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Regeneration of industrial district wastewater using a combination of Fenton process and ion exchange - A case study

机译:Fenton工艺与离子交换相结合再生工业废水-以案例研究为例。

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Regeneration studies of wastewater effluent from an organized industrial district (OID) for possible reuse in textile industry as process water was investigated. Advanced treatment methods including Fenton process, polyaluminium chloride (PAC) coagulation and ion exchange were applied on OID effluent. In Fenton process removal efficiencies for suspended solids (SS), chemical oxygen demand (COD), SAC(436) (spectral absorption coefficient), SAC(525) and SAC(620) were determined 61%, 36%, 35%, 49% and 67%, respectively. After Fenton process, wastewater samples were coagulated with PAC. Optimum removal efficiencies for SS, COD, Fe ion, SAC(436), SAC(525) and SAC(620) were determined 83%, 18%, 93%, 32%, 36% and 58%, respectively. Ion exchange experiments were conducted on chemically coagulated wastewater samples to improve the quality of wastewater. Optimum dosage of resins was determined. The experiments revealed that 1:1 resin ratio (20 mL H-type resin:20 mL OH-type resin) gave the best removal rates for the parameters considered in this study. Study results indicated that quality of the wastewater was suitable for the process water characteristics of textile industry and unit wastewater treatment cost was determined as 2.54 is an element of/m(3). (C) 2007 Elsevier B.V. All rights reserved.
机译:研究了来自有组织工业区(OID)的废水的再生研究,以便将其作为工艺用水在纺织工业中进行再利用。 OID废水采用了Fenton工艺,聚氯化铝(PAC)凝聚和离子交换等先进的处理方法。在Fenton工艺中,对于悬浮固体(SS)的去除效率,化学需氧量(COD),SAC(436)(光谱吸收系数),SAC(525)和SAC(620)被确定为61%,36%,35%,49 %和67%。 Fenton处理后,废水样品用PAC凝结。确定SS,COD,Fe离子,SAC(436),SAC(525)和SAC(620)的最佳去除效率分别为83%,18%,93%,32%,36%和58%。对化学混凝废水样品进行了离子交换实验,以提高废水质量。确定了树脂的最佳用量。实验表明,对于本研究中考虑的参数,1:1的树脂比例(20 mL H型树脂:20 mL OH型树脂)具有最佳去除率。研究结果表明,废水的质量适合纺织工业的工艺用水特性,单位废水处理成本确定为2.54是/ m(3)的元素。 (C)2007 Elsevier B.V.保留所有权利。

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