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Treatment of landfill leachate waste using sono (US) and photo (UV) based advanced oxidation processes: Studies on various operating parameters

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dc.contributor.author P. Asaithambi
dc.contributor.author Dejene Beyene
dc.contributor.author Esayas Alemayehu
dc.date.accessioned 2020-12-06T11:08:27Z
dc.date.available 2020-12-06T11:08:27Z
dc.date.issued 2017
dc.identifier.uri http://10.140.5.162//handle/123456789/1708
dc.description.abstract In this study, the treatment of landfill leachate by sono (US) and photo (UV) based advanced oxidation processes (AOPs) was investigated in terms of % color and COD removal, together with electrical energy per order. Experimental results showed that, the hybrid sono–photo–Fenton (US/UV/Fe2+/ H2 O2 ) process has shown that higher removal of color (100%) and COD (96%) with required of low electrical energy per order (0.71 kWh/m3 ) than the other processes. The influence of various experimental parameters such as H2 O2 and Fe2+ concentration, COD concentration, solution pH, sonication (US) and photo (UV) power on the % color and COD removal with electrical energy per order has been studied to find out the optimum conditions leading to maximum % removal efficiency of hybrid US/UV/Fe2+/H2 O2 process. The best results of US/UV/Fe2+/H2 O2 process of landfill leachate have been obtained using 80 mM of H2 O2 , 40 mM of Fe2+, pH of 3, COD concentration of 2,000 ppm, sonication power of 100 W and UV power of 32 W and after 3 h of reaction time. The synergy index between sonication (US) and photo–Fenton (UV/Fe2+/H2 O2 ) process has been studied and critically reported. Therefore, the combination of US and UV based AOPs has been proved to be efficient treatment techniques for removal of pollutant from industrial effluent and wastewater. en_US
dc.language.iso en en_US
dc.subject US/UV/Fe2+/H2 O2 en_US
dc.subject Landfill leachate en_US
dc.subject Color and COD removal en_US
dc.subject Electrical energy per order en_US
dc.subject Synergy index en_US
dc.title Treatment of landfill leachate waste using sono (US) and photo (UV) based advanced oxidation processes: Studies on various operating parameters en_US
dc.type Article en_US


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