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评估综合生物炼制厂乙醇的环境可持续性。

Assessing the environmental sustainability of ethanol from integrated biorefineries.

作者信息

Falano Temitope, Jeswani Harish K, Azapagic Adisa

机构信息

School of Chemical Engineering and Analytical Science, The University of Manchester, Manchester, UK.

出版信息

Biotechnol J. 2014 Jun;9(6):753-65. doi: 10.1002/biot.201300246. Epub 2014 Feb 24.

Abstract

This paper considers the life cycle environmental sustainability of ethanol produced in integrated biorefineries together with chemicals and energy. Four types of second-generation feedstocks are considered: wheat straw, forest residue, poplar, and miscanthus. Seven out of 11 environmental impacts from ethanol are negative, including greenhouse gas (GHG) emissions, when the system is credited for the co-products, indicating environmental savings. Ethanol from poplar is the best and straw the worst option for most impacts. Land use change from forest to miscanthus increases the GHG emissions several-fold. For poplar, the effect is opposite: converting grassland to forest reduces the emissions by three-fold. Compared to fossil and first-generation ethanol, ethanol from integrated biorefineries is more sustainable for most impacts, with the exception of wheat straw. Pure ethanol saves up to 87% of GHG emissions compared to petrol per MJ of fuel. However, for the current 5% ethanol-petrol blends, the savings are much smaller (<3%). Therefore, unless much higher blends become widespread, the contribution of ethanol from integrated biorefineries to the reduction of GHG emissions will be insignificant. Yet, higher ethanol blends would lead to an increase in some impacts, notably terrestrial and freshwater toxicity as well as eutrophication for some feedstocks.

摘要

本文探讨了综合生物炼制厂生产的乙醇与化学品和能源一起的生命周期环境可持续性。考虑了四种第二代原料:小麦秸秆、森林残留物、杨树和芒草。当系统计入副产品时,乙醇产生的11种环境影响中有7种是负面的,包括温室气体(GHG)排放,这表明存在环境效益。对于大多数影响而言,杨树生产的乙醇是最佳选择,而秸秆是最差选择。从森林转变为芒草的土地利用变化会使温室气体排放增加数倍。对于杨树来说,情况则相反:将草地转变为森林会使排放量减少三倍。与化石乙醇和第一代乙醇相比,综合生物炼制厂生产的乙醇在大多数影响方面更具可持续性,但小麦秸秆除外。每兆焦耳燃料的纯乙醇与汽油相比,可节省高达87%的温室气体排放。然而,对于目前5%的乙醇 - 汽油混合燃料,节省量要小得多(<3%)。因此,除非更高比例的混合燃料广泛普及,否则综合生物炼制厂生产的乙醇对减少温室气体排放的贡献将微不足道。然而,更高比例的乙醇混合燃料会导致一些影响增加,特别是对某些原料而言,会增加陆地和淡水毒性以及富营养化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/615b/4674963/291c9c4c7798/biot0009-0753-f1.jpg

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