Colloidal silica and its effects during formation of paper sheets in the presence of nanofibrillated cellulose, cationic starch, and cationic acrylamide copolymer

阳离子聚合 共聚物 淀粉 纤维素 丙烯酰胺 化学工程 高分子化学 高分子科学 材料科学 胶体 胶体二氧化硅 化学 聚合物 有机化学 复合材料 工程类 涂层
作者
VARUN S. ATREE,KENSLEY V. HAMM,DANIEL J. KOZEL,LUCY A. JONES,Jianshe Chen,Martin A. Hubbe
出处
期刊:Tappi Journal [TAPPI]
卷期号:24 (5): 241-251 被引量:1
标识
DOI:10.32964/tj24.5.241
摘要

This work considered effects of colloidal silica addition during laboratory preparation of paper sheets containing nanofibrillated cellulose (NFC) that had been pretreated with cationic starch. The emphasis was on process performance issues, including dewatering rates, fine particle retention, and the extent of fiber flocculation. In addition, micrographs were obtained to show what was happening to the NFC upon treatments with cationic starch and subsequent application of hydrodynamic shear. Contrasting results were obtained, depending on the charge density of the cationic starch. Pretreatment of the NFC with a high charge density cationic starch (degree of substitution 0.2) resulted in strong interactions with the colloidal silica, enhancing the dewatering rate and contributing to fine-particle retention. The medium charge cationic starch pretreatment led to effects suggesting a bridging mechanism of action, and subsequent colloidal silica had no significant effect on dewatering. Treatment of that system with a high level of colloidal silica (0.2%) resulted in lower retention. In general, the final colloidal silica treatments tended to decrease the level of flocculation in the suspensions, giving more uniform handsheets. Mechanisms, some of them related to the clustering and dispersion of cationic starch-treated NFC, were proposed to account for the observed effects.

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