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Removing particles and THM precursors by enhanced coagulation

机译:通过增强混凝去除颗粒和THM前体

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The effectiveness of enhanced coagulation for removing particles and trihalomethane (THM) precursors at various alum dosages and coagulation pH values was assessed. Samples of both source water and filter effluent were examined by counting particles and measuring particle size distribution, turbidity, total organic carbon, ultraviolet light absorbance at 254 nm (UV_(254)), and THM formation potential. Removal of particles and turbidity increased substantially at alum dosages above 20 mg/L. Particle removal was not significantly different at adjusted pH (5.5) compared with ambient pH. Filter effluent particle counts were consistent with residual turbidity data; however, particle counting provided more information on the efficiency of the solid-liquid separation. Significantly more THM precursors were removed by enhanced coagulation at pH 5.5 than at ambient pH. Higher dosages were needed to achieve acceptable removal of THM precursors than were needed for removal of particles.
机译:评估了增强凝结在各种明矾剂量和凝结pH值下去除颗粒和三卤甲烷(THM)前体的有效性。通过对颗粒进行计数并测量粒度分布,浊度,总有机碳,254 nm的紫外线吸收率(UV_(254))和THM形成潜力,来检查水源和过滤器废水的样品。明矾剂量超过20 mg / L时,颗粒的去除和浊度显着增加。与环境pH相比,在调节pH(5.5)时,颗粒去除没有显着差异。过滤器出水颗粒计数与残留浊度数据一致;然而,颗粒计数提供了更多关于固液分离效率的信息。在pH 5.5下比在环境pH下通过增强的凝聚作用去除的THM前体明显更多。与去除颗粒所需的剂量相比,实现可接受的THM前体去除所需的剂量更高。

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