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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Controlling attractive interparticle forces via small anionic and cationic additives in kaolin clay slurries
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Controlling attractive interparticle forces via small anionic and cationic additives in kaolin clay slurries

机译:通过在高岭土粘土浆液中使用小的阴离子和阳离子添加剂来控制有吸引力的粒子间作用力

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摘要

Interparticle forces govern slurry behavior in flow, mixing, sedimentation and thickening. This study evaluates the use of small anionic and cationic additives with pH to control the interparticle forces in kaolin slurry via the yield stress parameter. Both phosphate and citrate additives were found to reduce the interparticle attractive force or yield stress in the moderate pH region of 4-12. These relatively low charged additives were unable to impart a sufficiently strong repulsive interparticle force to completely disperse the slurry. Three linear relationships between yield stress and the square of zeta potential were observed in slurry with and without these additives, indicating that the yield stress-DLVO force model is obeyed in each linear region. The mid-range zeta potential region yielded a positive slope which was attributed to heterogeneous charge attraction between clay particles. It is this heterogeneous charge attraction that was weakened by the adsorbed additives. In contrast, cationic Polyethylenimine (PEI) of Mw 70,000 increases the yield stress at all pH level via bridging. Charge reversal was also observed at high PEI concentrations. In two cases, the pH of maximum yield stress and zero zeta potential coincided. A single linear yield stress-zeta potential squared relationship was observed despite particle bridging interaction being the dominant interparticle force.
机译:颗粒间力控制浆液在流动,混合,沉降和增稠中的行为。这项研究评估了使用具有pH值的小型阴离子和阳离子添加剂通过屈服应力参数控制高岭土浆料中颗粒间作用力的方法。发现磷酸盐和柠檬酸盐添加剂均在4-12的中等pH范围内降低了颗粒间吸引力或屈服应力。这些带电荷相对较低的添加剂不能赋予足够强的排斥颗粒间力以完全分散浆料。在有或没有这些添加剂的情况下,在浆液中观察到屈服应力与ζ电势平方之间的三个线性关系,这表明在每个线性区域都遵循屈服应力-DLVO力模型。中等范围的ζ电势区域产生正斜率,这归因于粘土颗粒之间的异质电荷吸引。正是这种异质电荷吸引被吸附的添加剂削弱了。相反,Mw 70,000的阳离子聚乙烯亚胺(PEI)在所有pH值下都通过桥接增加了屈服应力。在高PEI浓度下也观察到电荷反转。在两种情况下,最大屈服应力和零ζ电位的pH值一致。尽管颗粒桥接相互作用是主要的颗粒间作用力,但仍观察到单线性屈服应力-ζ电势平方关系。

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