Myriant Corporation

États‑Unis d’Amérique

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Classe IPC
C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger 9
C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle 8
C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes 6
C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique 5
C12N 15/31 - Gènes codant pour des protéines microbiennes, p. ex. entérotoxines 3
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Résultats pour  brevets

1.

DICYCLOPENTADIENE MODIFIED ESTER OLIGOMERS USEFUL IN CORROSION RESISTANT COATINGS

      
Numéro d'application US2018038682
Numéro de publication 2019/010006
Statut Délivré - en vigueur
Date de dépôt 2018-06-21
Date de publication 2019-01-10
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s) Terwillegar, Arne, Matthew

Abrégé

Corrosion resistance coatings and dicyclopentadiene modified ester oligomers useful in corrosion resistant coatings. The corrosion resistant coatings exhibit improved corrosion resistance, improved adhesion, lower toxicity, unlimited pot life, and/or lower volatile organic compounds (VOCs).

Classes IPC  ?

  • C09D 167/06 - Polyesters non saturés comportant des insaturations carbone-carbone
  • C08G 63/553 - Acides ou composés hydroxylés contenant des cycles cycloaliphatiques, p. ex. produits d'addition de Diels-Alder
  • C09D 5/08 - Peintures anti-corrosion

2.

GENETICALLY MODIFIED YEAST WITH INCREASED SUCCINIC ACID PRODUCTION

      
Numéro d'application US2018034121
Numéro de publication 2019/005340
Statut Délivré - en vigueur
Date de dépôt 2018-05-23
Date de publication 2019-01-03
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s) Sillers, Ryan

Abrégé

Improved yeast cell with increased succinic acid production based on yield and titer. Increased activity of one or more enzymes involved in the pentose phosphate pathway, reducing flux through phosphoglucose isomerase, increasing flux to cytoplasmic acetyl-CoA, installation of a malic enzyme, and/or installation of a formate dehydrogenase leads to increased production of succinic acid.

Classes IPC  ?

  • C07K 14/39 - Peptides ayant plus de 20 amino-acidesGastrinesSomatostatinesMélanotropinesLeurs dérivés provenant de champignons provenant de levures
  • C12N 9/02 - Oxydoréductases (1.), p. ex. luciférase
  • C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique

3.

MICROORGANISM WITH STABILIZED COPY NUMBER OF FUNCTIONAL DNA SEQUENCE AND ASSOCIATED METHODS

      
Numéro d'application US2018040312
Numéro de publication 2019/006312
Statut Délivré - en vigueur
Date de dépôt 2018-06-29
Date de publication 2019-01-03
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Yocum, R., Rogers
  • Grabar, Tammy
  • Hermann, Theron
  • Martin, Christopher, Joseph
  • Sillers, Ryan
  • Yu, Xiaohui
  • Zhou, Xiaomei

Abrégé

The invention provides processes for identifying and tracking genomic duplications that can occur during classical strain development or during the metabolic evolution of microbial strains originally constructed for the production of a biochemical through specific genetic manipulations, processes that stabilize the copy number of desirable genomic duplications using appropriate selectable markers, and non-naturally occurring microorganisms with stabilized copy numbers of a functional DNA sequence.

Classes IPC  ?

  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12N 15/90 - Introduction stable d'ADN étranger dans le chromosome

4.

BIORENEWABLE HIGH PERFORMANCE POLYESTER POLYOLS

      
Numéro d'application US2017053184
Numéro de publication 2018/058016
Statut Délivré - en vigueur
Date de dépôt 2017-09-25
Date de publication 2018-03-29
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Terwillegar, Arne, Matthew
  • Denniston, Charliss

Abrégé

This invention provides a process for manufacturing high performance polyester polyols with high proportion of renewable content derived from biological sources. The polyester polyols with high content of renewable biological materials produced according to the present invention display no color or odor issues and are used in the manufacture of two component polyurethanes, thermoplastic urethanes, polyurethane dispersions and polyester and polyester/urethane acrylates with outstanding physical properties.

Classes IPC  ?

  • C08G 18/42 - Polycondensats contenant des groupes ester carboxylique ou carbonique dans la chaîne principale
  • C08G 18/32 - Composés polyhydroxylésPolyaminesHydroxyamines
  • C08G 18/67 - Composés non saturés contenant un hydrogène actif

5.

