首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Cu-zeolite catalysts for NOx removal by selective catalytic reduction with NH3 and coupled to NO storage/reduction monolith in diesel engine exhaust aftertreatment systems
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Cu-zeolite catalysts for NOx removal by selective catalytic reduction with NH3 and coupled to NO storage/reduction monolith in diesel engine exhaust aftertreatment systems

机译:铜沸石催化剂,用于通过NH3选择性催化还原来去除NOx,并与柴油机排气后处理系统中的NO储存/还原整料偶联

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摘要

Coupled NSR-SCR systems comprising a Pt-BaO/Al2O3 NSR monolith and Cu/CHA, Cu/ZSM-5 or Cu/BETA SCR catalysts are prepared and tested for NOx removal from diesel and lean burn engines exhaust gases. The Cu/zeolite catalysts are characterized by ICP-AES, XRD, N-2 adsorption-desorption, NH3-TPD and H-2-TPR. The physico-chemical characteristics of fresh catalysts and aged under 5% steam/Ar at 750 degrees C for 16 h and are compared, resulting in the Cu/CHA with much higher hydrothermal resistance to the loss of textural and structural properties. The single-SCR, single-NSR and coupled NSR-SCR catalytic performance is studied including the conversion of NO and NH3, slip of NH3, and N2O and NO2 yields. Cu/CHA presents the SCR wider temperature window, eventually 100%NO conversion from 220 to 380 degrees C, even maintained after severe aging. For application in the NSR-SCR technology, the NH3 generated in the NSR catalyst during the rich period is able to achieve higher NO conversion reducing significantly the slip of NH3 (negligible at 200 degrees C and above), very few amount of N2O at any temperature, and small production of NO2 only at higher temperatures. This improvement of activity and selectivity is particularly enhanced with the coupled NSR-Cu/CHA system, which is also maintained when the catalyst is deposited on the cordierite monolith substrate, as in the case of real application. (C) 2016 Published by Elsevier B.V.
机译:制备了包括Pt-BaO / Al2O3 NSR整体料和Cu / CHA,Cu / ZSM-5或Cu / BETA SCR催化剂的NSR-SCR耦合系统,并测试了柴油和稀薄燃烧发动机废气中的NOx去除率。 Cu /沸石催化剂的特征在于ICP-AES,XRD,N-2吸附-脱附,NH3-TPD和H-2-TPR。比较了新鲜催化剂的物理化学特性,并在5%蒸汽/氩气中于750℃下老化了16 h,并进行了比较,从而使Cu / CHA具有更高的耐水热性能,而不会失去质构和结构特性。研究了单SCR,单NSR和耦合的NSR-SCR的催化性能,包括NO和NH3的转化率,NH3的逸出量以及N2O和NO2的产率。 Cu / CHA提供了更宽的SCR温度范围,最终在220至380摄氏度之间实现了100%的NO转化,甚至在严重老化后也得以保持。对于NSR-SCR技术的应用,在富油期间NSR催化剂中生成的NH3能够实现更高的NO转化率,从而显着降低NH3的滑移率(在200摄氏度及以上可忽略不计),无论在任何情况下,N2O的量都很少温度,只有在较高温度下才能产生少量NO2。活性和选择性的这种改善特别是通过NSR-Cu / CHA偶联体系进行的,在实际应用中,当催化剂沉积在堇青石整料基质上时,也能保持这种活性。 (C)2016由Elsevier B.V.发布

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