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Decentralized generation of electricity from biomass with proton exchange membrane fuel cell

机译:质子交换膜燃料电池从生物质中分散发电

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摘要

Biomass can be applied as the primary source for the production of hydrogen in the future. The biomass is converted in an atmospheric fluidized bed gasification process using steam as the gasifying agent. The producer gas needs further cleaning and processing before the hydrogen can be converted in a fuel cell; it is assumed that the gas cleaning processes are able to meet the requirements for a PEM-FC. The compressed hydrogen is supplied to a hydrogen grid and can be used in small-scale decentralized CHP units. In this study it is assumed that the CHP units are based on low temperature PEM fuel cells. For the evaluation of alternative technologies the whole chain of centralized hydrogen production from biomass up to and including decentralized electricity production in PEM fuel cells is considered.rnTwo models for the production of hydrogen from biomass and three models for the combined production of electricity and heat with PEM fuel cells are built using the computer program Cycle-Tempo. Two different levels of hydrogen purity are considered in this evaluation: 60% and 99.99% pure hydrogen. The purity of the hydrogen affects both the efficiencies of the hydrogen production as well as the PEM-FC systems. The electrical exergy efficiency of the PEM-FC system without additional heat production is calculated to be 27.66% in the case of 60% hydrogen and 29.06% in the case of 99.99% pure hydrogen. The electrical exergy efficiencies of the whole conversion chain appear to be 21.68% and 18.74%, respectively. The high losses during purification of the hydrogen gas result in a higher efficiency for the case with low purity hydrogen. The removal of the last impurities strongly increases the overall exergy losses of the conversion chain.
机译:将来,生物质可以用作制氢的主要来源。使用蒸汽作为气化剂,在大气流化床气化过程中将生物质转化。在将氢气转化为燃料电池之前,需要对生产气进行进一步的清洁和处理。假定气体净化过程能够满足PEM-FC的要求。压缩后的氢气被供应到氢气格栅,并可用于小型分散式CHP装置。在这项研究中,假设CHP装置基于低温PEM燃料电池。为了评估替代技术,需要考虑从PEM燃料电池中从生物质到分散发电的整个集中式氢气生产的整个链。rn有两个用于从生物质生产氢气的模型和三个用于电热联产的模型使用计算机程序Cycle-Tempo构建PEM燃料电池。在此评估中考虑了两个不同级别的氢气纯度:60%和99.99%的纯氢气。氢气的纯度会影响氢气生产效率以及PEM-FC系统。计算得出,在不产生额外热量的情况下,PEM-FC系统的电力效率为:氢气为60%时为27.66%,纯氢为99.99%时为29.06%。整个转化链的电效率分别为21.68%和18.74%。在氢气纯度低的情况下,氢气净化过程中的高损失导致更高的效率。除去最后的杂质极大地增加了转化链的总火用损失。

著录项

  • 来源
    《Journal of power sources》 |2009年第1期|456-466|共11页
  • 作者单位

    Delft University of Technology, Faculty of Mechanical. Marine and Material Engineering, Process and Energy Department, Section Energy Technology, Leeghwaterstraat 44,2628 CA Delft, The Netherlands;

    Delft University of Technology, Faculty of Mechanical. Marine and Material Engineering, Process and Energy Department, Section Energy Technology, Leeghwaterstraat 44,2628 CA Delft, The Netherlands;

    Delft University of Technology, Faculty of Mechanical. Marine and Material Engineering, Process and Energy Department, Section Energy Technology, Leeghwaterstraat 44,2628 CA Delft, The Netherlands;

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

    biomass gasification; PEM fuel cell; exergy analysis; decentralized power production;

    机译:生物质气化;PEM燃料电池;火用分析;分散发电;

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