of a nuclear reactor using sound waves, comprising: an electro-acoustic transducer (14) capable of emitting said sound waves; and a waveguide (5) capable of guiding said sound waves emitted by said transducer (14) toward a measurement area of the internal structure (20), wherein said acoustic sensor (10) is characterized in that said waveguide (5) is capable of guiding the reflected wave and said waveguide (5) is secured to said measurement area (20) and arranged so as to be capable of extending or retracting in accordance with the movement of said internal structure (20) of the nuclear reactor.

IPC Classes  ?

  • G01B 17/00 - Measuring arrangements characterised by the use of infrasonic, sonic, or ultrasonic vibrations

54.

DIRECT SOLAR STEAM GENERATOR AND METHOD OF SHUTING DOWN A DIRECT SOLAR STEAM GENERATOR

      
Application Number IB2012002434
Publication Number 2013/076559
Status In Force
Filing Date 2012-11-21
Publication Date 2013-05-30
Owner AREVA SOLAR, INC. (USA)
Inventor Tanner, Peter

Abstract

The direct solar steam generator (2) is of the type comprising a solar evaporator (4) having an evaporator circuit (12) for circulation of a working fluid, an evaporator inlet pipe (8) for supplying fluid to the evaporator circuit (12) and an evaporator outlet pipe (10) for collecting the working fluid exiting the evaporator circuit (12), and a solar concentrator (6) for concentrating solar energy towards the evaporator circuit (12). According to one aspect if the invention, the steam generator (2) comprises a fluid arrangement (26) configured to allow forming a static liquid seal in the outlet pipe (10) using the working fluid.

IPC Classes  ?

  • F24J 2/07 - Receivers working at high temperature, e.g. for solar power plants
  • F24J 2/24 - the working fluid being conveyed through tubular heat absorbing conduits
  • F24J 2/16 - having flat plates
  • F24J 2/46 - Component parts, details or accessories of solar heat collectors
  • F01K 13/00 - General layout or general methods of operation, of complete steam engine plants
  • F22B 1/00 - Methods of steam generation characterised by form of heating method

55.

PROTON-CONDUCTIVE ELECTROCHEMICAL CELL, AND METHOD FOR MANUFACTURING SUCH A CELL

      
Application Number FR2012052305
Publication Number 2013/054044
Status In Force
Filing Date 2012-10-11
Publication Date 2013-04-18
Owner
  • AREVA (France)
  • ARMINES (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (C.N.R.S) (France)
Inventor
  • Sala, Béatrice
  • Grasset, Frédéric
  • Tetard, Elodie
  • Rahmouni, Kamal
  • Goeuriot, Dominique
  • Bendjeriou, Baroudi
  • Takenouti, Hisasi

Abstract

The present invention relates to a proton-conductive electrochemical cell (10), comprising an electrolytic membrane (13) made of a ceramic and an electrode (11, 12) made of a cermet, said electrochemical cell (10) being obtained directly by a method of co-sintering a ceramic layer, capable of forming the electrolytic membrane (13), and a cermet layer, capable of forming the electrode (11, 12), in a sintering tool at a sintering temperature of the ceramic that makes it possible to render said ceramic layer, capable of forming the electrolyte (13), gas-tight, wherein said cell (10) is characterised in that said cermet consists of the mixture of a ceramic and an electronically conductive passivatable alloy including at least 40 mol % chromium capable of forming a passive layer, the nature and the chromium content of said passivatable alloy enabling said electrochemical cell to be co-sintered with a membrane densification of more than 90% without melting said alloy.

IPC Classes  ?

  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • C25B 9/10 - Cells comprising dimensionally-stable non-movable electrodes; Assemblies of constructional parts thereof with diaphragms including an ion-exchange membrane in or on which electrode material is embedded
  • C25B 11/04 - ElectrodesManufacture thereof not otherwise provided for characterised by the material
  • H01M 8/12 - Fuel cells with solid electrolytes operating at high temperature, e.g. with stabilised ZrO2 electrolyte
  • H01M 4/88 - Processes of manufacture

56.

METHOD AND SYSTEM FOR TREATING CARBON GASES BY ELECTROCHEMICAL HYDROGENATION IN ORDER TO OBTAIN A CXHYOZ COMPOUND

      
Application Number FR2012052319
Publication Number 2013/054053
Status In Force
Filing Date 2012-10-11
Publication Date 2013-04-18
Owner AREVA (France)
Inventor
  • Sala, Béatrice
  • Grasset, Frédéric
  • Lacroix, Olivier
  • Sirat, Abdelkader
  • Tetard, Elodie
  • Rahmouni, Kamal
  • Mazoyer, Joel

Abstract

The present invention relates to a method for treating CO2 by electrochemical hydrogenation, said method comprising: a step of transferring heat from a heating means (160) towards a proton-conductive electrolyser (110) such that said electrolyser (110) reaches an operating temperature suitable for electrolysing steam; a step of feeding the CO2 produced by said heating means (160) at the cathode of the electrolyser; a step of feeding the steam at the anode; a step of oxidising the steam at the anode; a step of generating protonated species in the membrane with proton conduction; a step of migrating said protonated species into said proton-conductive membrane; a step of reducing said protonated species on the surface of the cathode into reactive hydrogen atoms; and a step of hydrogenating the CO2 on the surface of the cathode of the electrolyser (110) by means of said reactive hydrogen atoms, said hydrogenation step enabling the formation of CxHyOz compounds, where x≥1; 0

IPC Classes  ?

  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • C25B 15/00 - Operating or servicing cells
  • C25B 15/08 - Supplying or removing reactants or electrolytesRegeneration of electrolytes
  • B01D 53/32 - Separation of gases or vapoursRecovering vapours of volatile solvents from gasesChemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by electrical effects other than those provided for in group

57.

ELECTRODE FOR ELECTROCHEMICAL CELL AND METHOD OF MANUFACTURING SUCH AN ELECTRODE

      
Application Number EP2012070011
Publication Number 2013/053727
Status In Force
Filing Date 2012-10-10
Publication Date 2013-04-18
Owner
  • AREVA (France)
  • ARMINES (France)
  • CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE (C.N.R.S) (France)
Inventor
  • Sala, Béatrice
  • Grasset, Frédéric
  • Tetard, Elodie
  • Rahmouni, Kamal
  • Sirat, Abdelkader
  • Goeuriot, Dominique
  • Bendjeriou, Baroudi
  • Takenouti, Hisasi

Abstract

The invention relates to an electrode for an electrochemical cell which exhibits good electron conductivity and good chemical conductivity, as well as good cohesion with the solid electrolyte of the electrochemical cell. To do this, this electrode is made from a ceramic, which is a perovskite doped with a lanthanide having one or more degrees of oxidation and with a complementary doping element taken from the following group: niobium, tantalum, vanadium, phosphorus, arsenic, antimony, bismuth.

IPC Classes  ?

  • H01M 4/90 - Selection of catalytic material
  • H01M 8/12 - Fuel cells with solid electrolytes operating at high temperature, e.g. with stabilised ZrO2 electrolyte

58.

METHOD FOR GENERATING HYDROGEN AND OXYGEN BY STEAM ELECTROLYSIS

      
Application Number EP2012070214
Publication Number 2013/053858
Status In Force
Filing Date 2012-10-11
Publication Date 2013-04-18
Owner AREVA (France)
Inventor
  • Sala, Béatrice
  • Grasset, Frédéric
  • Lacroix, Olivier
  • Sirat, Abdelkader
  • Rahmouni, Kamal
  • Keddam, Michel
  • Takenouti, Hisasi
  • Goeuriot, Dominique
  • Bendjeriou, Baroudi
  • Colomban, Philippe
  • Van Der Lee, Arie
  • Sanchez, José Grégorio

Abstract

The present invention relates to a method for generating hydrogen and oxygen adsorbates by steam electrolysis at 200 to 800°C using an electrolysis cell (30) comprising a solid electrolyte (31) which is made of a proton-conducting ceramic and which is arranged between an anode (32) and a cathode (33), each of which comprises a proton-conducting ceramic, and the ratio of the electroactive surface to the geometric surface of each of which is equal to at least 10, said method comprising the following steps: circulating a current between the anode (32) and the cathode (33), wherein the density of the current is no less than 500 mA/cm2; inserting water in the form of steam, which is fed under pressure to the anode (32); oxidizing said water in the form of steam at the anode (32), and generating highly reactive oxygen at the anode (32) after said oxidation; generating protonated species in the electrolyte (31) after said oxidation and migrating said protonated species in the electrolyte (31); and reducing said protonated species at the surface of the cathode (33) in the form of reactive hydrogen atoms.

