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Combined Physicochemical Treatment of Textile and Mixed Industrial Wastewater

机译:物理化学联合处理纺织工业废水

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Wastewaters derived from a textile factory and an industrial park were subjected to treatment with ferric chloride coagulation; ozonation; ferric chloride pre-coagulation/Fenton-based process/lime post-coagulation; Fenton-based process/lime post-coagulation; and ferric chloride pre-coagulation/ozonation. Schemes with the Fenton-based process proved the most efficient for treatment of both wastewater samples. The characteristics of wastewater samples treated by a Fenton-based process at H2O2/COD weight ratio 0.5:1 complied with the discharge limits stated by regulations for wastewater directed to local sewerage. The Fenton-based process/lime post-coagulation scheme proved more efficient than ferric chloride pre-coagulation/Fenton-based process/lime post-coagulation system. The increase of H2O2/COD weight ratio to 2:1 resulted in 5 and 10% of residual COD and DOC, respectively. All studied processes and combined physicochemical treatment schemes, except single ozonation, resulted in toxicity reduction and biodegradability improvement in both wastewater samples. The operational costs of applied treatment schemes were calculated and indicated the Fenton-based process schemes as the most feasible and cost-effective.
机译:对来自纺织厂和工业园区的废水进行氯化铁混凝处理;臭氧化氯化铁预凝结/基于Fenton的工艺/石灰后凝结;基于芬顿的工艺/石灰后凝结;和氯化铁预凝结/臭氧化。事实证明,采用基于Fenton的工艺的方案对于两种废水样品的处理都是最有效的。 Fenton法在H 2 O 2 / COD重量比为0.5:1的条件下处理的废水样品的特性符合针对废水的规定的排放限值当地的污水处理。事实证明,基于Fenton的过程/石灰后凝结方案比氯化铁预凝结/基于Fenton的过程/石灰后凝结体系更有效。 H 2 O 2 / COD重量比增加到2:1,分别导致残留COD和DOC的5%和10%。除单次臭氧氧化外,所有研究过的过程和组合的物理化学处理方案均导致两个废水样品的毒性降低和生物降解性提高。计算了应用处理方案的运营成本,并表明基于Fenton的处理方案是最可行和最具成本效益的。

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