IMPROVED MUCONIC ACID PRODUCTION FROM GENETICALLY ENGINEERED MICROORGANISMS

      
Numéro d'application US2017020263
Numéro de publication 2017/151811
Statut Délivré - en vigueur
Date de dépôt 2017-03-01
Date de publication 2017-09-08
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Sillers, Ryan
  • Spencer, Michelle
  • Yocum, R., Rogers
  • Hermann, Theron

Abrégé

The subject of this invention is improvements in the yield and titer of biological production of muconic acid by fermentation. Increased activity of one or more enzymes involved in the muconic acid pathway leads to increased production of muconic acid.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/09 - Technologie d'ADN recombinant
  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12P 7/44 - Acides polycarboxyliques
  • C12N 15/60 - Lyases (4)

6.

DICYCLOPENTADIENE MODIFIED ESTER OLIGOMERS USEFUL IN COATING APPLICATIONS

      
Numéro d'application US2016067806
Numéro de publication 2017/112680
Statut Délivré - en vigueur
Date de dépôt 2016-12-20
Date de publication 2017-06-29
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Terwillegar, Arne, Matthew
  • Denniston, Charliss
  • Jamonnak, Nuttara
  • Tosukhowong, Thidarat

Abrégé

This invention relates to a thermally and/or high-energy radiation curable waterborne or 100% solid coating with high bio-based content. The coating formulation according to the present invention is derived or partially derived from melt polycondensation of a carboxylic acid and a diol with dicyclopentadiene - maleic acid half-ester or nadic acid - maleic acid half-ester or methyl nadic acid - maleic acid half-ester.

Classes IPC  ?

  • C09D 4/00 - Compositions de revêtement, p. ex. peintures, vernis ou vernis-laques, à base de composés non macromoléculaires organiques ayant au moins une liaison non saturée carbone-carbone polymérisable
  • C09D 11/00 - Encres
  • C09D 7/12 - Autres adjuvants

7.

NOVEL METHOD TO PRODUCE ACRYLIC ACID WITH ACETALDEHYDE AS THE MAIN BY-PRODUCT

      
Numéro d'application US2016036819
Numéro de publication 2016/201181
Statut Délivré - en vigueur
Date de dépôt 2016-06-10
Date de publication 2016-12-15
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Ozmeral, Cenan
  • Dasari, Rajesh
  • Singh, Ramnik
  • Noda, Yu
  • Rioux, Robert, M.
  • Roman-Leshkov, Yuriy

Abrégé

Described herein are solid acid catalysts and the methods for catalytically preparing α,β-unsaturated carboxylic acids and/or esters thereof. In one aspect, a zeolite catalyst may be used. The catalyst may, in certain embodiments, be modified to improve the selectivity and/or conversion of a reaction. For instance, a catalyst may be modified by ion exchange to achieve a desirable acidity profile in order to achieve high level of conversion of reactants and selectivity for desirable products of the catalytic reaction. In another aspect, a variety of feed stocks (e.g., starting compositions) may be used including an α-hydroxycarboxylic acid, an α-hydroxycarboxylic acid ester, a β-hydroxycarboxylic acid, a β-hydroxycarboxylic acid ester, cyclic esters thereof (e.g., lactide), and combinations thereof.

Classes IPC  ?

  • C07C 57/065 - Préparation par élimination de H—X, X étant un halogène, OR ou NR2, R étant de l'hydrogène ou un groupe hydrocarboné

8.

POLYMERS FROM MUCONIC ACID ISOMERS AND ITS DERIVATIVES

      
Numéro d'application US2015057188
Numéro de publication 2016/069411
Statut Délivré - en vigueur
Date de dépôt 2015-10-23
Date de publication 2016-05-06
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Milan, Jay, L.
  • Mang, Michael
  • Ozmeral, Cenan

Abrégé

This invention relates to polymerization of muconic acid and its derivatives. Muconic acid useful for the present invention can be in any of its isomeric forms including cis, cis- muconic acid (ccMA), cis, trans-muconic acid (ctMA), and trans, trans-muconic acid (ttMA). Muconic acid used in the present invention can be derived either from renewable carbon resources through biological fermentation or from non-renewable petrochemical resources through biological fermentation or chemical conversion.

Classes IPC  ?