IPC Classes  ?

  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • C25B 11/04 - ElectrodesManufacture thereof not otherwise provided for characterised by the material
  • C25B 9/10 - Cells comprising dimensionally-stable non-movable electrodes; Assemblies of constructional parts thereof with diaphragms including an ion-exchange membrane in or on which electrode material is embedded
  • C25B 11/03 - ElectrodesManufacture thereof not otherwise provided for characterised by shape or form perforated or foraminous
  • C25B 3/04 - Electrolytic production of organic compounds by reduction
  • C10G 45/44 - Hydrogenation of the aromatic hydrocarbons
  • C10G 45/58 - Refining of hydrocarbon oils using hydrogen or hydrogen-generating compounds to change the structural skeleton of some of the hydrocarbon content without cracking the other hydrocarbons present, e.g. lowering pour pointSelective hydrocracking of normal paraffins
  • C10G 47/22 - Non-catalytic cracking in the presence of hydrogen
  • C01C 1/04 - Preparation of ammonia by synthesis
  • B01D 53/32 - Separation of gases or vapoursRecovering vapours of volatile solvents from gasesChemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases or aerosols by electrical effects other than those provided for in group

59.

METHOD FOR TREATING AN AQUEOUS EFFLUENT TO ABATE THE DISSOLVED HEAVY METAL AND/OR RADIOACTIVE SUBSTANCE CONTENT OF SAME

      
Application Number EP2012068561
Publication Number 2013/041633
Status In Force
Filing Date 2012-09-20
Publication Date 2013-03-28
Owner
  • VEOLIA WATER SOLUTIONS & TECHNOLOGIES SUPPORT (France)
  • AREVA NC (France)
Inventor
  • Paillard, Hervé
  • Mizuno, Hisamatsu
  • Miura, Kunio
  • Prevost, Thierry
  • Piot, Grégoire

Abstract

Method for treating water to abate the heavy metal and/or radioactive substance content of same, said method comprising a step of introducing said water into a first contact tank (13), a first step of co-precipitation of at least some of said heavy metals and/or said radioactive substances by injecting at least two different precipitating agents (14, 15) into said first tank, at least one of said precipitating agents being a preformed precipitate, a first coagulation and/or flocculation step in a first coagulation and/or flocculation area (17) for the water coming from the first contact tank (13), a first step of solid/liquid separation of the water coming from the first coagulation and/or flocculation step, thus producing a first clarified liquid and a first sludge, a step of recirculation of at least some of said first sludge into the first contact tank (13).

IPC Classes  ?

  • C02F 1/52 - Treatment of water, waste water, or sewage by flocculation or precipitation of suspended impurities
  • C02F 1/56 - Macromolecular compounds
  • G21F 9/10 - Processing by flocculation
  • C02F 101/20 - Heavy metals or heavy metal compounds

60.

SOLAR ENERGY COLLECTOR COMPRISING A WASHING SYSTEM AND WASHING METHOD

      
Application Number IB2012001722
Publication Number 2013/034970
Status In Force
Filing Date 2012-09-05
Publication Date 2013-03-14
Owner AREVA SOLAR, INC. (USA)
Inventor Hampton, Aaron

Abstract

The solar energy collector (2) comprises : - a receiver (4) to circulate a heat transfer fluid, - a solar energy concentrator (6) comprising rows (8) of reflectors (10) with mirrors (14) to concentrate solar energy on the receiver (4), - a washing system (26) for washing the reflectors (10), said washing system comprising an array of sprinklers (28), said sprinklers (28) having in-ground bodies (30) and rotary heads (32) rotative with respect to axes (A-A) extending substantially vertically, to spread washing solution on substantially all mirrors (14) of the reflectors (10).

IPC Classes  ?

  • F24J 2/10 - having reflectors as concentrating elements
  • F24J 2/46 - Component parts, details or accessories of solar heat collectors

61.

NUCLEAR REACTOR WITH DEVICE FOR INJECTING NANOPARTICLES IN THE EVENT OF AN ACCIDENT

      
Application Number EP2012058679
Publication Number 2012/152883
Status In Force
Filing Date 2012-05-10
Publication Date 2012-11-15
Owner AREVA (France)
Inventor
  • Moussavi, Mehdi
  • Guillodo, Mickaël
  • Caron-Charles, Marylise

Abstract

The nuclear reactor comprises: - a core having nuclear fuel assemblies; - a core cooling circuit in which a coolant circulates; and - a device designed to inject nanoparticles into the coolant. The nanoparticles comprise first nanoparticles (82) of a first type having a first form factor lower than two and second nanoparticles (84) of a second type different from the first type and having a second form factor greater than two, the nanoparticles containing between 10 wt% and 90 wt% of the first nanoparticles (82) and between 90 wt% and 10 wt% of the second nanoparticles (84).

IPC Classes  ?

  • G21C 15/18 - Emergency cooling arrangementsRemoving shut-down heat
  • G21C 19/307 - Arrangements for introducing fluent material into the reactor coreArrangements for removing fluent material from the reactor core with continuous purification of circulating fluent material, e.g. by extraction of fission products specially adapted for liquids
  • C09K 5/10 - Liquid materials

62.

CONVEYING SYSTEM FOR TRANSPORTING OBJECTS AND LOADING SYSTEM COMPRISING AT LEAST ONE SUCH CONVEYING SYSTEM

      
Application Number EP2012055656
Publication Number 2012/130952
Status In Force
Filing Date 2012-03-29
Publication Date 2012-10-04
Owner AREVA NC (France)
Inventor
  • Bay, Cécile
  • Jouve, Sylvère

Abstract

The invention relates to a system for conveying nuclear fuel pellets, the axis of which is oriented substantially horizontally, said system comprising: a first conveyor (C1) having a first travelling axis (X1), the axis of the cylindrical objects (P) being substantially orthogonal to the travelling axis (X1) of the first conveyor (C1); a second conveyor (C2) having a second travelling axis (X2), the first conveyor (C1) and the second conveyor (C2) being in two different planes; and a transfer means (T) connecting the first conveyor (C1) and the second conveyor (C2), said transfer means (T) having a first chute (24) provided with a ramp (30) having a curvature connecting an inlet (26) to an outlet (28) of the first chute. In addition, an outer edge of the ramp (30) is provided with a rim (31) having the curvature of the ramp (30), in order to guide the pellets from the first conveyor (C1) to the second conveyor (C2).

IPC Classes  ?

  • B65G 47/22 - Devices influencing the relative position or the attitude of articles during transit by conveyors
  • B65G 47/44 - Arrangements or applications of hoppers or chutes
  • B65G 69/16 - Preventing pulverisation, deformation, breakage, or other mechanical damage to the goods or materials
  • G21C 21/00 - Apparatus or processes specially adapted to the manufacture of reactors or parts thereof

63.

SEALED INSTALLATION FOR HANDLING MATERIAL IN POWDER FORM

      
Application Number EP2012054949
Publication Number 2012/126926
Status In Force
Filing Date 2012-03-21
Publication Date 2012-09-27
Owner AREVA NC (France)
Inventor Palesse, Bruce

Abstract

Sealed installation intended for handling materials that require containment, comprising an enclosure, at least one element (20) crossing a wall (24) of the enclosure and able to move in a direction substantially perpendicular to the wall (24), said wall (24) having an opening for the passage of the moving element (20), and an assembly providing sealing between the wall (24) and the moving element (20), the sealing assembly comprising a first gaiter (42) mounted in a sealed manner on the wall (24) and the moving element (20), and a second gaiter (62) radially surrounding the first gaiter (42) and mounted in a sealed manner on the wall (24) and the moving element (20) so that the first gaiter (42) is completely contained within the space defined by the second gaiter (62), the wall (24) and the moving element (20), the space delimited by the first gaiter (42) and the moving element (20) being in pneumatic communication with the inside of the enclosure.

IPC Classes  ?

  • G21C 21/00 - Apparatus or processes specially adapted to the manufacture of reactors or parts thereof
  • G21F 7/005 - Shielded passages through wallsLocksTransferring devices between rooms
  • G21F 7/047 - Shielded passagesClosing or transferring means between glove-boxes
  • B25J 21/02 - Glove-boxes, i.e. chambers in which manipulations are performed by the human hands in gloves built into the chamber wallsGloves therefor

64.

