首页> 外文期刊>Canadian Journal of Civil Engineering >Optimization of phosphorus removal in secondary effluent using immersed ultrafiltration membranes with in-line coagulant pretreatment — implications for advanced water treatment and reuse applications
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Optimization of phosphorus removal in secondary effluent using immersed ultrafiltration membranes with in-line coagulant pretreatment — implications for advanced water treatment and reuse applications

机译:使用在线凝结剂预处理的浸入式超滤膜优化二级废水中的除磷,这对于高级水处理和回用应用具有重要意义

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In-line addition of alum and ferric chloride was conducted at a hollow-fibre immersed ultrafiltration (UF) membrane pilot plant, using secondary effluent from a municipal wastewater treatment plant (WWTP) as the feed. The objective of such pretreatment was to remove phosphorus from the feed from an initial concentration of approximately 5 mg/L to below 0.3 mg/L. The simplified in-line coagulant addition process involved hydraulic mixing of the coagulant into the feed and subsequent flocculation, and a greatly reduced (12–14 min) flocculation time relative to conventional coagulation-flocculation-settling treatment. Both alum and ferric chloride effec tively removed phosphorus to below the 0.3 mg/L threshold when applied as a pretreatment at optimized doses, both of which were below the WWTP’s current coagulant dose (as ferrous chloride). This simplified pre-treatment scheme provided consistent enhanced removal of phosphorus and organic compounds. These results suggest that simplified in-line coagulant addition in advance of immersed UF membranes qenhances the ability to produce treated effluent suitable for water-reuse applications.
机译:在中空纤维浸入式超滤(UF)膜中试工厂进行在线添加明矾和氯化铁,使用市政废水处理厂(WWTP)的二次废水作为进料。这种预处理的目的是从进料中除去磷,其初始浓度约为5 mg / L至低于0.3 mg / L。简化的在线凝结剂添加过程涉及将凝结剂液压混合到进料中并随后进行絮凝,相对于传统的凝结-絮凝-沉降处理,絮凝时间大大减少(12-14分钟)。当以最佳剂量进行预处理时,明矾和氯化铁都能有效去除磷,使磷降至0.3 mg / L阈值以下,这两种剂量均低于污水处理厂目前的混凝剂剂量(以氯化亚铁计)。这种简化的预处理方案可提高磷和有机化合物的去除率。这些结果表明,在浸入式超滤膜之前简化的在线凝结剂添加可增强产生适合于中水应用的处理后废水的能力。

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