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Combined oxidative and biological treatment of separated streams of tannery wastewater

机译:制革废水分离流的氧化与生物处理相结合

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Leather tanning effluents are a source of severe environmental impacts. In particular, the unhairing stage, belonging to the beamhouse processes, generates an alkaline wastewater with high concentrations of organic matter, sulphides, suspended solids, and salts, which shows significant toxicity. The objective of this work was to evaluate the biodegradation of this industrial wastewater by combined oxidative and biological treatments. An advanced oxidation process (AOP) with Fenton's reagent was used as batch pretreatment. The relationships of H2O2/Fe2+ and H2O2/COD were 9 and 4, respectively, reaching an organic matter removal of about 90%. Subsequently, the oxidised beamhouse effluent was fed to an activated sludge system, at increasing organic load rates (OLR), in the range of 0.4 to 1.6 g COD/L-day. The biological organic matter removal of the pre-treated wastewater ranged between 35% and 60% for COD, and from 60% to 70% for BOD. Therefore, sequential AOP pretreatment and biological aerobic treatment increased the overall COD removal up to 96%, compared to 60% without pretreatment. Bioassays with D. magna and D. pulex showed that this kind of treatment achieves only a partial toxicity removal of the tannery effluent.
机译:皮革鞣制废水是严重影响环境的根源。特别是,属于束流处理过程的脱毛阶段会产生碱性废水,其中含有高浓度的有机物,硫化物,悬浮固体和盐,显示出明显的毒性。这项工作的目的是通过氧化和生物处理相结合的方法来评估工业废水的生物降解。使用芬顿试剂进行的高级氧化工艺(AOP)被用作批预处理。 H2O2 / Fe2 +和H2O2 / COD的关系分别为9和4,有机物去除率约为90%。随后,将氧化后的污水处理厂废水以有机负荷率(OLR)不断增加的方式(0.4至1.6 g COD / L天)送入活性污泥系统。对于COD,预处理废水的生物有机物去除率在35%至60%之间,对于BOD则在60%至70%之间。因此,相继的AOP预处理和生物好氧处理使总COD去除率高达96%,而未进行预处理的60%。用D. magna和D. pulex进行的生物测定表明,这种处理仅能部分去除制革厂废水的毒性。

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