PRESS HAVING IMPROVED SUPPORT

      
Application Number EP2012054954
Publication Number 2012/126930
Status In Force
Filing Date 2012-03-21
Publication Date 2012-09-27
Owner AREVA NC (France)
Inventor Coudiere, Christophe

Abstract

The invention relates to a guide and support assembly for a press compensator, comprising: a bushing (32) for guiding the compensator in the bore thereof, said bushing (32) to be mounted around the compensator; a support nut (38) to be screwed into the bore, the guide bushing (32) being located between a shoulder of the compensator and the support nut (38); and a means (44) axially securing the guide bushing (32) and the support nut (38) together while providing axial, transverse play between the guide bushing (32) and the support nut (38), wherein said means (44) is provided such that the guide bushing (32) is freely rotatable relative to the support nut (38).

IPC Classes  ?

  • B30B 15/06 - Platens or press rams
  • F15B 15/14 - Fluid-actuated devices for displacing a member from one position to anotherGearing associated therewith characterised by the construction of the motor unit of the straight-cylinder type
  • B30B 15/00 - Details of, or accessories for, pressesAuxiliary measures in connection with pressing

65.

METHOD FOR PRODUCING METHANOL OR HYDROCARBONS FROM A CARBON MATERIAL, INCLUDING A REFORMING STEP, THE OPERATING CONDITIONS OF WHICH ARE SELECTIVELY ADJUSTED

      
Application Number EP2012053014
Publication Number 2012/113832
Status In Force
Filing Date 2012-02-22
Publication Date 2012-08-30
Owner AREVA (France)
Inventor
  • Lecomte, Michel
  • Mourgues Codern, Alejandro Carlos

Abstract

The production method of the invention includes the following steps: producing a synthetic gas from the carbon material according to a method including at least one reforming step, the synthetic gas having a first hydrogen/carbon-monoxide molar ratio under the first operating conditions for the reforming operation; producing a stream of hydrogen from a hydrogenated raw material and from a first consumed electrical power, the hydrogen stream having a first molar flow rate for said first consumed electrical power; and lowering the consumed electrical power for producing the hydrogen stream to a second electrical power lower than the first electrical power, and transitioning to second operating conditions that are different from the first operating conditions for the reforming operation in order to compensate for the lowering of the molar flow rate of the hydrogen stream, the synthetic gas having, under the second operating conditions, a second hydrogen/carbon-monoxide molar ratio that is greater than the first hydrogen/carbon-monoxide molar ratio.

IPC Classes  ?

  • C01B 3/32 - Production of hydrogen or of gaseous mixtures containing hydrogen by reaction of gaseous or liquid organic compounds with gasifying agents, e.g. water, carbon dioxide, air
  • C25B 1/02 - Hydrogen or oxygen
  • C07C 29/151 - Preparation of compounds having hydroxy or O-metal groups bound to a carbon atom not belonging to a six-membered aromatic ring by reduction of oxides of carbon exclusively with hydrogen or hydrogen-containing gases
  • C10J 3/00 - Production of gases containing carbon monoxide and hydrogen, e.g. synthesis gas or town gas, from solid carbonaceous materials by partial oxidation processes involving oxygen or steam

66.

DEVICE FOR IDENTIFYING A METALLIC SUPPORT BY SHAPE RECOGNITION, APPLICATION TO THE IDENTIFICATION OF PODS CONTAINING NUCLEAR FUEL PELLETS

      
Application Number EP2012050165
Publication Number 2012/095359
Status In Force
Filing Date 2012-01-06
Publication Date 2012-07-19
Owner AREVA NC (France)
Inventor
  • Garret, Fabien
  • Gerdolle, Jean-Michel

Abstract

The invention relates to a device for identifying a metallic support on which are inscribed a code based on holes and an alphanumeric code. According to the invention, the device comprises:- means of illumination of the metallic support which consist of light-emitting diodes; - a camera for taking images of the code based on holes and of the alphanumeric code inscribed on the metallic support when the latter is illuminated by the light-emitting diodes; - means of processing an image obtained by the camera comprising means of shape recognition for reading the holes of the code based on holes and for reading the characters of the alphanumeric code which are inscribed on the metallic support.

IPC Classes  ?

  • G06K 7/10 - Methods or arrangements for sensing record carriers by electromagnetic radiation, e.g. optical sensingMethods or arrangements for sensing record carriers by corpuscular radiation

67.

INSTALLATION FOR DOSING AT LEAST ONE POWDERY MATERIAL

      
Application Number EP2012050309
Publication Number 2012/095421
Status In Force
Filing Date 2012-01-10
Publication Date 2012-07-19
Owner AREVA NC (France)
Inventor
  • Ducher, Roland
  • Duval, Patrice
  • Fantini, Serge
  • Sochon, Marc

Abstract

Installation for dosing a powdery material comprising at least one hopper (TC), a conveyor (2) having a receptacle (6) provided with a filling opening underneath said hopper (TC), a weighing system (4) able to weigh at least said receptacle (6), means (20) able to move the weighing system (4) and the receptacle (6) so as to distance the receptacle (6) from the conveyor (2) and so that, in at least one distanced position, the weighing system (4) weighs solely the receptacle (6) and its content, said weighing system (4) comprising a first balance (8) supporting the receptacle (6) and a second balance (10) on which the first balance (8) rests. Said installation can comprise individual hoppers (T1, T2, T3) upstream of the hopper (TC), making it possible to produce mixtures of powders.

IPC Classes  ?

  • G01G 21/23 - Support or suspension of weighing platforms
  • G01G 11/00 - Apparatus for weighing a continuous stream of material during flowConveyor-belt weighers

68.

ASSEMBLY FOR A TABLETTING PRESS

      
Application Number EP2011073333
Publication Number 2012/084893
Status In Force
Filing Date 2011-12-20
Publication Date 2012-06-28
Owner AREVA NC (France)
Inventor
  • Ducher, Roland
  • Jouve, Sylvère

Abstract

The invention relates to a device for manufacturing tablets, comprising a powder dispenser (6) and a table (2) provided with dies (4) to be filled with powder and over which the dispenser moves (6). The dispenser (6) comprises two sets of rollers engaging with rails (22) attached to the table (2) on either side of the area of movement of the dispenser (6), one set of rollers (26) being used for guiding the movement of the dispenser (6), and one set of rollers being used for clamping the dispenser (6) against the table (2).

IPC Classes  ?

69.

NUCLEAR POWER STATION COMPONENT WITH MARKING BY LUMINESCENT NANOPARTICLES, CORRESPONDING READING PROCESS AND ASSEMBLY

      
Application Number EP2011072368
Publication Number 2012/080140
Status In Force
Filing Date 2011-12-09
Publication Date 2012-06-21
Owner AREVA (France)
Inventor Moussavi, Mehdi

Abstract

The nuclear power station component comprises: a metallic structure (3) having an outer surface (17); at least one marking (11) placed on the outer surface (17) and coding information relating to the component (1). The marking (11) comprises a plurality of luminescent nanoparticles (13, 15) each provided to emit an optical radiation having a determined emission wavelength when said luminescent nanoparticle (13, 15) is excited with optical radiation having a determined excitation wavelength.

IPC Classes  ?

  • C09K 11/02 - Use of particular materials as binders, particle coatings or suspension media therefor

70.

PROCESS FOR SEPARATING AMERICIUM FROM OTHER METALLIC ELEMENTS PRESENT IN AN ACIDIC AQUEOUS OR ORGANIC PHASE AND APPLICATIONS THEREOF

      
Application Number EP2011070909
Publication Number 2012/069573
Status In Force
Filing Date 2011-11-24
Publication Date 2012-05-31
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Heres, Xavier
  • Burdet, Fabien
  • Borrini, Julien
  • Duchesne, Marie-Thérèse
  • Mazzanti, Marinella
  • Bernier, Gilles
  • Pellet-Rostaing, Stéphane
  • Favre-Reguillon, Alain
  • Lemaire, Marc

Abstract

The present invention relates to a process that makes it possible to separate the americium present in an acidic aqueous phase or in an organic phase from other metallic elements that are also found in this phase, by complexing the americium with a water-soluble ethylenediamine derivative. It also relates to a process for the selective recovery of americium from an acidic aqueous phase containing, besides the americium, other metallic elements, which comprises the implementation of this separation process. Applications: treatment of spent nuclear fuels.

