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Attributional life cycle assessment of woodchips for bioethanol production

机译:用于生产生物乙醇的木片的归因生命周期评估

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摘要

Besides the apparent need to reduce greenhouse gas emissions, other important factors contributing to the renewed interest in biofuels are energy security concerns and the need of sustainable transportation fuel. Nearly 30% of the annual CO_2 emissions in the US. come from the transportation sector and more than half of the fuel is imported. Biofuels appear to be a promising option to reduce carbon dioxide emissions, and the reliance on imported oil concomitantly. The interest on (ligno) cellulosic ethanol is gaining momentum as corn-based ethanol is criticized for using agricultural outputs for fuel production. Among many lignocellulosic feedstocks, woodchips is viewed as one of the most promising feedstocks for producing liquid transportation fuels. The renewable and carbon neutral nature of the feedstocks, similar chemical and physical properties to gasoline, and the low infrastructure cost due to the availability of fuel flex vehicles and transportation networks make (ligno) cellulosic bioethanol an attractive option. An in-depth LCA of woodchips shows that harvesting and woodchips processing stage and transportation to the facility stage emit large amount of environmental pollutants compared to other life cycle stages of ethanol production. Our analysis also found that fossil fuel consumption and respiratory inorganic effects are the two most critical environmental impact categories in woodchips production. We have used Eco-indicator 99 based cradle-to-gate LCA method with a functional unit of 4 m~3 of dry hardwood chips production.
机译:除了减少温室气体排放的明显需求外,促使人们重新对生物燃料产生兴趣的其他重要因素还包括能源安全问题和可持续运输燃料的需求。在美国,每年的CO_2排放量接近30%。来自运输部门,一半以上的燃料是进口的。生物燃料似乎是减少二氧化碳排放以及随之而来的对进口石油的依赖的有前途的选择。由于人们批评基于玉米的乙醇使用农业产品生产燃料,因此对(木质纤维素)纤维素乙醇的兴趣正在增加。在许多木质纤维素原料中,木片被视为生产液体运输燃料的最有前途的原料之一。原料的可再生和碳中性性质,与汽油相似的化学和物理特性,以及由于使用燃料灵活的车辆和运输网络而降低的基础设施成本,使(木质)纤维素生物乙醇成为一种有吸引力的选择。对木片的深入LCA显示,与乙醇生产的其他生命周期阶段相比,伐木和木片加工阶段以及运输到设施阶段会排放大量环境污染物。我们的分析还发现,化石燃料消耗和呼吸性无机效应是木片生产中两个最关键的环境影响类别。我们使用了基于Eco-indicator 99的从摇篮到大门的LCA方法,其功能单元为4 m〜3的干硬木片生产。

著录项

  • 来源
    《Journal of Cleaner Production》 |2011年第7期|p.733-741|共9页
  • 作者单位

    Forest Bio-products Research Institute, School of Forest Resources, University of Maine, 244, Nutting Hall, Orono, ME 04469, USA;

    Forest Bio-products Research Institute, School of Forest Resources, University of Maine, 244, Nutting Hall, Orono, ME 04469, USA;

    Forest Bio-products Research Institute, School of Forest Resources, University of Maine, 244, Nutting Hall, Orono, ME 04469, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    woodchips; life cycle assessment; bioethanol; biofuels; environmental impacts;

    机译:木片;生命周期评估;生物乙醇;生物燃料;环境影响;

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