Another Critical Look at Three-Phase Catalysis

X. Ni
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Abstract

Abstract Three-phase catalysis, for example, hydrogenation, is a special branch of chemical reactions involving a hydrogen reactant (gas) and a solvent (liquid) in the presence of a metal porous catalyst (solid) to produce a liquid product. Currently, many reactors are being used for three-phase catalysis from packed bed to slurry vessel; the uniqueness for this type of reaction in countless processes is the requirement of transferring gas into liquid, as yet there is not a unified system of quantifying and comparing reactor performances. This article reviews current methodologies in carrying out such heterogeneous catalysis in different reactors and focuses on how to enhance reactor performance from gas transfer perspectives. This article also suggests that the mass transfer rate over energy dissipation may represent a fairer method for comparison of reactor performance accounting for different types/designs of reactors and catalyst structures as well as operating conditions.
三相催化的另一个关键观点
三相催化,如加氢,是化学反应的一个特殊分支,涉及氢反应物(气体)和溶剂(液体)在金属多孔催化剂(固体)的存在下产生液体产物。目前,许多反应器用于从填料床到料浆容器的三相催化;这类反应在无数过程中的独特之处在于需要将气体转化为液体,目前还没有一个统一的系统来量化和比较反应器的性能。本文综述了目前在不同反应器中进行这种多相催化的方法,并着重从气体传递的角度介绍了如何提高反应器的性能。本文还提出,考虑到不同类型/设计的反应器和催化剂结构以及操作条件,传质率除以能量耗散可能是比较反应器性能的一种更公平的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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24
审稿时长
15 weeks
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