Polymers as Coagulants for Wastewater Treatment

Sai Harsha Bhamidipati, Dharani Prasad Vadlamudi, Sudheshna Moka
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Abstract

Coagulation is a well-known, widely used process for wastewater treatment. Various coagulants have been used over the years, such as alum for commercial, large-scale water treatment plants. But there are certain disadvantages of these materials, such as large dosages, high pH sensitivity, and residual aluminum in treated water, which raises serious health concerns. Though synthetic polymers were found to be better than metallic salts on these counts, many countries across the world have laid strict regulations on the use of synthetic polymers due to their toxic nature, non-biodegradability, and residual polymer/monomers in treated water, which cause health problems. Biopolymers, on the other hand, are safe and non-toxic in nature, easily available and have shown promising results in terms of high removal efficiency and excellent selectivity toward metals and toxic substances. But their shorter shelf life and higher dosage requirement are an offset for their wide acceptance. Modifying biopolymers by “grafting” suitable monomers to their backbone structure overcome the known problems of synthetic polymers while improving the properties of the biopolymers. This chapter briefly describes the inorganic and organic polymers used for coagulation in the wastewater treatment industry, with a main focus on the more recent technology of grafted polymers.
高分子混凝剂在废水处理中的应用
混凝是一种众所周知的、广泛使用的废水处理工艺。多年来,各种混凝剂已被使用,如明矾用于商业,大型水处理厂。但这些材料也有一定的缺点,比如用量大、pH值敏感性高、处理后的水中有残留的铝,这引起了严重的健康问题。虽然在这些方面发现合成聚合物比金属盐更好,但世界上许多国家对合成聚合物的使用制定了严格的规定,因为它们具有毒性,不可生物降解性,并且在处理后的水中残留聚合物/单体,会导致健康问题。另一方面,生物聚合物安全无毒,易于获得,并且在对金属和有毒物质的高去除效率和优异选择性方面显示出良好的结果。但其较短的保质期和较高的剂量要求抵消了其广泛接受。通过将合适的单体“接枝”到生物聚合物的骨架结构上来修饰生物聚合物,克服了合成聚合物的已知问题,同时提高了生物聚合物的性能。本章简要介绍了废水处理行业中用于混凝的无机和有机聚合物,重点介绍了接枝聚合物的最新技术。
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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