Evaluating paper’s optical properties after separate and combined use of nanofibrillated cellulose with cationic starch and cationic polyacrylamide

J. E. Kasmani, A. Samariha, Mohammad Reza Amiri Margavi
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Abstract

Nanofibrillated cellulose (NFC) and its combined usage with cationic starch and a cationic copolymer of acrylamide were studied in relation to the properties of paper. Independent pulp treatments using additives separately included 0%, 5%, 10%, and 15% refined long fiber pulp, 3 and 6% NFC, 0.75 and 1.5% cationic starch and 0.07% and 0.15% cationic polyacrylamide and combined treatments. Handsheets were made of the above treatments, and finally their optical and microscopic properties were evaluated. Increasing the NFC content to 6% increased the brightness and yellowness of the white liner by 13% and 21%, respectively. The liner opacity was also reduced by 1%. Additionally, increasing NFC by 6% compared to imported long fibers, the brightness and yellowness of the white liner increased 5.44% and 6.3%, respectively. The liner opacity was also reduced by 1%. A 1.5% cationic starch addition to NFC increased the brightness of the white liner by 4.4%, its whiteness increased 1.5%, and its yellowness increased 2.1%. The opacity of the liner was also reduced by 7.1%. The use of NFC and cationic starch can improve the optical properties of the white liner, while imported long fibers may be problematic.
评估纳米纤维素与阳离子淀粉和阳离子聚丙烯酰胺单独和混合使用后的纸张光学特性
研究了纳米纤维素(NFC)及其与阳离子淀粉和丙烯酰胺阳离子共聚物的结合使用与纸张性能的关系。分别使用添加剂的独立纸浆处理包括 0%、5%、10% 和 15% 精制长纤维纸浆、3% 和 6% NFC、0.75% 和 1.5% 阳离子淀粉、0.07% 和 0.15% 阳离子聚丙烯酰胺以及组合处理。将上述处理方法制成手板,最后对其光学和显微特性进行评估。将 NFC 含量提高到 6% 后,白色衬垫的亮度和黄度分别提高了 13% 和 21%。衬垫的不透明度也降低了 1%。此外,与进口长纤维相比,将 NFC 含量提高 6%,白色衬垫的亮度和黄度分别提高了 5.44% 和 6.3%。衬里的不透明度也降低了 1%。在 NFC 中添加 1.5% 的阳离子淀粉后,白色衬垫的亮度提高了 4.4%,白度提高了 1.5%,黄度提高了 2.1%。衬垫的不透明度也降低了 7.1%。使用 NFC 和阳离子淀粉可以改善白色衬垫的光学特性,但进口长纤维可能会带来问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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