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Treatment and recycling facilities of highly polluted water-based paint wastewater

机译:高污染水性涂料废水的处理和回收设施

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The study presented focuses on treatment and recycling facilities of highly polluted water-based paint wastewater from electronics industry, using coagulation-flocculation, Fenton's oxidation and membrane processes. The treated water is sought after for recycling purposes within the painting unit and the water quality is negligible except suspended solids. The waste-water used in this study was characterized as highly polluted wastewater with high concentrations of COD (55,000-144,000 mg/1) and SS (9500-32,000 mg/1), alkaline and blackish colored. Coagulation-flocculation using alum and FeSO_4 was investigated. 67% of COD removal was achieved at 1000 mg/1 of alum dosage whereas coagulation with FeSO_4 obtained 45% removal efficiency at 750 mg/1 dosage. The Fenton's oxidation process gave good results for the removals of COD and color. 81% of COD removal was achieved at a molar ratio of [H_2O_2]/[Fe~(+2)] = 10 with 2 m H_2O_2. Waste sludge produced during the Fenton's process was less than that of coagulation, but still required hazardous chemical sludge disposal. This study showed that the total flux decline for the FM UP005 ultrafiltration membrane was 73% and the flux decline due to membrane fouling was 9%. The use of membrane filtration causes no sludge disposal problems since the concentrate can be recycled or reused. Cost analysis involving investment, operation and maintenance, and waste sludge disposal should be made to decide the treatment and/or recycling process.
机译:这项研究的重点是利用混凝-絮凝,芬顿氧化和膜工艺,处理和回收电子工业中高度污染的水性涂料废水。寻求处理后的水以在喷漆单元内循环利用,除悬浮固体外,水质几乎可以忽略不计。这项研究中使用的废水的特征是高污染的废水,其废水中的COD(55,000-144,000 mg / 1)和SS(9500-32,000 mg / 1)高浓度,呈碱性和黑色。研究了使用明矾和FeSO_4进行混凝-絮凝。在明矾剂量为1000 mg / 1时,COD去除率达到67%,而在750 mg / 1剂量下,用FeSO_4进行的凝结获得了45%的去除率。 Fenton的氧化过程为去除COD和色泽提供了良好的结果。在2 m H_2O_2的摩尔比为[H_2O_2] / [Fe〜(+2)] = 10的条件下,COD去除率为81%。 Fenton工艺过程中产生的废污泥少于混凝物,但仍需要进行危险的化学污泥处理。这项研究表明,FM UP005超滤膜的总通量下降为73%,而由于膜结垢导致的通量下降为9%。膜过滤的使用不会造成污泥处理问题,因为浓缩液可以回收或再利用。应进行涉及投资,运营和维护以及废物污泥处置的成本分析,以确定处理和/或回收过程。

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