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Enhancement of Pulp Strength by Forming Polyelectrolyte Multilayers on APMP Fibers

机译:通过在APMP纤维上形成聚电解质多层来提高纸浆强度

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The layer-by-layer deposition technique was adopted in this paper to improve the physical strength properties of alkaline peroxide mechanical pulp (APMP). The cationic starch (CS), anionic polyacryamide (APAM) and cationic polyacryamide (CPAM) were chosen and used to build-up polyelectrolyte multilayers on surface of APMP fibers. The improvements of physical strength of pulp through adsorption of different polyelectrolyte onto fibers were discussed and compared. The results showed that when the APMP fibers were treated with CPAM, the breaking length and burst index were 53% and 83% respectively, higher than that of untreated pulp. The optimal treatment conditions are 60 mgCPAM/g pulp, 1.5% pulp concentration and 9min treatment time. The pulp deposited by CPAM-APAM polyelectrolyte multilayer gave a highest physical strength compared with pulp with other multilayer deposition such as CS-APAM. At the whole beating degree range investigated in this paper, the CPAM-APAM deposition on fiber surface can improve the physical strength properties significantly, especially when the beating degree is at 40°SR. In addition, the improvement of physical strength can be remained even after pulp refining.
机译:本文采用层逐层沉积技术,以改善碱性过氧化物机械纸浆(APMP)的物理强度特性。选择阳离子淀粉(Cs),阴离子聚酰胺(APAM)和阳离子聚酰胺(CPAM)并用于在APMP纤维表面上积聚聚电解质多层。讨论了通过吸附不同聚电解质在纤维上的纸浆物理强度的改善。结果表明,当用CPAM处理APMP纤维时,分别的突破和突发指数分别为53%和83%,高于未处理的纸浆。最佳处理条件为60 mgcpam / g纸浆,1.5%纸浆浓度和9min处理时间。通过CPAM-APAM聚电解质多层沉积的纸浆与纸浆与其他多层沉积(例如CS-APAM)相比,具有最高的物理强度。在本文研究的整个跳跃度范围内,CPAM-APAM沉积在纤维表面上可以显着提高物理强度特性,特别是当跳跃度为40°SR时。此外,即使在纸浆精炼后,也可以仍然保持身体强度的提高。

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