IPC Classes  ?

  • C22B 3/00 - Extraction of metal compounds from ores or concentrates by wet processes
  • C22B 60/02 - Obtaining thorium, uranium or other actinides
  • G21C 19/46 - Aqueous processes
  • G21F 9/12 - Processing by absorptionProcessing by adsorptionProcessing by ion-exchange

71.

DEVICE FOR AXIALLY RETAINING AN ELEMENT OF ELONGATE SHAPE AND FOR SETTING IT IN ROTATION ABOUT ITS AXIS

      
Application Number EP2011069019
Publication Number 2012/056013
Status In Force
Filing Date 2011-10-28
Publication Date 2012-05-03
Owner AREVA NC (France)
Inventor
  • Fischer, Marc
  • Boyer, Jean-Marc

Abstract

Installation for welding fuel assembly top nozzles onto nuclear fuel rods comprising a device (D) for axially retaining said rod and for setting it in rotation and a welding chamber (C), said device (D) comprising a gripper and means for closing the gripper onto the fuel rod, said means comprising a push-rod (32) to apply an axial force to the gripper, a linear actuator (44) of axis (X2) parallel to the longitudinal axis of the device (X), a yoke (46) translationally secured to said push-rod and able to rotate about a fixed axis (Y) orthogonal to the longitudinal axis (X) which is not secant therewith, said yoke (46) being articulated with respect to the linear actuator (44) about an axis (Y1) parallel to the orthogonal axis (Y) such that the linear actuator (44) causes the yoke (46) to rotate about the first orthogonal axis (Y) and causes a translational movement of the push-rod, closing the gripper onto the fuel rod.

IPC Classes  ?

  • G21C 3/10 - End closures
  • G21C 21/00 - Apparatus or processes specially adapted to the manufacture of reactors or parts thereof
  • B23K 9/028 - Seam weldingBacking meansInserts for curved planar seams
  • B23K 37/053 - Auxiliary devices or processes, not specially adapted for a procedure covered by only one of the other main groups of this subclass for holding or positioning work aligning cylindrical workClamping devices therefor
  • B23Q 1/26 - Movable or adjustable work or tool supports characterised by constructional features relating to the co-operation of relatively movable membersMeans for preventing relative movement of such members

72.

METHOD OF MEASURING THE URANIUM CONCENTRATION OF AN AQUEOUS SOLUTION BY SPECTROPHOTOMETRY

      
Application Number EP2011065806
Publication Number 2012/034989
Status In Force
Filing Date 2011-09-13
Publication Date 2012-03-22
Owner AREVA NC (France)
Inventor
  • Celier, Magali
  • Nardoux, Pascal

Abstract

The invention relates to a method of measuring the uranium concentration of an aqueous solution, comprising the following successive steps: a) the electrochemical reduction to valence IV of the uranium present in the aqueous solution at a valence above IV, this reduction being carried out at pH < 2 and by passing an electric current through the solution; b) the measurement of the absorbance of the solution obtained on conclusion of step a) at a wavelength chosen between 640 and 660 nm, preferably at 652 nm; and c) the determination of the uranium concentration of the aqueous solution by deduction from the uranium concentration of valence (IV) present in the aqueous solution obtained on completion of step a) from the measurement of the absorbance obtained in step b).

IPC Classes  ?

  • G01N 21/31 - Investigating relative effect of material at wavelengths characteristic of specific elements or molecules, e.g. atomic absorption spectrometry

73.

212 PB IMAGING

      
Application Number EP2011065388
Publication Number 2012/032043
Status In Force
Filing Date 2011-09-06
Publication Date 2012-03-15
Owner AREVA MED LLC (USA)
Inventor
  • Azure, Michael
  • Andreoletti, Gilbert
  • Maquaire, Patrick
  • Torgue, Julien
  • Bourdet, Patrick

Abstract

A radiopharmaceutical composition that comprises a radioactive isotope of lead (212Pb) combination with a pharmaceutical or an antibody or antibody fragment and a chelating agent. These compositions are especially useful in the imaging and diagnosis of tumors and tumor metastases.

IPC Classes  ?

  • A61K 51/10 - Antibodies or immunoglobulinsFragments thereof

74.

DEVICE FOR HANDLING DRUMS, EQUIPMENT FOR TRANSFERRING POWDER MATERIAL, AND TRANSFER METHOD

      
Application Number EP2011064694
Publication Number 2012/025610
Status In Force
Filing Date 2011-08-26
Publication Date 2012-03-01
Owner AREVA NC (France)
Inventor Peressoni, Yvan

Abstract

The invention relates to equipment for transferring powder from a drum into a tank, comprising at least one handling device and a hopper assembly (T) connected to a tank (4). The handling device comprises a hollow cylindrical body for surrounding a drum (2) and immobilizing same in order enable the latter to be turned over, the drum (2) being open and the powder being contained in at least one sealed bag. The hopper assembly (T) comprises a hopper (60) and a sealed chamber (62) mounted onto the upstream end of the hopper, said chamber (62) comprising an opening for enabling the entry of the hollow cylindrical body loaded with the drum (2) and the bag powder, wherein, after the withdrawal of the hollow cylindrical body loaded with the empty drum (2), said opening is closed and the bag is opened so as to allow the powder to flow into the hopper (60).

IPC Classes  ?

  • B66C 1/62 - Load-engaging elements or devices attached to lifting, lowering, or hauling gear of cranes, or adapted for connection therewith for transmitting forces to articles or groups of articles by mechanical means comprising article-engaging members of a shape complementary to that of the articles to be handled
  • B65G 65/23 - Devices for tilting and emptying of containers

75.

DEVICE FOR INSERTING, GUIDING, AND REMOVING CYLINDRICAL PARTS, SUCH AS NUCLEAR FUEL PELLETS, IN A CENTERLESS GRINDER

      
Application Number EP2011062748
Publication Number 2012/013634
Status In Force
Filing Date 2011-07-25
Publication Date 2012-02-02
Owner AREVA NC (France)
Inventor
  • Fantini, Serge
  • Medina, Hervé

Abstract

The invention relates to a device (1) for inserting, guiding, and removing cylindrical parts to be ground in a centerless grinder (10). According to the invention, means (4, 40, 41) for the micrometric adjustment of the alignment of inlet (3) and outlet (5) guides of a guide rail (2) are provided, wherein said micrometric adjustment means are provided separately from one another. Using the invention, very precise alignment can be achieved, and any deviation of the parts is thereby avoided.

IPC Classes  ?

  • B24B 5/22 - Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfacesAccessories therefor involving centreless means for supporting, guiding, floating or rotating work for grinding cylindrical surfaces, e.g. on bolts
  • B24B 5/313 - Machines or devices designed for grinding surfaces of revolution on work, including those which also grind adjacent plane surfacesAccessories therefor involving work-supporting means carrying several workpieces to be operated on in succession
  • B24B 5/35 - Accessories
  • B24B 41/00 - Component parts of grinding machines or devices, such as frames, beds, carriages or headstocks
  • G21C 19/00 - Arrangements for treating, for handling, or for facilitating the handling of, fuel or other materials which are used within the reactor, e.g. within its pressure vessel

76.

DEVICE FOR DRESSING A GRINDING WHEEL, AND USE THEREOF IN A CENTERLESS GRINDER FOR NUCLEAR FUEL PELLETS

      
Application Number EP2011062746
Publication Number 2012/013633
Status In Force
Filing Date 2011-07-25
Publication Date 2012-02-02
Owner AREVA NC (France)
Inventor
  • Bened, José
  • Medina, Hervé

Abstract

The invention relates to a dressing device (1) for a grinding wheel (2), including a sleeve (10) for laterally holding and guiding, along the horizontal axis (X) thereof, a corundum rod (3), a ram (11) for applying a constant pressing force to the corundum rod (3) held and guided in the sleeve (10) against the grinding wheel (2), means (4, 40, 41) for rigidly connecting the ramrod (110) to the end of the corundum rod, and linear guide means (13) for the sleeve for translating the corundum rod parallel to the axis (y) of the grinding wheel while keeping said rod pressed against the latter with a constant force. The invention can be used in a centerless grinder (5) in which the grinding wheel (2) has the function of grinding nuclear fuel pellets.

IPC Classes  ?

  • B24B 53/04 - Devices or means for dressing or conditioning abrasive surfaces of cylindrical or conical surfaces on abrasive tools or wheels
  • B24B 53/12 - Dressing toolsHolders therefor

77.

