1 Jones, A.P., “Indoor air quality and health”, Atmospheric Environment, 33 (28), 4535-4564 (1999). 2 Carpentier, J., Lemonier, J.F., Siffert, S., Zhilinskaya, E.A., Aboukais, A., “Characterisation of Mg/Al hydrotalcite with interlayer palladium complex for catalytic oxidation of toluene”, Appl. Catal. A:Gen., 234 (1/2), 91-101 (2002). 3 Paulis, M., Gandia, L.M., Gil, A., Sambeth, J., Odriozola, J.A., Montes, M., “Influence of the surface adsorption-desorption processes on the ignition curves of volatile organic compounds (VOCs) complete oxidation over supported catalysts”, Appl. Catal. B:Environ., 26 (1), 37-46 (2000). 4 Chu, H., Lee, W.T., “The effect of sulfur poisoning of diethyl disulfide on the catalytic incineration over a Pt/Al2O3 catalyst”, The Science of the Total Environment, 209 (2/3), 217-224 (1998). 5 Wang, B.Q., Ma, G.D., Chen, J.N., “Development in research of technology for purifying volatile organic compounds from exhaust gases”, Techniques and Equipment for Environmental Pollution Control, 4 (5), 47-51 (2003). 6 Wu, Y.W., Li, Z., Xi, H.X., Xu, K.F., Han, J.L., Guo, J.G., “The technologies and materials of adsorbents & catalysts for the control of VOCs pollution”, Ion Exchange and Adsorption, 19 (1), 88-95 (2003). 7 Salvador, O., Lisardo, B., Herminio, S., “Kinetics of the deep combustion of benzene, toluene n-hexane and their binary mixtures over a platinum on γ-alumina catalyst”, Appl. Catal. B:Environ., 38 (2), 139-149 (2002). 8 Yazawa, Y., Takagi, N., Yoshida, H., “The support effect on propane combustion over platinum catalyst:Control of the combustion-resistance of platinum by the acid strength of support materials”, Appl. Catal. A:Gen., 233 (1/2), 103-112 (2002). 9 Luo, M.F., He, M., Xie, Y.L., Fang, P., Jin, L.Y., “Toluene oxidation on Pd catalysts supported by CeO2-Y2O3 washcoated cordierite honeycomb”, Appl. Catal. B:Environ., 214 (69), 213-218 (2007). 10 Kim, H.S., Kim, T.W., Kolb, H.L., “Complete benzene combustion over Pt-Pd bimetal catalyst supposed on γ-alumina:Influence of Pt-Pd ratio on the catalytic activity”, Appl. Catal. A:Gen., 280 (2), 125-131 (2005). 11 Bertinchamps, F., Attianese, A., Mestdagh, M.M., Gaigneaux, E.M., “Catalysts for chlorinated VOCs abatement:Multiple effects of water on the activity of VOx based catalysts for the combustion of chlorobenzene”, Catalysis Today, 112, 165-168 (2006). 12 Wang, C.H., “Al2O3-supported transition-metal oxide catalysts for catalytic incineration of toluene”, Chemosphere, 55 (1), 11-17 (2004). 13 Wang, J.B., Chou, M.S., “Kinetics of catalytic oxidation of benzene, n-hexane, and emission gas from a refinery oil/water separator over a chromium oxide catalyst”, Journal of the Air and Waste Management Association, 50 (1), 227-233 (2000). 14 Abdullah, Z.A., AbuBakar, M.Z., Bhatia, S., “A kinetic study of catalytic combustion of ethyl acetate and benzene in air stream over Cr-ZSM-5 catalyst”, Industrial and Engineering Chemistry Research, 42 (24), 6059-6067 (2003). 15 Pan, H.Y., Xu M.Y., Li, Z., Huang, S.S., He,C., “Catalytic combustion of styrene over copper based catalyst:Inhibitory effect of water vapor”, Chemosphere, 76 (5), 721-726 (2009). 16 Thevenet, F., Guaitella, O., Puzenat, E., Guillard, C., Rousseau, A., “Influence of water vapour on plasma/photocatalytic oxidation efficiency of acetylene”, Appl. Catal. B:Environ., 84 (3/4), 813-820 (2008). 17 Wu, Y.W., Li, Z., Xi, H.X., “Influence of the microporosity and surface chemistry of polymeric resins on adsorptive properties toward phenol”, J. Hazard. Mater, 113 (1-3), 131-135 (2004). 18 Li, X., Li, Z., Xia, Q.B., Xi, H.X., “Effects of pore sizes of porous silica gels on desorption activation energy of water vapor”, Applied Thermal Engineering, 27 (5/6), 869-876 (2007). 19 Yu, M.X., Li, Z., Xi, H.X., Xia, Q., Wang, S.W., “Activation energy of desorption of dibenzothiophene on modified activated carbon by loading metal ions”, Chemical Engineering Journal, 132 (1-3), 233-239 (2007). 20 Wang, C.H., Weng, H.S., “Al2O3-supported mixed-metal oxides for destructive oxidation of (CH3)2S2 ”, Ind. Eng. Chem. Res., 36 (7), 2537-2542 (1997). |