Zhong Jiawei, Yang Xiaofeng, Wu Zhilian, Liang Binglian, Huang Yanqiang, Zhang Tao
CAS Key Laboratory of Science and Technology on Applied Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.
Chem Soc Rev. 2020 Mar 7;49(5):1385-1413. doi: 10.1039/c9cs00614a. Epub 2020 Feb 18.
The ever-increasing amount of anthropogenic carbon dioxide (CO) emissions has resulted in great environmental impacts. The selective hydrogenation of CO to methanol, the first target in the liquid sunshine vision, not only effectively mitigates the CO emissions, but also produces value-added chemicals and fuels. This critical review provides a comprehensive view of the significant advances in heterogeneous catalysis for methanol synthesis through direct hydrogenation of CO. The challenges in thermodynamics are addressed first. Then the progress in conventional Cu-based catalysts is discussed in detail, with an emphasis on the structural, chemical, and electronic promotions of supports and promoters, the preparation methods and precursors of Cu-based catalysts, as well as the proposed models for active sites. We also provide an overview of the progress in noble metal-based catalysts, bimetallic catalysts including alloys and intermetallic compounds, as well as hybrid oxides and other novel catalytic systems. The developments in mechanistic aspects, reaction conditions and optimization, as well as reactor designs and innovations are also included. The advances in industrial applications for methanol synthesis are further highlighted. Finally, a summary and outlook are provided.
人为二氧化碳(CO)排放量的不断增加已造成了巨大的环境影响。将CO选择性加氢制甲醇作为“液态阳光”愿景中的首要目标,不仅能有效减少CO排放,还能生产高附加值的化学品和燃料。本综述全面介绍了通过CO直接加氢合成甲醇的多相催化领域的重大进展。首先阐述了热力学方面的挑战。然后详细讨论了传统铜基催化剂的研究进展,重点介绍了载体和助剂的结构、化学及电子促进作用、铜基催化剂的制备方法和前驱体,以及所提出的活性位点模型。我们还概述了贵金属基催化剂、包括合金和金属间化合物的双金属催化剂,以及混合氧化物和其他新型催化体系的研究进展。同时也涵盖了机理方面、反应条件及优化,以及反应器设计与创新等方面的进展。进一步强调了甲醇合成工业应用方面的进展。最后给出了总结与展望。