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The Effects of Guar Gum on Wet Web Runnability - Laboratory and Pilot-scale Studies

机译:瓜尔豆胶对湿纸网运行性能的影响-实验室和中试研究

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Modern paper machines have reached their practical maximum width, because raising the width would require significant investments to eliminate vibrations of the cylinders at high speeds. To increase the amount of produced paper on a paper machine, web breaks, broke and downtime in general should be minimized and the production speed maximized. In many cases, the increase in paper machine production speed is limited by the mechanical properties of wet web and paper machines are thus forced to run below their design speed. Therefore obtaining knowledge about what kind of chemicals could be used to improve wet web mechanical properties would be valuable. Guar gum is a carbohydrate polymer containing galactose and mannose sugar units, generally containing one galactose unit for every two mannose units. Due to the unique rheology modifying properties of guar gum, it is widely used across a broad spectrum of industries, including in the paper industry. The conformation of guar gum is very similar to that of cellulose, resulting in strong adsorption onto cellulose fibers. Wet end addition of guar gum is known to enhance printability by giving a denser paper surface. Additionally, guar gum is known to improve filler retention and the strength properties of dry paper. However, mere is much less information on the effect of guar gum on mechanical properties of wet paper web. In this paper the effect of guar gum was studied both on laboratory and pilot scale. In the laboratory examination, the effects of adding different commercial polymers by spraying to formed sheets of bleached hardwood kraft pulp on wet web tensile properties at a high strain rate were examined. Guar gum was found to be superior in improving wet web strength to other tested polymers, which were cationic starch, CMC, chitosan and PVA. The increase in wet web strength was found to be greatly affected by the molar mass of guar gum and by the dosing strategy (i.e. spray vs. pulp suspension addition). The results presented here give support to the idea that molecular level inter diffusion of fiber surfaces at contact areas already occurs in wet state and it has a great impact on the stress transfer between fibers at wet state. The inter diffusion and thus the strength of fiber contact areas, and eventually the fiber network can be tailored by adsorbing different polymers to fiber surface. The potential of using guar gum in practical paper and board making was verified in two pilot-scale trials. The results were promising, showing that applying guar gum by spraying caused no problems in drainage, dewatering during wet pressing, web handling or end product quality, and it improved the mechanical properties of dry and wet paper.
机译:现代造纸机已达到其实际最大宽度,因为增加宽度需要大量投资才能消除滚筒在高速下的振动。为了增加造纸机上的纸张产量,通常应使卷筒纸断裂,断裂和停机时间最小化,并使生产速度最大化。在许多情况下,造纸机生产速度的提高受到湿纸幅机械性能的限制,因此造纸机被迫以低于其设计速度的速度运转。因此,获得关于可以使用哪种化学物质来改善湿纸幅机械性能的知识将是有价值的。瓜尔胶是一种包含半乳糖和甘露糖单元的碳水化合物聚合物,通常每两个甘露糖单元包含一个半乳糖单元。由于瓜尔豆胶具有独特的流变学改性特性,因此已在包括造纸工业在内的众多行业中得到广泛使用。瓜尔胶的构象与纤维素非常相似,导致在纤维素纤维上的强烈吸附。众所周知,瓜尔豆胶的湿端添加可通过提供更致密的纸张表面来提高可印刷性。另外,已知瓜尔豆胶可改善填料的保留性和干纸的强度性能。但是,关于瓜尔胶对湿纸幅机械性能影响的信息很少。本文在实验室和中试规模上研究了瓜耳胶的效果。在实验室检查中,研究了通过喷涂成漂白的硬木牛皮纸浆片材而形成的不同商业聚合物对高应变速率下湿纸幅拉伸性能的影响。发现瓜尔胶比其他测试的聚合物(阳离子淀粉,CMC,壳聚糖和PVA)在改善湿纸幅强度方面更具优势。发现湿纸幅强度的增加很大程度上受到瓜尔胶的摩尔质量和剂量策略(即喷雾与纸浆悬浮液添加的影响)的影响。此处给出的结果支持以下观点:在湿态下纤维表面在接触区域的分子水平相互扩散已经发生,并且对湿态下纤维之间的应力传递产生很大影响。相互扩散以及纤维接触区域的强度以及最终的纤维网络可以通过将不同的聚合物吸附到纤维表面来定制。两项中试规模的试验证实了瓜尔胶在实际造纸和纸板生产中的潜力。结果令人鼓舞,表明通过喷涂应用瓜尔豆胶不会造成排水,湿压过程中的脱水,幅材处理或最终产品质量方面的问题,并且改善了干纸和湿纸的机械性能。

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