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Life Cycle Assessment of Switchgrass- and Corn Stover-Derived Ethanol-Fueled Automobiles

机译:柳枝and和玉米秸秆衍生的乙醇燃料汽车的生命周期评估

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摘要

Utilizing domestically produced cellulose-derived ethanol for the light-duty vehicle fleet can potentially improve the environmental performance and sustainability of the transport and energy sectors of the economy. A life cycle assessment model was developed to examine environmental implications of the production and use of ethanol in automobiles in Ontario,Canada. The results were compared to those of low-sulfur reformulated gasoline (RFG) in a functionally equivalent automobile. Two time frames were evaluated,one near-term (2010),which examines converting a dedicated energy crop (switchgrass) and an agricultural residue (corn stover) to ethanol;and one midterm (2020),which assumes technological improvements in the switchgrass-derived ethanol life cycle. Near-term results show that,compared to a RFG automobile,life cycle greenhouse gas (GHG) emissions are 57% lower for an E85-fueled automobile derived from switchgrass and 65% lower for ethanol from corn stover,on a grams of CO_2 equivalent per kilometer basis. Corn stover ethanol exhibits slightly lower life cycle GHG emissions,primarily due to sharing emissions with grain production. Through projected improvements in crop and ethanol yields,results for the mid-term scenario show that GHG emissions could be 25-35% lower than those in 2010 and that,even with anticipated improvements in RFG automobiles,E85 automobiles could still achieve up to 70% lower GHG emissions across the life cycle.
机译:将国产纤维素衍生的乙醇用于轻型车队可以潜在地改善环境绩效以及经济运输和能源部门的可持续性。开发了生命周期评估模型,以检查加拿大安大略省汽车中乙醇生产和使用对环境的影响。将结果与功能等效的汽车中的低硫重整汽油(RFG)进行了比较。我们评估了两个时间框架,一个是近期(2010年),该研究考察了将专用能源作物(柳枝))和农业残留物(玉米秸秆)转化为乙醇;另一个是中期(2020年),假定柳枝-在技术上有所改进,得出乙醇的生命周期。近期结果显示,与RFG汽车相比,以柳枝s为原料的E85燃料汽车的生命周期温室气体(GHG)排放降低了57%,而玉米秸秆中的乙醇则降低了65%,每克CO_2当量每公里玉米秸秆乙醇的生命周期温室气体排放量略低,这主要是由于与谷物生产共享排放。通过预计的农作物和乙醇单产的提高,中期情景的结果表明,温室气体排放量可能比2010年降低25-35%,即使预期RFG汽车有所改进,E85汽车仍可以达到70在整个生命周期中降低%的温室气体排放。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第24期|p.9750-9758|共9页
  • 作者单位

    Department of Civil Engineering,University of Toronto,35 St. George St. Toronto,Ontario,Canada M5S 1A4;

    Department of Civil Engineering,University of Toronto,35 St. George St. Toronto,Ontario,Canada M5S 1A4;

    Department of Civil Engineering,University of Toronto,35 St. George St. Toronto,Ontario,Canada M5S 1A4;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:08:08

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