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Hydrogen production from biomass

机译:生物质制氢

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The 'hydrogen economy' has received considerable attention in academic, industrial and political contexts. There are opportunities for vast reductions in greenhouse gas emissions, increased energy security and greater overall efficiency. However, if hydrogen is to become a fundamental energy source for electrical power generation, as well as a transportation fuel, novel generation pathways will be necessary to meet the increase in demand. A promising means for generating hydrogen is the thermochemical conversion of biomass to a synthesis gas, composed of a mixture of hydrogen, carbon monoxide, carbon dioxide and methane. In order to manipulate the composition and maximise the hydrogen output, a calcium-based carbon dioxide sorbent can be utilised in situ. The removal of carbon dioxide alters the reaction chemistry to preferentially produce hydrogen. In this work we report on the characterisation of a likely Ca-based carbon dioxide sorbent and demonstrate the merits of hydrogen production from biomass, with in situ carbon dioxide capture, on the basis of a thermodynamic study. Using this model we show that hydrogen output from biomass gasification can be increased from 40%-vol to 80%-vol (dry basis) when a carbon dioxide sorbent is used.
机译:在学术,工业和政治背景下,“氢经济”已受到相当多的关注。有大量减少温室气体排放,提高能源安全性和提高整体效率的机会。但是,如果氢要成为发电的基本能源以及运输燃料,则需要新颖的发电途径来满足需求的增长。产生氢的有前途的方法是将生物质热化学转化为合成气,该合成气由氢,一氧化碳,二氧化碳和甲烷的混合物组成。为了操纵该组合物并使氢输出最大化,可以原位使用基于钙的二氧化碳吸附剂。二氧化碳的去除改变了反应化学以优先产生氢。在这项工作中,我们根据热力学研究报告了一种可能的基于Ca的二氧化碳吸附剂的特性,并证明了利用生物质生产氢气和原位捕获二氧化碳的优点。使用该模型,我们表明,当使用二氧化碳吸附剂时,生物质气化的氢气输出量可以从40%(体积)增加到80%(干基)。

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