Page 216 - Industrial Wastewater Treatment, Recycling and Reuse
P. 216
190 Industrial Wastewater Treatment, Recycling, and Reuse
Saharan, V.K., Badve, M.P., Pandit, A.B., 2011. Degradation of Reactive Red 120 dye using
hydrodynamic cavitation. Chem. Eng. J. 178, 100–107.
Saharan, V.K., Pandit, A.B., SatishKumar, P.S., Anandan, S., 2012. Hydrodynamic cavita-
tion as an advanced oxidation technique for the degradation of Acid Red 88 dye. Ind.
Eng. Chem. Res. 51 (4), 1981–1989.
Saharan, V.K., Rizwani, M.A., Malani, A.A., Pandit, A.B., 2013. Effect of geometry of
hydrodynamically cavitating device on degradation of orange-G. Ultrason. Sonochem.
20 (1), 345–353.
Saien, J., Delavari, H., Solymani, A.R., 2010. Sono-assisted photocatalytic degradation of
styrene-acrylic acid copolymer in aqueous media with nano titania particles and kinetic
studies. J. Hazard. Mater. 177 (1–3), 1031–1038.
Senthilkumar, P., Sivakumar, M., Pandit, A.B., 2000. Experimental quantification of chem-
ical effects of hydrodynamic cavitation. Chem. Eng. Sci. 55 (9), 1633–1639.
Shrestha, R.A., Pham, T.D., Sillanpa ¨a ¨, M., 2009. Effect of ultrasound on removal of persis-
tent organic pollutants (POPs) from different types of soils. J. Hazard. Mater. 170 (2–3),
871–875.
Sivakumar, M., Pandit, A.B., 2002. Wastewater treatment: a novel energy efficient hydro-
dynamic cavitational technique. Ultrason. Sonochem. 9 (3), 123–131.
Sivakumar, M., Tatake, P.A., Pandit, A.B., 2002. Kinetics of p-nitrophenol degradation:
effect of reaction conditions and cavitational parameters for a multiple frequency system.
Chem. Eng. J. 85 (2–3), 327–338.
Song, W., Cheng, M., Ma, J., Ma, W., Chen, C., Zhao, J., 2006. Decomposition of hydro-
gen peroxide driven by photochemical cycling of iron species in clay. Environ. Sci.
Technol. 40 (15), 4782–4787.
Song, S., Xia, M., He, Z., Ying, H., Lu, B., Chen, J., 2007. Degradation of p-nitrotoluene in
aqueous solution by ozonation combined with sonolysis. J. Hazard. Mater. 144 (1–2),
532–537.
Subramanian, V., Pangarkar, V.G., Beenackers, A.A.C.M., 2000. Photocatalytic degradation
of para-hydroxybenzoic acid: relationship between substrate adsorption and photocata-
lytic degradation. Clean Prod. Processes 2 (3), 149–156.
Sun, J.H., Sun, S.P., Fan, M.H., Guo, H.Q., Qiao, L.P., Sun, R.Z., 2007. A kinetic study on
the degradation of p-nitroaniline by Fenton oxidation process. J. Hazard. Mater.
148 (1–2), 172–177.
Suslick, K.S., 1990. The chemical effects of ultrasound. Science 247, 1439–1445.
Sutkar, V.S., Gogate, P.R., 2009. Design aspects of sonochemical reactors: techniques for
understanding cavitational activity distribution and effect of operating parameters.
Chem. Eng. J. 155 (1–2), 26–36.
Tang, W.Z., Huang, C.P., 1996. 2,4 Dichlorophenol oxidation kinetics by Fenton’s reagent.
Environ. Technol. 17 (12), 1371–1378.
Thiruvenkatachari, R., Kwon, T.O., Jun, J.C., Balaji, S., Matheswaran, M., Moon, S., 2007.
Application of several advanced oxidation processes for the destruction of terephthalic
acid (TPA). J. Hazard. Mater. 142 (1–2), 308–314.
Vecitis, C.D., Lesko, T., Colussi, A.J., Hoffmann, M.R., 2010. Sonolytic decomposition of
aqueous bioxalate in the presence of ozone. J. Phys. Chem. A 114 (14), 4968–4980.
Venkatadri, R., Peters, R.V., 1993. Chemical oxidation technologies: ultraviolet light/
hydrogen peroxide, Fenton’s reagent and titanium dioxide assisted photocatalysis. Haz-
ard. Waste Hazard. Mater. 10 (2), 107–149.
Wang, X., Zhang, Y., 2009. Degradation of alachlor in aqueous solution by using hydrody-
namic cavitation. J. Hazard. Mater. 161 (1), 202–207.
Wang, J., Ma, T., Zhang, Z., Zhang, X., Jiang, Y., Dong, D., et al., 2006. Investigation on
the sonocatalytic degradation of parathion in the presence of nanometer rutile titanium
dioxide (TiO 2 ) catalyst. J. Hazard. Mater. 137 (2), 972–980.