SECONDARY REFLECTOR FOR LINEAR FRESNEL REFLECTOR SYSTEM

      
Application Number US2011027616
Publication Number 2011/112632
Status In Force
Filing Date 2011-03-08
Publication Date 2011-09-15
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Mills, David, R.
  • Lawrence, Matthew, J.

Abstract

A solar collection system having a secondary reflector is provided. The secondary reflector may be located above a field of primary reflectors and below a solar receiver. The secondary reflector may form a portion of an ellipse or macrofocal ellipse and be operable to reflect at least a portion of the solar radiation reflected by the primary reflectors onto the solar receiver. The secondary reflector may be disposed away from the solar receiver and associated tertiary reflectors such that it does not intercept reflected solar radiation from the outer primary reflectors that would otherwise have struck the solar receiver and tertiary reflectors had the secondary reflector not been present.

IPC Classes  ?

  • F24J 2/16 - having flat plates
  • F24J 2/18 - spaced, opposed interacting reflecting surfaces
  • F24J 2/54 - specially adapted for rotary movement

78.

LIQUID/LIQUID EXTRACTION METHOD FOR PURIFYING URANIUM FROM NITRIC ACID DISSOLUTION OF NATURAL URANIUM CONCENTRATE

      
Application Number EP2010070248
Publication Number 2011/076739
Status In Force
Filing Date 2010-12-20
Publication Date 2011-06-30
Owner
  • Commissariat à l'énergie atomique et aux énergies alternatives (France)
  • AREVA NC (France)
Inventor
  • Miguirditchian, Manuel
  • Baron, Pascal
  • Bisel, Isabelle
  • Dinh, Binh
  • Sorel, Christian
  • Bertin, Jean

Abstract

The invention relates to a method making it possible to purify the uranium from a natural uranium concentrate. Said method includes: a) extracting the uranium, present in the form of uranyl nitrate, in an aqueous phase A1 resulting from the dissolution of the natural uranium concentrate in nitric acid by means of an organic phase containing an extractant in an organic thinner; b) stripping the organic phase, obtained from step a), with an aqueous phase A2; and c) back extracting the uranyl nitrate from the organic phase, obtained from step b), by means of flowing said organic phase into an apparatus, in the opposite flow direction of an aqueous phase A3. The invention is characterized in that the extractant is an N,N-dialkylamide and in that the ratio between the flow rates of the organic phase, obtained from step b), and the aqueous phase A3 in the apparatus where step c) occurs is greater than 1. The invention is of use in the refinement of natural uranium concentrates produced by uranium mines.

IPC Classes  ?

  • C22B 3/26 - Treatment or purification of solutions, e.g. obtained by leaching by liquid-liquid extraction using organic compounds
  • B01D 11/04 - Solvent extraction of solutions which are liquid
  • C22B 60/02 - Obtaining thorium, uranium or other actinides
  • G21C 19/46 - Aqueous processes

79.

DEVICE HAVING REDUCED OVERALL DIMENSIONS FOR IDENTIFYING A METAL SUBSTRATE IN A DUSTY AND METALLIC ENVIRONMENT, AND APPLICATION FOR IDENTIFYING CONTAINERS CONTAINING NUCLEAR FUEL ELEMENTS IN THE PRODUCTION PLANT THEREOF

      
Application Number EP2010068692
Publication Number 2011/069878
Status In Force
Filing Date 2010-12-02
Publication Date 2011-06-16
Owner AREVA NC (France)
Inventor
  • Lantheaume, Noël
  • Marchal, Jean-Jacques

Abstract

The invention relates to a device for identifying a metal substrate present in a strongly metallic environment that may also be dusty. According to the invention, the device includes a passive radio-frequency identification (RFID) label, a label carrier suitable for being attached to the metal substrate and to position the label at a distance therefrom, and a RFID reader having an antenna that includes, as an induction loop, two sections of a coaxial cable having a substantially identical length and each including a metal core and a metal pleat surrounding the core, the two sections being linked together, on the one hand, at one end thereof by connecting the core of one to the pleat of the other and conversely and, on the other hand, at the other end thereof by connecting only the pleats together, the cores thereof being separated at said other end. Two embodiments are provided for producing the label carrier.

IPC Classes  ?

  • G06K 19/077 - Constructional details, e.g. mounting of circuits in the carrier
  • G06K 7/08 - Methods or arrangements for sensing record carriers by means detecting the change of an electrostatic or magnetic field, e.g. by detecting change of capacitance between electrodes
  • H01Q 1/22 - SupportsMounting means by structural association with other equipment or articles
  • G21F 7/04 - Shielded glove-boxes
  • G21F 7/00 - Shielded cells or rooms

80.

ELECTRODE-CHANGING DEVICE HAVING IMPROVED SAFETY

      
Application Number EP2010069229
Publication Number 2011/070093
Status In Force
Filing Date 2010-12-09
Publication Date 2011-06-16
Owner AREVA NC (France)
Inventor
  • Allard, Jean-Luc
  • Schwanck, Jean-Pierre

Abstract

The invention relates to a device for removing an electrode from an electrode holder and/or for mounting an electrode in an electrode holder, said electrode holder forming part of a welding device, said device comprising a receptacle for used electrodes, which is provided with an opening and an assembly mounted on said opening, said assembly including a passage (7) through a longitudinal axis (X) connecting a recess (46), for receiving one end of the electrode holder which forms a mandrel, and the receptacle, said longitudinal axis (X) being intended to be substantially vertical, means (46) for clamping or unclamping a mandrel of the electrode holder, means (54) for rigidly connecting the electrode to said device and means (28) for allowing or not allowing the used electrode to be inserted into the receptacle.

IPC Classes  ?

  • B23K 9/12 - Automatic feeding or moving of electrodes or work for spot or seam welding or cutting
  • B23K 9/167 - Arc welding or cutting making use of shielding gas and of a non-consumable electrode
  • B23K 9/26 - Accessories for electrodes, e.g. ignition tips

81.

METHOD FOR ASSEMBLING TWO SILICON NITRIDE PARTS IN A FLUID-TIGHT MANNER

      
Application Number EP2010068474
Publication Number 2011/067228
Status In Force
Filing Date 2010-11-30
Publication Date 2011-06-09
Owner AREVA NC (France)
Inventor
  • Creau, Michel
  • Etchegoyen, Grégory
  • Porte, Isabelle

Abstract

The invention relates to a method for assembling two parts (10, 30) made of Si3N4 in a fluid-tight manner, said two parts comprising a male end (11) and a female end (31), respectively, each of said ends being provided with mechanical assembly means (14, 34) designed to engage one with the other and defining, in the assembled condition, a space (42) therebetween, said method including the assembly of said parts by means of the engagement of the mechanical assembly means of the males and female ends, and the filling of the space existing between said assembly means with a glass seal, and the method is characterized in that the filling process comprises: coating the mechanical assembly means of one and/or the other assembly means of the male and female ends, before assembly, with a borosilicate glass paste; and applying a thermal treatment to the parts after the assembly thereof.

IPC Classes  ?

  • C04B 37/00 - Joining burned ceramic articles with other burned ceramic articles or other articles by heating

82.

HYBRID SOLAR-THERMAL POWER PLANT AND OPERATING METHOD

      
Application Number US2010058571
Publication Number 2011/068880
Status In Force
Filing Date 2010-12-01
Publication Date 2011-06-09
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Venetos, Milton
  • Conlon, William Martin

Abstract

Methods, systems, and apparatus by which steam and/or hot water generated using solar energy may be utilized to generate electricity or work are disclosed herein. A method in one instance may involve driving a first turbine using a fluid having energy obtained from a main energy source other than solar energy, and using solar energy-generated hot water and/or steam as an auxiliary energy input to drive the first turbine. An apparatus in one instance may include (1) a first turbine in fluid communication with and driven by a fluid heated by a main energy source other than solar energy in fluid communication with (2) a solar steam and/or hot water generator that utilizes solar energy to generate hot water and/or steam or other working fluid as an auxiliary energy input source for the first turbine.

IPC Classes  ?

  • F03G 6/06 - Devices for producing mechanical power from solar energy with solar energy concentrating means
  • F22B 1/00 - Methods of steam generation characterised by form of heating method
  • F22B 33/00 - Steam-generation plants, e.g. comprising steam boilers of different types in mutual association

83.

