采用化学还原法制备了不同Ni/Co原子比的Ni-Co-W-B非晶态催化剂,以苯酚为探针,研究了其加氢脱氧性能.结果表明,新鲜的Ni-Co-W-B催化剂具有非晶态结构,其中Ni0和B0之间存在电子转移,且随着Co含量的增加,催化剂的热稳定性逐渐提高,表面Ni0含量减少.该催化剂上苯酚加氢脱氧反应按照先加氢再脱氧的方式进行,没有生成苯.当原料中Ni∶Co原子比为2∶1时,Ni-Co-W-B非晶态催化剂表现出最高的加氢脱氧催化活性,在275 ℃,氢气压力4.0 MPa条件下反应2h,苯酚转化率达99.4%,脱氧率可达86.0%.催化剂的加氢脱氧活性取决于其表面Ni0含量、Br?nsted酸性和比表面积.
参考文献
[1] | Serrano-Ruiz J C;Dumesic J A .[J].Energy Environmental Science,2011,4:83. |
[2] | Yang W;Sen A .[J].Chemistry Sustainable Chemistry,2010,3:597. |
[3] | Vispute T P;Zhang H;Sanna A;Xiao R Huber G W .[J].Science,2010,330:1222. |
[4] | Huber G W;Iborra S;Corma A .[J].Chemical Reviews,2006,106:4044. |
[5] | Zakzeski, J.;Bruijnincx, P.C.A.;Jongerius, A.L.;Weckhuysen, B.M. .The catalytic valorization of lignin for the production of renewable chemicals[J].Chemical Reviews,2010(6):3552-3599. |
[6] | Gandarias I;Barrio V L;Requies J;Arias P L Cambra J F Güemez M B .[J].International Journal of Hydrogen Energy,2008,33:3485. |
[7] | Furimsky E. .Catalytic hydrodeoxygenation [Review][J].Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications,2000(2):147-190. |
[8] | Yang Y;Luo H A;Tong G;Smith K J Tye C T .[J].Chinese Journal of Chemical Engineering,2008,16:733. |
[9] | Yang Y;Gilbert A;Xu C .[J].Applied Catalysis A:General,2009,360:242. |
[10] | Romero Y;Richard F;Brunet S .[J].Applied Catalysis B:Environmental,2010,98:213. |
[11] | Ryymin E M;Honkela M L;Viljava T R;Krause A O I .[J].Applied Catalysis A:General,2010,389:114. |
[12] | Whiffen V M L;Smith K J .[J].Energy & Fuels,2010,24:4728. |
[13] | Lin Y C;Li C L;Wan H P;Lee H T Liu C F .[J].Energy & Fuels,2011,25:890. |
[14] | Dupont, C.;Lemeur, R.;Daudin, A.;Raybaud, P. .Hydrodeoxygenation pathways catalyzed by MoS_2 and NiMoS active phases: A DFT study[J].Journal of Catalysis,2011(2):276-286. |
[15] | Bui V N;Laurenti D;Delichère P;Geantet C .[J].Applied Catalysis B:Environmental,2011,101:246. |
[16] | Li K;Wang R;Chen J .[J].Energy & Fuels,2011,25:854. |
[17] | Viljava T.-R. .Effect of H_2S on the stability of CoMo/Al_2O_3 catalysts during hydroxygenation[J].Catalysis Today,2000(1/2):83-92. |
[18] | Senol O I;Ryymin E M;Viljava T R;Krause A O I .[J].Journal of Molecular Catalysis A:Chemical,2007,277:107. |
[19] | Wang W;Yang Y;Luo H;Hu T Liu W .[J].Catalyst Communication,2011,12:436. |
[20] | Yan N;Yuan Y;Dykeman R;Kou Y,Dyson P J .[J].Angewandte Chemie International Edition,2010,49:5549. |
[21] | Zhao B;Chou C J;Chen Y W .[J].Industrial and Engineering Chemistry Research,2010,49:1669. |
[22] | Li, H;Zhang, DQ;Li, GS;Xu, Y;Lu, YF;Li, HX .Mesoporous Ni-B amorphous alloy microspheres with tunable chamber structure and enhanced hydrogenation activity[J].Chemical communications,2010(5):791-793. |
[23] | Liu S C;Liu Z;Wang Z;Wu Y Yuan P .[J].Chemical Engineering Journal,2008,139:157. |
[24] | Li H;Liu J;Xie SH;Qiao MH;Dai WL;Li HX .Highly active Co-B amorphous alloy catalyst with uniform nanoparticles prepared in oil-in-water microemulsion[J].Journal of Catalysis,2008(1):104-110. |
