首页> 外文会议>TAPPI PEERS Conference;Research Forum on Recycling >Improving Recyclability of Chemical Pulp by Introducing Non-charged Cross-linked Polysaccharide on Fiber Surface
【24h】

Improving Recyclability of Chemical Pulp by Introducing Non-charged Cross-linked Polysaccharide on Fiber Surface

机译:通过在纤维表面引入不带电荷的交联多糖提高化学纸浆的可回收性

获取原文

摘要

The effect of spray application of xyloglucan on strength and recyclability of bleached chemical pulp was studied. Xyloglucan alone and with a cross-linking chemical was applied on sheets made of unbeaten never-dried and once-dried virgin pulps. Recyclability of these pulps was evaluated based on the tensile strength of wet and dry handsheets. Dry strength measurements showed that the spray application reduces the loss of strength and bonding ability in recycling. The use of cross-linking chemical was found to be essential in enhancing both the wet and dry strength of the virgin and recycled pulps. The chemical application was efficient with both never-dried and once-dried pulps.Wet web strength results indicate that the amount of web breaks could be decreased in paper and board machines using recovered fibers by having cross-linked xyloglucan layer on fiber surface. Spray application was found to be an effective way to introduce non-charged chemicals into fiber network.As a consequence of improved fiber bonding the need of refining decreases which further improves the recyclability of fibers. In addition to xyloglucan also other polysaccharides, for example those provided by chemical or mechanical pulp mills, could be used for improving the recyclability and extending the lifetime of fiber material.
机译:研究了木葡聚糖喷雾对漂白化学纸浆强度和可回收性的影响。仅将木葡聚糖和具有交联化学物质的木葡聚糖涂在由未打浆的从未干燥和曾经干燥的原始纸浆制成的片材上。基于湿手抄纸和干手抄纸的拉伸强度评估了这些纸浆的可回收性。干强度测量结果表明,喷涂可减少强度损失和回收利用中的粘合能力。发现使用交联化学物质对于增强原始纸浆和再生纸浆的湿强度和干强度都是必不可少的。对于从未干燥和曾经干燥过的纸浆来说,化学应用都是有效的。 湿纸幅强度结果表明,通过在纤维表面上具有交联的木葡聚糖层,可以在使用回收纤维的造纸机和纸板机中减少纸幅断裂的数量。发现喷涂是将不带电化学物质引入纤维网络的有效方法。 作为改善的纤维粘合的结果,减少了对精磨的需求,这进一步改善了纤维的可回收性。除木葡聚糖外,其他多糖,例如由化学或机械制浆厂提供的那些多糖,也可用于改善可回收性并延长纤维材料的寿命。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号