农业废弃物热解降解制氢研究

A. Demirbaş
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引用次数: 18

摘要

氢气主要作为可再生能源的储存和运输媒介,将在未来的能源经济中发挥重要作用。热化学转化过程,如热解、蒸汽气化和木质纤维素材料的脱碳,与传统的制氢方法相比,在成本上具有竞争力。氢是通过热解从农业残留物中产生的。na2co3作为碱对热解的影响取决于农用残渣的样品种类和结构组成。热解总体积和产气量随温度的升高而增大。在较低温度下,半纤维素的产氢率高于纤维素或木质素,而在较高温度下,木质素的产氢率高于半纤维素或纤维素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogen Production via Pyrolytic Degradation of Agricultural Residues
Hydrogen will play an important role in the future energy economy mainly as a storage and transportation medium for renewable energy sources. Thermochemical conversion processes such as pyrolysis, steam gasification and decarbonization of lignocellulosic materials have the potential to be cost competitive with conventional means of producing hydrogen. Hydrogen is produced from agricultural residues by pyrolysis. The effect of Na 2 CO 3 as an alkali on pyrolysis depends on the residue sample species and structural composition of the agricultural residue. The total volume and the yield of gas from the pyrolysis increase with increasing temperature. The yield of hydrogen from hemicelluloses is higher than that of cellulose or lignin at lower temperatures while the yield of hydrogen from lignin is higher than that of hemicelluloses or cellulose at higher temperatures.
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