  • C08F 236/04 - Copolymères de composés contenant plusieurs radicaux aliphatiques non saturés et l'un au moins contenant plusieurs liaisons doubles carbone-carbone le radical ne contenant que deux doubles liaisons carbone-carbone conjuguées
  • C08F 220/10 - Esters
  • C08G 63/08 - Lactones ou lactides

9.

A PROCESS FOR PREPARING SUCCINATE ESTER

      
Numéro d'application US2014068823
Numéro de publication 2015/085185
Statut Délivré - en vigueur
Date de dépôt 2014-12-05
Date de publication 2015-06-11
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Tosukhowong, Thidarat
  • Wang, Bin
  • Mistry, Manav
  • Dasari, Rajesh
  • Wilson, Zachary

Abrégé

This invention relates to a process for preparing succinate ester from a succinic acid salt present in a fermentation broth. In the first stage of this invention, renewable carbon resources are utilized to produce succinic acid in the form of a succinic acid salt through biological fermentation. The succinic acid salt present in the fermentation broth is subjected to double displacement reaction with a strong acid leading to the release of succinic acid. Succinic acid is recovered by fractional crystallization integrated with an alcohol washing step and subjected to esterification reaction to produce succinate ester which is purified by fractional distillation. The succinate ester thus obtained is converted into 1,4-butanediol, gamma-butyrolactone and tetrahydrofuran through hydrogenation reactions. The succinate ester can also be hydrolyzed to yield highly pure succinic acid.

Classes IPC  ?

  • C12P 7/62 - Esters d’acides carboxyliques

10.

A PROCESS FOR PREPARING SUCCINIC ACID AND SUCCINATE ESTER

      
Numéro d'application US2014068840
Numéro de publication 2015/085198
Statut Délivré - en vigueur
Date de dépôt 2014-12-05
Date de publication 2015-06-11
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s) Tosukhowong, Thidarat

Abrégé

This invention relates to a process for preparing succinic acid and succinate ester from a succinic acid salt in fermentation broth. In the first stage of this invention, renewable carbon resources are utilized to produce succinic acid through biological fermentation. The succinic acid salt in the fermentation process is subjected to double displacement reaction with a strong acid leading to release of succinic acid. Succinic acid is recovered by fractional crystallization integrated with simulated moving bed chromatography to produce succinic acid and succinate ester.

Classes IPC  ?

  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle
  • C12P 7/62 - Esters d’acides carboxyliques

11.

A PROCESS FOR MANUFACTURING ACRYLIC ACID, ACRYLONITRILE AND 1,4-BUTANEDIOL FROM 1,3-PROPANEDIOL

      
Numéro d'application US2014053933
Numéro de publication 2015/034948
Statut Délivré - en vigueur
Date de dépôt 2014-09-03
Date de publication 2015-03-12
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Gnanadesikan, Vijay
  • Singh, Ramnik
  • Dasari, Rajesh
  • Alger, Montgomery

Abrégé

The present invention is in the field of producing bio-based commodity organic chemicals such as bio-acrylic acid, bio-acrylonitrile, and bio-1,4-butanediol using renewable carbon sources as feedstock. In the first stage of the present invention, bio-1,3 -propanediol is derived from renewable carbon sources through microbial fermentation. In the second stage of the present invention, bio-1,3-propanediol is converted into bio-acrylic acid or bio-acrylonitrile or bio-1,4-butanediol.

Classes IPC  ?

  • C12P 7/04 - Préparation de composés organiques contenant de l'oxygène contenant un groupe hydroxyle acycliques
  • C12P 7/18 - Polyols
  • C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique

12.

METHOD OF PRODUCING SUCCINIC ACID AND OTHER CHEMICALS USING FACILITATED DIFFUSION FOR SUGAR IMPORT

      
Numéro d'application US2014047696
Numéro de publication 2015/013334
Statut Délivré - en vigueur
Date de dépôt 2014-07-22
Date de publication 2015-01-29
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Yocum, R., Rogers
  • Collard, Andrew, Christopher
  • Hermann, Theron
  • Yu, Xiaohui
  • Gong, Wei

