Department of Applied Chemistry, School of Engineering, University of Toyama, Gofuku 3190, Toyama, 930-8555, Japan.
Key laboratory of Biofuels, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266101, P. R. China.
Chem Soc Rev. 2022 Jul 4;51(13):5606-5659. doi: 10.1039/d0cs01003k.
Ethanol, as one of the important bulk chemicals, is widely used in modern society. It can be produced by fermentation of sugar, petroleum refining, or conversion of syngas (CO/H). Among these approaches, conversion of syngas to ethanol (STE) is the most environmentally friendly and economical process. Although considerable progress has been made in STE conversion, control of CO activation and C-C growth remains a great challenge. This review highlights recent advances in the routes and catalysts employed in STE technology. The catalyst designs and pathway designs are summarized and analysed for the direct and indirect STE routes, respectively. In the direct STE routes (, one-step synthesis of ethanol from syngas), modified catalysts of methanol synthesis, modified catalysts of Fischer-Tropsch synthesis, Mo-based catalysts, noble metal catalysts and multifunctional catalysts are systematically reviewed based on their catalyst designs. Further, in the indirect STE routes (, multi-step processes for ethanol synthesis from syngas methanol/dimethyl ether as intermediates), carbonylation of methanol/dimethyl ether followed by hydrogenation, and coupling of methanol with CO to form dimethyl oxalate followed by hydrogenation, are outlined according to their pathway designs. The goal of this review is to provide a comprehensive perspective on STE technology and inspire the invention of new catalysts and pathway designs in the near future.
乙醇作为一种重要的大宗化学品,广泛应用于现代社会。它可以通过糖发酵、石油炼制或合成气(CO/H )转化来生产。在这些方法中,合成气制乙醇(STE)是最环保和经济的工艺。尽管 STE 转化已经取得了相当大的进展,但 CO 活化和 C-C 增长的控制仍然是一个巨大的挑战。本综述重点介绍了 STE 技术中所采用的路线和催化剂的最新进展。分别对直接 STE 路线(即从合成气一步合成乙醇)和间接 STE 路线(即通过甲醇/二甲醚等中间体多步合成乙醇)的催化剂设计和路径设计进行了总结和分析。在直接 STE 路线(即从合成气一步合成乙醇)中,系统地综述了甲醇合成改性催化剂、费托合成改性催化剂、Mo 基催化剂、贵金属催化剂和多功能催化剂的催化剂设计。进一步地,在间接 STE 路线(即通过甲醇/二甲醚等中间体多步合成乙醇)中,根据其路径设计,概述了甲醇/二甲醚的羰基化加氢和甲醇与 CO 的偶联生成草酸二甲酯加氢。本综述的目的是提供对 STE 技术的全面了解,并激发未来新催化剂和路径设计的发明。