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首页> 外文期刊>Applied Surface Science >Enhancing DeNOx performance of CoMnAl mixed metal oxides in low-temperature NH_3-SCR by optimizing layered double hydroxides (LDHs) precursor template
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Enhancing DeNOx performance of CoMnAl mixed metal oxides in low-temperature NH_3-SCR by optimizing layered double hydroxides (LDHs) precursor template

机译:通过优化层状双氢氧化物(LDHs)前体模板提高CoMnAl混合金属氧化物在低温NH_3-SCR中的DeNOx性能

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摘要

LDHs templates (marked as CoAl-MnO2-LDH and CoMnAl-CO3 -LDH) were fabricated via ion-exchange/redox reaction and hexamethylenetetramine (HMT) hydrolysis methods respectively. CoMnAl mixed metal oxides (marked as MnO2/CoAl-LDO and CoMnAl-LDO) from the as-prepared LDHs templates were novelly prepared and tested as low-temperature NH3-SCR catalysts. Catalytic evaluation pronouncedly affirmed that the catalytic performances of the as-acquired catalysts were vulnerable to the preparation method of precursor template, where MnO2/CoAl-LDO presented preferable DeNOx activity (over 90% NOx conversion), N-2 selectivity and SO2 resistance in much broader working temperature window (90-300 degrees C) than CoMnAl-LDO. Multiple characterizations revealed that the excellent catalytic performance of the MnO2/CoAl-LDO could be attributed to its higher specific surface area which could promote dispersion of abundant Mn(4+)and Co3+ species, and resultantly afforded stronger redox ability and more acid sites. Moreover, dynamic calculation confirmed that the relatively lower activation energy on MnO2/CoAl-LDO for low-temperature NH3 -SCR reaction should be closely related to the occurrence of a more rapid redox cycle and in agreement with the excellent DeNOx performance.
机译:通过离子交换/氧化还原反应和六亚甲基四胺(HMT)水解方法分别制备了LDHs模板(标记为CoAl-MnO2-LDH和CoMnAl-CO3-LDH)。从制备的LDHs模板中,新颖地制备了CoMnAl混合金属氧化物(标记为MnO2 / CoAl-LDO和CoMnAl-LDO),并作为低温NH3-SCR催化剂进行了测试。催化评估结果明确表明,所制得的催化剂的催化性能易受前体模板制备方法的影响,其中MnO2 / CoAl-LDO具有较好的DeNOx活性(超过90%NOx转化率),N-2选择性和SO2耐受性。工作温度范围(90-300摄氏度)比CoMnAl-LDO大得多。多重表征表明,MnO2 / CoAl-LDO的优异催化性能可归因于其较高的比表面积,可促进大量Mn(4+)和Co3 +物种的分散,从而提供更强的氧化还原能力和更多的酸性位。此外,动态计算证实,用于低温NH3 -SCR反应的MnO2 / CoAl-LDO上较低的活化能应与更快的氧化还原循环的发生密切相关,并应具有出色的DeNOx性能。

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