Abrégé

This invention relates to the production of succinic acid and other chemicals derived from phosphoenolpyruvate (PEP) by fermentation with a microorganism in which the fermentation medium contains one or more sugars, and in which one or more of the sugars is imported into the cell by facilitated diffusion. As a specific example, succinic acid is produced from a glucose- containing renewable feedstock through fermentation using a biocatalyst. Examples of such a biocatalyst include microorganisms that have been enhanced in their ability to utilize glucose as a carbon and energy source. The biocatalysts of the present invention are derived from the genetic manipulation of parental strains that were originally constructed with the goal to produce one or more chemicals (for example succinic acid and/or a salt of succinic acid) at a commercial scale using feedstocks that include, for example, glucose, fructose, or sucrose. The genetic manipulations of the present invention involve the introduction of exogenous genes involved in the transport and metabolism of glucose or fructose into the parental strains. The genes involved in the transport and metabolism of glucose or fructose can also be introduced into a microorganism prior to developing the organism to produce a particular chemical. The genes involved in the transport and metabolism of sucrose can also be used to augment or improve the efficiency of sugar transport and metabolism by strains already known to have some ability for glucose utilization in biological fermentations.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/09 - Technologie d'ADN recombinant
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle

13.

PRODUCTION OF ORGANIC ACIDS BY FERMENTATION AT LOW PH

      
Numéro d'application US2013059828
Numéro de publication 2014/043591
Statut Délivré - en vigueur
Date de dépôt 2013-09-13
Date de publication 2014-03-20
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Yocum, R., Rogers
  • Dole, Sudhanshu
  • Pero, Janice, G.

Abrégé

This invention relates to the biosynthesis of organic acids in genetically modified microorganisms. More specifically, this invention provides genetically modified microorganisms that are particularly tolerant to organic acids at low pH and are capable of producing organic acids by fermentation at low pH.

Classes IPC  ?

  • C12N 1/19 - LevuresLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12N 15/81 - Vecteurs ou systèmes d'expression spécialement adaptés aux hôtes eucaryotes pour champignons pour levures

14.

PREPARATION OF ALPHA, BETA-UNSATURATED CARBOXYLIC ACIDS AND ESTERS THEREOF

      
Numéro d'application US2013029368
Numéro de publication 2013/134385
Statut Délivré - en vigueur
Date de dépôt 2013-03-06
Date de publication 2013-09-12
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Ozmeral, A., Cenan
  • Glas, Joseph P.
  • Dasari, Rajesh
  • Tanielyan, Setrak
  • Bhagat, Ramesh Deoram
  • Kasireddy, Mohan Reddy
  • Singh, Ramnik
  • Gnanadesikan, Vijay
  • Augustine, Robert L.
  • More, Santosh

Abrégé

An L-type zeolite, a modified L-type zeolite, or any combination thereof may be useful in catalytically preparing α,β-unsaturated carboxylic acids and/or esters thereof through reaction pathways that include dehydroxylation reactions and optionally esterification reactions. In some reaction pathways, dehydroxylation reactions and esterification reactions may be performed sequentially or concurrently.

Classes IPC  ?

  • C07C 51/573 - SéparationPurificationStabilisationEmploi d'additifs
  • C07C 57/04 - Acide acryliqueAcide méthacrylique
  • C07C 67/62 - Emploi d'additifs, p. ex. pour la stabilisation
  • C07C 69/54 - Esters d'acide acryliqueEsters d'acide méthacrylique
  • B01J 29/06 - Zéolites aluminosilicates cristallinesLeurs composés isomorphes

15.

PRODUCTION OF MUCONIC ACID FROM GENETICALLY ENGINEERED MICROORGANISMS

      
Numéro d'application US2013023690
Numéro de publication 2013/116244
Statut Délivré - en vigueur
Date de dépôt 2013-01-29
Date de publication 2013-08-08
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Yocum, R., Rogers
  • Gong, Wei
  • Dole, Sudhanshu
  • Sillers, Ryan
  • Gandhi, Meghal
  • Pero, Janice, G.

Abrégé

This present invention is in the field of producing renewable chemical feedstocks using biocatalysts that have been genetically engineered to increase their ability to convert renewable carbon resources into useful compounds. More specifically, the present invention provides a process for producing muconic acid form renewable carbon resources using a genetically modified organism.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/63 - Introduction de matériel génétique étranger utilisant des vecteursVecteurs Utilisation d'hôtes pour ceux-ciRégulation de l'expression
  • C12N 15/70 - Vecteurs ou systèmes d'expression spécialement adaptés à E. coli
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle

16.

