首页> 外文期刊>Journal of Energy, Environmental & Chemical Engineering >Lead and Zinc Smelting Wastewater Treatment and Reclamation by Coagulation-Flocculation-Sedimentation, Ultrafiltration and Reverse Osmosis Technique
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Lead and Zinc Smelting Wastewater Treatment and Reclamation by Coagulation-Flocculation-Sedimentation, Ultrafiltration and Reverse Osmosis Technique

机译:铅和锌冶炼废水处理和封闭凝血 - 絮凝沉降,超滤和反渗透技术

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The typical smelting wastewater is with characteristics of high concentration of TDS, conductivity, heavy metal ions, and low concentration of COD. The ultrafiltration (UF) and reverse osmosis (RO) is an attractive technology to reclaim and reuse this kind of wastewater. In this work, Coagulation-flocculation-sedimentation (CFS) and multi-media filter (MMF) was used as the pretreatment processes. UF, RO and concentration RO (CRO) processes was applied as the advanced treatment processes to reclaim the smelting wastewater. To enlarge the recovery of RO and CRO units, the influences of increasing the feed temperature by waste heat from the smelting plant and the feed pressure by change the operating frequency of the high pressure pumps were investigated. The optimize operation parameters of RO and CRO units were obtained. To understand the operation CIP cycle time of UF, RO and CRO membrane units in a long term operation, the trans-membrane pressure (TMP) and permeate flux difference were investigate. Good system operation stability, permeate flux recovery after CIP and qualified treated water were obtained in the recommend operation parameters. The results of this work can benefit to the designing of reclaiming the smelting wastewater by UF-RO-CRO approach within the Lead and Zinc smelting industrial application.
机译:典型的冶炼废水具有高浓度的TDS,电导率,重金属离子和低浓度COD的特性。超滤(UF)和反渗透(RO)是一种有吸引力的技术,可获得和重用这种废水。在这项工作中,使用凝固 - 絮凝 - 沉降(CFS)和多媒体过滤器(MMF)作为预处理过程。 UF,RO和浓度RO(CRO)方法被应用为先进的治疗方法,以回收冶炼废水。为了扩大RO和CRO单元的恢复,研究了通过改变高压泵的工作频率从冶炼设备和进给压力增加饲料温度的影响。获得了RO和CRO单元的优化操作参数。为了了解UF,RO和CRO膜单元的操作CIP循环时间,在长期操作中,跨膜压力(TMP)和渗透通量差异进行了研究。在推荐操作参数中获得了良好的系统操作稳定性,CIP和合格处理过的水后渗透通量恢复。这项工作的结果可以利用在铅和锌冶炼工业应用中通过UF-RO-CRO方法进行回收冶炼废水。

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