自制介孔碳(CMC)具有比传统活性碳(AC)更大的比表面积、孔径和孔体积,以其为载体,在浸渍液中加入螯合剂,采用等量浸渍法制备了Co-Mo/CMC和Ni-Mo/CMC催化剂,分别用于模型汽油和柴油加氢脱硫反应.结果表明,Co-Mo/CMC和Ni-Mo/CMC催化剂具有比Co-Mo/AC催化剂更好的织构性质和加氢脱硫活性.在模型汽油的加氢脱硫反应中,Co-Mo/CMC催化剂活性比工业催化剂Co-Mo/Al2O3高得多;而在模型柴油的加氢脱硫反应中,Ni-Mo/CMC催化剂活性也比工业催化剂FH-98高得多.
参考文献
[1] | Breysse M;Portefaix J L;Vrinat M .[J].Catalysis Today,1991,10:489. |
[2] | Breysse M;Afanasiev P;Geantet C;Vrinat M .[J].Catalysis Today,2003,86:5. |
[3] | Bridgewater A J;Burch A;Mitchell P C H .[J].Applied Catalysis,1982,4:267. |
[4] | Hussain M;Song S K;Lee J H;Ihm S K .[J].Industrial and Engineering Chemistry Research,2006,45:536. |
[5] | Pawelec B;Mariscal R;Fierro J LG;Greenwood A Vasudevan P T .[J].Applied Catalysis A:General,2001,206:295. |
[6] | Huang Y;Hu S H;Zuo S L;Xu Z Han C H Shen J Y .[J].Journal of Materials Chemistry,2009,19:7759. |
[7] | Brunet S;Mey D;Perot G;Bouchy C;Diehl F .On the hydrodesulfurization of FCC gasoline: a review[J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2005(2):143-172. |
[8] | Cattaneo R;Shido T;Prins R .[J].Journal of Catalysis,1999,185:199. |
[9] | Okamoto Y.;Ishihara SY.;Kawano M.;Satoh M.;Kubota T. .Preparation of Co-Mo/Al2O3 model sulfide catalysts for hydrodesulfurization and their application to the study of the effects of catalyst preparation[J].Journal of Catalysis,2003(1):12-22. |
[10] | Sun M Y;Nicosia D;Prins R .[J].Catalysis Today,2003,86:173. |
[11] | Shi G J;Zhao H Y;Song L G;Shen J Y .[J].Energy and Fuels,2008,22:2450. |
[12] | 石国军 .[D].南京:南京大学,2008. |
[13] | Shi G J;Fang D M;Shen J Y .[J].Microporous and Mesoporous Materials,2009,120:339. |
[14] | Shi G J;Shen J Y .[J].CATALYSIS COMMUNICATIONS,2009,10:1693. |
[15] | Song C S;Ma X L .[J].Applied Catalysis B:Environmental,2003,41:207. |
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