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Hydrogen production by biomass gasification in supercritical water: A parametric study

机译:超临界水中生物质气化制氢的参数研究

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Hydrogen production by biomass gasification in supercritical water is a promising technology for utilizing high moisture content biomass, but reactor plugging is a critical problem when feedstocks with high biomass content are gasified. The objective of this paper is to prevent the plugging problem by studying the effects of the various parameters on biomass gasification in supercritical water. These parameters include pressure, temperature, residence time, reactor geometrical configuration, reactor types, heating rate, reactor wall properties, biomass types, biomass particle size, catalysts and solution concentration. Biomass model compounds (glucose, cellulose) and real biomass are used in this work. All the biomasses have been successfully gasified and the product gas is composed of hydrogen, carbon dioxide, methane, carbon monoxide and a small amount of ethane and ethylene. The results show that the gas yield of biomass gasification in supercritical water is sensitive to some of the parameters and the ways of reducing reactor plugging are obtained.
机译:在超临界水中通过生物质气化生产氢气是一种利用高水分含量生物质的有前途的技术,但是当将生物质含量高的原料气化时,反应器堵塞是一个关键问题。本文的目的是通过研究各种参数对超临界水中生物质气化的影响来防止堵塞问题。这些参数包括压力,温度,停留时间,反应器几何构型,反应器类型,加热速率,反应器壁性能,生物质类型,生物质粒径,催化剂和溶液浓度。在这项工作中使用了生物质模型化合物(葡萄糖,纤维素)和实际生物质。所有生物质均已成功气化,产物气体由氢气,二氧化碳,甲烷,一氧化碳以及少量的乙烷和乙烯组成。结果表明,超临界水中生物质气化的产气量对某些参数敏感,并找到了减少反应堆堵塞的方法。

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