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Binary copper-manganese based catalysts with urea for low-temperature selective catalytic reduction of NO: Performance, characterization and mechanism

机译:尿素二元铜锰基催化剂用于NO的低温选择性催化还原:性能,表征及机理

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摘要

The NO emission reduction for low-temperature flue gas is still a serious challenge, low-temperature selective catalytic reduction with urea (LTU-SCR) is a new and promising approach for removing NO at low temperatures (50-100 degrees C), which can avert the ammonia escape of the conventional SCR method. In this work, a series of binary catalysts were prepared and used for LTU-SCR, the carrier and catalysts were characterized in detail by EA, BET, FESEM, EDS, XRD, XPS, AAS, TPD, FT-IR and TGA. The results of catalytic activity tests showed that the binary catalysts exhibited better performance than the unary catalysts. When the calcination temperature is 500 degrees C and the mass ratio of CuOx to MnOx is 5:5, the binary Cu-Mn/NUAC catalyst had the highest catalytic activity. Moreover, the performance of the binary catalyst increased with the increasing reaction temperature, and the binary Cu0.5Mn0.5/NUAC catalyst could achieve 100% NO conversion at 100 degrees C. Finally, based on the results of NO transient responses, characterization experiments and thermodynamic analyses, the NO conversion mechanism on the binary Cu0.5Mn0.5/NUAC catalyst was proposed and discussed systematically; the synergetic effect between copper and manganese on the binary catalyst was attributed to the electron transfer of Cu2+ + Mn2+ reversible arrow Cu-0 + Mn4+.
机译:降低低温烟道气的NO排放仍然是一个严峻的挑战,用尿素进行低温选择性催化还原(LTU-SCR)是一种在低温(50-100摄氏度)下去除NO的新方法,前景广阔。可以避免常规SCR方法的氨气逸出。在这项工作中,制备了一系列二元催化剂并将其用于LTU-SCR,并通过EA,BET,FESEM,EDS,XRD,XPS,AAS,TPD,FT-IR和TGA详细表征了载体和催化剂。催化活性测试的结果表明,二元催化剂表现出比一元催化剂更好的性能。当煅烧温度为500℃且CuOx与MnOx的质量比为5:5时,二元Cu-Mn / NUAC催化剂具有最高的催化活性。此外,二元催化剂的性能随反应温度的升高而提高,二元Cu0.5Mn0.5 / NUAC催化剂在100℃时可实现100%的NO转化。最后,基于NO瞬态响应的结果,进行了表征实验。并进行了热力学分析,系统地讨论了二元Cu0.5Mn0.5 / NUAC催化剂的NO转化机理。铜和锰对二元催化剂的协同作用归因于Cu2 + + Mn2 +可逆箭头Cu-0 + Mn4 +的电子转移。

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