[25] | Pei Y;Guo P;Qiao M;Li H Wei S He H Fan K .[J].Journal of Catalysis,2007,248:303. |
[26] | Li H;Yang H .[J].Journal of Catalysis,2007,251:233. |
[27] | 武美霞,李伟,张明慧,陶克毅.壳聚糖修饰的NiB非晶态合金的制备及表征[J].物理化学学报,2011(04):953-958. |
[28] | 孙海杰,郭伟,周小莉,陈志浩,刘仲毅,刘寿长.非晶态合金Ru基催化剂在苯选择加氢中的应用进展[J].催化学报,2011(01):1-16. |
[29] | 闫洪,李伟,张明慧,陶克毅.硅溶胶负载非晶态NiB纳米团簇的制备与催化加氢性能[J].催化学报,2009(02):89-91. |
[30] | 张晔,樊光银,王磊,李瑞祥,陈华,李贤均.聚乙二醇稳定的RuB非晶态纳米催化剂对吡啶及其衍生物加氢反应[J].物理化学学报,2009(11):2270-2274. |
[31] | Wang W Y;Yang Y Q;Luo H A;Liu W Y .[J].Catalyst Communication,2010,11:803. |
[32] | Wang W Y;Yang Y Q;Bao J G;Luo H A .[J].Catalyst Communication,2009,11:100. |
[33] | Leckel D .[J].Energy & Fuels,2007,22:231. |
[34] | Chen LF;Chen YW .Effect of additive (W, Mo, and Ru) on Ni-B amorphous alloy catalyst in hydrogenation of p-chloronitrobenzene[J].Industrial & Engineering Chemistry Research,2006(26):8866-8873. |
[35] | Parks G L;Pease M L;Burns A W;Layman K A Bussell M E Wang X Hanson J Rodriguez J A .[J].Journal of Catalysis,2007,246:277. |
[36] | Li H;Deng J F .[J].Catalysis Today,2002,74:53. |
[37] | Liu YC;Chen YW .Hydrogenation of p-chloronitrobenzene on lanthanum-promoted NiB nanometal catalysts[J].Industrial & Engineering Chemistry Research,2006(9):2973-2980. |
[38] | Li H;Wu Y;Luo H;Wang M Xu Y .[J].Journal of Catalysis,2003,214:15. |
[39] | Li H;Zhang J;Dai W Qiao M .[J].Journal of Catalysis,2007,246:301. |
[40] | Lin M H;Zhao B;Chen Y W .[J].Industrial and Engineering Chemistry Research,2009,48:7037. |
[41] | Patel, N.;Fernandes, R.;Miotello, A. .Promoting effect of transition metal-doped Co-B alloy catalysts for hydrogen production by hydrolysis of alkaline NaBH_4 solution[J].Journal of Catalysis,2010(2):315-324. |
[42] | Lu G;Li X;Qu Z;Zhao Q Li H Shen Y Chen G .[J].Chemical Engineering Journal,2010,159:242. |
[43] | Wang W;Yang Y;Luo H;Hu T,Liu W .[J].React Kinet Mechan Catal,2011,102:207. |
[44] | Li H;Zhang J .[J].Catalyst Communication,2007,8:2212. |
[45] | Shen JH;Chen YW .Catalytic properties of bimetallic NiCoB nanoalloy catalysts for hydrogenation of p-chloronitrobenzene[J].Journal of molecular catalysis, A. Chemical,2007(1/2):265-276. |
[46] | Suslick K S;Choe S B;Cichowlas A A;Grinstaff M W .[J].Nature,1991,353:414. |
[47] | Hou Y;Wang Y;He F;Han S Mi Z Wu W Min E .[J].Materials Letters,2004,58:1267. |
[48] | Wu Z;Zhang M;Ge S;Zhang Z Li W Tao K .[J].Journal of Materials Chemistry,2005,15:4928. |
[49] | Chen Y W;Sasirekha N;Liu Y C .[J].Journal of Non-Crystalline Solids,2009,355:1193. |
[50] | Li H;Zhao Q .[J].Journal of Molecular Catalysis A:Chemical,2008,285:29. |
[51] | Lu L;Rong Z;Du W;Ma S Hu S .[J].ChemCatChem,2009,1:369. |
[52] | Massoth F E;Politzer P;Coneha M C;Murray J S Jakowski J Simons J .[J].Journal of Physical Chemistry B,2006,110:14283. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%