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Titlebook: Biotechnology for Fuels and Chemicals; The Twenty-Fourth Sy Brian H. Davison (Conference Chair),James W. Lee,J Book 20031st edition Humana

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发表于 2025-3-21 16:47:15 | 显示全部楼层 |阅读模式
期刊全称Biotechnology for Fuels and Chemicals
期刊简称The Twenty-Fourth Sy
影响因子2023Brian H. Davison (Conference Chair),James W. Lee,J
视频video
学科分类ABAB Symposium
图书封面Titlebook: Biotechnology for Fuels and Chemicals; The Twenty-Fourth Sy Brian H. Davison (Conference Chair),James W. Lee,J Book 20031st edition Humana
影响因子The increased attendance required concurrent sessions for the 48 oral presentations and 190 submitted posters (for more details see Website: www.ct.ornl.gov/symposium). Attendees came from Australia, Austria, Belgium, Brazil, Canada, China, Denmark, Finland, Germany, Hungary, India, Japan, Korea, Mexico, The Netherlands, Russia, South Korea, Spain, Sweden, Turkey, and Ven­ ezuela, as well as from the United States. This international perspective was continued in a Special Topic Ses­ sion sponsored by the International Energy Agency (lEA) Bioenergy Pro­ gram on Biofuels and chaired by Jack Saddler and David Gregg from the University of British Columbia. Several of the 10 member countries in this network are approaching Demonstrations of the Biomass-to-Ethanol pro­ cess and have a range of more fundamental projects that look at various aspects of pretreatment, enzymatic hydrolysis, fermentation, and lignin utilization. Presenters from several of the participating countries described their country‘s biomass-to-ethanol projects, and differential factors such as the type of biomass available, the maturity of the wood or agricultural processing industry, and the willingness of government
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https://doi.org/10.1007/978-981-19-9868-3oretical, and 41% xylose recovery in the liquid fraction. Large particles can be used for poplar biomass in both pretreatments, since no significant effect of particle size on enzymatic hydrolysis and SSF was obtained.
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Microbial Pretreatment of Biomassic cellulose digestibility of corn stover after pretreatment with .; and a ten- to 100-fold reduction in shear force needed to obtain the same shear rate of 3.2 to 7 rev/s, respectively, after pretreatment with ..
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Physical Separation of Straw Stem Components to Reduce Silicaoach to reducing silica is to selectively harvest the straw stems using an in-field physical separation, leaving the remaining components in the field to build soil organic matter and contribute soil nutrients.
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Post-Harvest Processing Methods for Reduction of Silica and Alkali Metals in Wheat Strawffective at removing K and Cl, while dilute alkali was more effective for Si. Reduction of minerals in this manner may prove economical for increasing utilization of the straw for combustion or gasification.
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Composition and Ethanol Production Potential of Cotton Gin Residues(20–38%). Overlimed steam-exploded cotton gin waste was readily fermented to ethanol by . KO11. Ethanol yields were feedstock and severity dependent and ranged from 58 to 92.5% of the theoretical yields. The highest ethanol yield was 191 L (50 gal)/t, and the lowest was 120 L (32 gal)/t.
发表于 2025-3-23 04:36:24 | 显示全部楼层
S. A. Eccles,H. P. Purvies,D. P. McIntoshoach to reducing silica is to selectively harvest the straw stems using an in-field physical separation, leaving the remaining components in the field to build soil organic matter and contribute soil nutrients.
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Oleg Stelia,Iurii Krak,Leonid Potapenkoffective at removing K and Cl, while dilute alkali was more effective for Si. Reduction of minerals in this manner may prove economical for increasing utilization of the straw for combustion or gasification.
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