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SnO_(x)-CeO_(2)-MnO_(x)/球状活性炭催化剂低温选择性催化还原NO  ( SCI-EXPANDED收录 EI收录)  

SnO_(x)-CeO_(2)-MnO_(x)-loaded spherical activated carbons for the selective catalytic reduction of NO

文献类型:期刊文献

中文题名:SnO_(x)-CeO_(2)-MnO_(x)/球状活性炭催化剂低温选择性催化还原NO

英文题名:SnO_(x)-CeO_(2)-MnO_(x)-loaded spherical activated carbons for the selective catalytic reduction of NO

作者:王艳莉[1];何自国[1];詹亮[1];葛梦[1]

机构:[1]华东理工大学,化学工程联合国家重点实验室,上海200237

年份:2015

卷号:30

期号:6

起止页码:533

中文期刊名:新型炭材料

外文期刊名:New Carbon Materials

收录:CSTPCD;;EI(收录号:20160501878154);Scopus;WOS:【SCI-EXPANDED(收录号:WOS:000367761000005)】;北大核心:【北大核心2014】;CSCD:【CSCD2015_2016】;

基金:National Science Foundation of China (51472086, 20806024, 51002051); Natural Science Foundation of Shanghai City (12ZR1407200).

语种:中文

中文关键词:球状活性炭;SnO_(x);CeO_(2)-MnO_(x);选择性催化还原;NO

外文关键词:Spherical activated carbon;SnO_(x);CeO_(2);MnO_(x);Selective catalytic reduction;NO

摘要:制备了系列锡氧化物改性SnO_(x)-CeO_(2)-MnO_(x)/球状活性炭(SAC)催化剂,研究了锡氧化物对催化剂脱硝活性的影响机制,并结合N2吸附、XRD、XPS和NH3-TPD等技术对催化剂物理化学性质进行表征。结果表明,向CeO2-MnOx/SAC中添加适量SnOx后明显降低催化剂在低温区80-120℃的脱硝活性,但在200-280℃温度范围内Sn/Mn摩尔比为0.25的SnO_(x)-CeO_(2)-MnO_(x)/SAC催化剂对NO的转化率高于95.8%。添加适量Sn O2不仅不影响锰氧化物在载体表面的高分散性,而且可以改善CeO2分散性;添加SnO2提高了催化剂表面酸性,尤其是增加了催化剂表面中强酸位,有利于促进NH3的吸附和活化脱氢,从而提高SnOx-CeO2-MnOx/SAC较高温区SCR活性。
A series of SnOx-CeO2-MnOx-loaded spherical activated carbons(SACs)with different Sn/Mn molar ratios were preparedas catalysts for the selective reduction of NO and the influence of the SnOx contenton their catalytic activities was investigated.The physicochemical properties of the catalysts were characterized by nitrogen adsorption,X-ray diffraction,X-ray photoelectron spectroscopy and temperature-programmed NH3 desorption.Results indicate that the addition of an appropriate amount of SnOx to the CeO2-MnOx-loaded SACs significantly reduces NO reduction activity in the low temperature range 80-120℃.However,the NO conversion is higher than 95.8%in the temperature range 200-280℃when the Sn/Mn ratio of the catalyst is 0.25.The SnOx addition increasesthe acidity of the catalyst surface,especially the number of the medium-strong acid sites,which favors the adsorption anddehydrogenation of NH3.An appropriate amount of SnO2 increasesthe dispersion of CeO2 on the support with out sacrificing the high dispersion of MnOx.These factors jointly contribute to the increaseof NO reduction activity over the SnOx-CeO2-MnOx-loaded SACs at temperatures from 200 to 280℃.

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