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Enhanced coagulation for high alkalinity and micro-polluted water: The third way through coagulant optimization

机译:高碱度和微污染水的增强混凝:优化混凝剂的第三种方法

摘要

Conventional coagulation is not an effective treatment option to remove natural organic matter (NOM) in water with high alkalinity/pH. For this type of water, enhanced coagulation is currently proposed as one of the available treatment options and is implemented by acidifying the raw water and applying increased doses of hydrolyzing coagulants. Both of these methods have some disadvantages such as increasing the corrosive tendency of water and increasing cost of treatment. In this paper, an improved version of enhanced coagulation through coagulant optimization to treat this kind of water is demonstrated. A novel coagulant, a composite polyaluminum chloride (HPAC), was developed with both the advantages of polyaluminum chloride (PACl) and the additive coagulant aids: PACl contains significant amounts of highly charged and stable polynuclear aluminum hydrolysis products, which is less affected by the pH of the raw water than traditional coagulants (alum and ferric salts); the additives can enhance both the charge neutralization and bridging abilities of PACl. HPAC exhibited 30% more efficiency than alum and ferric salts in dissolved organic carbon (DOC) removal and was very effective in turbidity removal. This result was confirmed by pilot-scale testing, where particles and organic matter were removed synergistically with HPAC as coagulant by sequential water treatment steps including pre-ozonation, coagulation, flotation and sand filtration. (C) 2007 Elsevier Ltd. All rights reserved.
机译:常规混凝不是去除高碱度/ pH水中天然有机物(NOM)的有效方法。对于这种类型的水,目前已提出增强混凝作为可用的处理方案之一,并且可以通过酸化原水并增加剂量的水解混凝剂来实现。这两种方法都具有一些缺点,例如增加水的腐蚀趋势和增加处理成本。本文展示了通过优化混凝剂来处理这类水的改进混凝方法。开发了一种新型混凝剂,即复合聚氯化铝(HPAC),兼具聚氯化铝(PACl)和添加剂助凝剂的优点:PACl含有大量高电荷且稳定的多核铝水解产物,受水解的影响较小。原水的pH值要高于传统混凝剂(铝盐和铁盐);添加剂可以增强PAC的电荷中和和桥接能力。在溶解有机碳(DOC)去除方面,HPAC的效率比明矾和铁盐高30%,并且在去除浊度方面非常有效。该结果通过中试规模测试得到了证实,在该过程中,通过连续的水处理步骤(包括预臭氧化,凝聚,浮选和砂滤),与HPAC作为凝结剂协同去除了颗粒和有机物。 (C)2007 Elsevier Ltd.保留所有权利。

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