School of Mechanical and Automotive Engineering, Guangxi University of Science and Technology, Liuzhou, 545006, China.
Institute of the New Energy and Energy-Saving & Emission-Reduction, Guangxi University of Science and Technology, Liuzhou, 545006, China.
Environ Sci Pollut Res Int. 2024 Feb;31(10):14424-14465. doi: 10.1007/s11356-024-32113-7. Epub 2024 Jan 31.
With the increasingly stringent control of NO emissions, NH-SCR, one of the most effective de-NO technologies for removing NO, has been widely employed to eliminate NO from automobile exhaust and industrial production. Researchers have favored iron-based catalysts for their low cost, high activity, and excellent de-NO performance. This paper takes a new perspective to review the research progress of iron-based catalysts. The influence of the chemical form of single iron-based catalysts on their performance was investigated. In the section on composite iron-based catalysts, detailed reviews were conducted on the effects of synergistic interactions between iron and other elements on catalytic performance. Regarding loaded iron-based catalysts, the catalytic performance of iron-based catalysts on different carriers was systematically examined. In the section on iron-based catalysts with novel structures, the effects of the morphology and crystallinity of nanomaterials on catalytic performance were analyzed. Additionally, the reaction mechanism and poisoning mechanism of iron-based catalysts were elucidated. In conclusion, the paper delved into the prospects and future directions of iron-based catalysts, aiming to provide ideas for the development of iron-based catalysts with better application prospects. The comprehensive review underscores the significance of iron-based catalysts in the realm of de-NO technologies, shedding light on their diverse forms and applications. The hope is that this paper will serve as a valuable resource, guiding future endeavors in the development of advanced iron-based catalysts.
随着对 NO 排放的控制日益严格,NH-SCR 作为一种最有效的去除 NO 的脱氮技术之一,已被广泛应用于汽车尾气和工业生产中去除 NO。由于成本低、活性高、脱氮性能优异,研究人员青睐铁基催化剂。本文从新的角度综述了铁基催化剂的研究进展。探讨了单一铁基催化剂的化学形态对其性能的影响。在复合铁基催化剂部分,详细综述了铁与其他元素之间的协同作用对催化性能的影响。对于负载型铁基催化剂,系统研究了不同载体上铁基催化剂的催化性能。在具有新颖结构的铁基催化剂部分,分析了纳米材料的形态和结晶度对催化性能的影响。此外,还阐述了铁基催化剂的反应机理和中毒机理。结论部分探讨了铁基催化剂的前景和未来发展方向,以期为开发具有更好应用前景的铁基催化剂提供思路。本综述强调了铁基催化剂在脱氮技术领域的重要性,展示了其多样化的形式和应用。希望本文能成为有价值的资源,指导未来先进铁基催化剂的开发工作。