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Antimicrobial Activity and Barrier Properties against UV Radiation of Alkaline and Enzymatically Treated Linen Woven Fabrics Coated with Inorganic Hybrid Material

机译:含有无机杂交材料含碱性紫外线辐射的抗微生物活性和阻隔性能,酶促处理亚麻编织织物

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摘要

One of the directions of development in the textiles industry is the search for new technologies for producing modern multifunctional products. New solutions are sought to obtain materials that will protect humans against the harmful effects of the environment, including such factors as the activity of microorganisms and UV radiation. Products made of natural cellulose fibers are often used. In the case of this type of material, it is very important to perform appropriate pretreatment before subsequent technological processes. This treatment has the aim of removing impurities from the surface of the fibers, which results in the improvement of sorption properties and adhesion, leading directly to the better penetration of dyes and chemical modifiers into the structure of the materials. In this work, linen fabrics were subjected to a new, innovative treatment being a combination of bio-pretreatment using laccase from Cerrena unicolor and modification with CuO-SiO2 hybrid oxide microparticles by a dip-coating method. To compare the effect of alkaline or enzymatic pretreatment on the microstructure of the linen woven fabrics, SEM analysis was performed. The new textile products obtained after this combined process exhibit very good antimicrobial activity against Candida albicans, significant antibacterial activity against the Gram-negative Escherichia coli and the Gram-positive Staphylococcus aureus, as well as very good UV protection properties (ultraviolet protection factor (UPF) > 40). These innovative materials can be used especially for clothing or outdoor textiles for which resistance to microorganisms is required, as well as to protect people who are exposed to long-term, harmful effects of UV radiation.
机译:一位在纺织行业发展的方向是用于生产的现代化多功能产品新技术的搜索。新的解决方案是寻求获得,这将保护人类对环境的有害影响,包括以下因素:如微生物和紫外线辐射的活性材料。天然纤维素纤维的产品经常被使用。在这种类型的材料的情况下,它之前随后的工艺过程进行适当的预处理是非常重要的。这种处理具有从纤维的表面上,这导致在吸附性能和粘合性的改善去除杂质,直接导致染料和化学改性剂的更好地渗透到材料的结构的目的。在这项工作中,亚麻织物进行一个新的,创新的治疗通过浸涂方法,使用从Cerrena单色和修改用的CuO-SiO2杂氧化物微粒漆酶是生物预处理的组合。为了比较对亚麻织造织物的微观结构碱性或酶预处理的效果,进行SEM分析。该组合过程表现出对白色念珠菌非常良好的抗微生物活性,对革兰阴性大肠埃希氏菌和革兰氏阳性金黄色葡萄球菌显著抗菌活性后获得的新的纺织产品,以及非常好的紫外线防护性能(紫外线保护因子(UPF )> 40)。这些创新的材料可特别适用于服装或这是需要微生物性,以及为保护人民谁接触到长期,紫外线辐射的有害影响的户外纺织品中使用。

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