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Progress in the direct catalytic conversion of methane to fuels and chemicals

机译:甲烷直接催化转化为燃料和化学品的研究进展

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This paper reviews the state-of-the-art in catalytic processes to convert methane (a major component of natural gas) to more valuable hydrocarbons as fuels or chemicals. The scope is restricted to "direct" conversion, meaning that processes involving synthesis gas as an intermediate are not considered. Oxygenated products (e.g., alcohols) are also not considered. In all cases, the processes are concerned with catalytic dehydrogenation. The two most widely studied processes are oxidative coupling of methane (OCM) and methane dehydroaromatization (MDA). After reviewing the relevant catalysis literature, the paper goes on to review reactor implementations. Hydrogen- and/or oxygen-permeable membranes can potentially play valuable roles in improving methane conversion and product yields. Despite over 30 years of research, there are still no direct-conversion processes that can compete commercially with methane reforming followed by processes such as Fischer-Tropsch synthesis. Thus, the future practical development and deployment of OCM and MDA will rely on the research and development of advanced catalysts and innovative processes. The present review helps to document the foundation on which the needed development can build. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文概述了将甲烷(天然气的主要成分)转化为更有价值的碳氢化合物作为燃料或化学物质的催化工艺的最新发展。该范围限于“直接”转化,这意味着不考虑以合成气为中间体的工艺。也没有考虑含氧产品(例如酒精)。在所有情况下,该方法都涉及催化脱氢。研究最广泛的两个过程是甲烷的氧化偶联(OCM)和甲烷脱氢芳构化(MDA)。在回顾了相关的催化文献之后,本文继续回顾了反应器的实施。氢和/或氧可渗透膜可能在提高甲烷转化率和产物收率方面起重要作用。尽管进行了30多年的研究,但尚无直接转化工艺可与甲烷重整在商业上竞争,随后再进行费托合成等工艺。因此,OCM和MDA的未来实际开发和部署将依赖于先进催化剂和创新工艺的研究与开发。本评论有助于记录所需的开发基础。 (C)2016 Elsevier Ltd.保留所有权利。

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