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在水泥窑中安装的选择性催化反应催化剂的失活和改性的综合评述。

A comprehensive review of deactivation and modification of selective catalytic reaction catalysts installed in cement kilns.

机构信息

School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing China.

School of Energy and Environmental Engineering, University of Science and Technology Beijing, Beijing China; State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing, China.

出版信息

J Environ Sci (China). 2025 Feb;148:451-467. doi: 10.1016/j.jes.2023.08.018. Epub 2023 Aug 25.

Abstract

After the ultralow emission transformation of coal-fired power plants, cement production became China's leading industrial emission source of nitrogen oxides. Flue gas dust contents at the outlet of cement kiln preheaters were as high as 80-100 g/m, and the calcium oxide content in the dust exceeded 60%. Commercial VO(-WO)/TiO catalysts suitable for coal-fired flue gas suffer from alkaline earth metal Ca poisoning of cement kiln flue gas. Recent studies have also identified the poisoning of cement kiln selective catalytic reaction (SCR) catalysts by the heavy metals lead and thallium. Investigation of the poisoning process is the primary basis for analyzing the catalytic lifetime. This review summarizes and analyzes the SCR catalytic mechanism and chronicles the research progress concerning this poisoning mechanism. Based on the catalytic and toxification mechanisms, it can be inferred that improving the anti-poisoning performance of a catalyst enhances its acidity, surface redox performance-active catalytic sites, and shell layer protection. The data provide support in guiding engineering practice and reducing operating costs of SCR plants. Finally, future research directions for SCR denitrification catalysts in the cement industry are discussed. This study provides critical support for the development and optimization of poisoning-resistant SCR denitrification catalysts.

摘要

燃煤电厂实现超低排放改造后,水泥生产成为中国工业氮氧化物排放的首要来源。水泥窑预热器出口处的烟气含尘量高达 80-100g/m,其中粉尘中的氧化钙含量超过 60%。适用于燃煤烟气的商用 VO(-WO)/TiO2 催化剂会受到水泥窑烟气中碱性金属 Ca 的毒害。最近的研究还发现,水泥窑选择性催化还原(SCR)催化剂会受到重金属铅和铊的毒害。对中毒过程的研究是分析催化寿命的主要依据。本文综述和分析了 SCR 催化机理,并记录了该中毒机理的研究进展。基于催化和中毒机理,可以推断出提高催化剂的抗中毒性能可以增强其酸度、表面氧化还原性能-活性催化位和外壳层保护。这些数据为指导工程实践和降低 SCR 工厂的运行成本提供了支持。最后,讨论了水泥工业中 SCR 脱硝催化剂的未来研究方向。本研究为开发和优化耐中毒 SCR 脱硝催化剂提供了重要支持。

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