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Mechanical and chemical dispersion of nanocelluloses to improve their reinforcing effect on recycled paper

机译:纳米纤维素的机械和化学分散,提高其对再生纸的增强效果

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The use of nanocelluloses as strength-enhancing additives in papermaking is widely known since both cellulose nanofibers (CNF) and nanocrystals (CNC) present similar composition than paper but their exceptional properties in the nanometer scale confers a paper quality enhancement. However, some agglomeration problems in CNF and CNC through hydrogen bonding cause a lower improvement of mechanical properties of paper. Therefore, a better dispersion of both nanocelluloses can maximize their effect on paper properties, thus reducing the needed dose to get the same increment in tensile strength and then reducing material costs. To ease the implementation of these nanocelluloses in the production process of recycled paper, typically used operations of these industries have been used. Among them, those devoted to improve the homogeneous mixture of nanocellulose in the pulp suspension have been assessed. Firstly, pulping conditions were studied, including pulping time, temperature and need for soaking as variables. Secondly, some dispersing agents used in papermaking were considered, studying the effect of different types and doses. The highest tensile strength of paper was achieved by applying long pulping times (60 min), getting increments up to 30% with the use of soaking and polyacrylamide as retention system. However, with the use of a low dose of a dispersing agent (0.003%), tensile index can be still increased up to 20.6% avoiding these long times. This study can be of great interest of those researchers trying to implement the use of nanocelluloses as strength additive in papermaking.
机译:纳米纤维素作为造纸中的强度增强添加剂的使用是众所周知的,因为纤维素纳米纤维(CNF)和纳米晶体(CNC)存在类似的组成而不是纸,但它们在纳米垢中的特殊性质赋予纸张质量增强。然而,CNF和CNC通过氢键的一些聚集问题导致纸张力学性能的提高。因此,纳米纤维素的更好分散可以最大化它们对纸张性质的影响,从而减少所需的剂量以在拉伸强度下获得相同的增量,然后降低材料成本。为了缓解这些纳米纤维素在再生纸的生产过程中的实施,通常使用了这些行业的使用操作。其中,已经评估了那些致力于改善纸浆悬浮液中纳米纤维素的均匀混合物的那些。首先,研究了制浆条件,包括制浆时间,温度和需要浸泡为变量。其次,考虑了造纸中使用的一些分散剂,研究了不同类型和剂量的效果。通过施加长的制浆时间(60分钟)来实现纸张的最高拉伸强度,通过使用浸泡和聚丙烯酰胺作为保留系统,增量高达30%。然而,通过使用低剂量的分散剂(0.003%),长时间仍然可以增加拉伸指数仍然增加20.6%。这项研究可能对那些试图实施使用纳米纤维素作为造纸中的强度添加剂的研究人员的兴趣。

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