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保持纤维素结构:用于高强度和高透明度纸结构的脱木质素木纤维。

Preserving Cellulose Structure: Delignified Wood Fibers for Paper Structures of High Strength and Transparency.

机构信息

Wallenberg Wood Science Center, Department of Fiber and Polymer Technology , KTH Royal Institute of Technology , SE-10044 Stockholm , Sweden.

RISE - Research Institutes of Sweden, Mäster Samuelsgatan 60 , SE-11121 Stockholm , Sweden.

出版信息

Biomacromolecules. 2018 Jul 9;19(7):3020-3029. doi: 10.1021/acs.biomac.8b00585. Epub 2018 May 23.

Abstract

To expand the use of renewable materials, paper products with superior mechanical and optical properties are needed. Although beating, bleaching, and additives are known to improve industrially produced Kraft pulp papers, properties are limited by the quality of the fibers. While the use of nanocellulose has been shown to significantly increase paper properties, the current cost associated with their production has limited their industrial relevance. Here, using a simple mild peracetic acid (PAA) delignification process on spruce, we produce hemicellulose-rich holocellulose fibers (28.8 wt %) with high intrinsic strength (1200 MPa for fibers with microfibrillar angle smaller than 10°). We show that PAA treatment causes less cellulose/hemicellulose degradation and better preserves cellulose nanostructure in comparison to conventional Kraft pulping. High-density holocellulose papers with superior mechanical properties (Young's modulus of 18 GPa and ultimate strength of 195 MPa) are manufactured using a water-based hot-pressing process, without the use of beating or additives. We propose that the preserved hemicelluloses act as "glue" in the interfiber region, improving both mechanical and optical properties of papers. Holocellulose fibers may be affordable and applicable candidates for making special paper/composites where high mechanical performance and/or optical transmittance are of interest.

摘要

为了扩大可再生材料的应用范围,需要具有优异机械和光学性能的纸制品。虽然打浆、漂白和添加剂已知可以改善工业生产的牛皮纸浆纸的性能,但性能受到纤维质量的限制。虽然纳米纤维素的使用已被证明可以显著提高纸张性能,但目前其生产成本限制了它们的工业相关性。在这里,我们使用简单的温和过氧乙酸(PAA)脱木质素工艺对云杉进行处理,生产出富含半纤维素的综纤维素纤维(28.8wt%),其固有强度高(对于微纤维角小于 10°的纤维为 1200MPa)。我们表明,与传统的牛皮纸浆相比,PAA 处理导致纤维素/半纤维素降解较少,并且更好地保留了纤维素纳米结构。使用基于水的热压工艺制造具有优异机械性能(杨氏模量为 18GPa 和极限强度为 195MPa)的高密度综纤维素纸,而无需打浆或添加任何物质。我们提出,保留的半纤维素在纤维间区域充当“胶”,提高了纸张的机械和光学性能。综纤维素纤维可能是制造具有高机械性能和/或光透过率的特殊纸张/复合材料的经济实惠且适用的候选材料。

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