INTEGRATED BIOREFINERY

      
Numéro d'application US2012070902
Numéro de publication 2013/101650
Statut Délivré - en vigueur
Date de dépôt 2012-12-20
Date de publication 2013-07-04
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Wang, Bin
  • Wilson, Zachary
  • Singh, Ramnik

Abrégé

This invention relates to the operation of a biorefinery for manufacturing either biofuels or renewable chemical feedstock using lignocellulosic biomass as a source of carbon. The present invention provides a cost-effective process for pretreating lignocellulosic biomass in the recovery of fermentable sugars. More specifically, the present invention describes an integrated approach for efficiently recovering and using six-carbon and five-carbon sugars along with value-added oligosaccharides such as xylooligosaccahrides from lignocellulosic biomass so that the cost of manufacturing biofuels and renewable chemical feedstock is substantially lowered.

Classes IPC  ?

  • C08B 15/02 - OxycelluloseHydrocelluloseHydrate de cellulose
  • C12P 19/14 - Préparation de composés contenant des radicaux saccharide préparés par action d'une carbohydrase, p. ex. par action de l'alpha-amylase
  • C10G 3/00 - Production de mélanges liquides d'hydrocarbures à partir de matières organiques contenant de l'oxygène, p. ex. huiles, acides gras
  • C12P 7/14 - Fermentation en plusieurs étapesFermentation avec différents types de micro-organismes ou avec réemploi de micro-organismes
  • C12P 7/10 - Éthanol en tant que produit chimique et non en tant que boisson alcoolique préparé comme sous-produit, ou préparé à partir d'un substrat constitué par des déchets ou par des matières cellulosiques d'un substrat constitué par des matières cellulosiques

17.

METHOD FOR CONVERSION OF DIAMMONIM SUCCINATE IN FERMENTATION BROTH TO 2-PYRROLIDONE AND N-METHYLPYRROLIDONE

      
Numéro d'application US2012053543
Numéro de publication 2013/033649
Statut Délivré - en vigueur
Date de dépôt 2012-08-31
Date de publication 2013-03-07
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Tosukhowong, Thidarat
  • Roffi, Kirk
  • More, Santosh, Raghu
  • Augustine, Robert, L.
  • Tanielyan, Setrak

Abrégé

This invention relates to a process for preparing 2-pyrroiidone (also called 2- pyrrolidinone) and N-methylpyrrolidone (also called N-methylpyrrolidinone) from diammonium succinate in fermentation broth. In the first stage of this invention, renewable carbon resources are utilized to produce diammonium succinate through biological fermentation. In the second stage of this present invention, diammonium succinate is converted into 2-pyrroiidone and N-methylpyrrolidone through a two step reaction. Both the steps of the reaction leading to the production of 2-pyrroiidone and N-methylpyrrolidone are carried out in a solvent phase to prevent the loss of succinimide through hydrolysis.

Classes IPC  ?

  • C07D 207/404 - Pyrrolidines-2, 5 diones avec uniquement des atomes d'hydrogène ou des radicaux ne contenant que des atomes d'hydrogène et de carbone, liés directement aux autres atomes de carbone du cycle, p. ex. succinimide
  • C07D 207/40 - Pyrrolidines-2, 5 diones

18.

DEGRADABLE SIX PACK RINGS AND COMPOSITIONS AND METHODS RELATING THERETO

      
Numéro d'application US2012049111
Numéro de publication 2013/019834
Statut Délivré - en vigueur
Date de dépôt 2012-08-01
Date de publication 2013-02-07
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Mang, Michael
  • Ozmeral, A., Cenan
  • Gatto, Stephen, J.

Abrégé

A container package may include a series of interconnected rings capable of maintaining a plurality of containers In an adjacent relation, at Ieast one ring being formed by a marine-degradable composition comprising at Ieast one polymer that comprises at Ieast one monomer unit selected from the group consisting of succinic acid, 1,4-butanoic acid, any derivative thereof, and any combination thereof.

Classes IPC  ?

  • B65D 71/06 - Paquets d'objets maintenus ensemble par des éléments d'emballage pour la commodité du stockage ou du transport, p. ex. paquets compartimentés pour le transport à la main de plusieurs réceptacles tels que des boîtes de bière ou des bouteilles de boissons gazeusesBalles de matériaux comprenant plusieurs objets entièrement ou en grande partie reliés par des éléments d'emballage, p. ex. sous tension
  • B65D 67/02 - Attaches ou agrafes pour maintenir ensemble les objets pour commodité de stockage ou de transport
  • C08L 101/00 - Compositions contenant des composés macromoléculaires non spécifiés

19.

