RU93004713A - METHOD OF ELECTRIC ENERGY GENERATION FROM BIOMATERIALS - Google Patents

METHOD OF ELECTRIC ENERGY GENERATION FROM BIOMATERIALS

Info

Publication number
RU93004713A
RU93004713A RU93004713/13A RU93004713A RU93004713A RU 93004713 A RU93004713 A RU 93004713A RU 93004713/13 A RU93004713/13 A RU 93004713/13A RU 93004713 A RU93004713 A RU 93004713A RU 93004713 A RU93004713 A RU 93004713A
Authority
RU
Russia
Prior art keywords
biomaterials
fuel gas
electric energy
energy generation
fuel
Prior art date
Application number
RU93004713/13A
Other languages
Russian (ru)
Other versions
RU2107359C1 (en
Inventor
Джонссен Др.Вольф
Dzhonssen Dr.Vol'f
Original Assignee
Джонссен Др.Вольф
Dzhonssen Dr.Vol'f
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Джонссен Др.Вольф, Dzhonssen Dr.Vol'f filed Critical Джонссен Др.Вольф
Publication of RU93004713A publication Critical patent/RU93004713A/en
Application granted granted Critical
Publication of RU2107359C1 publication Critical patent/RU2107359C1/en

Links

Claims (1)

Указаны способы генерации электрической энергии из биоматериалов, причем реализована комбинация следующих признаков. Используются биоматериалы, которые в достаточной степени свободны от сернистых соединений. В окислительном реакторе благодаря частичному окислению из биоматериалов генерируется топливный газ. При этом устанавливаются соотношение количества кислорода и биоматериала и температура газовой фазы, которые гарантируют получение топливного газа, практически свободного от оксидов азота. После освобождения топливного газа от взвешенных частиц в отстойнике происходит его поступление в топливные элементы, которые имеют пористый анод, пористый катод и подходящий электролит.The methods for generating electrical energy from biomaterials are indicated, and a combination of the following features is implemented. Biomaterials that are sufficiently free from sulfur compounds are used. Due to partial oxidation, fuel gas is generated in the oxidation reactor from biomaterials. This sets the ratio of the amount of oxygen and biomaterial and the temperature of the gas phase, which guarantee the production of fuel gas that is practically free from nitrogen oxides. After the release of fuel gas from suspended particles in the sump, it enters the fuel cells, which have a porous anode, a porous cathode and a suitable electrolyte.
RU93004713A 1992-03-13 1993-03-12 Process of generation of electric energy from biomaterials (versions) RU2107359C1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4207975 1992-03-13
DEP4207975.6 1992-03-13

Publications (2)

Publication Number Publication Date
RU93004713A true RU93004713A (en) 1996-07-27
RU2107359C1 RU2107359C1 (en) 1998-03-20

Family

ID=6453942

Family Applications (1)

Application Number Title Priority Date Filing Date
RU93004713A RU2107359C1 (en) 1992-03-13 1993-03-12 Process of generation of electric energy from biomaterials (versions)

Country Status (2)

Country Link
RU (1) RU2107359C1 (en)
ZA (1) ZA931543B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2648932C2 (en) * 2016-02-25 2018-03-28 Сергей Геннадьевич Баякин Solid fuel gasifier with cogeneration of thermal and electric power

Similar Documents

Publication Publication Date Title
ES2143994T3 (en) PROCEDURE TO GENERATE ELECTRIC ENERGY FROM BIOMASSES.
ES450192A1 (en) Solar energy conversion
RU93032037A (en) METHOD AND INSTALLATION FOR COMBINED PRODUCTION OF ELECTRICAL AND MECHANICAL ENERGY
RU2420833C2 (en) Fuel cell of direct electrochemical oxidation (versions) and generation method of electric energy from solid-phase organic fuel (versions)
RU98111618A (en) HIGH TEMPERATURE ELECTROCHEMICAL GENERATOR FOR HYDROCARBON FUEL (OPTIONS) AND A FUEL CELL SYSTEM WITH A FLAT SOLID OXIDE ELECTROLYTIC FOR CHEMICAL PERFORMANCE
Yates et al. Anode materials for a hydrogen sulfide solid oxide fuel cell
US6200697B1 (en) Carbon-air fuel cell
JP2002161325A (en) Aluminum alloy, hydrogen gas generation method, hydrogen gas generator, and electric generator
US4128704A (en) Photoelectrochemical energy storage system
ATE146905T1 (en) REGENERABLE HIGH ENERGY DENSITY FUEL CELL FOR TOP PERFORMANCE
US4826740A (en) Process for generating electrical energy by oxidation of a solid fuel in liquid metal
RU93004713A (en) METHOD OF ELECTRIC ENERGY GENERATION FROM BIOMATERIALS
JP2517799B2 (en) Electrochemical exhaust gas treatment system
EP0333261A3 (en) Method and plant for the production of electrical energy and gas for chemical syntheses by means of oxidation in molten metal baths
JPS5742501A (en) Method of storing renewable energy in the form of hydrogen compound
Pandey et al. Solar hydrogen production using semiconductor septum (n-CdSeTi and n-TiO2Ti) electrode based photoelectrochemical solar cells
US3679486A (en) Fuel cell and method of operating said cell
JPS54109599A (en) Water-hydrogen isotope exchange reactor having economizer
MY116466A (en) Method for generating electric energy from biological raw materials
JPS56146883A (en) Recovering method for hydrogen
DE3876070D1 (en) REMOVAL OF HYDROGEN AND OXYGEN IN THE ELECTROLYTE OF HYDROGEN / OXYGEN BATTERIES OPERATED IN A WEIGHTLESS ROOM.
TW265479B (en) Method for generating electric energy from biological raw materials
US885054A (en) Gas element for converting the energy of combustible or other suitable reducing substances to electric current.
JPS5744719A (en) Exhaust-gas purifying apparatus
Johnssen Method of generating electric energy from biological raw materials