Survey Efficiency of Ultraviolet and Zinc Oxide Process (UV/ZnO) for Removal of Diazinon Pesticide from Aqueous Solution

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(// // )... ph. / ± / ph / ± / ph.. : Survey Efficiency of Ultraviolet and Zinc Oxide Process (UV/ZnO) for Removal of Diazinon Pesticide from Aqueous Solution M. H. Dehghani 1 A.M. Fadaei 2 (Received May 9, 213 Accepted July 29, 213) Abstract The presence of persistent organic pollutants and toxics (e.g., pesticides) in ground, surface, and drinking water resources combined with the inability of conventional treatment methods to remove these pollutants have led to the development of advanced oxidation processes. Nowadays, nanophotocatalyst processes are considered as clean and environmentally-friendly treatment methods that can be extensively used for removing contaminants. The objective of the present study was to determine the efficiency of the ultraviolet and zinc oxide (UV/ZnO) process in the removal of diazinon pesticide from aqueous solutions. For the purposes of this study, samples were adjusted in a batch reactor at five different detention times. The ph levels used were 3, 7, and 9. Irradiation was performed using a 125 W medium-pressure mercury lamp. The diazinon concentrations of the samples were and 5 µg/l and the concentrations of zinc oxide nanoparticles were 5,, and 15 mg/l. The highest degradation efficiency was observed at ph 7 (mean = 8.92± 3.3), while the lowest was observed for ph 3 (mean 67.11 ± 24.49). Results showed that the optimal concentration of nanoparticles (6-12 nm) was mg L -1. Keywords: Nanoparticles, Zinc Oxide, Ultraviolet, Diazinon. 1. Assoc. Prof. of Environmental Health Eng., School of Public Health, TehranUniversity of Medical Sciences, Tehran, Iran (Corresponding Author) (98 21) 42933227 dehghanihadi@yahoo.com 2. Assist. Prof. of Environmental Health Eng., School of Public Health, Shahrekord University of Medical Sceinces, Shahrekord - dehghanihadi@yahoo.com () ( ) - 12

.[ ],,.[ ].[ ] ZnO. ph. - -...... / ph. ph /... -.[]...[] /.[].[].[]...... 2 Arda 1 Advanced Oxidation Technologies (AOP) 13

/ ± / / ± /.(P>/) 8 6 4 2 mg/l 5 mg/l 5 1 15 2 25 - ( ph ZnO= mg/l) UV/ZnO UV. UV.....[ ] /.[-] ph -- ph ph ± / / ± / / ± /..... ph /.... UV ( )..[] ) ( ) ( ) (.. GC-MS SPSS.. T- test ANOVA one way - --. UV/ZnO 1 Dispersive Liquid-Liquid Micro-Extraction 14

ph.[] ph.[] / ph ph.[] ph. -- /. / ± / / ± /.(P>/) - UV/ZnO (ph=7) /. / ± / ± /.(P>/) / /.(P</) 8 6 4 2 5 mg/l mg/l 15 mg/l 5 1 15 2 25 8 6 4 2 67.11 8.92 ph - (ZnO=mg/L),UV/ZnO / ph. ph (pka) ph. pka (pka) ph.. ph.[] ph ph.[]. ph. / pka. / ph. ph 7.4 3 7 9 ph 1 Zero Point Charge 15

/ / /.[] / / /.[] / /.[ ] ( ).. (). / -- /.. UV/ZnO - ph=7.. [] 8 6 4 2 5 1 15 2 25 3 8 6 4 2 UV UV/ZnO 5 1 15 2 25 5 mg/l 15 mg/l mg/l - UV/ZnO (ph=9). /... UV.....[] / - 1 Compromised 16

/ 3B.[ ] - /. -.. λ < 415nm ZnO hv e h cb () e cb h heat () h H 2 O ads OH H h OH ads OH ads organics h products () () () e cb O2 O2 () /. - 1. Daneshvar, N., Hejazi, M.J., Rangarangy, B., and Khataee, A.R. (28). Photocatalytic degradation of an organophosphorus pesticide phosalone in aqueous spensions,titanium dioxide. J. Environ. Sci. Health, 39(2), 285-296. 2. Zang, Y., and Pagilla, K. (21). Treatment of malathion pesticide waste water with nanofiltration and photo fenton oxidation. J. of Desalination, 263 (1-3), 36-44. 3. Fadaei, A.M., Dehghani, M. H., Nasseri, S., Mahvi, A.H., Rastkari, N., and Shayeghi, M. (212). Organophosphorous pesticides in surface water of Iran. Bull. Environ. Contam. Toxicol, 88 (6), 867-869. 4. Oller, I., Malato, S., and Sanchez-perez, J.A. (211). Combination of advanced oxidation processes and biological treatment for wastewater decontamination: A review. Sci. Total Environ., 47(2), 4141-4166. 5. Foo, K.Y., and Hameed, B.H. (21). Detoxification of pesticide waste via activated carbon adsorption process. J. Hazard. Mater,175 (1-3), 1-11. 6. Ahmed, S., Rasul, M.G., Brown, R., and Hashib, M.A. (211). Influence of parameters on the heterogenous photocatalytic degradation of pesticide and phenolic contaminants in wastewater: A short review. J. Environ. Manage, 92(3), 311-33. 7. Fadaei, A.M., Dehghani, M.H., Rastkari, N., Nasseri, S., Mahvi, A.H., and Shayeghi, M. (212). Degradation of organophosphorus pesticides in water during UV/H 2 O 2 treatment: Role of sulphate and bicarbonate ions. E. Journal of Chemistry, 9 (4), 215-222. 8. Abdennouri, M., Baaˆ lala, M., Galadi, A., El Makhfouk, M., Bensitel, M., Nohair, K., Sadiq, M., Boussaoud, A., and Barka, N. (211). Photocatalytic degradation of pesticides by titanium dioxide and titanium pillared purified clays. Arab. J.Chem. (In press). 17

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