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Enhancing the wet strength of lignocellulosic fibrous networks using photo-crosslinkable polymers

机译:使用可光交联的聚合物增强木质纤维素纤维网络的湿强度

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摘要

Wet strengthening of paper products is typically performed by thermo-crosslinking reactive polymers or polymer precursors. In this article we introduce a novel concept for generating wet-strength paper grades by using photoreactive polymers and light as the energy source. Statistical, hydrophilic copolymers of dimethylacrylamide and benzophenone-methacrylate monomer, respectively, were synthesised and surface-applied to model paper handsheets. Benzophenone, as a photoreactive group, was selected because of its high crosslinking efficiency when illuminated with UV light (365 or 254 nm). After photo-crosslinking of the polymer-modified handsheets, first results of mechanical testing showed a significant increase of the wet tensile strength. The wet strength is a function of the molar content of the photoreactive group (benzophenone) within the polymer, the mass of the polymer relative to the dry fibre, the wavelength of irradiation and the intensity of UV exposure. Hence, there are a number of options to control and modulate the wet strength of paper sheets between less than 2 % (relative to the dry strength of the paper sheet) up to more than 15 %. In comparison to commercially available wet strength additives, crosslinking can be achieved even in the presence of humidity (up to 10 % water in the handsheet by weight) and at room temperature.
机译:纸制品的湿增强通常通过热交联反应性聚合物或聚合物前体来进行。在本文中,我们介绍了一种通过使用光反应性聚合物和光作为能源来生成湿强度纸张等级的新颖概念。分别合成了统计的二甲基丙烯酰胺和二苯甲酮-甲基丙烯酸单体的亲水性共聚物,并将其表面应用于模型手抄纸。之所以选择苯甲酮作为光反应性基团,是因为其在紫外光(365或254 nm)照射下具有很高的交联效率。在聚合物改性的手抄纸进行光致交联之后,机械测试的第一个结果显示湿拉伸强度显着提高。湿强度是聚合物中光反应性基团(二苯甲酮)的摩尔含量,相对于干纤维的聚合物质量,照射波长和UV暴露强度的函数。因此,有许多选择来控制和调节纸张的湿强度在小于2%(相对于纸张的干强度)至大于15%之间。与市售的湿强度添加剂相比,即使在存在湿气(按重量计手抄纸中含水量高达10%)和室温下也可以实现交联。

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