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pro vyhledávání: '"Meyer Steinberg"'
Autor:
Meyer Steinberg
Publikováno v:
Energy Procedia. 1(1):1427-1434
The Natural Gas Direct Carbon Fuel Cell (NGDCFC) combines methane decomposition with the direct carbon fuel cell to produce hydrogen and electricity. The NGDCFC is ideally suited for use at automotive fuel filling stations. The following is a prelimi
Publikováno v:
Journal of Polymer Science Part C: Polymer Symposia. 16:579-589
The kineties and product characteristics of the Co60 gamma-radiation-induced polymerization of ethylene have been studied as a function of pressure, radiation intensity, and temperature. Experiments were carried out under conditions which ranged in p
Autor:
Meyer Steinberg
Publikováno v:
International Journal of Hydrogen Energy. 31:405-411
The IPFC is a high efficiency energy cycle, which converts fossil and biomass fuel to electricity and co-product hydrogen and liquid transportation fuels (gasoline and diesel). The cycle consists of two basic units, a hydrogen plasma black reactor (H
Autor:
Meyer Steinberg
Publikováno v:
International Journal of Hydrogen Energy. 24:771-777
It has been understood that production of hydrogen from fossil and carbonaceous fuels with reduced CO2 emission to the atmosphere is key to the production of hydrogen-rich fuels for mitigating the CO2 greenhouse gas climate change problem. The conven
Autor:
Meyer Steinberg
Publikováno v:
International Journal of Hydrogen Energy. 23:419-425
The thermal decomposition of natural gas forms the basis for the production of hydrogen with reduced CO 2 emission. The hydrogen can be used to reduce CO 2 from coal-fired power plants to produce methanol which can be used as an efficient automotive
Autor:
Motoo Ishikawa, Meyer Steinberg
Publikováno v:
Energy Conversion and Management. 39:529-539
To reduce the emission of CO 2 into the atmosphere, two schemes are proposed. The first one is a coal-fired MHD-steam combined power generation system where coal is burned with oxygen rather than air, the obtained high temperature is utilized for the
Autor:
Yuanji Dong, Meyer Steinberg
Publikováno v:
International Journal of Hydrogen Energy. 22:971-977
The Hynol process is proposed to meet the demand for an economical process for methanol production with reduced CO2 emission. This new process consists of three reaction steps: (a) hydrogasification of biomass, (b) steam reforming of the produced gas
Publikováno v:
Science. 275:737-741
Wolfgang K. H. Panofsky has recently written (Letters, 3 Jan., p. 11 ) in support of the decision by the Department of Energy (DOE) to “pursue two technologies for disposing of excess military plutonium.” He describes the technologies as (i) the
Autor:
Meyer Steinberg
Publikováno v:
Energy. 22:143-149
The feasibility of an alternative CO 2 mitigation system and a methanol production process is investigated. The Carnol system has three components: (i) a coal-fired power plant supplying flue gas CO 2 , (ii) a process which converts the CO 2 in the p
Autor:
Meyer Steinberg
Publikováno v:
Energy Conversion and Management. 38:S423-S430
The Carnol System consists of methanol production by CO2 recovered from coal fired power plants and natural gas and the use of the methanol as an alternative automotive fuel. The Carnol Process produces hydrogen by the thermal decomposition of natura