OALib Journal期刊
ISSN: 2333-9721
费用:99美元
|
|
|
制备方法对V2O5/WO3-TiO2催化剂脱除柴油车尾气中NOx的影响
DOI: 10.1016/S1872-2067(14)60218-7, PP. 2020-2028
Keywords: 选择性催化还原,氮氧化合物,钒基催化剂,水热稳定性,柴油机
Abstract:
?分别采用普通浸渍法(VWTi-con)和超声辅助浸渍法(VWTi-HUST)制备了V2O5/WO3-TiO2催化剂,并用X射线衍射、扫描电镜、拉曼光谱和X射线光电子能谱等技术对催化剂进行了表征,评价了水热老化前后两种催化剂的NH3-SCR脱除模拟柴油车尾气中NOx的反应活性,并与国外成熟商品催化剂进行了比较.结果表明,制备方法可影响V2O5/WO3-TiO2催化剂的水热稳定性,VWTi-con催化剂老化后几乎完全失活,而VWTi-HUST具有优异的水热稳定性,与国外成熟商品催化剂性能相当.与传统浸渍法相比,超声辅助浸渍法增强了活性物种和载体的相互作用,提高了活性组分的分散性等.采用该法制备的VWTi-HUST催化剂将具有较强的商业应用性;台架试验正在进行中,以期满足柴油车国IV排放标准的要求.
References
[1] | Odenbrand C U I. Chem Eng Res Des, 2008, 86: 663
|
[2] | Madia G, Elsener M, Koebel M, Raimondi F, Wokaun A. Appl Catal B, 2002, 39: 181
|
[3] | Van Setten B A A L, Makkee M, Moulijn J A. Catal Rev-Sci Eng, 2001, 43: 489
|
[4] | Thiruvengadam A, Besch M C, Carder D K, Oshinuga A, Gautam M. Environ Sci Technol, 2012, 46: 1907
|
[5] | Reddy B M, Mehdi S, Reddy E P. Catal Lett, 1993, 20: 317
|
[6] | Albonetti S, Blasioli S, Bugani M, Lehaut-Burnouf C, Augustine S, Roncari E, Trifirò F. Environ Chem Lett, 2003, 1: 197
|
[7] | Reddy B M, Kumar M V, Reddy E P, Mehdi S. Catal Lett, 1996, 36: 187
|
[8] | Shi A J, Wang X Q, Yu T, Shen M Q. Appl Catal B, 2011, 106: 359
|
[9] | Casanova M, Schermanz K, Llorca J, Trovarelli A. Catal Today, 2012, 184: 227
|
[10] | Reiche M A, Hug P, Baiker A. J Catal, 2000, 192: 400
|
[11] | Reddy B M, Ganesh I, Reddy E P. J Phys Chem B, 1997, 101: 1769
|
[12] | Chiker F, Nogier J P, Bonardet J L. Catal Today, 2003, 78: 139
|
[13] | Went G T, Leu L, Bell A T. J Catal, 1992, 134: 479
|
[14] | Yu X F, Wu N Z, Xie Y C, Tang Y Q. J Mater Sci Lett, 2001, 20: 319
|
[15] | Ka?par J, Fornasiero P, Hickey N. Catal Today, 2003, 77: 419
|
[16] | Schultz M G, Diehl T, Brasseur G P, Zittel W. Science, 2003, 302: 624
|
[17] | Skalska K, Miller J S, Ledakowicz S. Sci Total Environ, 2010, 408: 3976
|
[18] | Nakajima F, Hamada I. Catal Today, 1996, 29: 109
|
[19] | Forzatti P. Appl Catal A, 2001, 222: 221
|
[20] | Liu Z M, Woo S I. Catal Rev-Sci Eng, 2006, 48: 43
|
[21] | Liu F D, Shan W P, Shi X Y, He H. Chem Prog (刘福东, 单文坡, 石晓燕, 贺泓. 化学进展), 2012, 24: 446
|
[22] | Zhao Z, Zhang G Z, Liu J, Liang P, Xu J, Duan A J, Jiang G Y, Xu C M. Chin J Catal (赵震, 张桂臻, 刘坚, 梁鹏, 许洁, 段爱军, 姜桂元, 徐春明. 催化学报), 2008, 29: 303
|
[23] | Li J H, Chang H Z, Ma L, Hao J M, Yang R T. Catal Today, 2011, 175: 147
|
[24] | Kobayashi M, Kuma R, Masaki S, Sugishima N. Appl Catal B, 2005, 60: 173
|
[25] | Kr?cher O, Elsener M. Appl Catal B, 2008, 77: 215
|
[26] | Choo S T, Lee Y G, Nam I S, Ham S W, Lee J B. Appl Catal A, 2000, 200: 177
|
[27] | Li M, Altman E I. J Phys Chem C, 2009, 113: 2798
|
[28] | Wachs I E. J Catal, 1990, 124: 570
|
[29] | Tang F S, Zhuang K, Yang F, Yang L L, Xu B L, Qiu J H, Fan Y N. Chin J Catal (唐富顺, 庄柯, 杨芳, 杨利利, 许波连, 邱金恒, 范以宁. 催化学报), 2012, 33: 933
|
[30] | Wachs I E, Weckhuysen B M. Appl Catal A, 1997, 157: 67
|
[31] | Xu H D, Fang Z T, Cao Y, Kong S, Lin T, Gong M C, Chen Y Q. Chin J catal (徐海迪, 房志涛, 曹毅, 孔爽, 林涛, 龚茂初, 陈耀强. 催化学报), 2012, 33: 1927
|
Full-Text
|
|
Contact Us
service@oalib.com QQ:3279437679 
WhatsApp +8615387084133
|
|