TUBULAR PIPE FOR TRANSPORTING LIQUID SODIUM

      
Application Number FR2010052570
Publication Number 2011/064516
Status In Force
Filing Date 2010-11-30
Publication Date 2011-06-03
Owner AREVA (France)
Inventor
  • Moussavi, Mehdi
  • Ambroso, Annalisa

Abstract

The present invention relates to a tubular pipe (10) for transporting liquid sodium suitable for inhibiting any leaks of sodium outside the pipe. Said pipe includes a pipe body (20) covered on the inside with an inner layer which includes: a first continuous layer (40) made of ceramic or a metal or metal alloy, for being placed in contact with the liquid sodium carried by the tubular pipe; and between the pipe body and said first ceramic layer, an intermediate layer (50) made of a reactive material which, when said layer contacts the liquid sodium, the layer turns into a modified material which has separate electric conductivity from that of the reactive material.

IPC Classes  ?

  • G21C 17/00 - MonitoringTesting
  • G21C 17/025 - Devices or arrangements for monitoring coolant or moderator for monitoring liquid coolants or moderators for monitoring liquid metal coolants
  • F16L 58/14 - Coatings characterised by the materials used by ceramic or vitreous materials
  • F17D 5/02 - Preventing, monitoring, or locating loss
  • G01M 3/04 - Investigating fluid tightness of structures by using fluid or vacuum by detecting the presence of fluid at the leakage point

84.

USE OF CERTAIN CHEMICAL ELEMENTS FOR INHIBITING THE FORMATION OF PRECIPITATES CONTAINING ZIRCONIUM MOLYBDATE IN AN AQUEOUS SOLUTION CONTAINING THE ELEMENT MOLYBDENUM AND THE ELEMENT ZIRCONIUM

      
Application Number EP2010066212
Publication Number 2011/051311
Status In Force
Filing Date 2010-10-27
Publication Date 2011-05-05
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor Magnaldo, Alastair

Abstract

The present invention relates to the use of a chemical element selected from plutonium, tellurium, antimony and the mixtures thereof, for inhibiting the formation of a zirconium molybdate precipitate in an aqueous solution containing the element molybdenum and the element zirconium.

IPC Classes  ?

85.

DUAL FLUID CIRCUIT SYSTEM FOR GENERATING A VAPOROUS WORKING FLUID USING SOLAR ENERGY

      
Application Number US2010054855
Publication Number 2011/053863
Status In Force
Filing Date 2010-10-29
Publication Date 2011-05-05
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Venetos, Milton
  • Caulfield, Thomas
  • Conlon, William, M.
  • Brown Callery, Robert

Abstract

Systems for producing vaporous working fluid are provided, including: a first fluid passage configured to convey a working fluid to a first solar heating system, wherein the first solar heating system heats the working fluid to produce a heated working fluid having a temperature t1 and a quality X1; a second fluid passage configured to convey a heat transfer fluid to a second solar heating system to produce a heated heat transfer fluid; and a heat exchanger configured to transfer heat from the heated heat transfer fluid to the heated working fluid. When X1 < 1, the heat transfer results in an increase in quality of the heated working fluid When X1 = 1, the heat transfer results in an increase in temperature of the heated working fluid. Methods of using the systems to produce vaporous working fluid are also provided.

IPC Classes  ?

  • F03G 6/06 - Devices for producing mechanical power from solar energy with solar energy concentrating means
  • F24J 2/14 - semi-cylindrical or cylindro-parabolic

86.

DEVICE FOR CHANGING ELECTRODE HAVING ENHANCED SAFETY

      
Application Number EP2010065599
Publication Number 2011/048037
Status In Force
Filing Date 2010-10-18
Publication Date 2011-04-28
Owner AREVA NC (France)
Inventor
  • Allard, Jean-Luc
  • Schwanck, Jean-Pierre

Abstract

The invention relates to a device for changing an electrode of an electrode-carrying tool (2) of a welding device, said electrode-changing device comprising a first portion (12) for housing an electrode-carrying tool (2), said first portion (12) comprising a means for keeping the electrode-carrying tool (2) stationary and a second portion (14) that is mounted around the first portion (12) covering the portion of the electrode (8) that projects outside the first portion (12), the second portion (14) being separatable from the first portion (12) by means of translation along the electrode and being rotatably movable relative to the stationary portion (14) when said second portion surrounds said stationary portion, the second portion (14) comprising a means (33) for clamping onto or unclamping from the mandrel (6) and a means (36) for securing the electrode (8) of the second portion (14), thus enabling the removal of the mandrel (6) when the first portion (12) and second portion (14) separate.

IPC Classes  ?

  • B23K 9/32 - Accessories
  • B23K 9/12 - Automatic feeding or moving of electrodes or work for spot or seam welding or cutting

87.

MULTI-TUBE SOLAR THERMAL RECEIVER

      
Application Number US2010051690
Publication Number 2011/044281
Status In Force
Filing Date 2010-10-06
Publication Date 2011-04-14
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Johnson, Peter, L.
  • Hanson, Robert, J.
  • Conlon, William, M.

Abstract

Systems, methods, and apparatus by which solar energy may be collected as heat are disclosed. Some systems include an elevated solar receiver comprising multiple tubes arranged lengthwise in the receiver in a side-by-side parallel configuration across a transverse dimension of the receiver. The receiver comprises an inlet section configured to receive a heat transfer fluid into the tubing arrangement and an outlet section configured to output heated heat transfer fluid from the tubing arrangement. The multiple tubes of the tubing arrangement define together a flowing circuit between the inlet section and the outlet section from the outer tube or tubes to the inner tube or tubes. The solar energy collector system further includes an instrumentation and control system for controlling the orientation of at least one orientable reflector to provide in operation a concentrated illuminated area comprising a peaked profile across the transverse dimension of the receiver.

IPC Classes  ?

  • F24J 2/07 - Receivers working at high temperature, e.g. for solar power plants
  • F24J 2/14 - semi-cylindrical or cylindro-parabolic
  • F24J 2/18 - spaced, opposed interacting reflecting surfaces
  • F24J 2/24 - the working fluid being conveyed through tubular heat absorbing conduits

88.

ELECTROLYSIS DEVICE

      
Application Number FR2010052034
Publication Number 2011/036426
Status In Force
Filing Date 2010-09-28
Publication Date 2011-03-31
Owner AREVA (France)
Inventor
  • Tissot, Samuel
  • Salles, Thomas

Abstract

The present invention relates to an electrolysis device comprising an elementary assembly (10) made up of a membrane element (12) surrounded on either side by an electrode (11, 13), a rigid conducting plate (30), at least one electric conductor (21, 31) inserted between said elementary assembly (10) and said rigid conducting plate (30), said electric conductor (21, 31) being made up of a corrugated plate suitable for deforming and ensuring electric contact between said elementary assembly (10) and said rigid conducting plate (30). The device (100) also comprises a peripheral element (28, 38) at least partially surrounding said electric conductor (21, 31), said peripheral element (28, 38, 48, 58) being made of a material with a lower thermal expansion coefficient than the thermal expansion coefficient of the material of said electric conductor (21, 31).

IPC Classes  ?

  • C25B 9/18 - Assemblies comprising a plurality of cells
  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water
  • H01M 8/02 - Fuel cellsManufacture thereof Details
  • C25B 9/04 - Devices for current supply; Electrode connections; Electric inter-cell connections

89.

HYBRID SOLAR ENERGY COLLECTOR, AND SOLAR POWER PLANT INCLUDING AT LEAST ONE SUCH COLLECTOR

      
Application Number FR2010051630
Publication Number 2011/015775
Status In Force
Filing Date 2010-07-30
Publication Date 2011-02-10
Owner AREVA (France)
Inventor Moussavi, Mehdi

Abstract

The invention relates to a collector including at least one photovoltaic cell for converting solar energy into electric energy, and at least one heat sink (6) for converting solar energy into heat energy by heating a fluid, arranged so as to receive solar energy through the photovoltaic cell (4). According to one form of the invention, the photovoltaic cell (4) includes a plurality of vertically adjacent semiconductor junctions having different forbidden energy bands, each semiconductor junction having a forbidden energy band of greater than or equal to 1.2 eV, in particular greater than or equal to 1.4 eV.

IPC Classes  ?

