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Thermodynamic evaluation of biomass-to-biofuels production systems

机译:生物质转化为生物燃料生产系统的热力学评估

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摘要

Biomass is a renewable feedstock for producing modern energy carriers. However, the usage of biomass is accompanied by possible drawbacks, mainly due to limitation of land and water, and competition with food production. In this paper, the analysis concerns so-called second generation biofuels, like Fischer -Tropsch fuels or Substitute Natural Gas which are produced either from wood or from waste biomass. For these biofuels the most promising conversion case is the one which involves production of syngas from biomass gasification, followed by synthesis of biofuels. The thermodynamic efficiency of biofuels production is analyzed and compared using both the direct exergy analysis and the thermo-ecological cost. This analysis leads to the detection of exergy losses in various elements which forms the starting point to the improvement of conversion efficiency. The efficiency of biomass conversion to biofuels is also evaluated for the whole production chain, including biomass cultivation, transportation and conversion. The global effects of natural resources management are investigated using the thermo-ecological cost. The energy carriers' utilities such as electricity and heat are externally generated either from fossil fuels or from renewable biomass. In the former case the production of biofuels not always can be considered as a renewable energy source whereas in the latter case the production of biofuels leads always to the reduction of depletion of non-renewable resources.
机译:生物质是用于生产现代能源载体的可再生原料。然而,生物质的使用伴随着可能的缺点,主要是由于土地和水的限制以及与粮食生产的竞争。在本文中,分析涉及所谓的第二代生物燃料,例如费托燃料或代用天然气,它们是由木材或废物生物质生产的。对于这些生物燃料,最有前途的转化案例是涉及从生物质气化生产合成气,然后合成生物燃料的案例。使用直接火用分析和热生态成本对生物燃料生产的热力学效率进行了分析和比较。该分析导致检测到各种元素的火用损失,这是提高转化效率的起点。还评估了整个生产链的生物质转化为生物燃料的效率,包括生物质的种植,运输和转化。使用热生态成本研究了自然资源管理的全球影响。能源载体的电力和热能是由化石燃料或可再生生物质从外部产生的。在前一种情况下,生物燃料的生产并不总是可以被视为可再生能源,而在后一种情况下,生物燃料的生产总是可以减少不可再生资源的消耗。

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  • 来源
    《Energy》 |2013年第1期|95-104|共10页
  • 作者单位

    Silesian University of Technology. Institute of Thermal Technology, Konarskiego 22, 44-100 Cliwice, Poland;

    Silesian University of Technology. Institute of Thermal Technology, Konarskiego 22, 44-100 Cliwice, Poland;

    Eindhoven University of Technology, Department of Chemical Engineering, PO Box 513, 5600 MB Eindhoven, The Netherlands;

    Silesian University of Technology. Institute of Thermal Technology, Konarskiego 22, 44-100 Cliwice, Poland;

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

    Biomass; Gasification; Biofuels; Exergy; Thermo-ecological cost;

    机译:生物质气化;生物燃料;火用;热生态成本;

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