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Evaluation of a MF membrane system composed of pre coagulation-sedimentation and chlorination for water reuse

机译:评估由预混凝沉淀和氯化组成的MF膜系统的回用水

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In this research, we investigated the variation of transmembrane pressure and permeate water quality in pre-coagulation and sedimentation with iron based coagulant, and chlorination of feed water for PVDF (Polyvinylidene fluoride) based MF membrane filtration. NaClO was fed to the membrane module at a dosage of 0.5 mg/L and maintained during filtration. To observe the effect of raw water, three types of raw and processed waters, including river surface water, coagulated water and coagulated-settled water, were employed. In the case of river surface water, the transmembrane pressure increased abruptly in 500 hours operation. On the contrary, no significant increase in transmembrane pressure was observed for coagulated water and coagulated-settled water for 1200 hours operation. The turbidity of permeate was lower than the detection limit for all applied waters. The removal efficiency for humic substances in coagulated water-And coagulated-settled water was approximately ten times higher than that in surface river water. And, the removal efficiency for TOC and DOC was approximately two times higher than that in surface river water. From the results of the operation, it can be observed that it is possible to maintain stable operation at 0.9 m(3)/m(2)-day filtration flux through a combination of pre-coagulation and pre-chlorination. However, the water quality of permeate was the best when the pre-coagulation-sedimentation process was combined with pre-chlorination. With respect to fouling reduction and operation efficiency increase in membrane filtration, the pre-coagulation/sedimentation process is a promising alternative..
机译:在这项研究中,我们研究了铁基凝结剂在预凝结和沉淀过程中跨膜压力和渗透水质量的变化,以及基于DFDF(聚偏二氟乙烯)的MF膜过滤对给水进行氯化处理。将NaClO以0.5 mg / L的剂量加入到膜组件中,并在过滤过程中保持不变。为了观察原水的影响,采用了三种原水和加工水,包括河面水,凝结水和凝结沉淀水。在河面水的情况下,运行500小时后,跨膜压力突然增加。相反,在操作1200小时后,对于凝结水和凝结水而言,未观察到跨膜压力的显着增加。渗透水的浊度低于所有应用水的检出限。混凝水中和凝结水中对腐殖质的去除效率比地表河水中的高约十倍。而且,TOC和DOC的去除效率约为地表河水中的去除效率的两倍。从操作结果可以看出,通过预凝和预氯化的组合,可以在0.9 m(3)/ m(2)-day过滤通量下保持稳定的操作。然而,当预凝沉过程与预氯化相结合时,渗透水的水质是最好的。关于减少膜过滤的结垢和提高操作效率,预凝结/沉淀过程是一个有前途的替代方法。

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