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Amphoteric polymers to improve paper dry strength

机译:两性聚合物改善纸张干强度

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摘要

The objective of the present work is to evaluate the application of an amphoteric polymer, with acidic and basic groups on the polymer chain, as a paper dry strength additive. The polymer studied here is random terpolymer of high electrostatic charge density, and high molecular weight. The results of our work showed that the balance between the charge densities of the surface and the polymer structures is an important factor to be considered when using this polymer. The highest paper strength value, measured by tensile index, was found at the polyampholyte’s isoelectric point (ca. pH of 7.3) when the charge of the fiber surface was negative and the polymer structure charge was symmetric. This observation agrees with our dynamic light scattering results which, demonstrated that at the isoelectric point there was a maximum in association among polyampholyte molecules, leading to a maximum in size of molecular aggregates. When adsorbed on an electrically charged surface, the maximum amount of adsorbed polymer, measured by the shift in resonance frequency in a quartz crystal microgravimetric balance, was observed for the same isoelectric point. Better results for paper dry strength were found when the fiber surface and the polymer structures were oppositely charged or at the isoelectric point of the polymer. Less effective addition strategies were found in the case when the fiber surfaces and the polymer structures had same sign of charge.DOI: 2446941601022015065
机译:本作作品的目的是评估两性聚合物的施用,在聚合物链上用酸性和碱性组,作为纸张干强度添加剂。这里研究的聚合物是高静电电荷密度的随机三元共聚物和高分子量。我们的作品的结果表明,表面和聚合物结构的电荷密度之间的平衡是使用该聚合物时被考虑的重要因素。当纤维表面的电荷为阴性并且聚合物结构电荷对称时,通过拉伸指数测量的最高纸张强度值在聚酰胺聚酰胺的等电点(pH值为7.3)。该观察结果与我们的动态光散射结果同意,证明在异电点在聚酰胺聚合物分子中最大,导致分子聚集体的最大尺寸。当吸附在带电表面上时,通过在石英晶体微升压平衡中的共振频率变化测量的吸附聚合物的最大量,在相同的等电点中被观察到。当纤维表面和聚合物结构相反地或在聚合物的等电点处时,发现了纸张干强度的更好结果。在纤维表面和聚合物结构具有相同符号的情况下,在纤维表面和电荷标志的情况下发现了较少的有效添加策略.DOI:2446941601022015065

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