323
331. Özkan, A., Özkan, M.H., Gürkan, R., Akçay, M., Sökmen, M., 2004. Photocatalytic degradation of a textile azo dye, Sirius Gelb GC on TiO 2 or Ag-TiO 2 particles in the absence
and presence of UV irradiation: the effects of some inorganic anions on the photocatalysis.
J. Photochem. Photobiol. A: Chem. 163, 29-35.
332. Riga, A., Soutsas, K., Ntampegliotis, K., Karayannis, V., Papapolymerou, G., 2007. Effect of
system parameters and of inorganic salts on the decolorization and degradation of Procion
H-exl dyes. Comparison of H 2 O 2 /UV, Fenton, UV/Fenton, TiO 2 /UV and TiO 2 /UV/H 2 O 2 processes. Desalination 211, 72-86.
333. Schmelling, D.C., Gray, K.A., Vamat, P.V., 1997. The influence of solution matrix on the
photocatalytic degradation of TNT in TiO 2 slurries. Water Res. 31, 1439-1447.
334. Wang, K., Zhang, J., Lou, L., Yang, S., Chen, Y., 2004. UV or visible light induced photodegradation of AO7 on TiO 2 particles: the influence of inorganic anions. J. Photochem.
Photobiol. A: Chem. 165, 201-207.
335. Wu, C.H., Huang, K.S., Chern, J.M., 2006. Decomposition of acid dye by TiO 2 thin films
prepared by the solegel method. Ind. Eng. Chem. Res. 45, 2040-2045.
336. Wong, C.C., Chu, W., 2003. The direct photolysis and photocatalytic degradation of alachlor
at different TiO 2 and UV sources. Chemosphere 50, 981-987.
337. Choi, W., Termin, A., Hoffman, M.R., 1994. The role of metal ion dopants in quantumsized TiO 2 : correlation between photoreactivity and charge carrier recombination dynamics.
J. Phys. Chem. 98, 13669-13679.
338. Abdullah, M., Low, G.K.C., Matthews, R.W., 1990. Effects of common inorganic anions on
rates of photocatalytic oxidation of organic carbon over illuminated titanium dioxide. J. Phys.
Chem. 94, 6820-6825.
339. Kerzhentsev, M., Guillard, C., Herrmann, J.M., Pichat, P., 1996. Photocatalytic pollutant
removal in water at room temperature: case study of the total degradation of the insecticide
fenitrothion (phosphorothioic acid O, O-dimethyl-O-(3-methyl-4-nitro-phenyl) ester). Catal.
Today 27, 215-220.
340. Okonomoto, K., Yamamoto, Y., Tanaka, H., Tanaka, M., Itaya, A., 1985. Heterogeneous photocatalytic decomposition of phenol over TiO 2 powder. Bull. Chem. Soc. Jpn. 58, 2015-2022.
341. Martin, S.T., Lee, A.T., Hoffmann, M.R., 1995. Chemical mechanism of inorganic oxidants
in the TiO 2 /UV process: increased rates of degradation of chlorinated hydrocarbons. Environ.
Sci. Technol. 29, 2567-2573.
342. Zhu, H., Zhang, M., Xia, Z., Low, G.K.C., 1995. Titanium dioxide mediated photocatalytic
degradation of monocrotophos. Water Res. 29, 2681-2688.
343. Mu, Y., Yu, H.Q., Zheng, J.C., Zhang, S.J., 2004. TiO 2 -mediated photocatalytic degradation
of Orange II with the presence of Mn2. in solution. J. Photochem. Photobiol. A: Chem. 163,
311-316.
344. Burns, R., Crittenden, J.C., Hand, D.W., Sutter, L.L., Salman, S.R., 1999. Effect of inorganic
ions in heterogeneous photocatalysis. J. Environ. Eng. 125, 77-85.
345. Rizzo, L., Koch, J., Belgiorno, V., Anderson, M.A., 2007. Removal of methylene blue in a
photocatalytic reactor using polymethylmethacrylate supported TiO 2 nanofilm. Desalination
211, 1-9.
346. Diebold, U., 2003. The surface science of titanium dioxide. Surf. Sci. Rep. 48, 53-229.
347. Matthews, R.W., McEnvoy, S.R., 1992. Photocatalytic degradation of phenol in the presence
of near-UV illuminated titanium dioxide. J. Photochem. Photobiol. A: Chem. 64, 231.
348. Lindner, M., Bahnemann, D.W., Hirthe, B., Griebler, W.D., 1995. Novel TiO 2 powders as
highly active photocatalysts. In: Stine, W.R., Tanaka, T., Claridge, D.E. (Eds.), Solar Water
Detoxification; Solar Eng. ASME, New York, p. 339.
349. Kabra, K., Chaudhary, R., Sawhney, R.L., 2004. Treatment of hazardous organic and inorganic compounds through aqueous-phase photocatalysis: a review. Ind. Eng. Chem. Res. 43,
7683-7696.
350. Prairie, M.R., Evans, L.R.,Martinez, S.L., 1994. Destruction of organics and removal of heavy
metals in water via TiO2 photocatalysis. In: Eckenfelder, W.W., Roth, J.A., Bowers, A.R.
(Eds.), Chemical Oxidation: Technologies for the Nineties, vol. 2. Technomic Publishing
Company Inc, Pennsylvania US, pp. 428-441.
