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Interactions of microfibrillated cellulose and cellulosic fines with cationic polyelectrolytes

机译:微纤化纤维素和纤维素细粉与阳离子聚电解质的相互作用

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摘要

The overall aim of this work was to produce and characterize different types of cellulosic fines and microfibrillated cellulose; to study their interactions with high molar mass cationic polyelectrolytes; and to demonstrate novel examples of their utilization. The work was performed, and its results discussed mainly from papermaking point of view, but the results are also well applicable in other fields of industry. Cellulosic fines are an essential component of papermaking fiber suspension. Microfibrillated cellulose can be considered as a sub fraction of cellulosic fines, produced by disintegration and dispergation of wood fibers to fibrillar level. High molar mass cationic polyelectrolytes are commonly used to improve fines retention in consolidating fiber network. Thus, their interactions with fines have a significant role in modern papermaking. As the different fractions obviously have unique characteristics, it can be surmised that their interactions with polyelectrolytes are dissimilar. Four fines fractions, three fiber fractions and four microfibrillated cellulose fractions were produced. Their physical and chemical characteristics were determined among others by X-ray photoelectron spectrometry, atomic force microscopy, cryogenic transmission electron microscopy, ultracentrifugation and turbidimetry were used. Six different cationic polyacrylamides and one cationic starch were used as flocculants. The adsorption of the polyelectrolytes on the cellulosic fractions was measured by polyelectrolyte titration method. The flocculation behavior of these components was studied with multiple light scattering apparatus and focused beam reflectance measurement device. This work shows that, since the different fines fractions have specific properties, they have individual flocculation and adsorption behaviors with high molar mass cationic polyelectrolytes. It was also shown that the retention and adsorption of clay particles is dependent on the properties of the fiber fraction. In addition, by optimum combination microfibrillar cellulose and cationic starch it is possible to enhance the strength properties of paper without simultaneously deteriorating the drainability of the pulp suspension.
机译:这项工作的总体目标是生产和表征不同类型的纤维素细粉和微纤化纤维素。研究它们与高摩尔质量阳离子聚电解质的相互作用;并展示其利用的新颖实例。进行了这项工作,其结果主要从造纸的角度进行了讨论,但结果也很好地适用于其他工业领域。纤维素细粉是造纸纤维悬浮液的重要组成部分。微原纤化纤维素可以被认为是纤维素细粉的一部分,是由木纤维崩解和分散至原纤维水平而产生的。高摩尔质量的阳离子聚电解质通常用于改善固结纤维网络中的细粉保留率。因此,它们与罚款的相互作用在现代造纸中具有重要作用。由于不同的馏分显然具有独特的特性,可以推测它们与聚电解质的相互作用是不相似的。产生了四个细级分,三个纤维级分和四个微纤化纤维素级分。通过X射线光电子能谱,原子力显微镜,低温透射电子显微镜,超速离心和比浊法测定了它们的物理和化学特性。六种不同的阳离子聚丙烯酰胺和一种阳离子淀粉用作絮凝剂。通过聚电解质滴定法测量聚电解质在纤维素级分上的吸附。利用多光散射仪和聚焦光束反射率测量装置研究了这些组分的絮凝行为。这项工作表明,由于不同的细粉级分具有特定的性能,因此它们在高摩尔质量的阳离子聚电解质中具有各自的絮凝和吸附行为。还显示出粘土颗粒的保留和吸附取决于纤维部分的性质。另外,通过微原纤纤维素和阳离子淀粉的最佳组合,可以增强纸的强度性能而不会同时降低纸浆悬浮液的可排水性。

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    Taipale Tero;

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  • 年度 2010
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