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Pilot-scale evaluation of membrane treatment technologies for surface water NOM removal in the absence of coagulation.

机译:在没有凝结的情况下用于去除地表水NOM的膜处理技术的中试评估。

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Application of membrane treatment technologies to surface water with high NOM concentrations is often done in the presence of coagulation and flocculation. Coagulation processes produce residual wastes that must be land filled and may contain high levels of aluminum or other metals. In this study, bench and pilot-scale membrane systems in the ranges of microfiltration (MF), ultrafiltration (UF), and nanofiltration (NF) were tested on two source waters with elevated NOM levels. The first source in Tatamagouche, Nova Scotia has periodic spikes in turbidity and TOC resulting from surface runoff into the source water. The second source in Shelburne, Nova Scotia is low turbidity surface water with high levels of color and associated NOM parameters. Results of pilot testing show that MF and OF processes consistently achieve >90% removal of particulate matter, including, turbidity and particle counts. However they are less effective in removing TOC and organic matter. NF treatment was shown to consistently remove between 90 and 100% of DBP precursor material. (Abstract shortened by UMI.)
机译:膜处理技术通常在存在凝结和絮凝的情况下应用于高NOM浓度的地表水。混凝过程会产生残留废物,必须将其填埋,并可能含有高含量的铝或其他金属。在这项研究中,在两个NOM水平升高的水源水上测试了微滤(MF),超滤(UF)和纳滤(NF)范围内的试验台和中试规模的膜系统。新斯科舍省塔塔马库(Tatamagouche)的第一个水源由于地表径流进入水源而产生浊度和TOC的周期性峰值。新斯科舍省谢尔本的第二个水源是低浊度的地表水,具有较高的颜色和相关的NOM参数。中试测试的结果表明,MF和OF工艺始终如一地实现> 90%的颗粒物去除,包括浊度和颗粒数。但是,它们在去除TOC和有机物方面效果较差。 NF处理已显示出始终去除90%至100%的DBP前体材料。 (摘要由UMI缩短。)

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