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首页> 外文期刊>Environmental Science & Technology >Heat, Electricity, or Transportation? The Optimal Use of Residual and Waste Biomass in Europe from an Environmental Perspective
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Heat, Electricity, or Transportation? The Optimal Use of Residual and Waste Biomass in Europe from an Environmental Perspective

机译:热,电还是运输?从环境角度看欧洲剩余生物质和废物生物质的最佳利用

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摘要

The optimal use of forest energy wood, industrial wood residues, waste wood, agricultural residues, animal manure, biowaste, and sewage sludge in 2010 and 2030 was assessed for Europe. An energy system model was developed comprising 13 principal fossil technologies for the production of heat, electricity, and transport and 173 bioenergy conversion routes. The net environmental benefits of substituting fossil energy with bioenergy were calculated for all approximately 1500 combinations based on life cycle assessment (LCA) results. An optimization model determines the best use of biomass for different environmental indicators within the quantified EU-27 context of biomass availability and fossil energy utilization. Key factors determining the optimal use of biomass are the conversion efficiencies of bioenergy technologies and the kind and quantity of fossil energy technologies that can be substituted. Provided that heat can be used efficiently, optimizations for different environmental indicators almost always indicate that woody biomass is best used for combined heat and power generation, if coal, oil, or fuel oil based technologies can be substituted. The benefits of its conversion to SNG or ethanol are significantly lower. For non-woody biomass electricity generation, transportation, and heating yield almost comparable benefits as long as high conversion efficiencies and optimal substitutions are assured. The shares of fossil heat, electricity, and transportation that could be replaced with bioenergy are also provided.
机译:欧洲评估了2010年和2030年森林能源木材,工业木材残渣,废木材,农业残渣,动物粪便,生物废料和污水污泥的最佳利用。开发了一个能源系统模型,其中包括用于生产热,电和运输的13种主要化石技术以及173条生物能转化路线。根据生命周期评估(LCA)结果,计算了大约1500种组合使用化石能源替代生物能源的净环境效益。优化模型确定了在量化的EU-27生物量可利用性和化石能源利用的量化范围内,不同环境指标对生物质的最佳利用。确定生物质最佳利用的关键因素是生物能源技术的转化效率以及可替代的化石能源技术的种类和数量。只要能够有效利用热量,对不同环境指标的优化几乎总是表明,如果可以替代基于煤炭,石油或燃料油的技术,木质生物质最适合用于热电联产。将其转化为SNG或乙醇的好处大大降低。对于非木质生物质,只要能确保高转换效率和最佳替代品,其发电,运输和供热就能获得几乎可比的收益。还提供了可被生物能源替代的化石热,电和运输的份额。

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  • 来源
    《Environmental Science & Technology》 |2012年第1期|p.164-171|共8页
  • 作者单位

    Swiss Federal Laboratories for Materials Science and Technology (Empa), Uberlandstrasse 129, CH-8600 Diibendorf, Switzerland,Ecole Polytechnique Federate de Lausanne (EPFL), School of Architecture, Civil and Environmental Engineering (ENAC-IIE),CH-1015 Lausanne, Switzerland;

    Swiss Federal Laboratories for Materials Science and Technology (Empa), Uberlandstrasse 129, CH-8600 Diibendorf, Switzerland;

    Ecole Polytechnique Federate de Lausanne (EPFL), School of Architecture, Civil and Environmental Engineering (ENAC-IIE),CH-1015 Lausanne, Switzerland,Paul Scherrer Institut, CH-5232 Villingen PSI, Switzerland;

  • 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
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