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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Green methanol synthesis process from carbon dioxide via reverse water gas shift reaction in a membrane reactor
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Green methanol synthesis process from carbon dioxide via reverse water gas shift reaction in a membrane reactor

机译:通过反相膜反应器中通过反向水气体换热反应的绿甲醇合成方法

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In the present work, carbon dioxide hydrogenation to methanol via reverse water gas shift reaction (CAMERE) in an industrial scale was modeled and optimized. In this process, syn-gas is first produced by CO2 hydrogenation through reverse water gas shift (RWGS) reaction over Ni/Al12O19 catalyst and next the syngas is conveyed to a reactor as the feedstock to produce methanol. The inner tubes of methanol synthesis reactor were coated by a water perm-selective membrane for removal of H2O, as the cause of catalyst poisoning. A precise two-dimensional model solved by finite-difference procedure was employed to evaluate both RWGS and methanol synthesis membrane reactors performance. Also, the operating conditions of the RWGS reactor were optimized by differential evolution (DE) technique to gain a maximum methanol production rate. Moreover, the results of the methanol production reactor from the CAMERE process were compared with the conventional route (CR) in which methanol is produced from coal and natural gas. In the case of methanol synthesis membrane reactor, CAMERE process was superior to CR due to achieving 20.8% increase in methanol production rate. The results of this process modeling provide a good initial insight for green methanol production form indirect CO2 conversion. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在本作工作中,通过反向水气体移位(CAMERE)在工业规模中对甲醇的二氧化碳氢化进行建模和优化。在该方法中,首先通过CO 2氢化通过逆水气体移位(RWGS)反应在Ni / Al12O19催化剂上反应,然后将合成气作为原料输送到反应器中以产生甲醇的反应器。通过水渗透选择性膜涂覆甲醇合成反应器的内管,用于除去H2O,作为催化剂中毒的原因。采用通过有限差异方法解决的精确二维模型来评估RWG和甲醇合成膜反应器的性能。而且,通过差分进化(DE)技术优化了RWGS反应器的操作条件,以获得最大的甲醇生产速率。此外,将甲醇生产反应器与甲醇生产反应器的结果与甲醇由煤和天然气产生的常规途径进行比较。在甲醇合成膜反应器的情况下,由于达到20.8%的甲醇生产速率增加,Camere方法优于CR。该过程建模的结果为绿甲醇生产形式间接二氧化碳转化提供了良好的初步洞察力。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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