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Prospects for Biofuels: A Review

机译:生物燃料的前景:回顾

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摘要

Biofuels have the potential to be sustainable, secure, low carbon footprint transportation fuels. Primarily due to government mandates, biofuels have become increasingly adopted as transportation fuels over the last decade and are projected to steadily increase in production. Here the prospects of biofuels are summarized in terms of several important performance measures, including: lifecycle greenhouse gas (GHG) emissions, energy return on investment (EROI), land and water requirements, and tailpipe emissions. A review of the literature leads to the conclusion that most first-generation biofuels, including corn ethanol and soybean biodiesel produced in the United States, reduce tailpipe pollutant emissions and GHG emissions - provided their feedstocks do not replace large quantities of fixed carbon. However, their production is perhaps unsustainable due to low EROI and significant land-use and water requirements. Second-generation biofuels; for example ethanol produced from lignocellulosic biomass, have the potential for larger reductions in GHG emissions and can provide sustainable EROI with reasonable land area usage; however, they require water inputs several orders-of-magnitude greater than required by petroleum fuels. Advanced biofuels from algal oils and synthetic biological processes are further from commercial reality and require more assessment but potentially offer better performance due to their orders-of-magnitude greater yields per land area and lower water requirements; at present, the energy costs of such biofuels are uncertain.
机译:生物燃料有潜力成为可持续,安全,低碳足迹的运输燃料。主要由于政府的命令,在过去的十年中,生物燃料已越来越多地被用作交通运输燃料,并且预计其产量将稳定增长。在此,根据几种重要的性能指标总结了生物燃料的前景,包括:生命周期温室气体(GHG)排放,能源投资回报率(EROI),土地和水需求以及排气管排放。文献综述得出的结论是,大多数第一代生物燃料(包括美国生产的玉米乙醇和大豆生物柴油)可减少排气管污染物排放量和温室气体排放量,前提是它们的原料不能替代大量的固定碳。但是,由于EROI低以及大量的土地利用和水需求,其生产可能无法持续。第二代生物燃料;例如,由木质纤维素生物质生产的乙醇,有可能进一步减少温室气体排放,并在合理的土地面积使用下提供可持续的EROI;但是,它们需要的水输入量比石油燃料所需的输入量大几个数量级。来自藻类油和合成生物过程的高级生物燃料距离商业现实还很远,需要进行更多的评估,但由于其数量级更高,每个土地面积的产量更高,用水需求更低,因此可能提供更好的性能;目前,这种生物燃料的能源成本尚不确定。

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