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甲烷光催化氧化制甲醇的最新进展

Recent Advances in Photocatalytic Oxidation of Methane to Methanol.

作者信息

Yuniar Gita, Saputera Wibawa Hendra, Sasongko Dwiwahju, Mukti Rino R, Rizkiana Jenny, Devianto Hary

机构信息

Research Group on Energy and Chemical Engineering Processing System, Department of Chemical Engineering, Faculty of Industrial Technology, Institut Teknologi Bandung, Jl. Ganesha No. 10, Bandung 40132, Indonesia.

Center for Catalysis and Reaction Engineering, Institut Teknologi Bandung, Jl. Ganesha No. 10, Bandung 40132, Indonesia.

出版信息

Molecules. 2022 Aug 26;27(17):5496. doi: 10.3390/molecules27175496.

Abstract

Methane is one of the promising alternatives to non-renewable petroleum resources since it can be transformed into added-value hydrocarbon feedstocks through suitable reactions. The conversion of methane to methanol with a higher chemical value has recently attracted much attention. The selective oxidation of methane to methanol is often considered a "holy grail" reaction in catalysis. However, methanol production through the thermal catalytic process is thermodynamically and economically unfavorable due to its high energy consumption, low catalyst stability, and complex reactor maintenance. Photocatalytic technology offers great potential to carry out unfavorable reactions under mild conditions. Many in-depth studies have been carried out on the photocatalytic conversion of methane to methanol. This review will comprehensively provide recent progress in the photocatalytic oxidation of methane to methanol based on materials and engineering perspectives. Several aspects are considered, such as the type of semiconductor-based photocatalyst (tungsten, titania, zinc, etc.), structure modification of photocatalyst (doping, heterojunction, surface modification, crystal facet re-arrangement, and electron scavenger), factors affecting the reaction process (physiochemical characteristic of photocatalyst, operational condition, and reactor configuration), and briefly proposed reaction mechanism. Analysis of existing challenges and recommendations for the future development of photocatalytic technology for methane to methanol conversion is also highlighted.

摘要

甲烷是不可再生石油资源的有前景的替代物之一,因为它可以通过适当的反应转化为具有附加值的烃类原料。将甲烷转化为具有更高化学价值的甲醇最近备受关注。甲烷选择性氧化制甲醇通常被认为是催化领域的“圣杯”反应。然而,通过热催化过程生产甲醇在热力学和经济上都不利,因为其能耗高、催化剂稳定性低且反应器维护复杂。光催化技术为在温和条件下进行不利反应提供了巨大潜力。关于甲烷光催化转化为甲醇已经进行了许多深入研究。本综述将从材料和工程角度全面介绍甲烷光催化氧化制甲醇的最新进展。考虑了几个方面,如基于半导体的光催化剂类型(钨、二氧化钛、锌等)、光催化剂的结构改性(掺杂、异质结、表面改性、晶面重排和电子捕获剂)、影响反应过程的因素(光催化剂的物理化学特性、操作条件和反应器配置),并简要提出了反应机理。还强调了现有挑战的分析以及对甲烷光催化转化为甲醇的光催化技术未来发展的建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67e9/9457830/cbcd8a78670a/molecules-27-05496-g001.jpg

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