FERMENTATION OF GLYCEROL TO ORGANIC ACIDS

      
Numéro d'application US2011045001
Numéro de publication 2013/015770
Statut Délivré - en vigueur
Date de dépôt 2011-07-22
Date de publication 2013-01-31
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Yocum, R., Rogers
  • Hermann, Theron
  • Yu, Xiaohui

Abrégé

The present invention is in the field of producing organic acids and other useful chemicals via biological fermentation using glycerol as a source of carbon. Novel microorganisms and fermentation processes are described that are capable of converting glycerol to useful organic acids in high yield and high purity.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12N 15/70 - Vecteurs ou systèmes d'expression spécialement adaptés à E. coli
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle
  • C12R 1/19 - Escherichia coli

20.

ENVIRONMENTALLY FRIENDLY COALESCING AGENTS

      
Numéro d'application US2012030553
Numéro de publication 2012/173679
Statut Délivré - en vigueur
Date de dépôt 2012-03-26
Date de publication 2012-12-20
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Turk, Brian
  • Mang, Michael

Abrégé

A composition may include a binder; a coalescing agent with the general formula of wherein Z is C1-C10, wherein X is -H and Y is =0 or X is =0 and Y is -H or -CH3, and wherein R1 and R2 are independently selectable and comprise a C1-C12 or derivative thereof; and a solvent. The composition may be used in products like a paint, a coating, an adhesive, an ink, a toner, a sealant, a stain, a glaze, a carpet backing, and a primer.

Classes IPC  ?

  • C08K 5/10 - EstersÉthers-esters
  • C08L 101/00 - Compositions contenant des composés macromoléculaires non spécifiés
  • C08J 3/02 - Production de solutions, dispersions, latex ou gel par d'autres procédés que ceux utilisant les techniques de polymérisation en solution, en émulsion ou en suspension
  • C07C 69/04 - Esters d'acide formique
  • C07D 201/00 - Préparation, séparation, purification ou stabilisation des lactames non substituées

21.

METHOD OF PRODUCING SUCCINIC ACID AND OTHER CHEMICALS USING SUCROSE-CONTAINING FEEDSTOCK

      
Numéro d'application US2011064598
Numéro de publication 2012/082720
Statut Délivré - en vigueur
Date de dépôt 2011-12-13
Date de publication 2012-06-21
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Dole, Sudhanshu
  • Yocum, R., Rogers
  • Hermann, Theron
  • Yu, Xiaohui

Abrégé

This invention relates to the production of chemicals by fermentation with a microorganism in which the fermentation medium contains the sugar sucrose. As a specific example, succinic acid is produced from a sucrose-containing renewable feedstock through fermentation using a biocatalyst. Examples of such a biocatalyst include microorganisms that have been enhanced in their ability to utilize sucrose as a carbon and energy source. The biocatalysts of the present invention are derived from the genetic manipulation of parental strains that were originally constructed with the goal to produce one or more chemicals (for example succinic acid and/or a salt of succinic acid) at a commercial scale using feedstocks other than sucrose. The genetic manipulations of the present invention involve the introduction of exogenous genes involved in the transport and metabolism of sucrose into the parental strains. The genes involved in the transport and metabolism of sucrose can also be introduced into a microorganism prior to developing the organism to produce a particular chemical. The genes involved in the transport and metabolism of sucrose can also be used to augment or improve the sucrose transport and metabolism by strains already known to have some ability for sucrose utilization in biological fermentation.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/74 - Vecteurs ou systèmes d'expression spécialement adaptés aux hôtes procaryotes autres que E. coli, p. ex. Lactobacillus, Micromonospora
  • C12N 15/70 - Vecteurs ou systèmes d'expression spécialement adaptés à E. coli
  • C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique
  • C12P 7/02 - Préparation de composés organiques contenant de l'oxygène contenant un groupe hydroxyle

22.

