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Cross-linking chitosan into UV-irradiated cellulose fibers for the preparation of antimicrobial-finished textiles

机译:将壳聚糖交联到紫外线辐射的纤维素纤维中以制备抗菌整理的纺织品

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Chitosan cross-linked cellulose fibers were prepared using non-toxic procedures in order to confer antimicrobial properties to cellulose fibers. Citric acid was used as the cross-linker and NaH2PO4 as catalyst in previously UV-irradiated cellulose fibers. Further heat dried-cure process and washing with detergent, water and acetic acid (0.1 M) gave a maximum incorporation of chitosan of 27 mg per gram of function-alized textile. The thermogravimetric analysis of the material with the highest chitosan content showed an increased thermal stability compared to cellulose and chitosan. The UV-irradiation induced morphological changes, such as less entangled cellulose fibers, as observed by scanning electron microscopy, which was prompted to enhance the chitosan incorporation. The biomass and spore germination percentage of Penicillium chrysogenum and colony forming units per millilitre for Escherichia coli decreased significantly on the composed materials as compared to raw cellulose fiber and it was similar to that obtained with a commercial antimicrobial cellulose fiber.
机译:为了赋予纤维素纤维抗微生物性能,使用无毒程序制备了壳聚糖交联的纤维素纤维。在先前的紫外线辐射纤维素纤维中,柠檬酸用作交联剂,NaH2PO4作为催化剂。进一步的加热干燥固化过程,并用洗涤剂,水和乙酸(0.1 M)洗涤,每克功能化纺织品的壳聚糖最大掺入量为27 mg。与纤维素和壳聚糖相比,具有最高壳聚糖含量的材料的热重分析显示出更高的热稳定性。如通过扫描电子显微镜观察到的,紫外线辐射引起形态变化,例如纤维素纤维缠结较少,这提示其增强了壳聚糖的掺入。与原料纤维素纤维相比,在组成材料上,每毫升大肠杆菌产黄青霉菌和菌落形成单位的生物量和孢子萌发百分率显着下降,并且与商业抗菌纤维素纤维相似。

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