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气态有机硫去除催化剂。

Catalysts for gaseous organic sulfur removal.

作者信息

Xie Yuxuan, Bao Jiacheng, Song Xin, Sun Xin, Ning Ping, Wang Chi, Wang Fei, Ma Yixing, Fan Maohong, Li Kai

机构信息

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming 650500, PR China.

Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming 650500, PR China.

出版信息

J Hazard Mater. 2023 Jan 15;442:130029. doi: 10.1016/j.jhazmat.2022.130029. Epub 2022 Sep 19.

Abstract

Organic sulfur gases (COS, CS and CHSH) are widely present in reducing industrial off-gases, and these substances pose difficulties for the recovery of carbon monoxide and other gases. The reaction pathways and reaction mechanisms of organic sulfur on different catalyst surfaces have yet to be fully summarized. The literature shows that many factors, such as catalyst synthesis method, loaded metal composition, number of surface hydroxyl groups, number of acid-base sites and methods of surface modification, have important effects on the catalytic performance of metal catalysts. Therefore, this paper presents a comprehensive review of the research on the application of catalysts such as zeolites, metal oxides, carbon-based materials, and hydrotalcite-like derivatives in the field of organic sulfur removal. Future research prospects are summarized, more in situ characterization experiments and theoretical calculations are needed for the catalytic decomposition of methanethiol to analyze the coke generation pathways at the microscopic level, while the simultaneous removal of multiple organic sulfur gases needs to be focused on. Based on previous catalyst research, we propose possible innovations in catalyst design, desulfurization technology and organic sulfur resource utilization technology.

摘要

有机硫气体(COS、CS和CHSH)广泛存在于还原性工业废气中,这些物质给一氧化碳及其他气体的回收带来困难。有机硫在不同催化剂表面的反应路径和反应机理尚未得到充分总结。文献表明,许多因素,如催化剂合成方法、负载金属组成、表面羟基数量、酸碱位点数量以及表面改性方法等,对金属催化剂的催化性能都有重要影响。因此,本文对沸石、金属氧化物、碳基材料和类水滑石衍生物等催化剂在有机硫脱除领域的应用研究进行了全面综述。总结了未来的研究前景,甲烷硫醇催化分解需要更多原位表征实验和理论计算来从微观层面分析焦炭生成途径,同时需要关注多种有机硫气体的同时脱除。基于以往的催化剂研究,我们提出了催化剂设计、脱硫技术和有机硫资源利用技术方面可能的创新点。

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