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Cu- and Fe-speciation in a composite zeolite catalyst for selective catalytic reduction of NOx: insights from operando XAS

机译:铜-和Fe-speciation复合沸石选择性催化还原的催化剂氮氧化物:见解从operando xa

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摘要

Cu-SAPO-34 (Cu-CZC) and Fe-mordenite (Fe-MOR) and their mechanical mixture (50 : 50) have been exhaustively investigated by means of operando X-ray absorption spectroscopy under NH3-SCR conditions. Fe K-edge XANES and EXAFS analysis revealed similar Fe-speciation in both the pure Fe-MOR catalyst and the mechanical mixture after high-temperature pretreatment and under reaction conditions. In contrast, analysis of the Cu K-edge dataset unveiled different trends in temperature-driven Cu-speciation in the pure Cu-CZC and mechanical mixture under standard NH3-SCR conditions. This difference is more evident in a low-temperature range. The presence of the Fe-MOR component in the mixed catalyst can result in the increase of NH3 and NO concentration in the proximity of Cu-sites at a low temperature regime, which facilitates temperature-driven migration of NH3-solvated mobile di-amino complexes from Cu-CZC to the MOR framework. This decreases the density of mobile Cu-I complexes in the entire system and results in the higher reducibility of Cu in the mixed catalyst. The obtained results help in understanding the precise speciation of the active sites in such composite catalysts and thus provide future guidance on design of such systems.
机译:Cu-SAPO-34 (Cu-CZC)和Fe-mordenite (Fe-MOR)和他们的机械混合物(50:50)operando的详尽调查手段在NH3-SCR x光吸收光谱条件。显示类似Fe-speciation纯Fe-MOR催化剂后的机械混合物高温预处理和反应条件。K-edge数据集展示了不同的趋势temperature-driven Cu-speciation纯Cu-CZC和机械混合物的标准NH3-SCR条件。明显在低温范围内。Fe-MOR组件的混合催化剂导致NH3的增加也没有在接近Cu-sites的浓度低温政权,便利temperature-driven NH3-solvated迁移移动从Cu-CZC di-amino复合物铁道部框架。Cu-I复合物在整个系统和结果铜的还原能力更高的混合催化剂。理解的精确的物种形成在这种复合催化剂,从而活跃的网站提供未来指导等的设计系统。

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