  • H01L 31/058 - including means to utilise heat energy, e.g. hybrid systems, or a supplementary source of electric energy
  • H01L 31/0304 - Inorganic materials including, apart from doping materials or other impurities, only AIIIBV compounds
  • H01L 31/0392 - SEMICONDUCTOR DEVICES NOT COVERED BY CLASS - Details thereof characterised by their semiconductor bodies characterised by their crystalline structure or particular orientation of the crystalline planes including thin films deposited on metallic or insulating substrates
  • H01L 31/052 - Cooling means directly associated or integrated with the PV cell, e.g. integrated Peltier elements for active cooling or heat sinks directly associated with the PV cells

90.

RADIATION-ATTENUATING ELASTOMER MATERIAL, MULTI-LAYER GLOVE FOR PROTECTION AGAINST IONISING RADIATION AND USES THEREOF

      
Application Number EP2010061052
Publication Number 2011/012681
Status In Force
Filing Date 2010-07-29
Publication Date 2011-02-03
Owner
  • AREVA NC (France)
  • PIERCAN (France)
Inventor
  • Larmigny, Jean-Philippe
  • Mathieu, Jean-Paul
  • Guerin, Dominique
  • Dobrowolski, Antoine

Abstract

The invention relates to a radiation-attenuating elastomer material, of the type including an elastomer containing a dispersion of metal oxide powder, which is characterised in that the metal oxide powder includes 70 to 90 wt% of bismuth trioxide, 5 to 15 wt% of tungsten trioxide and 5 to 15 wt% of lanthanum trioxide. The invention also relates to the use of said elastomer material for manufacturing personal protective garments against ionising radiation. The invention further relates to a multi-layer glove for protecting against ionising radiation in which at least one layer is made from said elastomer material, as well as to the use of said glove for protection against the ionising radiation emitted by nuclear fuel powder, in particular containing plutonium. The invention can be used in the nuclear industry for handling nuclear fuel powder as well as in medical imaging, interventional radiology, nuclear medicine, treatment of plastic materials, inspection and testing of manufactured parts, etc.

IPC Classes  ?

  • C08K 3/22 - OxidesHydroxides of metals
  • G21F 1/10 - Organic substancesDispersions in organic carriers

91.

METHOD FOR SELECTIVELY RECOVERING AMERICIUM FROM AN AQUEOUS NITRIC PHASE

      
Application Number EP2010060770
Publication Number 2011/012563
Status In Force
Filing Date 2010-07-26
Publication Date 2011-02-03
Owner
  • COMMISSARIAT A L'ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Heres, Xavier
  • Baron, Pascal
  • Sorel, Christian
  • Hill, Clément
  • Bernier, Gilles

Abstract

The invention relates to a method for selectively recovering americium from an aqueous nitric phase containing americium, curium, and fission products including lanthanides and yttrium, but free of uranium, plutonium and neptunium, or which contains only traces of the latter elements. The invention can be used for processing and recycling irradiated nuclear fuels, in particular to remove americium from raffinates from methods for extracting and purifying uranium and plutonium such as the PUREX and COEXTM methods.

IPC Classes  ?

  • C22B 3/00 - Extraction of metal compounds from ores or concentrates by wet processes
  • C22B 60/02 - Obtaining thorium, uranium or other actinides
  • G21C 19/46 - Aqueous processes
  • G21F 9/12 - Processing by absorptionProcessing by adsorptionProcessing by ion-exchange
  • C01G 56/00 - Compounds of transuranic elements

92.

INCREASE IN THE SEPARATION FACTOR BETWEEN AMERICIUM AND CURIUM AND/OR BETWEEN LANTHANIDES IN A LIQUID-LIQUID EXTRACTION PROCESS

      
Application Number EP2010060806
Publication Number 2011/012579
Status In Force
Filing Date 2010-07-26
Publication Date 2011-02-03
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Heres, Xavier
  • Baron, Pascal

Abstract

The invention relates to the use of a diglycolamide to increase the separation factor between americium and curium and/or between lanthanides during an extraction operation including contacting an acidic aqueous phase, which contains americium, curium and/or lanthanides, with an organic phase that is immiscible with water, containing at least one extractant in an organic diluent, and then separating said aqueous and organic phases, the diglycolamide being added to said aqueous phase. The invention can be used for processing and recycling irradiated nuclear fuels, in particular to selectively recover americium from highly active aqueous solutions such as raffinates from processing irradiated nuclear fuels by a PUREX or COEXTM process, for processing rare earth minerals such as monazite, xenotime or bastnaesite, in order to facilitate the separation of "light" rare earth elements from "heavy" rare earth elements and from yttrium, or the separation of two rare earth elements having adjacent or close atomic numbers.

IPC Classes  ?

  • C22B 3/26 - Treatment or purification of solutions, e.g. obtained by leaching by liquid-liquid extraction using organic compounds
  • C22B 3/40 - Mixtures
  • C22B 59/00 - Obtaining rare earth metals
  • C22B 60/00 - Obtaining metals of atomic number 87 or higher, i.e. radioactive metals
  • C22B 60/02 - Obtaining thorium, uranium or other actinides
  • G21C 19/46 - Aqueous processes
  • G21F 9/04 - Treating liquids

93.

METHOD FOR REGENERATING A SOLID IODINE FILTER

      
Application Number EP2010060301
Publication Number 2011/009816
Status In Force
Filing Date 2010-07-16
Publication Date 2011-01-27
Owner
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
  • AREVA NC (France)
Inventor
  • Vaudano, Aimé
  • Payot, Frédéric
  • Donnarel, Jean-Pierre
  • Devisme, Frédéric

Abstract

The invention relates to a method for regenerating a solid filter containing iodine in the form of silver iodate and/or iodide and optionally physisorbed molecular iodine in a solid filter containing silver in nitrate form. Said method includes the following steps: a) extracting the iodine contained in the filter by placing said filter in contact with a basic aqueous solution containing a reducing agent, said extraction being performed at ambient temperature, followed by separating the filter from said basic aqueous solution; b) extracting the silver contained in the filter obtained in step a) by placing said filter in contact with an acid aqueous solution, followed by separating the filter from said acid aqueous solution; and c) impregnating the filter obtained in step b) with silver by placing said filter in contact with a silver nitrate solution, followed by drying the filter. The invention can be used in the following fields: nuclear facilities, in particular spent nuclear fuel reprocessing plants.

IPC Classes  ?

  • B01D 41/00 - Regeneration of the filtering material or filter elements outside the filter for liquid or gaseous fluids
  • G21F 9/00 - Treating radioactively contaminated materialDecontamination arrangements therefor
  • G21F 9/30 - Processing

94.

FACILITY FOR PRODUCING SYNTHETIC HYDROCARBONS, AND ASSOCIATED METHOD

      
Application Number FR2010051094
Publication Number 2011/004088
Status In Force
Filing Date 2010-06-03
Publication Date 2011-01-13
Owner AREVA (France)
Inventor Lecomte, Michel

Abstract

The invention relates to an assembly for producing at least one synthetic hydrocarbon from at least one inflow of carbon monoxide and one inflow of carbon dioxide, the assembly (6) including: an electrolyser (9) provided for producing a first flow of hydrogen; a first conversion unit (11) provided for producing an intermediate flow of carbon monoxide from at least one part of the inflow of carbon dioxide and hydrogen; a reactor (13) for synthesising said synthetic hydrocarbon; characterised in that said assembly includes: a second conversion unit (15) provided for producing a second flow of hydrogen from carbon monoxide and water, the second hydrogen flow being directed toward the synthesis reactor (13); a guide assembly (19) provided for selectively distributing the inflow of carbon monoxide between the second conversion unit (15) and the synthesis reactor (13), and for selectively distributing the first hydrogen flow between the first conversion unit (11) and the synthesis reactor (13); and a control unit (21) provided for controlling the guide assembly (19).

IPC Classes  ?

  • C10G 2/00 - Production of liquid hydrocarbon mixtures of undefined composition from oxides of carbon
  • C01B 3/04 - Production of hydrogen or of gaseous mixtures containing hydrogen by decomposition of inorganic compounds, e.g. ammonia
  • C01B 3/48 - Production of hydrogen or of gaseous mixtures containing hydrogen by reaction of gaseous or liquid organic compounds with gasifying agents, e.g. water, carbon dioxide, air by reaction of hydrocarbons with gasifying agents followed by reaction of water vapour with carbon monoxide
  • C07C 1/04 - Preparation of hydrocarbons from one or more compounds, none of them being a hydrocarbon from oxides of carbon from carbon monoxide with hydrogen
  • C10J 3/00 - Production of gases containing carbon monoxide and hydrogen, e.g. synthesis gas or town gas, from solid carbonaceous materials by partial oxidation processes involving oxygen or steam
  • C25B 1/04 - Hydrogen or oxygen by electrolysis of water

95.