CATALYTIC DEHYDRATION OF LACTIC ACID AND LACTIC ACID ESTERS

      
Numéro d'application US2011050707
Numéro de publication 2012/033845
Statut Délivré - en vigueur
Date de dépôt 2011-09-07
Date de publication 2012-03-15
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Ozmeral, Cenan
  • Glas, Joseph, P.
  • Dasari, Rajesh
  • Tanielyan, Setrak
  • Bhagat, Ramesh, Deoram
  • Kasireddy, Mohan Reddy

Abrégé

This invention relates to catalytic dehydration of lactic acid derived from biological fermentation and its esters into acrylic acid and acrylic acid esters respectively. Disclosed in this invention are chemical catalysts suitable for industrial scale production of acrylic acid and acrylic acid esters. This invention also provides an industrial scale integrated process technology for producing acrylic acid and acrylic acid esters from biological fermentation using renewable resources and biological catalysts.

Classes IPC  ?

23.

IMPROVED FERMENTATION PROCESS FOR THE PRODUCTION OF ORGANIC ACIDS

      
Numéro d'application US2011046047
Numéro de publication 2012/018699
Statut Délivré - en vigueur
Date de dépôt 2011-07-30
Date de publication 2012-02-09
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Hermann, Theron
  • Reinhardt, James
  • Yu, Xiaohui
  • Udani, Russell
  • Staples, Lauren

Abrégé

This invention relates to improvements in the fermentation process used in the production of organic acids from biological feedstock using bacterial catalysts. The improvements in the fermentation process involve providing a fermentation medium comprising an appropriate form of inorganic carbon, an appropriate amount of aeration and a biocatalyst with an enhanced ability to uptake and assimilate the inorganic carbon into the organic acids. This invention also provides, as a part of an integrated fermentation facility, a novel process for producing a solid source of inorganic carbon by sequestering carbon released from the fermentation in an alkali solution.

Classes IPC  ?

  • C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle
  • C12N 1/20 - BactériesLeurs milieux de culture

24.

PRODUCTION OF ORGANIC ACIDS FROM XYLOSE RICH HYDROLYSATE BY BACTERIAL FERMENTATION

      
Numéro d'application US2011032803
Numéro de publication 2011/130725
Statut Délivré - en vigueur
Date de dépôt 2011-04-16
Date de publication 2011-10-20
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Grabar, Tammy, B.
  • Houser, William

Abrégé

This invention relates to the metabolic evolution of a microbial organism previously optimized for producing an organic acid in commercially significant quantities under fermentative conditions using a hexose sugar as sole source of carbon in a minimal mineral medium. As a result of this metabolic evolution, the microbial organism acquires the ability to use pentose sugars in non-detoxified lignocellulosic hydrolysate for its growth while retaining the original growth kinetics, the rate of organic acid production and the ability to use hexose sugars as a source of carbon. More specifically, this invention provides bacterial strains that have the ability to produce succinic acid using non-detoxified lignocellulosic hydrolysate as the source of organic carbon. This invention also discloses the genetic changes in the microorganism that arise during the course of metabolic evolution in the presence of non-detoxified lignocellulosic hydrolysate.

Classes IPC  ?

  • C12N 1/20 - BactériesLeurs milieux de culture
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle
  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/31 - Gènes codant pour des protéines microbiennes, p. ex. entérotoxines
  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12R 1/01 - Bactéries ou actinomycètes

25.

METABOLIC EVOLUTION OF ESCHERCHIA COLI STRAINS THAT PRODUCE ORGANIC ACIDS

      
Numéro d'application US2010057111
Numéro de publication 2011/123154
Statut Délivré - en vigueur
Date de dépôt 2010-11-17
Date de publication 2011-10-06
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Grabar, Tammy
  • Gong, Wei
  • Yocum, R. Rogers

Abrégé

This invention relates to the metabolic evolution of a microbial organism previously optimized for producing an organic acid in commercially significant quantities under fermentative conditions using a hexose sugar as sole source of carbon in a minimal mineral medium. As a result of this metabolic evolution, the microbial organism acquires the ability to use pentose sugars derived from cellulosic materials for its growth while retaining the original growth kinetics, the rate of organic acid production and the ability to use hexose sugars as a source of carbon. This invention also discloses the genetic change in the microorganism that confers the ability to use both the hexose and pentose sugars simultaneously in the production of commercially significant quantities of organic acids.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/31 - Gènes codant pour des protéines microbiennes, p. ex. entérotoxines
  • C12P 7/00 - Préparation de composés organiques contenant de l'oxygène
  • C12R 1/01 - Bactéries ou actinomycètes
  • C12R 1/19 - Escherichia coli

26.

