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Use of Ozonation Process for the Oxidation of Liming Float Wastewater Stream

机译:臭氧化工艺在黎明浮游废水中的氧化

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This paper describes the application of ozone treatment for liming float wastewater. Oxidation of both sulphide and organic compounds is investigated and applied on a highly concentrated alkali effluent. The ozonation proves to be efficient for the total oxidation of sulphides (S2−, HS−....) present in this effluent. The present study shows that 3.5 g of ozone are necessary to oxidize 1 g of sulphide. COD removal effectiveness by ozone alone is evaluated to 16% when the effluent is treated at its initial pH (pH = 12.9) and biochemical oxygen demand (BOD5/COD) ratio of effluent, ozonated for 2 h, increases from 0.22 to 0.36 indicating that the effluent becomes biodegradable. Ozonation effectiveness strongly depends on pH. A high COD reduction (55%) is reached at optimal pH = 8. The addition of hydrogen peroxide, as an oxidant, enhances the efficiency of the ozone treatment. The COD removal increases from 16% with O3 alone to 64%, after 1 h of ozonation with hydrogen peroxide dose of 8 mL per liter of liming float wastewater.
机译:本文介绍了臭氧处理在石灰浮法废水中的应用。研究了硫化物和有机化合物的氧化,并将其应用于高浓度的碱性废水中。臭氧氧化被证明对于这种废水中存在的硫化物(S2-,HS -....)的总氧化是有效的。本研究表明,氧化1克硫化物需要3.5克臭氧。当废水在其初始pH(pH = 12.9)下处理且废水的生化需氧量(BOD5 / COD)臭氧化2小时后,其单独的臭氧对COD去除效率评估为16%,从0.22增加至0.36,表明废水变成可生物降解的。臭氧化效果很大程度上取决于pH值。在最佳pH = 8时,COD的减少量很高(55%)。过氧化氢作为氧化剂的加入可以提高臭氧处理的效率。在过氧化氢剂量为8毫升/升的石灰浮选废水中进行1小时的臭氧化后,COD的去除率从单独使用O3的16%增加到64%。

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