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A Bench-Scale Study for the Treatment of Ultrafiltration Reject Flows Generated at Perris Water Filtration Plant

机译:珀丽斯滤水厂产生的超滤拒绝水处理的基准规模研究

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Eastern Municipal Water District (EMWD) has evaluated candidate technologies for treatment and recovery of the reject (waste) stream from the ultrafiltration (UF) system at the Perris Water Filtration Plant (PWFP). The treated water from the reject recovery system will either be combined with reclaimed water or recycled to the head of the PWFP and processed into potable water. The treated reject flow should have characteristics that are similar to or better than raw water quality to minimize adverse impacts on UF system operation when the treated reject water is recycled back to the PWFP (i.e., turbidity <2 NTU and TOC<3 mg/L). Based on project objectives and constraints, three treatment technologies were short listed from a total of seven applicable technologies using non-monetary criteria and a quantitative scoring technique. The short-listed technologies (membrane filtration, inclined plate settling and ballasted flocculation) were further evaluated via multi-attribute analysis which identified pressurized membrane filtration as the best option. Ballasted flocculation received a higher benefit-to-cost ranking than plate settling, however the potential for sand and polymer carryover was deemed to represent a serious risk to the PWFP UF operation by the membrane supplier, negatively impacting their membrane warranty. Consequently, ballasted flocculation was eliminated as an implementable reject treatment alternative. To confirm the benefit of membrane filtration over plate settling, a bench testing was conducted such that final technology selection was based on empirical data, rather than assumptions. This paper describes the reject recovery treatment alternative selection and summarizes bench-testing findings.
机译:东部市政水区(EMWD)已评估了佩里斯滤水厂(PWFP)的超滤(UF)系统中处理和回收废品(废物)流的候选技术。来自废品回收系统的处理后的水将与再生水合并,或循环到PWFP的顶部,然后加工成饮用水。处理后的废液流量应具有与原水水质相似或更好的特性,以在将处理后的废水循环回PWFP时,将对超滤系统运行的不利影响降至最低(例如,浊度<2 NTU和TOC <3 mg / L) )。根据项目目标和约束条件,使用非货币标准和定量评分技术从总共七项适用技术中选出了三种处理技术。入围的技术(膜过滤,斜板沉降和压载絮凝)通过多属性分析进一步评估,确定加压膜过滤是最佳选择。压载絮凝的成本效益比板沉降更高,但是膜供应商认为,沙子和聚合物残留的可能性对PWFP UF操作造成严重风险,对膜的保修产生负面影响。因此,消除了压载絮凝作为可行的废品处理替代方案。为了确认膜过滤优于板沉降的优势,进行了台架试验,最终的技术选择是基于经验数据,而不是假设。本文介绍了次品回收处理的替代选择,并总结了基准测试结果。

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