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Systematic analysis of biomass derived fuels for fuel cells

机译:用于燃料电池的生物质衍生燃料的系统分析

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As the demand for energy continuously increases, alternatives to fossil resources must be found to both prevent fossil source depletion and decrease overall environmental impact. One solution is increasing contributions from renewable, biological feedstock, and from wastes. This paper presents an analysis of the current methods of biomass conversion, to extract biofuels and biologically produced gases to then be used in fuel cells. Pathways for converting biomass feedstock into fuel cell fuels selected here were anaerobic digestion, metabolic processing, fermentation, gasification, and supercritical water gasification, which were compared to natural gas and fossil hydrogen reference cases. These thermochemical and biological conversion pathways can also make use of residues from agriculture, forestry, or some household and industry wastes, producing hydrogen and hydrogen-rich gases. Solid oxide fuel cells were also found to be the preferred technology for such bio-derived fuel gases, due to their wide range of fuel options, wide scalability from single kW to multi 100 kW, and high efficiency.
机译:随着对能源的需求不断增加,必须找到化石资源的替代品,既可以防止化石资源枯竭,又可以减少总体环境影响。一种解决方案是增加可再生的生物原料和废物的贡献。本文介绍了当前生物质转化方法的分析,以提取生物燃料和生物产生的气体,然后用于燃料电池。这里选择的将生物质原料转化为燃料电池燃料的途径是厌氧消化,代谢加工,发酵,气化和超临界水气化,并与天然气和化石氢参考案例进行了比较。这些热化学和生物转化途径还可以利用农业,林业或一些家庭和工业废物中的残留物,产生氢气和富氢气体。固态氧化物燃料电池还因其广泛的燃料选择,从单千瓦到100千瓦的可扩展性以及高效率而被认为是此类生物衍生燃料气体的首选技术。

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