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Titlebook: Research in Thermochemical Biomass Conversion; A. V. Bridgwater,J. L. Kuester Book 1988 Elsevier Science Publishers Ltd 1988 Fermentation.

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发表于 2025-3-21 16:28:19 | 显示全部楼层 |阅读模式
书目名称Research in Thermochemical Biomass Conversion
编辑A. V. Bridgwater,J. L. Kuester
视频video
图书封面Titlebook: Research in Thermochemical Biomass Conversion;  A. V. Bridgwater,J. L. Kuester Book 1988 Elsevier Science Publishers Ltd 1988 Fermentation.
描述This conference is the second such meeting under the auspices of the International Energy Agency‘s Bioenergy Agreement. The first lEA sponsored Fundamentals of Thermochemical Biomass Conversion Conference was held in Estes Park in 1982 and attracted 153 delegates from 13 countries around the world at a time when interest in biomass derived energy was at a peak. Since then oil prices have fallen considerably and with most prognoses for level prices until the end of the century, there has been a significant downturn in support for biomass conversion technologies. It has been particularly encouraging, therefore, to have received such an excellent response to this meeting. A total of 122 papers were offered, and 135 delegates registered for the conference from 19 countries. The theme of this meeting was Research in Thermochemical Biomass Conversion to reflect the advances made in research, development, demonstration and com­ mercialisation since the Fundamentals meeting in 1982. The programme was divided into sections on fundamental research, applied research, and demonstration and commercial activities to emphasise the interaction and roles of all levels of research in supporting the
出版日期Book 1988
关键词Fermentation; biofuel; biomass; chromatography; preparation; reaction; transport
版次1
doihttps://doi.org/10.1007/978-94-009-2737-7
isbn_ebook978-94-009-2737-7
copyrightElsevier Science Publishers Ltd 1988
The information of publication is updating

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Edward I. Wan,Malcolm D. Fraser in Sect. .. The requirement that entropy must be maximum possible is analyzed in Sect. .. The extremum in energy, namely that energy must be the minimum possible, is discussed in Sect. .. The fact that the physical consequences of both these extrema are similar is noted and emphasized. Of course, a
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Biofuels and Municipal Waste Technology an Overview of the DOE Program are too high and the return on investment too low to attract private sector investment. As technology is developed cooperation with and cost sharing from is sought for eventual commercialization by industry. Outside input and cooperative research is sought at all stages of the federal research prog
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Economic Potential of Producing Liquid Transportation Fuels from Biomassequired to develop them to their full economic potential. The results indicate that gasoline can be produced from a 1000-tpd future biomass conversion plant via fast pyrolysis for about $0.96 per gallon, and via flash pyrolysis for about $1.05. Methanol can be produced at about $0.76 per gallon.
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Biomass-Fired Steam-Injected Gas-Turbine Cogeneration for the Cane Sugar Industrytial to provide some 1000 GWh per year of electricity using the presently produced cane residues in Jamaica. Globally, over 50,000 MW of gas turbine capacity could be supported with the 1985 level of cane-residue production. The costs of producing this electricity is estimated to be lower than the e
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Book 1988evelopment, demonstration and com­ mercialisation since the Fundamentals meeting in 1982. The programme was divided into sections on fundamental research, applied research, and demonstration and commercial activities to emphasise the interaction and roles of all levels of research in supporting the
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esearch, development, demonstration and com­ mercialisation since the Fundamentals meeting in 1982. The programme was divided into sections on fundamental research, applied research, and demonstration and commercial activities to emphasise the interaction and roles of all levels of research in supporting the 978-94-009-2737-7
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