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Potential of Ferric and Polyaluminium Coagulants for Nanofiltration Pretreatment

机译:铁和聚铝混凝剂用于纳滤预处理的潜力

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The conventional chemical treatment of soft, cold and humic surface water was studied on a pilot scale, and fouling indexes were used to evaluate the suitability of the pretreated water for nanofiltration. the recommended values for fouling indexes were easily achieved. The best modified fouling index results were about 4 s/1~2 with two ferric salts and about 5 s/l~2 with polyaluminium chloride. Optimal flocculation pH and coagulant dosages for the modified fouling index were also suitable for minimizing organic matter and turbidity at the same time. In addition to removing organic carbon, nanofiltration can be applied to decrease ionic substances such as conagulant residues. Chemical treatment reduces organic matter of higher molar mass efficiently, but organic residue together with residual iron or aluminium may induce fouling. In nanofiltration pilot-scale studies at a waterworks using polyaluminium chloride, residual aluminium was observed to increase the foulign of membranes. The original water flux through NF membranes was, however, recovered by chemical cleaning, indicating the fouling was reversible.
机译:在中试规模上研究了软,冷和腐殖质地表水的常规化学处理方法,并使用结垢指数评估了预处理水对纳滤的适用性。结垢指数的推荐值很容易达到。两种铁盐的最佳改性结垢指数结果约为4 s / 1〜2,而聚氯化铝的最佳改性污垢指数结果约为5 s / l〜2。改良的结垢指数的最佳絮凝pH和凝结剂用量也适用于同时减少有机物和浊度。除了去除有机碳外,纳米过滤还可用于减少离子物质,例如混凝剂残留物。化学处理有效地降低了较高摩尔质量的有机物,但是有机残留物与残留的铁或铝可能会引起结垢。在使用聚氯化铝的自来水厂进行的纳滤中试研究中,观察到残留的铝会增加膜的污垢。但是,通过NF膜的原始水通量已通过化学清洁回收,表明结垢是可逆的。

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