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Polyelectrolyte complexes for assisting the application of lignocellulosic micro/nanofibers in papermaking

机译:聚电解质配合物,用于辅助木质纤维素微/纳米纤维在造纸中的应用

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A novel procedure based on the addition of polyelectrolyte complexes (PECs) onto the pulp containing lignocellulosic micro/nanofibers (LCMNF) is presented. This procedure allows increasing paper strength avoiding an excessive loss in drainability. LCMNF were obtained from partially delignified kraft pine sawdust using a high-pressure homogenizer. Cationic complexes (CatPECs) were prepared by adding the anionic polyelectrolyte solution (polyacrylic acid) on the cationic polyelectrolyte solution (poly(allylamine hydrochloride)). According to turbidity and surface morphology changes, an interaction between CatPECs and LCMNF could be established. Different CatPEC dosages (from 0.3 to 1.0% on pulp) were added on a recycled unbleached softwood kraft pulp containing 3% of LCMNF. For a PEC dosage of 0.75% on pulp, an optimum balances between negatively and positively charged materials [near to zero value of the logarithm of the colloidal titration ratio (logCTR)] was found. Britt Dynamic Drainage Jar test showed a high retention of fines and LCMNF for all PEC dosages. A maximum in retention value was obtained for the addition of 0.75% of PECs on pulp, dosage that was suggested as optimum by the logCTR. In addition, the best drainability value (18A degrees SR) was obtained for this PEC addition level. Papermaking properties were clearly improved for all dosage of PECs. Particularly for a dosage of 0.75% of PECs on pulp, tensile strength was noticeably increased (+48%) and both compressive resistance Concora Medium Test (CMT) and Short-span Compressive Test (SCT) were markedly increased (+64% and +39%, respectively). These results suggest that PECs are a possible alternative to assist the application of LCMNF in papermaking.
机译:提出了一种基于将聚电解质配合物(PEC)加到含有木质纤维素微/纳米纤维(LCMNF)上的聚电解质配合物(PEC)的新方法。该程序允许增加造纸强度避免过流量的过度损失。使用高压均化器从部分上去磷酸盐松木锯末获得LCMNF。通过在阳离子聚电解质溶液上添加阴离子聚电解质溶液(聚(盐酸氨基))加入阴离子聚电解质溶液(聚丙烯酸)来制备阳离子复合物(CATPEC)。根据浊度和表面形态变化,可以建立CATPEC和LCMNF之间的相互作用。在含有3%LCMNF的再生的未漂白软木牛皮纸上加入不同的Catpec剂量(纸浆上的0.3至1.0%)。对于纸浆上的PEC剂量为0.75%,发现消极和带正电荷的材料之间的最佳余量[靠近胶体滴定比(LOGCTR)的对数(LOGCTR)]。 BRITT动态排水罐试验显示所有PEC剂量的粉末和LCMNF的高保留。获得最大的保留值,以添加0.75%的纸浆上的PEC,用LOGCTR的含量显示为最佳的剂量。另外,获得该PEC添加水平的最佳排水值(18A度SR)。所有剂量的PECS都明确改善了造纸性能。特别是对于纸浆上的0.75%的PEC的剂量,显着增加(+ 48%),并且抗压性Concora培养基测试(CMT)和短跨度压缩试验(SCT)显着增加(+ 64%和+分别为39%)。这些结果表明,PEC是协助在造纸中施加LCMNF的替代方案。

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