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Multilayer assembly of ionic starches on old corrugated container recycled cellulosic fibers

机译:在旧波纹容器再生纤维素纤维上的离子淀粉多层组装

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In this study, old corrugated container recycled fibers were treated with polyelectrolyte multilayers consisting of biopolymer cationic starch with two degrees of substitution (DS) each in combination with one anionic starch. Pulp zeta potential, paper strength and the thin layer ellipsometry technique were applied to examine the influence of cationic starch DS on the formation of polyelectrolyte multilayers. The results indicated a significant interaction between the DS of cationic starch and the number of ionic starch layers formed. When low-DS cationic starch was used, the pulp zeta potential and the paper strength increased significantly in assembling the first cationic layer. However, in depositing high-DS cationic starch a greater zeta potential and a stronger influence on the paper strength were observed with a larger number of starch layers. This was confirmed by thin layer ellipsometry when a greater thickness of multilayers was achieved by employing high-DS cationic starch to form a higher number of layers. (c) 2017 Society of Chemical Industry
机译:在这项研究中,用聚电解质多层处理旧的波纹容器再循环纤维,该聚电解质多层由生物聚合物阳离子淀粉组成,各自与一个阴离子淀粉组合。纸浆Zeta电位,纸张强度和薄层椭圆形式技术用于检查阳离子淀粉DS对聚电解质多层形成的影响。结果表明,阳离子淀粉Ds与形成的离子淀粉层的数量之间存在显着的相互作用。当使用低DS阳离子淀粉时,纸浆Zeta电位和纸张强度在组装第一阳离子层时显着增加。然而,在沉积高DS阳离子淀粉时,用更多数量的淀粉层观察到更大的Zeta电位和对纸张强度的更强的影响。当通过采用高DS阳离子淀粉来形成较高的层,通过薄层椭圆测定法确认了这一点。 (c)2017化学工业协会

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