首页> 外文期刊>Journal of Colloid and Interface Science >Synthesis of Cu0.5Mg1.5Mn0.5Al0.5Ox mixed oxide from layered double hydroxide precursor as highly efficient catalyst for low-temperature selective catalytic reduction of NOx with NH3
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Synthesis of Cu0.5Mg1.5Mn0.5Al0.5Ox mixed oxide from layered double hydroxide precursor as highly efficient catalyst for low-temperature selective catalytic reduction of NOx with NH3

机译:合成Cu0.5mg1.5mN0.5AL0.5X与层状双氢氧化物前体的混合氧化物作为NH3低温选择性催化还原的高效催化剂

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摘要

We report a novel NH3-SCR catalyst Cu0.5Mg1.5Mn0.5Al0.O-5(x) synthesized from layered double hydroxides with superior activity in a wide temperature range and improved SO2 and H2O resistance comparing to conventional doped Mn/gamma-Al2O3 . This catalyst results in a high NOx removal efficiency of 87.0-96.6% in the low temperature range of 100-250 degrees C, much better than Mn/gamma-Al2O3 (35.0-67.2%). Besides, it exhibits significant resistance to SO2 and H2O due to the existence of Cu and Mg. The promoting effects of Cu and Mg are thoroughly investigated using various physico-chemical techniques. The superior NH3-SCR activity of Cu0.5Mg1.5Mn0.5Al0.O-5(x) catalyst can be associated with its high specific surface area, high reducibility of MnO2 and CuO species, abundance of acid sites, and the well dispersion of MnO2 and CuO species. The interactions between SO2 and NH3 , and the degradation mechanism caused by SO2 were investigated using in-situ DRIFT analysis. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们报告了一种新的NH3-SCR催化剂Cu0.5mg1.5mN0.5Al0.o-5(x),其由层双氢氧化物合成,具有优异的活性在宽温度范围内,并改善与常规掺杂Mn /γ-Al2O3相比的SO2和H2O电阻。 。该催化剂在100-250℃的低温范围内产生87.0-96.6%的高度NOx去除效率,比Mn /γ-Al2O3更好(35.0-67.2%)。此外,由于Cu和Mg的存在,它表现出对SO2和H2O的显着抗性。使用各种物理化学技术彻底研究了Cu和Mg的促进效果。 Cu0.5mg1.5mN0.5Al0.O-5(X)催化剂的上高NH 3-SCR活性可以与其高比表面积,高再代性和CuO物种,酸性位点和井分散的相关性相关MnO2和CuO物种。使用原位漂移分析研究了SO2和NH 3之间的相互作用和由SO2引起的降解机制。 (c)2018 Elsevier Inc.保留所有权利。

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