[1]
T. Komatsu, K. Tomokuni: Catalysis Today, Vol. 116 (2006), p.244.
Google Scholar
[2]
J.L. Xie, D. Fang, F. He: Catalysis Communications, Vol. 28 (2012), p.77.
Google Scholar
[3]
A.R. Vaccaro, G. Mul: Applied Catalysis B: Environmental, Vol. 46 (2003), p.687.
Google Scholar
[4]
M. Kantcheva, M. Milanova, S. Mametsheripov, Catalysis Today, Vol. 191 (2012), p.12.
Google Scholar
[5]
C. He, M. Paulus, W. Chu: Catalysis Today, Vol. 131 (2008), p.305.
Google Scholar
[6]
M. Koebel, M. Elsener, M. Kleemann: Catalysis Today, Vol. 59 (2000), p.335.
Google Scholar
[7]
Y. Wang, Z. Liu, L. Zhan: Chemical Engineering Science, Vol. 59 (2004), p.5283.
Google Scholar
[8]
M. Yoshikawa, A. Yasutake: Applied Catalysis A: General, Vol. 173 (1998), p.239.
Google Scholar
[9]
S.A. Yashnik, A.V. Salnikov: Catalysis Today, Vol. 197 (2012), p.214.
Google Scholar
[10]
G. Fierro, G. Moretti: Applied Catalysis B: Environmental, Vol. 102 (2011), p.215.
Google Scholar
[11]
F.S. Xiao, W. Zhang, M. Jia: Catalysis Today, Vol. 50 (1999), p.117.
Google Scholar
[12]
J.A. Sullivan, O. Keane: Applied Catalysis B: Environmental, Vol. 61 (2005), p.244.
Google Scholar
[13]
Z.X. Zhang, M.X. Chen, Z. Jiang: Journal of Hazardous Materials, Vol. 193 (2011), p.330.
Google Scholar
[14]
R. Q. Long and R. T. Yang: Journal of Catalysis, Vol. 332 (1999), p.188.
Google Scholar
[15]
G. Lv, H. Hu, C.L. Song: Journal Of Engineering Thermophysics, Vol. 32 (2011), p.1597 (In Chinese).
Google Scholar
[16]
Y.J. Kim, H.J. Kwon: Applied Catalysis B: Environmental, Vol. 126 (2012), p.9.
Google Scholar
[17]
X.P. Fan, C.T. Li, G.M. Zeng: Fuel Processing Technology, Vol. 104(2012), p.325.
Google Scholar
[18]
K.P. Wang, C.L. Song, F. Bin: Journal of Combustion Science and Technology, Vol. 18(2012), 73 (In Chinese).
Google Scholar
[19]
C. Seo, B. Choi: Chemical Engineering Journal, Vol. 191 (2012), p.331.
Google Scholar
[20]
I. Heo, Y. Lee, I. Nam: Microporous and Mesoporous Materials, Vol. 141 (2011), p.8.
Google Scholar
[21]
W. Kooten, B. Liang: Applied Catalysis B: Environmental, Vol. 21 (1999), p.203.
Google Scholar
[22]
F. Ayari, M. Mhamdi: Applied Catalysis B: Environmental, Vol. 134 (2013), p.367.
Google Scholar
[23]
G.Y. Zhou, B.C. Zhong, W.H. Wang: Catalysis Today, Vol. 175 (2011), p.157.
Google Scholar
[24]
P.S. Metkar, M.P. Harold: Chemical Engineering Science, Vol. 87 (2013), p.51.
Google Scholar
[25]
A. Sultana, M. Haneda: Microporous and Mesoporous Materials, Vol. 111 (2008), p.488.
Google Scholar
[26]
J.H. Kwak, D. Tran, S. D. Burton: Journal of Catalysis, Vol. 287 (2012), p.203.
Google Scholar
[27]
A.Z. Ma, M. Muhler: Applied Catalysis B: Environmental, Vol. 27 (2000), p.37.
Google Scholar
[28]
G. Carja, Y. Kameshima: Applied Catalysis B: Environmental, Vol. 73 (2007), p.60.
Google Scholar
[29]
M. Huuhtanen, K.R. Tolonen: Catalysis Today, Vol. 100 (2005), p.321.
Google Scholar
[30]
X.P. Wang, S.X. Zhang: Microporous and Mesoporous Materials, Vol. 109 (2008), p.298.
Google Scholar
[31]
M. Wallin, C.J. Karlsson: Journal of Catalysis, Vol. 218 (2003), p.354.
Google Scholar
[32]
L.F. He, J.D. Liu, W. Huang: Chemical Journal Of Chinese Universities, Vol. 33 (2012), p.2532 (In Chinese).
Google Scholar
[33]
Y. Chen, T. Lin, K. Liu: Chemical Research and Application, Vol. 25 (2013), p.1065 (In Chinese).
Google Scholar
[34]
H. Wu, C.L. Song, F. Bin: Journal Of Engineering Thermophysics, Vol. 33(2012), p.1248 (In Chinese).
Google Scholar
[35]
X.L. Wang, X.R. Lou: Industrial Catalysis, Vol. 19 (2011), p.64 (In Chinese).
Google Scholar