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首页> 外文期刊>Energy & environmental science >Lifecycle greenhouse gas footprint and minimum selling price of renewable diesel and jet fuel from fermentation and advanced fermentation production technologies
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Lifecycle greenhouse gas footprint and minimum selling price of renewable diesel and jet fuel from fermentation and advanced fermentation production technologies

机译:生命周期温室气体足迹以及来自发酵和先进发酵生产技术的可再生柴油和喷气燃料的最低售价

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摘要

Fermentation and advanced fermentation (AF) biofuel production technologies may offer a means to reduce the greenhouse gas (GHG) intensity of transportation by providing renewable drop-in alternatives to conventional middle distillate (MD) fuels, including diesel and jet fuel. To the best of our knowledge, this is the first peer-reviewed study of the environmental and economic feasibility of AF technologies. We find that the attributional lifecycle GHG footprint of AF MD from sugar cane, corn grain and switchgrass ranges from -27.0 to 19.7, 47.5 to 117.5, and 11.7 to 89.8 gCO_2e/MJ_(MD). respectively, compared to 90.0 gCO_2e/MJ_(MD) for conventional MD. These results are most sensitive to the co-product allocation method used, the efficiency and utility requirements of feedstock-to-fuel conversion, and the co-generation technology employed. We also calculate the minimum selling price (MSP) of MD fuel produced from sugar cane, corn grain and switchgrass AF as a range from 0.61 to 2.63, 0.84 to 3.65, and 1.09 to 6.30 $ per liter_(MD), respectively, compared to the current price of conventional MD in the United States of approximately 0.80 $ per liter_(MD). The MSP results are most sensitive to feedstock-to-fuel conversion efficiency, feedstock costs, and capital costs. Finally, we demonstrate that emissions from land use change (LUC) directly attributable to the growth of biomass for AF fuel could dominate the GHG footprint of AF MD fuels.
机译:发酵和高级发酵(AF)生物燃料生产技术可通过提供可再生的替代常规替代中间馏分(MD)燃料(包括柴油和喷气燃料)的替代品,来降低温室气体(GHG)的运输强度。据我们所知,这是对自动对焦技术的环境和经济可行性进行的首次同行评审研究。我们发现,甘蔗,玉米粒和柳枝AF的AF MD的归因生命周期GHG足迹范围为-27.0至19.7、47.5至117.5和11.7至89.8 gCO_2e / MJ_(MD)。与传统MD的90.0 gCO_2e / MJ_(MD)相比。这些结果对所用的副产品分配方法,原料到燃料的转化的效率和效用要求以及所用的热电联产技术最为敏感。我们还计算了从甘蔗,玉米谷物和柳枝AF AF生产的MD燃料的最低销售价格(MSP),分别为每升(MD)0.61至2.63、0.84至3.65和1.09至6.30美元。在美国,常规MD的当前价格约为每升0.80美元。 MSP结果对原料到燃料的转化效率,原料成本和资本成本最敏感。最后,我们证明,直接归因于AF燃料生物量增长的土地利用变化(LUC)排放可能会占AF MD燃料的温室气体足迹占主导地位。

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  • 来源
    《Energy & environmental science 》 |2014年第5期| 1545-1554| 共10页
  • 作者单位

    Laboratory for Aviation and the Environment, Massachusetts Institute of Technology,77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Laboratory for Aviation and the Environment, Massachusetts Institute of Technology,77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Laboratory for Aviation and the Environment, Massachusetts Institute of Technology,77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Laboratory for Aviation and the Environment, Massachusetts Institute of Technology,77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Office of Environment and Energy, United States Federal Aviation Administration, 800 Independence Ave SW, Suite 900W, Washington, DC 20591, United States;

    Department of Engineering Division A, University of Cambridge, Trinity Lane,Cambridge CB2 1TN, United Kingdom;

    Laboratory for Aviation and the Environment, Massachusetts Institute of Technology,77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

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