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首页> 外文期刊>Catalysis Reviews. Science and Engineering >The State of the Art in Selective Catalytic Reduction of NOx by Ammonia Using Metal-Exchanged Zeolite Catalysts
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The State of the Art in Selective Catalytic Reduction of NOx by Ammonia Using Metal-Exchanged Zeolite Catalysts

机译:使用金属交换沸石催化剂的氨选择性催化还原NOx的技术发展

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摘要

An overview is given of the selective catalytic reduction of NOx by ammonia (NH3-SCR) over metal-exchanged zeolites. The review gives a comprehensive overview of NH3-SCR chemistry, including undesired side-reactions and aspects of the reaction mechanism over zeolites and the active sites involved. The review attempts to correlate catalyst activity and stability with the preparation method, the exchange metal, the exchange degree, and the zeolite topology. A comparison of Fe-ZSM-5 catalysts prepared by different methods and research groups shows that the preparation method is not a decisive factor in determining catalytic activity. It seems that decreased turnover frequency (TOF) is an oft-neglected effect of increasing Fe content, and this oversight may have led to the mistaken conclusion that certain production methods produce highly active catalysts. The available data indicate that both isolated and bridged iron species participate in the NH3-SCR reaction over Fe-ZSM-5, with isolated species being the most active.
机译:概述了在金属交换的沸石上用氨(NH3-SCR)选择性催化还原NOx的方法。审查提供了NH3-SCR化学的全面概述,包括不希望有的副反应以及与沸石和所涉及的活性部位有关的反应机理。该综述试图将催化剂的活性和稳定性与制备方法,交换金属,交换程度和沸石拓扑联系起来。通过不同方法和研究小组制备的Fe-ZSM-5催化剂的比较表明,制备方法不是决定催化活性的决定性因素。降低周转率(TOF)似乎是增加铁含量的一种经常被忽略的效果,这种疏忽可能导致一个错误的结论,即某些生产方法会产生高活性催化剂。现有数据表明,分离的铁原子和桥接的铁原子都参与Fe-ZSM-5上的NH3-SCR反应,其中分离的原子是最活跃的。

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