首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Unmodified Starch Granules for Strengthening Mineral-Filled Cellulosic Fiber Networks Promoted by Starch Pretreatment with a Cationic Polymer Flocculant in Combination with the Use of an Anionic Microparticulate Material
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Unmodified Starch Granules for Strengthening Mineral-Filled Cellulosic Fiber Networks Promoted by Starch Pretreatment with a Cationic Polymer Flocculant in Combination with the Use of an Anionic Microparticulate Material

机译:未改性的淀粉颗粒,可通过使用阳离子聚合物絮凝剂结合使用阴离子微粒材料对淀粉进行预处理来增强矿物填充的纤维素纤维网络。

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摘要

The efficient use of renewable resources (e.g., starch) is essential to the green economy. On the basis of commercially available microparticle retention and drainage systems, the process concept of trapping unmodified starch granules in mineral-filled cellulosic fiber networks for strength enhancement by incorporation of cationic polymer flocculant pretreated/bridged starch granules in combination with the use of an anionic microparticulate material was discussed and demonstrated. Specifically, a high molecular weight cationic polyacrylamide and a modified bentonite, which are commercially available in the market, were used as the polymer flocculant and the anionic microparticulate material, respectively. The paper strength loss upon the addition of precipitated calcium carbonate filler particles was significantly mitigated by employing such a concept, which may provide an alternative strategy for improving the strength properties of mineral-filled paper grades.
机译:有效利用可再生资源(例如淀粉)对于绿色经济至关重要。基于可商购的微粒保留和排水系统,通过掺入阳离子聚合物絮凝剂预处理/桥接的淀粉颗粒并结合使用阴离子微粒,将未改性的淀粉颗粒捕获在矿物填充的纤维素纤维网络中以提高强度的工艺概念讨论和演示了材料。具体地,在市场上可商购的高分子量阳离子聚丙烯酰胺和改性膨润土分别用作聚合物絮凝剂和阴离子微粒材料。通过采用这种概念,可以大大减轻因添加沉淀的碳酸钙填料颗粒而引起的纸张强度损失,这可以为提高矿物填充纸种的强度特性提供另一种策略。

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