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Sanduni Y. Ratnayake, Anoma K. Ratnayake, Dieter Schild, Edward Maczka, Elzbieta Jartych, Johannes Luetzenkirchen, Marek Kosmulski and Rohan Weerasooriya

bioreactor: a new treatment tool. J. Am. Water Works Assoc ., 88 , 75–86. 12. Rhodes, F. H., & Carty, J. T. (1925). The corrosion of certain metals by carbon tetrachloride. Ind. Eng. Chem ., 17 (9), 909–911. 13. Murfy, A. P. (1991). Chemical removal of nitrate from water. Nature , 350 , 223–225. 14. Young, G. K., Bungay, H. R., Brown, L. M., & Parson, W. A. (1964). Chemical reduction of nitrate in water. J. Water Pollut.Control Federation , 36 , 395–398. 15. Siantar, D. P., & Schreier, C. G. (1995). Transformation of the pesticide 1

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Ahmed Ali Basfar, Majid Muneer and Omar Ahmed Alsager

. 12. Klavarioti, M., Mantzavinos, D., & Kassinos, D. (2009). Removal of residual pharmaceuticals from aqueous systems by advanced oxidation processes. Environ. Int. , 35 (2), 402–417. DOI: 10.1016/j.envint.2008.07.009. 13. Badawy, M. I., Ghaly, M. Y., & Gad-Allah, T. A. (2006). Advanced oxidation processes for the removal of organophosphorus pesticides from wastewater. Desalination , 194 (1/3), 166–175. DOI: 10.1016/j.desal.2005.09.027. 14. Keen, O., & Linden, K. G. (2013). Degradation of antibiotic activity during UV/H 2 O 2 advanced oxidation and