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首页> 外文期刊>Biomass & bioenergy >Life cycle assessment of a corn stover torrefaction plant integrated with a corn ethanol plant and a coal fired power plant
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Life cycle assessment of a corn stover torrefaction plant integrated with a corn ethanol plant and a coal fired power plant

机译:结合了玉米乙醇工厂和燃煤电厂的玉米秸秆焙烧厂的生命周期评估

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摘要

A life cycle assessment (LCA) study was conducted to understand and assess potential greenhouse gas (GHG) emissions reduction benefits of a biomass torrefaction business integrated with other industrial businesses for the use of the excess heat from the torrefaction off-gas volatiles and biocoal. A torrefaction plant processing 30.3 Mg h ~1 of corn stover at 17% wet basis (w.b.) moisture content was modeled. The torrefaction plant produced 136,078 Mg y ~1 of biocoal at 1.1% w.b. moisture content and 28.1 MW of excess heat energy in the torrefaction off-gas volatiles. At the torrefaction plant gate, the life-cycle GHG emission for the production of biocoal (including corn stover logistics emissions) is 11.35 g MJ ~1 carbon dioxide equivalent (dry basis) (i.e., 229.5 kg Mg ~1 carbon dioxide equivalent of biocoal at 1.1% w.b. moisture content). The excess heat from the torrefaction plant met 42.8% of the process steam needs of a U.S. Midwest dry-grind corn ethanol plant producing 0.38 hm~3 y ~1 of denatured ethanol, which results in about 40% reduction in life-cycle GHG emissions for corn ethanol compared to gasoline. Co-firing 10%, 20%, and 30% (energy basis) of biocoal at a coal-fired power plant reduced the life-cycle GHG emissions of electricity generated by 8.5%, 17.0%, and 25.6%, respectively, compared to 100% coal-fired electricity. A sensitivity analysis showed that adding a combined heat and power (CHP) system at the torrefaction plant to meet 100% electricity demand of the torrefaction plant (2.5 MW) could further reduce the GHG emissions for biocoal, corn ethanol, and co-fired electricity.
机译:进行了一项生命周期评估(LCA)研究,以了解和评估与其他工业企业整合在一起的生物质干法业务的潜在温室气体(GHG)减排收益,这些干法业务利用了干法废气中的挥发物和生物煤产生的多余热量。建立了一个以17%湿基(w.b.)水分含量处理30.3 Mg h〜1玉米秸秆的焙干工厂。焙烧厂以1.1%w.b的产量产生了136,078 Mg y〜1的生物煤。烘焙废气中的水分含量和28.1 MW的多余热能。在焙烧厂门口,生产生物煤的生命周期温室气体排放量(包括玉米秸秆物流排放量)为11.35 g MJ〜1二氧化碳当量(干基)(即229.5 kg Mg〜1二氧化碳当量的生物煤)水分含量为1.1%wb)。焙烧厂产生的多余热量满足了美国中西部干磨玉米乙醇工厂生产0.38 hm〜3 y〜1变性乙醇的过程​​蒸汽需求的42.8%,这导致生命周期内温室气体排放量减少了约40%玉米乙醇比汽油。与燃煤电厂混合燃烧10%,20%和30%(以能源为基础)的生物煤,与之相比,分别减少了8.5%,17.0%和25.6%的电力生命周期温室气体排放。 100%燃煤电力。敏感性分析表明,在焙烧厂添加热电联产(CHP)系统以满足焙烧厂100%的电力需求(2.5 MW)可以进一步减少生物煤,玉米乙醇和共燃电力的温室气体排放量。

著录项

  • 来源
    《Biomass & bioenergy》 |2014年第4期|92-100|共9页
  • 作者单位

    Department of Bioproducts and Biosystems Engineering, University of Minnesota, 1390 Eckles Avenue, St. Paul, MN 55108, USA;

    Department of Bioproducts and Biosystems Engineering, University of Minnesota, 1390 Eckles Avenue, St. Paul, MN 55108, USA;

    Department of Applied Economics, University of Minnesota, 1994 Buford Avenue, St. Paul, MN 55108, USA;

    Department of Applied Economics, University of Minnesota, 1994 Buford Avenue, St. Paul, MN 55108, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biocoal; Coal-fired electricity; Corn ethanol; Corn stover; Greenhouse gas emissions; Torrefaction;

    机译:生物煤燃煤电力;玉米乙醇;玉米秸秆;温室气体排放;烘焙;

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