water and/or liquid treatment apparatus for inactivating, denaturing, mitigating, and eliminating bio contaminants with or without a central programmable logic controller and electronic sensors
water and/or liquid treatment apparatus for inactivating, denaturing, mitigating, and eliminating bio contaminants with or without a central programmable logic controller and electronic sensors
3.
Nonthermal Plasma Treatment of Contaminants in Liquid Cooling Systems for Optimal Heat Removal and Reliable Operation in Data Centers
C02F 1/46 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques
C02F 1/467 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques par électrolyse par désinfection électrochimique
C02F 103/02 - Eau non contaminée, p. ex. pour l'alimentation industrielle en eau
4.
METHODS AND SYSTEMS FOR TREATING BIOLOGICAL CONTAMINANTS
Unwanted material in water, such as Legionella and scale, may be treated using a combination of technologies. Components of each technology may be controlled using a database, such as an Internet-of-things (IoT) database. An additional advantage of the treatment technologies is an increase in the efficiency of heat transfer components, such as cooling towers, and a related reduction in carbon footprint.
C02F 1/46 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques
C02F 1/467 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques par électrolyse par désinfection électrochimique
C02F 103/02 - Eau non contaminée, p. ex. pour l'alimentation industrielle en eau
water and liquid treatment apparatus for use in water and liquid purification for industrial purposes using non-thermal plasma and other discharges to inactivate, denature or eliminate unwanted material such as biological contaminants, including biofilm and Legionella
6.
Apparatuses and methods for treating biofilm and legionella in cooling tower systems
Unwanted material in water, such as Legionella and scale, may be treated using a combination of technologies. Components of each technology may be controlled using a databus, such as an Internet-of-things (IoT) databus. An additional advantage of the treatment technologies is an increase in the efficiency of heat transfer components, such as cooling towers, and a related reduction in carbon footprint.
C02F 1/46 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques
C02F 1/467 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques par électrolyse par désinfection électrochimique
Non-thermal water and liquid treatment apparatus for inactivating, denaturing, mitigating and eliminating biocontaminants and a central programmable logic controller and electronic sensors sold as a unit therewith
9.
Systems and methods for treating harmful biological contaminants in HVAC systems
Plasma discharges and electromagnetic fields may be applied to a liquid, such as water, for desalinization purposes and to treat unwanted material in the liquid.
Water and liquid treatment equipment, namely, non-thermal systems comprised of a central programmable logic controller and electronic sensors used to inactivate, denature, mitigate or eliminate biocontaminants
12.
Devices systems and methods for conserving resources by treating liquids with electromagnetic fields
Resources, such as water, energy, power, amount of de-scaling chemicals, device lifetimes, data analytics and system depreciation may be conserved through the use of dual-field electric and magnetic probes that create and apply electromagnetic fields to liquids, such as water.
Radionuclides and other unwanted material in a liquid may be treated, removed or reduced through the use of electromagnetic fields applied to the liquid by electrodes that also function as co-precipitators by leaching polyvalent metal ions into the liquid.
Feedwater is treated using a combination of techniques, including the integration of a brine solution to promote the formation of reactive and molecular species in the feedwater with electrolytic ionization, the application of electromagnetic fields and the application of plasma fields. The integrated, combined techniques offer an improved treatment of scale forming ions, bacteria and biological contaminants in feedwater.
Feedwater and saltwater used in desalination plants, oil field installations, and large data centers can be treated to reduce scale, biological contaminants, and biologically induced corrosion therein by the integration of different treatment mechanisms.
C02F 1/46 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques
C02F 1/467 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par des procédés électrochimiques par électrolyse par désinfection électrochimique
C02F 1/48 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout au moyen de champs magnétiques ou électriques
C02F 1/78 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par oxydation au moyen d'ozone
Plasma discharges and electromagnetic fields may be applied to a liquid, such as water, for desalinization purposes and to treat unwanted material in the liquid.
Resources, such as water, energy, power, amount of de-scaling chemicals, device lifetimes, data analytics and system depreciation may be conserved through the use of dual-field electric and magnetic probes that create and apply electromagnetic fields to liquids, such as water.
Resources, such as water, energy, power, amount of de-scaling chemicals, device lifetimes, data analytics and system depreciation may be conserved through the use of dual-field electric and magnetic probes that create and apply electromagnetic fields to liquids, such as water.
Devices, systems and methods for applying electromagnetic fields to liquids, such as water, to treat unwanted material in the liquid are disclosed. Such devices, systems and methods may include a cylindrically shaped, water- immersible probe configured to generate electromagnetic fields that are effective to treat unwanted materials, such as scale, and microbes in the water.
Resources, such as water, energy, power, amount of de-scaling chemicals, device lifetimes, data analytics and system depreciation may be conserved through the use of dual-field electric and magnetic probes that create and apply electromagnetic fields to liquids, such as water.
Devices, systems and methods for applying electromagnetic fields to liquids, such as water, to treat unwanted material in the liquid are disclosed. Such devices, systems and methods may include a cylindrically shaped, water-immersible probe configured to generate electromagnetic fields that are effective to treat unwanted materials, such as scale, and microbes in the water.
Electromagnetic water treatment devices for applying electromagnetic fields to liquids, such as water are disclosed. The water treatment devices may include a water-immersible probe configured to generate electromagnetic output fields effective to remove scale, prevent the growth of scale and/or eliminate microbes in a water supply system. Systems and methods for treating water using the disclosed devices are also provided.