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Is bioethanol a sustainable energy source? An energy-, exergy-, and emergy-based thermodynamic system analysis

机译:生物乙醇是可持续能源吗?基于能量,能值和能值的热力学系统分析

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摘要

Biofuels are widely seen as substitutes for fossil fuels to offset the imminent decline of oil production and to mitigate the emergent increase in GHG emissions. This view is, however, based on too simple an analysis, focusing on only one piece in the whole mosaic of the complex biofuel techno-system, and such partial approaches may easily lead to ideological bias based on political preference. This study defines the whole biofuel techno-system at three scales, i.e., the foreground production (A), the background industrial network (B, including A), and the supporting Earth biosphere (C, including B). The thermodynamic concepts of energy, exergy and emergy measure various flows at these three scales, viz. primary resources, energy and materials products, and labor and services. Our approach resolves the confusion about scale and metric: direct energy demand and direct exergy demand apply at scale A; cumulative energy demand and cumulative exergy demand apply at scale B; and energy is applied at scale C, where it is named emergy, while exergy also can be applied at scale C. This last option was not examined in the present study.The environmental performance of the system was assessed using a number of sustainability indicators, including resource consumption, input renewability, physical benefit, and system efficiency, using ethanol from corn stover in the US as a technology case. Results were compared with available literature values for typical biofuel alternatives. We also investigated the influence of methodological choices on the outcomes, based on contribution analysis, as well as the sensitivity of the outcomes to emergy intensity. The results indicate that the techno-system is not only supported by commercial energy and materials products, but also substantially by solar radiation and the labor and services invested. The bioethanol techno-system contributes to the overall supply of energy/exergy resources, although in a less efficient way than the process by which the Earth system produces fossil fuels.Our results show that bioethanol cannot be simply regarded as a renewable energy resource. Furthermore, the method chosen for the thermodynamic analysis results in different outcomes in terms of ranking the contributions by various flows. Consequently, energy analysis, exergy analysis, and emergy analysis jointly provide comprehensive indications of the energy-related sustainability of the biofuel techno-system. This thermodynamic analysis can provide theoretical support for decision making on sustainability issues.
机译:生物燃料被广泛视为化石燃料的替代品,以抵消石油产量即将下降和减轻温室气体排放量急增的情况。但是,这种观点是基于过于简单的分析,仅关注复杂的生物燃料技术系统整个马赛克中的一个,而这种局部方法很容易导致基于政治偏好的意识形态偏见。这项研究从三个方面定义了整个生物燃料技术系统,即前台生产(A),后台工业网络(B,包括A)和支持地球的生物圈(C,包括B)。能量,能级和能级的热力学概念在这三个尺度上测量各种流量。主要资源,能源和材料产品以及劳动力和服务。我们的方法解决了关于规模和指标的困惑:直接能源需求和直接火力需求适用于规模A;累积能量需求和累积火力需求适用于B级;能量在C级应用,即能值,而Exergy也可以在C级应用。在本研究中未检查最后一种选择。该系统的环境绩效使用许多可持续性指标进行了评估,以美国玉米秸秆中的乙醇为技术案例,包括资源消耗,投入可再生性,物理效益和系统效率。将结果与典型生物燃料替代品的可用文献值进行了比较。我们还基于贡献分析调查了方法选择对结果的影响,以及结果对能值强度的敏感性。结果表明,该技术系统不仅得到商业能源和材料产品的支持,而且还受到太阳辐射以及所投资的劳力和服务的支持。尽管生物乙醇技术体系的效率不如地球系统生产化石燃料的过程低,但它还是为能源/火用资源的整体供应做出了贡献。我们的结果表明,生物乙醇不能简单地视为可再生能源。此外,根据各种流量对贡献的排名,选择用于热力学分析的方法会产生不同的结果。因此,能源分析,火用分析和能值分析共同提供了生物燃料技术系统与能源有关的可持续性的全面指示。这种热力学分析可以为可持续性问题的决策提供理论支持。

著录项

  • 来源
    《Renewable energy》 |2011年第12期|p.3479-3487|共9页
  • 作者单位

    Institute of Environmental Sciences (CML), Faculty of Science, Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

    Institute of Environmental Sciences (CML), Faculty of Science, Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

    Institute of Environmental Sciences (CML), Faculty of Science, Leiden University, P.O. Box 9518, 2300 RA Leiden, The Netherlands;

  • 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

    bioethanol; corn stover; energy analysis; exergy analysis; emergy analysis;

    机译:生物乙醇;玉米秸秆;能值分析;能值分析;能值分析;
  • 入库时间 2022-08-18 00:26:36

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