Boris Dushine - New York NY, US Joseph Kosmoski - Lafayette CO, US
International Classification:
B01F 13/08 B01F 7/16
US Classification:
366199, 366206, 366274, 366314
Abstract:
The present invention is directed to systems, apparatus and methods for the reconstitution of dehydrated drinking products for use in a domestic setting. A captive magnetic mixing impeller is described. Furthermore, a dehydrated drinking product preparation system is described comprising a magnetic stir plate, a multipurpose mixing, storing, serving and drinking vessel with a captive magnetic mixing impeller and cap. Furthermore, methods for preparing dehydrated drinking products for human consumption are described using the apparatus and system.
Renewable Energy System For Hydrogen Production And Carbon Dioxide Capture
C. Deane Little - Boulder CO, US Timothy C. Heffernan - Indianapolis IN, US Joseph V. Kosmoski - Wildomar CA, US C. Gordon Little - Boulder CO, US
Assignee:
NEW SKY ENERGY, INC. - Boulder CO
International Classification:
C25B 1/00
US Classification:
204242
Abstract:
The present invention is an integrated system for the production of hydrogen and the removal of carbon dioxide from the air or gas streams. The integrated system includes an energy source for generating electrical energy and a water source coupled to the energy source. The water source includes ionic electrolytes. The energy source supplies energy to the water source to electrolyze water to produce hydrogen gas, oxygen gas, acid and base. The carbon dioxide reacts with the base. In some embodiments, the energy source is a renewable energy source. The integrated system produces substantially no carbon dioxide and when combined with a renewable energy source, produces clean hydrogen fuel and reduces atmospheric carbon dioxide, resulting in carbon dioxide negative energy and manufacturing strategies.
Electrochemical Methods To Generate Hydrogen And Sequester Carbon Dioxide
C. Deane Little - Boulder CO, US Timothy C. Heffernan - Indianapolis IN, US Joseph V. Kosmoski - Wildomar CA, US C. Gordon Little - Boulder CO, US
Assignee:
NEW SKY ENERGY, INC. - Boulder CO
International Classification:
C25B 1/04 C25B 1/00
US Classification:
205555, 205343
Abstract:
A carbon dioxide negative method of manufacturing renewable hydrogen and trapping carbon dioxide from the air or gas streams is described. Direct current renewable electricity is provided to a water electrolysis apparatus with sufficient voltage to generate hydrogen and hydroxide ions at the cathode, and protons and oxygen at the anode. These products are separated and sequestered and the base is used to trap carbon dioxide from the air or gas streams as bicarbonate or carbonate salts. These carbonate salts, hydrogen, and trapped carbon dioxide in turn can be combined in a variety of chemical and electrochemical processes to create valuable carbon-based materials made from atmospheric carbon dioxide. The net effect of all processes is the generation of renewable hydrogen from water and a reduction of carbon dioxide in the atmosphere or in gas destined to enter the atmosphere.
Electrochemical Apparatus To Generate Hydrogen And Sequester Carbon Dioxide
C. Deane Little - Boulder CO, US Timothy C. Heffernan - Indianapolis IN, US Joseph V. Kosmoski - Wildomar CA, US C. Gordon Little - Boulder CO, US
Assignee:
NEW SKY ENERGY, INC. - Boulder CO
International Classification:
H01M 8/18
US Classification:
429 21
Abstract:
A carbon dioxide negative method of manufacturing renewable hydrogen and trapping carbon dioxide from the air or gas streams is described. Direct current renewable electricity is provided to a water electrolysis apparatus with sufficient voltage to generate hydrogen and hydroxide ions at the cathode, and protons and oxygen at the anode. These products are separated and sequestered and the base is used to trap carbon dioxide from the air or gas streams as bicarbonate or carbonate salts. These carbonate salts, hydrogen, and trapped carbon dioxide in turn can be combined in a variety of chemical and electrochemical processes to create valuable carbon-based materials made from atmospheric carbon dioxide. The net effect of all processes is the generation of renewable hydrogen from water and a reduction of carbon dioxide in the atmosphere or in gas destined to enter the atmosphere.
Methods And Apparatus For The Preparation Of Dehydrated Drinking Products
Joseph V. Kosmoski - Wildomar CA, US Boris Dushine - New York NY, US
International Classification:
B01F 13/08
US Classification:
366273
Abstract:
The present invention is directed to apparatus and methods for the reconstitution of dehydrated drinking products. More specifically, a dehydrated drinking product preparation devise is described as a fully integrated system comprising a magnetic mixer, vessel, stir bar and cap. Furthermore, methods for preparing dehydrated drinking products for human consumption are described using the devise.
Sulfate-Based Electrolysis Processing With Flexible Feed Control, And Use To Capture Carbon Dioxide
A method including electrolysis processing using sulfate-based electrolytes includes precipitating sodium sulfate decahydrate from a salt solution and then redissolving sodium sulfate decahydrate to prepare feed of electrolyte solution for the electrolysis processing. Front-end processing may be used to treat mixed salt solutions, including brine solutions. Calcium sulfate reagent may provide a sulfate source to regenerate electrolyte solution following carbon capture, and with carbon dioxide being sequestered in the form of calcium carbonate.
Method To Prepare One Or More Chemical Products Using Hydrogen Sulfide
Hydrogen sulfide is scrubbed from a gas stream to prepare dissolved alkali metal sulfide or hydrosulfide, which is used to prepare feed electrolyte solution for electrochemical processing to generate alkali metal hydroxide in catholyte and polysulfide in anolyte, which may be recovered from an electrochemical reactor and which may be subjected to further processing to precipitate elemental sulfur. Aqueous scrubbing solution may include alkali metal carbonate capture agent to capture hydrogen sulfide in alkali metal bicarbonate The gas stream may include carbon dioxide in addition to hydrogen sulfide, and a ratio of dissolved alkali metal carbonate to bicarbonate may be increased prior to electrochemical processing.
- Boulder CO, US Joseph Victor KOSMOSKI - Longmont CO, US Yongan YANG - Lakewood CO, US Ryan Patrick O'HAYRE - Golden CO, US Tim S. OLSON - Arvada CO, US
A chemical process captures and convert hydrogen sulfide (HS) gas into elemental sulfur, polysulfide, sulfur dioxide and/or sulfuric acid while regenerating sodium hydroxide capture agent for further use in an initial HS capture step. Processing may include initial sodium hydroxide scrubbing of gas streams containing HS, electrochemical regeneration of the sodium hydroxide from sodium hydrosulfide or sodium sulfide, recovery of sulfur and/or sulfur dioxide from the electrochemical processing, and production of sulfuric acid from such sulfur and/or sulfur dioxide.
Name / Title
Company / Classification
Phones & Addresses
Joseph Kosmoski Managing
Kosru Development, LLC Real Estate Development and Investments
46400 Sandia Crk Dr, Temecula, CA 92590
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