Application of Organic Coagulants in Water and Wastewater Treatment

Emmanuel Kweinor Tetteh, S. Rathilal
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引用次数: 54

Abstract

Coagulation is an essential mechanism that occurs in most conventional water and wastewater treatment plants. This occurs in a physical purification unit involving transport processes and the addition of coagulants for chemical reactions, charge neutralization, and formation of smaller flocs to agglomerate into larger flocs. This enhances the effective removal of recalcitrant contaminants by downstream processes. However, poor treatment of wastewater might have a high negative impact on biodiversity and the environment in general. This chapter seeks to address the limitation of employing inorganic coagulants by evaluating the efficiency of organic coagulants and exploring the factors and mechanism governing coagulation in a physiochemical treatment process of water and wastewater resources. The effect of pH, coagulant type and dosage to ease the high sludge production and discharge of residual metals into the downstream waters is addressed. The emerging of organic coagulants and technology to mitigate the performance and recovery of mineral coagulants from wastewater treatment residual is been proposed.
有机混凝剂在水和废水处理中的应用
混凝是发生在大多数常规水和废水处理厂的基本机制。这发生在物理净化单元中,涉及运输过程、添加混凝剂进行化学反应、电荷中和和形成小絮凝体以凝聚成大絮凝体。这提高了下游工艺对难降解污染物的有效去除。然而,废水处理不当可能对生物多样性和一般环境产生很大的负面影响。本章旨在通过评估有机混凝剂的效率,并探索在水和废水资源的物理化学处理过程中控制混凝的因素和机制,解决使用无机混凝剂的局限性。探讨了pH值、混凝剂类型和投加量对缓解高污泥产量和残余金属排放到下游水体的影响。介绍了有机混凝剂的发展趋势,以及改善混凝剂性能和从废水处理残留物中回收矿物混凝剂的技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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