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Evaluation of the flocculation and de-flocculation performance and mechanism of polymer flocculants

机译:高分子絮凝剂的絮凝和絮凝性能评价及机理

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Understanding the interaction mechanism between polymeric flocculants and solid particles in two oppositely charged solutions: bentonite and calcium fluoride, is of great practical and fundamental importance. In this work, inorganic flocculants based on aluminum(III) or iron(III); cationic, anionic and non-ionic organic flocculants were used. The solution pH, which highly influenced the flocculation performance of the system, has been used as a function of turbidity removal, sediment volume and velocity. Results show that the flocculation of inorganic polymers does not depend on the zeta potential but on the solution pH, contrary for cationic and anionic polymers. Non-ionic polymer was independent on both. By varying the final pH of the heterogeneous solution formed of flocs-liquid, it was found for inorganic polymers, the optimum condition of pH <3 to separate inorganic flocculant particles from flocs. Inductively coupled plasma atomic emission spectrometer and X-ray fluorescence analysis proved the reversibility of flocculation process by indicating the concentration of flocculant representative atom (Al or Fe) in the flocs and in the emerging solutions when the flocculation was optimized and the reversibility was effective. As results, weak forces were suggested as responsible for inorganic polymers flocculation where electrostatic interaction and hydrogen bonds may enroll the mechanism of organic flocculants.
机译:了解聚合物絮凝剂与固体颗粒在两种带相反电荷的溶液(膨润土和氟化钙)之间的相互作用机理具有重要的实践意义和根本意义。在这项工作中,基于铝(III)或铁(III)的无机絮凝剂;使用阳离子,阴离子和非离子有机絮凝剂。溶液的pH值对去除混浊度,沉淀物的体积和流速的影响很大,已严重影响系统的絮凝性能。结果表明,与阳离子和阴离子聚合物相反,无机聚合物的絮凝并不取决于zeta电位,而取决于溶液的pH值。非离子聚合物两者都不依赖。通过改变絮凝物-液体形成的非均相溶液的最终pH,发现对于无机聚合物而言,pH <3的最佳条件是从絮凝物中分离出无机絮凝剂颗粒。电感耦合等离子体原子发射光谱仪和X射线荧光分析表明絮凝过程是可逆的,当絮凝最优化且可逆性有效时,它可以指示絮凝物和新兴溶液中絮凝剂代表原子(Al或Fe)的浓度。结果,弱力被认为是造成无机聚合物絮凝的原因,其中静电相互作用和氢键可能参与了有机絮凝剂的机理。

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