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Increased dryness after pressing and wet web strength by utilizing foam application technology

机译:利用泡沫喷涂技术提高压榨后的干燥度和湿纸幅强度

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摘要

Production cost savings by lowering basis weight has been a trend in papermaking. The strategy has been to decrease the amount of softwood kraft pulp and increase use of fillers and recycled fibers. These changes have a tendency to lower strength properties of both the wet and dry web. To compensate for the strength loss in the paper, a greater quantity of strength additives is often required, either dosed at the wet end or applied to the wet web by spray. In this pilot-scale study, it was shown how strength additives can be effectively applied with foam-based application technology. The technology can simultaneously increase dryness after wet pressing and enhance dry and wet web strength properties. Foam application of polyvinyl alcohol (PVA), ethylene vinyl alcohol (EVOH), carboxymethyl cellulose (CMC), guar gum, starch, and cellulose microfibrils (CMF) increased web dryness after wet pressing up to 5.2%-units compared to the reference sample. The enhanced dewatering with starch, guar gum, and CMF was detected with a bulk increase. Additionally, a significant increase in z-directional tensile strength of dry web and and in-plane tensile strength properties of wet web was obtained. Based on the results, foam application technology can be a very useful technology for several applications in the paper industry.
机译:通过降低基重来节省生产成本一直是造纸的趋势。策略是减少软木牛皮纸浆的数量,增加填料和再生纤维的使用。这些变化趋向于降低湿纸幅和干纸幅的强度特性。为了补偿纸中的强度损失,通常需要更大量的强度添加剂,这些添加剂要么在湿端投加,要么通过喷雾施加到湿纸幅上。在这项中试规模的研究中,显示了如何使用基于泡沫的应用技术有效地添加强度添加剂。该技术可以在湿压后同时增加干燥度,并增强干湿纸幅强度性能。与参考样品相比,泡沫施加聚乙烯醇(PVA),乙烯乙烯醇(EVOH),羧甲基纤维素(CMC),瓜尔豆胶,淀粉和纤维素微纤维(CMF)可以提高湿压后的纸幅干燥度,最高可达5.2%-单位。 。检测到淀粉,瓜尔豆胶和CMF的脱水增强,体积增加。另外,获得了干纸幅的z方向拉伸强度和湿纸幅的面内拉伸强度性能的显着提高。根据结果​​,泡沫应用技术对于造纸工业中的多种应用可能是非常有用的技术。

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