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Membrane gas permeation in the upgrading of renewable hydrogen from biomass steam gasification gases

机译:膜气渗透促进生物质蒸汽气化气中可再生氢的提质

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Combination of the biomass steam gasification and the membrane gas permeation is a potential process for the production of renewable hydrogen. This work first briefly reviews possible membrane materials for the hydrogen enrichment from biomass gasification producer gas mixtures. Subsequently, two permeator arrangements, a single stage and a two-stage with sweep, are evaluated through numerical modeling. The evaluation discusses the most essential upgrading parameters: achievable hydrogen purity, hydrogen recovery and energy requirement in the upgrading. It is shown that the two-stage arrangement using membranes with H_2/CO_2-selectivity of 9 allows production of hydrogen fuel with the hydrogen content of 98% in volume (v/v) and the hydrogen recovery of around 75%. Further improvement of the membrane H_2/CO_2-selectivity is necessary to enhance the process sustainability and economics.
机译:生物质蒸汽气化和膜气体渗透的结合是生产可再生氢的潜在方法。这项工作首先简要回顾了用于从生物质气化生产气体混合物中富氢的可能的膜材料。随后,通过数值模型评估了两个渗透器布置,即单级和带扫掠的两级。评估讨论了最重要的升级参数:升级中可达到的氢气纯度,氢气回收率和能量需求。结果表明,使用具有H_2 / CO_2选择性为9的膜的两阶段布置可以生产氢含量为98%(体积/体积),氢回收率为75%左右的氢燃料。膜H_2 / CO_2-选择性的进一步改善对于增强工艺的可持续性和经济性是必要的。

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