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首页> 外文期刊>Applied Surface Science >In situ DRIFTS studies on CuO-Fe2O3 catalysts for low temperature selective catalytic oxidation of ammonia to nitrogen
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In situ DRIFTS studies on CuO-Fe2O3 catalysts for low temperature selective catalytic oxidation of ammonia to nitrogen

机译:CuO-Fe2O3催化剂用于氨选择性低温催化氧化为氮的原位DRIFTS研究

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摘要

A series of CuO-Fe2O3 composite oxides were successfully prepared for low temperature selective catalytic oxidation of ammonia (NH3-SCO). Higher Cu/Fe ratio in CuO-Fe2O3 catalysts led to higher activity for NH3 oxidation and the lower Cu/Fe ratio improved the N2 selectivity. The optimal catalyst with a Cu/Fe molar ratio of 5:5 displayed a low complete conversion temperature (<250 degrees C) with a relatively high N2 selectivity (>91%). H2-TPR results indicated that the synergistic effect existed between Fe2O3 and CuO, which was beneficial to the catalytic performance. The results of the DRIFTS showed that NH3-SCO reaction mainly followed the internal SCR (i-SCR) mechanism. The adsorbed NH3 was first activated and reacted with atomic oxygen to form the nitrosyl (-HNO). Then the-HNO was oxidized by oxygen atoms from O-2 to form NO species. Meanwhile, the in situ-formed NO could react with-NH2 to form the main product of N-2. (C) 2017 Elsevier B.V. All rights reserved.
机译:成功制备了一系列CuO-Fe2O3复合氧化物用于氨的低温选择性催化氧化(NH3-SCO)。 CuO-Fe2O3催化剂中较高的Cu / Fe比导致较高的NH3氧化活性,而较低的Cu / Fe比则改善了N2的选择性。 Cu / Fe摩尔比为5:5的最佳催化剂显示出较低的完全转化温度(<250摄氏度)和相对较高的N2选择性(> 91%)。 H2-TPR结果表明,Fe2O3与CuO之间存在协同作用,有利于催化性能的提高。 DRIFTS的结果表明,NH3-SCO反应主要遵循内部SCR(i-SCR)机理。首先将吸附的NH3活化,并与原子氧反应形成亚硝酰基(-HNO)。然后,-HNO被O-2中的氧原子氧化形成NO。同时,原位生成的NO可以与-NH2反应形成N-2的主要产物。 (C)2017 Elsevier B.V.保留所有权利。

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