References
331. Özkan, A., Özkan, M.H., Gürkan, R., Akçay, M., Sökmen, M., 2004. Photocatalytic degradation of a textile azo dye, Sirius Gelb GC on TiO 2 or Ag-TiO 2 particles in the absence
and presence of UV irradiation: the effects of some inorganic anions on the photocatalysis.
J. Photochem. Photobiol. A: Chem. 163, 29-35.
332. Riga, A., Soutsas, K., Ntampegliotis, K., Karayannis, V., Papapolymerou, G., 2007. Effect of
system parameters and of inorganic salts on the decolorization and degradation of Procion
H-exl dyes. Comparison of H 2 O 2 /UV, Fenton, UV/Fenton, TiO 2 /UV and TiO 2 /UV/H 2 O 2 processes. Desalination 211, 72-86.
333. Schmelling, D.C., Gray, K.A., Vamat, P.V., 1997. The influence of solution matrix on the
photocatalytic degradation of TNT in TiO 2 slurries. Water Res. 31, 1439-1447.
334. Wang, K., Zhang, J., Lou, L., Yang, S., Chen, Y., 2004. UV or visible light induced photodegradation of AO7 on TiO 2 particles: the influence of inorganic anions. J. Photochem.
Photobiol. A: Chem. 165, 201-207.
335. Wu, C.H., Huang, K.S., Chern, J.M., 2006. Decomposition of acid dye by TiO 2 thin films
prepared by the solegel method. Ind. Eng. Chem. Res. 45, 2040-2045.
336. Wong, C.C., Chu, W., 2003. The direct photolysis and photocatalytic degradation of alachlor
at different TiO 2 and UV sources. Chemosphere 50, 981-987.
337. Choi, W., Termin, A., Hoffman, M.R., 1994. The role of metal ion dopants in quantumsized TiO 2 : correlation between photoreactivity and charge carrier recombination dynamics.
J. Phys. Chem. 98, 13669-13679.
338. Abdullah, M., Low, G.K.C., Matthews, R.W., 1990. Effects of common inorganic anions on
rates of photocatalytic oxidation of organic carbon over illuminated titanium dioxide. J. Phys.
Chem. 94, 6820-6825.
339. Kerzhentsev, M., Guillard, C., Herrmann, J.M., Pichat, P., 1996. Photocatalytic pollutant
removal in water at room temperature: case study of the total degradation of the insecticide
fenitrothion (phosphorothioic acid O, O-dimethyl-O-(3-methyl-4-nitro-phenyl) ester). Catal.
Today 27, 215-220.
340. Okonomoto, K., Yamamoto, Y., Tanaka, H., Tanaka, M., Itaya, A., 1985. Heterogeneous photocatalytic decomposition of phenol over TiO 2 powder. Bull. Chem. Soc. Jpn. 58, 2015-2022.
341. Martin, S.T., Lee, A.T., Hoffmann, M.R., 1995. Chemical mechanism of inorganic oxidants
in the TiO 2 /UV process: increased rates of degradation of chlorinated hydrocarbons. Environ.
Sci. Technol. 29, 2567-2573.
342. Zhu, H., Zhang, M., Xia, Z., Low, G.K.C., 1995. Titanium dioxide mediated photocatalytic
degradation of monocrotophos. Water Res. 29, 2681-2688.
343. Mu, Y., Yu, H.Q., Zheng, J.C., Zhang, S.J., 2004. TiO 2 -mediated photocatalytic degradation
of Orange II with the presence of Mn2. in solution. J. Photochem. Photobiol. A: Chem. 163,
311-316.
344. Burns, R., Crittenden, J.C., Hand, D.W., Sutter, L.L., Salman, S.R., 1999. Effect of inorganic
ions in heterogeneous photocatalysis. J. Environ. Eng. 125, 77-85.
345. Rizzo, L., Koch, J., Belgiorno, V., Anderson, M.A., 2007. Removal of methylene blue in a
photocatalytic reactor using polymethylmethacrylate supported TiO 2 nanofilm. Desalination
211, 1-9.
346. Diebold, U., 2003. The surface science of titanium dioxide. Surf. Sci. Rep. 48, 53-229.
347. Matthews, R.W., McEnvoy, S.R., 1992. Photocatalytic degradation of phenol in the presence
of near-UV illuminated titanium dioxide. J. Photochem. Photobiol. A: Chem. 64, 231.
348. Lindner, M., Bahnemann, D.W., Hirthe, B., Griebler, W.D., 1995. Novel TiO 2 powders as
highly active photocatalysts. In: Stine, W.R., Tanaka, T., Claridge, D.E. (Eds.), Solar Water
Detoxification; Solar Eng. ASME, New York, p. 339.
349. Kabra, K., Chaudhary, R., Sawhney, R.L., 2004. Treatment of hazardous organic and inorganic compounds through aqueous-phase photocatalysis: a review. Ind. Eng. Chem. Res. 43,
7683-7696.
350. Prairie, M.R., Evans, L.R.,Martinez, S.L., 1994. Destruction of organics and removal of heavy
metals in water via TiO2 photocatalysis. In: Eckenfelder, W.W., Roth, J.A., Bowers, A.R.
(Eds.), Chemical Oxidation: Technologies for the Nineties, vol. 2. Technomic Publishing
Company Inc, Pennsylvania US, pp. 428-441.
References
