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从木屑中提取乙醇的生命周期评估。

Life cycle assessment of ethanol derived from sawdust.

机构信息

School of Engineering, University of Guelph, Ontario N1G 2W1, Canada.

出版信息

Bioresour Technol. 2013 Dec;150:407-11. doi: 10.1016/j.biortech.2013.08.057. Epub 2013 Aug 14.

Abstract

The life cycle of ethanol derived from sawdust by enzymatic hydrolysis process is evaluated to determine if environmentally preferable and economically viable ethanol can be produced. Two scenarios are considered to estimate net energy consumption, greenhouse gas (GHG) emission and production costs. The estimated net energy consumption, GHG emission and production costs are 12.29-13.37 MJ/L, 0.75-0.92 kg CO2 e/L and about $0.98-$1.04/L, respectively depending on the scenarios of this study. The result confirmed that environmental benefit can be gained with present technologies; however, economic viability remains doubtful unless Feed-in Tariff (FiT) is considered. The production cost of ethanol reduces to $0.5/L, if FiT is considered to be $0.025/MJ. This study indicates that the implementation of FiT program for ethanol industry not only helps Ontario mitigate GHG emissions, but may also attract more investment and create rural employment opportunities.

摘要

评估了通过酶解工艺从木屑中提取乙醇的生命周期,以确定是否可以生产出环境友好且经济可行的乙醇。考虑了两种情景来估算净能耗、温室气体 (GHG) 排放和生产成本。根据本研究的情景,估计的净能耗、GHG 排放和生产成本分别为 12.29-13.37 MJ/L、0.75-0.92 kg CO2 e/L 和约 0.98-1.04/L。结果证实,采用现有技术可以获得环境效益;然而,除非考虑上网电价 (Feed-in Tariff, FiT),否则经济可行性仍值得怀疑。如果考虑 FiT 为 0.025/MJ,则乙醇的生产成本可降低至 0.5/L。本研究表明,实施乙醇产业 FiT 计划不仅有助于安大略省减少 GHG 排放,还可能吸引更多投资并创造农村就业机会。

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