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Role of polymeric dispersant functional groups in the dispersion behaviour of titania pigment particles

机译:聚合物分散剂官能团在二氧化钛颜料颗粒分散行为中的作用

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The adsorption of polymeric dispersants onto titania pigment particles has been investigated at pH 9.5 as a function of the type of polymer functional group, using polyacrylic acid and modified polyacrylamides. The polyacrylamides include homopolymer and copolymers with either hydroxyl groups or carboxylate and hydroxyl groups. The experimental methods used were adsorption isotherm, zeta potential, particle size measurements and rheology. The anionic dispersants increased the magnitude of the titania pigment particle zeta potential, while the nonionic dispersants had a negligible effect. Both polyacrylic acid and polyacrylamide copolymers altered the titania pigment dispersion behaviour, reducing the suspension yield stress and the mean pigment particle size, while the polyacrylamide homopolymer had a negligible effect on the pigment dispersion properties. Generally the optimum dispersion effect (minimum particle yield stress and particle size) coincided with the polymer adsorption density; however, for polyacrylic acid, the maximum dispersion effect occurred prior to maximum adsorption. Acrylamide polymer functional groups adsorbed onto the pigment surface but they were unable to influence the pigment particle dispersion properties; however, adsorption and dispersion properties were enhanced in the presence of hydroxyl groups.
机译:在pH9.5中研究了聚合物分散剂在二氧化钛颜料颗粒上的吸附作为聚合物官能团的函数,使用聚丙烯酸和改性的聚丙烯酰胺。聚丙烯酰胺包括具有羟基或羧酸盐和羟基的均聚物和共聚物。使用的实验方法是吸附等温,Zeta电位,粒度测量和流变。阴离子分散剂增加了二氧化钛颜料粒子Zeta电位的幅度,而非离子分散剂的效果可忽略不计。聚丙烯酸和聚丙烯酰胺共聚物都改变了二氧化钛颜料分散行为,降低悬浮率应力和平均颜料粒度,而聚丙烯酰胺均聚物对颜料分散性具有可忽略的影响。通常,最佳的分散效果(最小颗粒屈服应力和粒度)与聚合物吸附密度一致;然而,对于聚丙烯酸,在最大吸附之前发生最大分散效果。丙烯酰胺聚合物官能团吸附在颜料表面上,但它们不能影响颜料颗粒分散性;然而,在羟基存在下增强了吸附和分散性质。

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