玉米秸秆
生物炼制
乙醇燃料
生物量(生态学)
发酵
制浆造纸工业
木质纤维素生物量
生物燃料
酶水解
水解
化学
乙醇发酵
乙醇
生物技术
废物管理
环境科学
工程类
食品科学
农学
生物化学
生物
作者
David Humbird,Ryan Davis,Ling Tao,Christopher Kinchin,David Hsu,A. Aden,P. Schoen,John C. Lukas,B Olthof,M. Worley,Danielle Sexton,D Dudgeon
摘要
This report describes one potential biochemical ethanol conversion process, conceptually based upon core conversion and process integration research at NREL. The overarching process design converts corn stover to ethanol by dilute-acid pretreatment, enzymatic saccharification, and co-fermentation. Building on design reports published in 2002 and 1999, NREL, together with the subcontractor HarrisGroup Inc., performed a complete review of the process design and economic model for the biomass-to-ethanol process. This update reflects NREL's current vision of the biochemical ethanol process and includes the latest research in the conversion areas (pretreatment, conditioning, saccharification, and fermentation), optimizations in product recovery, and our latest understanding of the ethanolplant's back end (wastewater and utilities). The conceptual design presented here reports ethanol production economics as determined by 2012 conversion targets and 'nth-plant' project costs and financing. For the biorefinery described here, processing 2,205 dry ton/day at 76% theoretical ethanol yield (79 gal/dry ton), the ethanol selling price is $2.15/gal in 2007$.
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