PROCESS FOR PRODUCING SYNTHETIC HYDROCARBONS FROM CARBONACEOUS MATERIALS

      
Application Number FR2010051436
Publication Number 2011/004122
Status In Force
Filing Date 2010-07-07
Publication Date 2011-01-13
Owner AREVA (France)
Inventor Lecomte, Michel

Abstract

Process for producing synthetic hydrocarbons from at least one carbonaceous material, the process comprising the following steps: - evaluating the resources of said carbonaceous material that are available over a given territory; - determining, from said resources, a total production capacity of synthetic hydrocarbons; - determining from the total production capacity a number of individual production units necessary to obtain the total production capacity, each individual production unit having an individual production capacity between 100 and 1000 barrels per day of synthetic hydrocarbons; - building said number of individual production units on said territory; - transporting the carbonaceous material from the territory to the individual production units; - producing the synthetic hydrocarbons in the individual production units from the transported carbonaceous material.

IPC Classes  ?

  • C01B 3/04 - Production of hydrogen or of gaseous mixtures containing hydrogen by decomposition of inorganic compounds, e.g. ammonia
  • C07C 1/04 - Preparation of hydrocarbons from one or more compounds, none of them being a hydrocarbon from oxides of carbon from carbon monoxide with hydrogen
  • C10G 2/00 - Production of liquid hydrocarbon mixtures of undefined composition from oxides of carbon

96.

SOLAR POWERED HEATING SYSTEM FOR WORKING FLUID

      
Application Number US2010041301
Publication Number 2011/005923
Status In Force
Filing Date 2010-07-08
Publication Date 2011-01-13
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Venetos, Milton
  • Hawkins, David, C.V.
  • Conlon, William, M.
  • Pickles, Charles, S. J.

Abstract

A working fluid heating system that utilizes solar energy and fuel-fired heaters to heat the working fluid is provided. The system may have a fuel heating plant that has a first fuel-fired heater (101) to heat a first portion of working fluid, a solar heating plant (102) that has both a solar thermal-energy heater (113) and a second fuel-fired heater (114) to heat a second portion of working fluid. The first and second portions join in a pipeline (115) to supply heated working fluid to an electrical generation facility (120).

IPC Classes  ?

  • F03G 6/00 - Devices for producing mechanical power from solar energy
  • F01K 17/04 - Use of steam or condensate extracted or exhausted from steam engine plant for specific purposes other than heating
  • F01K 13/00 - General layout or general methods of operation, of complete steam engine plants
  • F22B 1/00 - Methods of steam generation characterised by form of heating method
  • F22B 33/00 - Steam-generation plants, e.g. comprising steam boilers of different types in mutual association

97.

IMPROVED METHOD FOR TREATING SPENT NUCLEAR FUEL

      
Application Number EP2010059232
Publication Number 2011/000844
Status In Force
Filing Date 2010-06-29
Publication Date 2011-01-06
Owner
  • AREVA NC (France)
  • COMMISSARIAT À L'ÉNERGIE ATOMIQUE ET AUX ÉNERGIES ALTERNATIVES (France)
Inventor
  • Emin, Jean-Luc
  • Drain, François
  • Poncelet, François
  • Dinh, Binh
  • Pradel, Philippe
  • Baron, Pascal
  • Masson, Michel

Abstract

The invention relates to a method for treating spent nuclear fuel, which includes (a) decontaminating the uranium, plutonium and neptunium found in a nitric aqueous phase resulting from dissolving said nuclear fuel in HNO3, with regard to the actinides (III) and the majority of the fission products also found in said phase, said decontamination including at least the co-extraction of the uranium, plutonium and neptunium in a solvent phase; (b) splitting the uranium, plutonium and neptunium found in the solvent phase in a first aqueous phase containing either plutonium with no U or Np, or a mixture of Pu and U with no Np, or a mixture of Pu, U and Np, and a second aqueous phase containing either a mixture of U and Np with no Pu, or uranium with no P or Np; (c) storing the first aqueous phase; (d) purifying the plutonium or the mixture of Pu and U or the mixture of Pu, U and Np found in the first aqueous phase relative to the fission products still found in said phase, said purification including at least one addition of uranium, in order to obtain, at the end of said purification, an aqueous solution containing a mixture of Pu and U or Pu, U and Np; and (e) co-converting the resulting mixture of Pu and U or the mixture of Pu, U and Np into a mixed oxide.

IPC Classes  ?

98.

CONNECTION DEVICE FOR A SYSTEM FOR FILLING JARS FOR THE PRODUCTION OF NUCLEAR FUEL

      
Application Number EP2010057681
Publication Number 2010/139712
Status In Force
Filing Date 2010-06-02
Publication Date 2010-12-09
Owner AREVA NC (France)
Inventor Duval, Patrice

Abstract

The invention relates to a system for filling a jar with a powder material, for example for the production of nuclear fuel, comprising a connection device between the jar and a system for feeding material, the device comprising: a stationary connection portion (I) connected to the feeding system; a connection portion (II) movable relative to the stationary connection portion (I) intended for being connected to the filling opening of the container (4), the movable connection portion (II) comprising, at a downstream end thereof, a lip seal for performing a tight connection by contact with the contours of the filling opening of the jar, said downstream end being connected to the stationary connection portion (I) by a bellows (42) such as to provide mechanical disengagement between the downstream end of the movable connection portion (II) and the stationary connection portion (I).

IPC Classes  ?

  • F16L 27/02 - Universal joints, i.e. with mechanical connection allowing angular movement or adjustment of the axes of the parts in any direction
  • F16L 27/11 - Adjustable jointsJoints allowing movement comprising a flexible connection only the ends of the pipe being interconnected by a flexible sleeve the sleeve having the form of a bellows with multiple corrugations
  • B30B 15/30 - Feeding material to presses
  • B65D 88/66 - Large containers characterised by means facilitating filling or emptying preventing bridge formation using vibrating or knocking devices
  • G21C 3/02 - Fuel elements
  • G21C 3/62 - Ceramic fuel

99.

SYSTEMS AND METHODS FOR PRODUCING STEAM USING SOLAR RADIATION

      
Application Number US2010035022
Publication Number 2010/132849
Status In Force
Filing Date 2010-05-14
Publication Date 2010-11-18
Owner AREVA SOLAR, INC. (USA)
Inventor
  • Conlon, William, M.
  • Tanner, Peter, M.
  • Venetos, Milton
  • Hanson, Robert, J.

Abstract

Methods and systems for generating steam using solar energy are provided here. The methods and systems can be used to generate steam of a desired quality, e.g. about 70%, or superheated steam. Some methods for producing steam of a desired quality comprise flowing water into an inlet of receiver in a linear Fresnel reflector system, wherein the receiver comprises multiple parallel tubes tλ connected in parallel, and i=l,k, and irradiating each tube tλ along its respective length L1 with solar radiation so that solar radiation absorbed at each tube generates thermal input along its length and so that water begins to boil in at least one of the tubes at a point X1 along its length. The methods comprise using one or more temperatures T1 in an economizer region of a tube tλ or one or more changes in length of the tubes as input to a controller that controls mass flow of water into each of the multiple tubes, thereby controlling quality of steam exiting the receiver.

IPC Classes  ?

  • F22B 35/16 - Control systems for steam boilers for steam boilers of forced-flow type responsive to the percentage of steam in the mixture of steam and water
  • F22B 1/00 - Methods of steam generation characterised by form of heating method

100.

TORSPYD

      
Application Number 150086400
Status Registered
Filing Date 2010-10-22
Registration Date 2012-10-12
Owner THERMYA, Société Anonyme (France)
NICE Classes  ?
  • 04 - Industrial oils and greases; lubricants; fuels
  • 07 - Machines and machine tools
  • 11 - Environmental control apparatus
  • 37 - Construction and mining; installation and repair services
  • 40 - Treatment of materials; recycling, air and water treatment,

Goods & Services

(1) Combustible obtenu à partir de la biomasse; machines et installations pour transformer de la biomasse en combustible. (1) Collecte de la biomasse; traitement de matériaux, nommément, traitement de la biomasse en vue de sa transformation en combustible; traitement des déchets carbonés et des produits organiques solides; traitement et recyclage des produits organiques solides; transformation et recyclage de la biomasse.
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