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The effect of xylan on the fibrillation efficiency of DED bleached soda bagasse pulp and on nanopaper characteristics

机译:木聚糖对DED漂白苏打蔗渣浆原纤化效率和纳米纸特性的影响

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摘要

Xylan is the second most abundant polysaccharide and the most abundant hemicellulose component of soda bagasse pulp. In this study, bleached soda bagasse pulp (SB) and bleached bagasse dissolving pulp (DB) with varying amounts of xylan were fibrillated with a homogenization process. The produced fibrillated materials were used for making nanopaper structures. The surface, physical, mechanical and optical properties of the nanopaper were measured, and the effect of xylan was assessed. Laser profilometry (LP) and field emission scanning electron microscopy were applied to study the degree of the fibrillation. The pulp having the highest xylan content, SB, showed the highest yield of cellulose nanofibrils. Nanopaper produced from SB had a more consolidated structure than that produced from DB. Additionally, SB nanopaper yielded higher tensile strength, lower LP roughness, a higher barrier against oxygen and lower opacity. These results indicate a higher degree of fibrillation of the SB pulp compared to the DB pulp. Hence, the positive effect of xylan for facilitating the fibrillation of the starting pulp fibers was demonstrated.
机译:木聚糖是苏打蔗渣浆中第二大最丰富的多糖和最丰富的半纤维素成分。在这项研究中,采用均质方法将漂白苏打蔗渣纸浆(SB)和含不同数量木聚糖的漂白蔗渣溶解纸浆(DB)原纤化。产生的原纤化材料用于制造纳米纸结构。测量了纳米纸的表面,物理,机械和光学性质,并评估了木聚糖的作用。激光轮廓仪(LP)和场发射扫描电子显微镜技术被用来研究原纤维化程度。具有最高木聚糖含量SB的纸浆显示出纤维素纳米原纤维的最高产率。 SB生产的纳米纸比DB生产的纳米纸具有更牢固的结构。此外,SB纳米纸还具有更高的拉伸强度,更低的LP粗糙度,更高的抗氧性能和更低的不透明度。这些结果表明,与DB纸浆相比,SB纸浆的原纤化程度更高。因此,证明了木聚糖对促进起始纸浆纤维的原纤化的积极作用。

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