Upgrading Paper-Grade Pulp as Dissolving Pulp for Lyocell Fiber Preparation

Author:

Gong Chen,Ni Jianping,Fan Shujie,Zhang Yu,Yang Bin,Su Zhenhua

Abstract

Lyocell fiber has emerged as a new generation of green fiber due to its preparation process and unique properties in comparison with viscose fiber. The raw material for the preparation of Lyocell fiber has a great impact on the quality of the finished product. However, unlike viscose-grade dissolving pulp, there is no evaluation system for Lyocell-grade dissolving pulp, making it difficult to assess the quality of the raw material. This study examined the approach to upgrade the paper-grade pulp to dissolving pulp for the preparation of the raw material for Lyocell fiber. Under the sequence of caustic extraction, acid treatment, and enzymatic treatment, the pulp was prepared with competitive properties compared to the commercial Lyocell-grade dissolving pulp. The assessment of prepared pulp was also accomplished by characterizing the pulp properties, the dissolution properties, and the spinnability and stability of Lyocell solution using the prepared sample. In addition, the dissolution mechanism and influencing factors of pulp in the system were elucidated, providing a theoretical basis for upgrading paper-grade pulp to dissolving pulp for Lyocell fiber production.

Funder

China National Pulp and Paper Research Institute Co., Ltd.

Publisher

MDPI AG

Subject

Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces

Reference19 articles.

1. Cellulose solutions in N-methylmorpholine-N-oxide (NMMO)—Degradation processes and stabilizers;Rosenau;Cellulose,2002

2. Structure formation of regenerated cellulose materials from NMMO-solutions;Fink;Prog. Polym. Sci.,2001

3. Pulidindi, K., and Chakraborty, S. (2020, July 20). Lyocell Fiber Market Size Industry Share Report 2017–2024. Available online: https://www.gminsights.com/industry-analysis/lyocell-fiber-market?utm_source=prnewswire.com&utm_medium=referral&utm_campaign=Paid_prnewswire.

4. A critical review of manufacturing processes used in regenerated cellulosic fibres: Viscose, cellulose acetate, cuprammonium, LiCl/DMAc, ionic liquids, and NMMO based lyocell;Sayyed;Cellulose,2019

5. Influence of intensified cellulose dissolution process on spinning and properties of lyocell fibres;Sayyed;Chem. Eng. Process. Process. Intensif.,2020

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