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Catalytic ozonation of petroleum refinery wastewater utilizing Mn-Fe-Cu/Al2O3 catalyst

机译:Mn-Fe-Cu / Al2O3催化剂催化炼油废水的臭氧氧化

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There is of great interest to develop an economic and high-efficient catalytic ozonation system (COS) for the treatment of biologically refractory wastewaters. Applications of COS require options of commercially feasible catalysts. Experiments in the present study were designed to prepare and investigate a novel manganese-iron-copper oxide-supported alumina-assisted COS (Mn-Fe-Cu/Al2O3-COS) for the pretreatment of petroleum refinery wastewater. The highly dispersed composite metal oxides on the catalyst surface greatly promoted the performance of catalytic ozonation. Hydroxyl radical mediated oxidation is a dominant reaction in Mn-Fe-Cu/Al2O3-COS. Mn-Fe-Cu/Al2O3-COS enhanced COD removal by 32.7 % compared with a single ozonation system and by 8-16 % compared with Mn-Fe/Al2O3-COS, Mn-Cu/Al2O3-COS, and Fe-Cu/Al2O3-COS. The O/C and H/C ratios of oxygen-containing polar compounds significantly increased after catalytic ozonation, and the biodegradability of petroleum refinery wastewater was significantly improved. This study illustrates potential applications of Mn-Fe-Cu/Al2O3-COS for pretreatment of biologically refractory wastewaters.
机译:开发一种用于处理生物难降解废水的经济高效的催化臭氧化系统(COS)引起了人们极大的兴趣。 COS的应用要求选择商业上可行的催化剂。本研究中的实验旨在制备和研究新型的锰铁铜氧化物负载的氧化铝辅助COS(Mn-Fe-Cu / Al2O3-COS)预处理炼油厂废水。催化剂表面上高度分散的复合金属氧化物极大地促进了催化臭氧化的性能。羟基自由基介导的氧化是Mn-Fe-Cu / Al2O3-COS中的主要反应。 Mn-Fe-Cu / Al2O3-COS与单臭氧处理系统相比,COD去除率提高了32.7%,与Mn-Fe / Al2O3-COS,Mn-Cu / Al2O3-COS和Fe-Cu /相比,提高了8-16% Al 2 O 3 -COS。催化臭氧化处理后,含氧极性化合物的O / C和H / C比显着提高,炼油废水的生物降解性得到显着提高。这项研究说明了Mn-Fe-Cu / Al2O3-COS在生物难处理废水的预处理中的潜在应用。

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