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Refining and enzymatic treatment of secondary fibres for paperboard production : Cyberflex measurements of fibre flexibility

机译:纸板生产中次级纤维的精制和酶处理:纤维柔韧性的Cyber​​flex测量

摘要

Recycling is generally affected by secondary fibre quality. High temperature and pressure during the drying stage causes irreversible changes in fibre morphology, which is the mainly responsible for the considerable reduction in the swelling and bonding ability (strength and number of bonds) [1, 2, 3]. Additionally, the reduced dewatering ability of these pulps is a major problem during paper manufacture as they decrease the speed on the paper machine and worsen sheet formation [4]. Secondary fibre upgrade is difficult and sometimes unpredictable, as the samples to be treated vary along with their history. Traditional upgrade methodologies have been used to improve secondary fibre properties, but the results are most of the times insufficient [1, 5]. Different reports suggest that treating pulps with enzymes and refining could overcome these problems [4, 6, 7, 8, 9]. More recently, Cellulose-Binding Domains (CBD’s) usage has been shown as an interesting tool to modify recycled fibres properties.
机译:再生通常受二次纤维质量的影响。干燥阶段的高温和高压会导致纤维形态发生不可逆转的变化,这是造成溶胀和粘结能力(强度和粘结数量)显着降低的主要原因[1,2,3]。另外,这些纸浆的脱水能力降低是造纸过程中的主要问题,因为它们降低了造纸机的速度并恶化了纸张的形成[4]。二次纤维升级困难,有时无法预测,因为要处理的样品随其历史而变化。传统的升级方法已用于改善次级纤维的性能,但结果多数时候是不足的[1,5]。不同的报告表明,用酶处理纸浆和提纯可以克服这些问题[4、6、7、8、9]。最近,纤维素结合域(CBD)的使用已被证明是修改回收纤维特性的有趣工具。

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  • 作者

    Pala H.; Mota M.; Gama F. M.;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 eng
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