Holocellulose fibers and paper from birch based on peracetic acid treatment

IF 3.1 2区 农林科学 Q1 FORESTRY Wood Science and Technology Pub Date : 2024-03-19 DOI:10.1007/s00226-024-01542-5
Shenming Tao, Yian Chen, Shaoliu Qin, Cunzhi Zhang, Haisong Qi
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Abstract

Holocellulose fibers provide great potential to make paper with high performance. However, inappropriate reaction conditions may limit its improvement in paper performance due to the lack of sufficient research data. In this work, paper is prepared from the birch holocellulose fibers based on peracetic acid treatment and the papermaking process. The features of resulting holocellulose fibers are evaluated for different peracetic acid treatment conditions such as temperature and time. It reveals that high temperature and long treatment time lead to the degradation of hemicellulose/cellulose and the destruction of fibers, which further results in the poor mechanical performance of paper. By optimization for the treatment condition of holocellulose fibers, the corresponding paper exhibits the highest tensile strength (93 MPa), good bursting strength (601 kPa), and tearing strength (647 mN). The determination of optimum conditions will provide guidelines for the industrial production of holocellulose fibers and paper.

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经过氧乙酸处理的桦木全纤维素纤维和纸张
全纤维素纤维为制造高性能纸张提供了巨大潜力。然而,由于缺乏足够的研究数据,不恰当的反应条件可能会限制其造纸性能的提高。在这项工作中,利用过乙酸处理和造纸工艺,用桦树全纤维素纤维制备了纸张。在不同的过乙酸处理条件(如温度和时间)下,对所得全纤维素纤维的特性进行了评估。结果表明,高温和长时间处理会导致半纤维素/纤维素降解和纤维破坏,进而导致纸张机械性能变差。通过优化全纤维素纤维的处理条件,相应的纸张表现出最高的抗张强度(93 兆帕)、良好的爆破强度(601 千帕)和撕裂强度(647 毫牛顿)。最佳条件的确定将为全纤维素纤维和纸张的工业化生产提供指导。
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来源期刊
Wood Science and Technology
Wood Science and Technology 工程技术-材料科学:纸与木材
CiteScore
5.90
自引率
5.90%
发文量
75
审稿时长
3 months
期刊介绍: Wood Science and Technology publishes original scientific research results and review papers covering the entire field of wood material science, wood components and wood based products. Subjects are wood biology and wood quality, wood physics and physical technologies, wood chemistry and chemical technologies. Latest advances in areas such as cell wall and wood formation; structural and chemical composition of wood and wood composites and their property relations; physical, mechanical and chemical characterization and relevant methodological developments, and microbiological degradation of wood and wood based products are reported. Topics related to wood technology include machining, gluing, and finishing, composite technology, wood modification, wood mechanics, creep and rheology, and the conversion of wood into pulp and biorefinery products.
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