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Characterization and Advanced Oxidation Treatment of Dyeing Effluent by Fenton's Reagent

机译:Fenton试剂表征及深度氧化处理印染废水。

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Textile effluent from dyeing process has been a serious environmental threat for years. This study was intended to evaluate the performance of Fenton's process for the removal of chemical oxygen demand (COD), colour and turbidity. Experiments were conducted by laboratory-scale reactors fed with cotton dyeing effluent. The Fenton process employs ferrous ions and hydrogen peroxide H2O2 under acidic pH conditions. The experimental variables studied include doses of iron salts and hydrogen peroxide, oxidation time, pH for oxidation and coagulation. The COD, color and turbidity removal reached a maximum of 97.2, 96.8 and 84.8% respectively at a reaction time of 20 min under optimum doses of H2O2 and Fe2+. Hydrogen peroxide dose ranging from 0.5 to 2.0 mL/500 mL and FeSO4 center dot 7H(2)O in the range of 0.5-4.0 gm/500 mL were selected to be examined at different reaction times between 10 and 30 min. Optimum dose of hydrogen peroxide and ferrous sulphate were 2.0 mL and 1.0 gm respectively for 500 mL of sample. In this study optimized pH 4.0 and 6.0 was found effective for oxidation and coagulation respectively.
机译:多年以来,染色过程中产生的纺织废水一直是严重的环境威胁。这项研究旨在评估Fenton工艺去除化学需氧量(COD),颜色和浊度的性能。实验是在实验室规模的反应器中进行的,其中加入了棉花染色废水。 Fenton工艺在酸性pH条件下使用亚铁离子和过氧化氢H2O2。研究的实验变量包括铁盐和过氧化氢的剂量,氧化时间,氧化和凝聚的pH值。在最佳剂量的H2O2和Fe2 +下,在20分钟的反应时间,COD,色度和浊度去除率分别达到97.2、96.8和84.8%的最大值。选择在0.5至2.0 mL / 500 mL范围内的过氧化氢剂量和在0.5-4.0 gm / 500 mL范围内的FeSO4中心点7H(2)O在10至30分钟的不同反应时间进行检查。 500 mL样品的最佳过氧化氢和硫酸亚铁剂量分别为2.0 mL和1.0 gm。在这项研究中,发现优化的pH 4.0和6.0分别对氧化和凝结有效。

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