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Influence of TEMPO-oxidised cellulose nanofibrils on the properties of filler-containing papers

机译:TEmpO氧化纤维素纳米纤维对含填料纸性能的影响

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摘要

In this work, cellulose nanofibrils (CNF) were produced from a Eucalyptus globulus bleached kraft pulp by TEMPO-mediated oxidation and mechanical homogenisation, and their effects in papermaking, namely filler flocculation and retention, dry and wet-web strength and structural properties, were studied in detail. Cellulose nanofibrils possessing 0.6 mmol/g carboxyl groups and a degree of polymerisation (DP) of ca. 550 were found to promote filler flocculation and retention in the fibre mat, whereas the same amount (3 wt%) of CNF having 1.5 mmol/g of carboxyl groups, a DP of ca. 200 and a similar mean diameter exhibited the opposite effect. These results were interpreted with the help of flocculation studies of precipitated calcium carbonate (PCC) in the presence of CNF carried out by laser diffraction spectrometry. In addition, the mechanical and structural properties of the handsheets were analysed, revealing that the less charged CNF led to more closed matrices and, even increasing the filler retention, had a positive role on the tensile strength. A bonding mechanism among eucalypt fibres, PCC, CNF and a linear cationic polyacrylamide is proposed, consistent with the flocculation, retention and paper strength and structural property results. It is concluded that, to be used in papermaking, the CNF must not have a high charge (or a small length) to be able to flocculate the filler particles and, at the same time, to increase the filler-to-cellulosic fibres bonding. A complementary study on the wet-web resistance of handsheets produced with the less charged CNF was conducted for moisture contents between 10 and 70%, showing that these CNF can significantly improve the handsheet wet tensile strength (nearly 100%) even for water contents above 50%. The use of CNF in the paper machine may thus contribute, through the higher wet-web tensile resistance, to reducing breaks and increasing the operating speeds and, through the higher filler retention, to important fibre and cost savings.
机译:在这项工作中,通过TEMPO介导的氧化作用和机械均质作用,从桉树漂白的牛皮纸浆中制得了纤维素纳米原纤维(CNF),它们在造纸中的作用,即填料的絮凝和保留,干湿纸幅强度和结构性能均得到了改善。详细研究。纤维素纳米纤维具有0.6 mmol / g的羧基,聚合度(DP)约为1。发现550可促进填料絮凝并保留在纤维垫中,而相同量(3重量%)的具有1.5mmol / g羧基的CNF,DP为约3。 200和类似的平均直径表现出相反的效果。这些结果借助于在通过激光衍射光谱法进行的CNF存在下的沉淀碳酸钙(PCC)的絮凝研究的帮助下得到解释。此外,对手抄纸的机械和结构性能进行了分析,发现电荷较低的CNF导致封闭的基体更多,甚至增加了填料的保留率,对拉伸强度也有积极作用。提出了桉树纤维,PCC,CNF和线性阳离子聚丙烯酰胺之间的键合机理,与絮凝,保留力,纸张强度和结构性能结果一致。结论是,要用于造纸,CNF不得带有高电荷(或较短的长度)才能絮凝填料颗粒,并同时增加填料与纤维素纤维的粘合力。对水分含量在10%到70%之间的CNF含量较低的手抄纸的耐湿网性进行了补充研究,结果表明,即使水分含量高于10%至70%,这些CNF仍可以显着提高手抄纸的湿拉伸强度(接近100%)。 50%。因此,在造纸机中使用CNF,可以通过较高的抗湿纸幅张力来减少断裂并提高运行速度,并且可以通过较高的填料保留量来节省重要的纤维并节省成本。

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