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Titlebook: Biotechnology for Fuels and Chemicals; Proceedings of the N Mark Finkelstein,Brian H. Davison Conference proceedings 1998 Humana Press Inc.

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期刊全稱Biotechnology for Fuels and Chemicals
期刊簡稱Proceedings of the N
影響因子2023Mark Finkelstein,Brian H. Davison
視頻videohttp://file.papertrans.cn/189/188730/188730.mp4
學科分類ABAB Symposium
圖書封面Titlebook: Biotechnology for Fuels and Chemicals; Proceedings of the N Mark Finkelstein,Brian H. Davison Conference proceedings 1998 Humana Press Inc.
影響因子MARK FINKELSTEIN National Renewable Energy Laboratory BRIAN H. DAVISON Oak Ridge National Laboratory The proceedings of the 19th symposium on Biotechnologyfor Fuels and Chemicals, held in Colorado Springs, Colorado, May 4-8, 1997, had over 200 attendees. This meeting continues to provide a unique forum for the presentation of new applications and recent research advances in the production of fuels and chemicals through biotech- nology. The utilization of renewable resources, and in particular cellulosic biomass, has broad implications in today‘s world of green- house gases, global warming, ozone layers, climate change, energy sustainability, and carbon emissions. It also has relevance to the chemical industry‘s continuing need to both lower current chemi- cal production costs and produce novel chemicals. Biotechnology and bioprocessing are now making it possible to convert this bio- mass to fuels and chemicals in a commercially attractive fashion. The 19th Symposium captures a wide range of technical topics from an academic, industrial, or government perspective. A vari- ety of biomass feedstocks are discussed in Session 1, along with several updated and innovative pretreatment pro
Pindex Conference proceedings 1998
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https://doi.org/10.1007/978-981-16-7462-4d has resulted in the development of an engineered Z. . strain that will coferment arabinose. Increasing attention is being given to the use of hydrolysates by Z. . and other ethanologens. Also, a number of yeasts have been screened and adapted to the fermentation of softwood prehydrolysates. The na
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G. Uhlenbruck,F. G. Hanisch,W. E. G. Müllerld was solely attributable to the pH-dependent shift in pyruvate metabolism, resulting in the production of lactic acid as a fermentation byproduct. At a dilution rate (D) of 0.042/h, decreasing from pH 6.0 to 5.5 resulted in a decrease in lactic acid from 10.8 to 7.5 g/L. Lactic acid synthesis depe
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bio- mass to fuels and chemicals in a commercially attractive fashion. The 19th Symposium captures a wide range of technical topics from an academic, industrial, or government perspective. A vari- ety of biomass feedstocks are discussed in Session 1, along with several updated and innovative pretreatment pro978-1-4612-7295-3978-1-4612-1814-2
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Shrinking-Bed Model for Percolation Process Applied to Dilute-Acid Pretreatment/Hydrolysis of Cellugh the reactor (i.e., τ = 1.0). A simulated optimal run further reveals that the fast portion of hemicellulose is almost completely hydrolyzed in the first stage, and the slow portion of hemicellulose is hydrolyzed in the second stage. Under optimal conditions, the bed shrank 27% (a near-maximum val
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