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具有木质素/氧化锌/水性聚氨酯复合涂层的可持续性聚乳酸纺粘无纺制品。

Sustainable polylactic acid spunlace nonwoven fabrics with lignin/zinc oxide/water-based polyurethane composite coatings.

机构信息

Eskişehir Technical University Rectorate, 26555 Eskişehir, Turkey.

出版信息

Int J Biol Macromol. 2024 Jan;254(Pt 1):127678. doi: 10.1016/j.ijbiomac.2023.127678. Epub 2023 Oct 29.

Abstract

In this paper, polylactic acid spunlace nonwoven fabrics were coated with lignin/zinc oxide/water-based polyurethane composite formulations, including five different ratios of lignin and zinc oxide, via a film applicator and thermally cured. The coated and thermally cured nonwoven fabrics were tested in terms of color values, tensile strength, abrasion resistance, ultraviolet protection, hydrophobicity, antibacterial activity, air, and vapor permeability properties. Characterization studies were conducted by FTIR, DSC, TGA, XRD, and SEM. The ultraviolet protection factor of 215.47 and a water contact angle of 90.27° were obtained with the fabric coated with WPU-1:5 formulation. Nonwoven fabric coated with the WPU-1:5 formulation showed evident antibacterial activity against S. aureus and E. coli bacteria as 89 % and 100 %, respectively. With the addition of lignin/ZnO into water-based polyurethane coating paste, PLA nonwoven fabric exhibited improved antibacterial activity, tensile strength, abrasion resistance, and ultraviolet light protection performance. However, composite coatings decreased air and vapor permeability and hydrophobicity of fabrics, but acceptable results were obtained. The results indicate that polylactic acid nonwoven fabrics, when treated with lignin/ZnO/WPU composite coatings, exhibit enhanced mechanical and functional properties, rendering them promising for applications in protective medical textiles.

摘要

本文采用流延法在聚乳酸纺粘非织造布上制备了木质素/氧化锌/水性聚氨酯复合涂层,包括 5 种不同木质素和氧化锌比例的涂层,并通过热固化进行处理。对涂层和热固化的非织造布进行了颜色值、拉伸强度、耐磨性、紫外线防护、疏水性、抗菌活性、透气性和蒸汽透过性的测试。采用 FTIR、DSC、TGA、XRD 和 SEM 进行了表征研究。用 WPU-1:5 配方涂层的织物得到了 215.47 的紫外线防护因子和 90.27°的水接触角。用 WPU-1:5 配方涂层的非织造布对金黄色葡萄球菌和大肠杆菌的抗菌活性分别为 89%和 100%。将木质素/ZnO 加入水性聚氨酯涂层糊中,聚乳酸非织造布的抗菌活性、拉伸强度、耐磨性和紫外线防护性能均得到提高。然而,复合涂层降低了织物的透气性和透湿性以及疏水性,但得到了可接受的结果。结果表明,经木质素/ZnO/WPU 复合涂层处理的聚乳酸非织造布具有增强的机械和功能性能,有望在防护医疗纺织品中得到应用。

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