4.5 Article

A Comparative Study of the Effect of Cellulose-based Deep Coating and Pulp Refining on the Structural and Mechanical Properties of Paper

期刊

BIORESOURCES
卷 16, 期 3, 页码 5376-5389

出版社

NORTH CAROLINA STATE UNIV DEPT WOOD & PAPER SCI
DOI: 10.15376/biores.16.3.5376-5389

关键词

Paper coating; deep coating; Regenerated cellulose; N-Methylmorpholine N-oxide; NMMO; Cellulosic coating; Strength improvement; Structure modification; Pulp refining

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This study compared the effectiveness of a deep coating method using cellulose regenerated from NMMO solution with the classic pulp refining process in improving paper mechanical properties and overall quality. The deep coating process increased the strength properties of the paper structure but decreased air permeability and tear resistance. Despite some technological difficulties, this method could be a viable solution for additional functionalization of paper structures.
A new coating method was developed, based on cellulose regenerated from an N-methylmorpholine N-oxide (NMMO) solution applied to paper. In particular, the purpose of this study was to compare the effectiveness of the deep coating method using cellulose regenerated from NMMO solution and the classic pulp refining process as methods to improve paper mechanical properties and overall quality. The deep coating name comes from the fact that the coating process is combined with subsequent heating of the coating before its final solidification. As a result of this operation, deep penetration of the cellulosic solution into the paper structure occurs. This increases the contact surface of the solution with the cellulosic fibers, which increases the strength properties of the paper structure. It was found that the cellulosic coating increased the apparent density of the paper, the tensile strength, the elongation, the resistance to bursting, and the double fold number. However, the coating also decreased the air permeability and the tear resistance of the paper samples. Despite some technological difficulties, this method could be an attractive solution in the case of a need for additional functionalization of a paper structure.

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