PURIFICATION OF SUCCINIC ACID FROM THE FERMENTATION BROTH CONTAINING AMMONIUM SUCCINATE

      
Numéro d'application US2010062635
Numéro de publication 2011/082378
Statut Délivré - en vigueur
Date de dépôt 2010-12-31
Date de publication 2011-07-07
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Gerberding, Steven, J.
  • Singh, Ramnik

Abrégé

This present invention relates to the processes for the purification of succinic acid from a fermentation broth containing ammonium succinate. The process for the purification of succinic acid described in this invention involves the use of ion exchange resins for splitting the ammonium succinate in the fermentation broth. During the passage of the fermentation broth through a cationic ion exchange resin, the ammonium succinate is split into ammonium cation and the succinate anion. The proton on the resin surface is exchanged for the ammonium ions and the succinate anion is reduced to succinic acid with the protons released from the ion exchange resin. The bound ammonium is released from the resin with the addition of a strong acid such as sulfuric acid and thereby the ion exchange resin is regenerated for subsequent use. The ammonium sulfate by-product resulting from the regeneration step of this process can be used as a source of fertilizer. This process for the separation of succinic acid from the fermentation broth containing ammonium succinate can also be carried out with an anionic ion exchange resin wherein the succinate anion is retained on the surface of the ion exchange resin and subsequently released from the ion exchange resin during the regeneration step.

Classes IPC  ?

  • C07C 51/42 - SéparationPurificationStabilisationEmploi d'additifs
  • C07C 51/47 - SéparationPurificationStabilisationEmploi d'additifs par traitement solide-liquideSéparationPurificationStabilisationEmploi d'additifs par absorption-adsorption chimique
  • C07C 55/10 - Acide succinique
  • C07B 63/00 - PurificationSéparation spécialement adaptée aux fins d'isolement des composés organiquesStabilisationEmploi d'additifs
  • C12P 7/46 - Acides dicarboxyliques ayant au plus quatre atomes de carbone, p. ex. acide fumarique, acide maléique

27.

ORGANIC ACID PRODUCTION IN MICROORGANISMS BY COMBINED REDUCTIVE AND OXIDATIVE TROCARBOXYLIC ACID CYLE PATHWAYS

      
Numéro d'application US2010057291
Numéro de publication 2011/063157
Statut Délivré - en vigueur
Date de dépôt 2010-11-18
Date de publication 2011-05-26
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Dole, Sudhanshu
  • Yocum, R., Rogers

Abrégé

This invention relates to succinic acid production from renewable feedstock using microbial biocatalysts genetically modified to produce succinic acid in commercially significant quantities. More specifically, this invention relates to the genetic manipulations in the pathway of carbon from renewable feedstock to succinic acid.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/31 - Gènes codant pour des protéines microbiennes, p. ex. entérotoxines
  • C12N 15/52 - Gènes codant pour des enzymes ou des proenzymes
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle
  • C12R 1/19 - Escherichia coli

28.

ENGINEERING MICROBES FOR EFFICIENT PRODUCTION OF CHEMICALS

      
Numéro d'application US2010057119
Numéro de publication 2011/063055
Statut Délivré - en vigueur
Date de dépôt 2010-11-17
Date de publication 2011-05-26
Propriétaire MYRIANT CORPORATION (USA)
Inventeur(s)
  • Gong, Wei
  • Dole, Sudhanshu
  • Grabar, Tammy
  • Collard, Andrew, Christopher
  • Pero, Janice, G.
  • Yocum, R., Rogers

Abrégé

This present invention relates to production of chemicals from microorganisms that have been genetically engineered and metabolically evolved. Improvements in chemical production have been established, and particular mutations that lead to those improvements have been identified. Specific examples are given in the identification of mutations that occurred during the metabolic evolution of a bacterial strain genetically engineered to produce succinic acid. This present invention also provides a method for evaluating the industrial applicability of mutations that were selected during the metabolic evolution for increased succinic acid production. This present invention further provides microorganisms engineered to have mutations that are selected during metabolic evolution and contribute to improved production of succinic acid, other organic acids and other chemicals of commercial interest.

Classes IPC  ?

  • C12N 1/21 - BactériesLeurs milieux de culture modifiés par l'introduction de matériel génétique étranger
  • C12N 15/54 - Transférases (2)
  • C12P 7/40 - Préparation de composés organiques contenant de l'oxygène contenant un groupe carboxyle