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Sonication-assisted surface modification method to expedite the water removal from cellulose nanofibers for use in nanopapers and paper making

机译:超声处理辅助表面改性方法,加快纤维素纳米纤维去除水的水,用于纳米粉刺和造纸

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This paper addresses the issue of high water retention by cellulose nanofibers (CNFs) that lead to exorbitant time consumption in the dewatering of CNF suspensions. This has been a bottleneck, which is restricting the commercialization of CNF derived products such as nanopapers and CNF reinforced paper sheets. As a remedy, we suggest an eco-friendly water-based approach that involves the use of sonication energy and lactic acid (LA) to modify the surface of CNFs. The suggested modification resulted in rapid water drainage, and dewatering was completed in 10 min; with unmodified CNFs, it took around 45 min. We have also compared the draining characteristics of LA modification of CNF suspensions with a common draining agent (NaCl); LA modification drains water 56% faster than the use of NaCl, and produced mechanically superior dimensionally stable nanopaper. Additionally, LA modification allows the addition of 10 wt.% CNF in paper sheets, with dewatering done in 2 min (while the unmodified CNFs took 23 min).
机译:本文涉及纤维素纳米纤维(CNFS)的高保水问题,这导致CNF悬浮液的脱水中的过热时间消耗。这是一个瓶颈,它限制了CNF衍生产品的商业化,例如纳米粉刺和CNF增强纸板。作为补救措施,我们建议一种环保水基方法,涉及使用超声能量和乳酸(LA)来改变CNF的表面。建议的改性导致水排水快,脱水在10分钟内完成;未经修改的CNFS,花了大约45分钟。我们还将La改性的CNF悬浮液的排出特性与普通排水剂(NaCl)进行了比较; LA改性速度速度比使用的速度快56%,并制造机械上优异的尺寸稳定的纳米锅。另外,LA改性允许在纸张中添加10重量%CNF,在2分钟内进行脱水(而未修饰的CNFS服用23分钟)。

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