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首页> 外文期刊>Journal of Chemical Engineering of Japan >Contribution of Electrostatic Interaction to the Dynamic Stability Coefficient for Coagulation-Flocculation Kinetics of Beta-Iron Oxyhydroxides in Polyelectrolyte Solutions
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Contribution of Electrostatic Interaction to the Dynamic Stability Coefficient for Coagulation-Flocculation Kinetics of Beta-Iron Oxyhydroxides in Polyelectrolyte Solutions

机译:静电相互作用对聚电解质溶液中β-羟基氧化铁凝结-絮凝动力学的动态稳定性系数的贡献

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References(30) Cited-By(3) This paper describes the colloidal interactions of preformed positively charged iron oxyhydroxide particles: zeta potential, coagulation, and flocculation in the presence of nonionic, cationic and anionic polyelectrolytes. In salt-coagulated systems, the zeta potential shown as a function of the pH and of the KCl salt concentration is the controlling factor in the formation of particle aggregates. In polymer-flocculated systems, a moderately charged anionic polyelectrolyte was used to adsorb onto particle surfaces and then induced the bridging flocculation of oppositely charged iron oxyhydroxide particles, in which maximum flocculation was observed near zero zeta potential. It is pointed out that the relative importance between polymer bridging and charge neutralization mechanism in the coagulation-flocculation processes of colloidal particles is pH dependent. Correlation of the magnitude of zeta potential with the interparticle interaction energy is simulated by using DLVO theory. Moreover, the present study extends the conventional analysis through considering the temporal variation of the fractional surface coverage of colloidal particles by polymers. The theoretical predictions on the stability coefficients are compared with the experimental results.
机译:参考文献(30)Cited-By(3)本文介绍了在非离子,阳离子和阴离子聚电解质存在下,预形成的带正电的羟基氧化铁颗粒的胶体相互作用:ζ电位,凝聚作用和絮凝作用。在盐凝结系统中,显示为pH和KCl盐浓度函数的Zeta电位是形成颗粒聚集体的控制因素。在聚合物絮凝系统中,使用中等电荷的阴离子聚电解质吸附到颗粒表面,然后诱导带相反电荷的羟基氧化铁颗粒桥接絮凝,其中最大的絮凝在零ζ电势附近观察到。指出在胶体颗粒的凝结-絮凝过程中聚合物桥联和电荷中和机理之间的相对重要性取决于pH。利用DLVO理论模拟了ζ电位的大小与粒子间相互作用能的相关性。此外,本研究通过考虑聚合物对胶体颗粒的部分表面覆盖率的时间变化进行扩展,从而扩展了常规分析方法。将稳定性系数的理论预测与实验结果进行了比较。

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