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基于沸石的催化剂在合成气转化中的串联反应

Tandem Reactions over Zeolite-Based Catalysts in Syngas Conversion.

作者信息

Amoo Cederick Cyril, Xing Chuang, Tsubaki Noritatsu, Sun Jian

机构信息

Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

ACS Cent Sci. 2022 Aug 24;8(8):1047-1062. doi: 10.1021/acscentsci.2c00434. Epub 2022 May 18.

Abstract

Syngas conversion can play a vital role in providing energy and chemical supplies while meeting environmental requirements as the world gradually shifts toward a net-zero. While prospects of this process cannot be doubted, there is a lingering challenge in distinct product selectivity over the bulk transitional metal catalysts. To advance research in this respect, composite catalysts comprising traditional metal catalysts and zeolites have been deployed to distinct product selectivity while suppressing side reactions. Zeolites are common but highly efficient materials used in the chemical industry for hydroprocessing. Combining the advantages of zeolites and some transition metal catalysts has promoted the catalytic production of various hydrocarbons (e.g., light olefins, aromatics, and liquid fuels) and oxygenates (e.g., methanol, dimethyl ether, formic acid, and higher alcohols) from syngas. In this outlook, a thorough revelation on recent progress in syngas conversion to various products over metal-zeolite composite catalysts is validated. The strategies adopted to couple the metal species and zeolite material into a composite as well as the consequential morphologies for specific product selectivity are highlighted. The key zeolite descriptors that influence catalytic performance, such as framework topologies, proximity and confinement effects, acidities and cations, pore systems, and particle sizes are discussed to provide a deep understanding of the significance of zeolites in syngas conversion. Finally, an outlook regarding challenges and opportunities for syngas conversion using zeolite-based catalysts to meet emerging energy and environmental demands is also presented.

摘要

随着世界逐渐向净零排放转变,合成气转化在满足环境要求的同时,为能源和化学品供应发挥着至关重要的作用。虽然这一过程的前景不容置疑,但在使用大量过渡金属催化剂时,产品选择性方面仍存在长期挑战。为了推动这方面的研究,已采用由传统金属催化剂和沸石组成的复合催化剂来实现不同的产品选择性,同时抑制副反应。沸石是化学工业中用于加氢处理的常见但高效的材料。结合沸石和一些过渡金属催化剂的优点,促进了由合成气催化生产各种碳氢化合物(如轻质烯烃、芳烃和液体燃料)和含氧化合物(如甲醇、二甲醚、甲酸和高级醇)。在这一展望中,验证了对金属 - 沸石复合催化剂上合成气转化为各种产品的最新进展的全面揭示。强调了将金属物种和沸石材料结合成复合材料所采用的策略以及特定产品选择性的相应形态。讨论了影响催化性能的关键沸石描述符,如骨架拓扑结构、邻近和限域效应、酸度和阳离子、孔系统以及粒径,以深入理解沸石在合成气转化中的重要性。最后,还展望了使用沸石基催化剂进行合成气转化以满足新出现的能源和环境需求所面临的挑战和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d759/9413433/28bfb8a3b0cd/oc2c00434_0007.jpg

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