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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Evaluation of multifunctional properties of cotton fabric based on metal/chitosan film
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Evaluation of multifunctional properties of cotton fabric based on metal/chitosan film

机译:基于金属/壳聚糖膜的棉织物多功能性能评价

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摘要

Films of chitosan with both of zirconium and/or titanium at different ratios as model film applied to cotton fabric have been evaluated. The structure of cotton fabric and its morphology were studied using both X-ray diffraction and scanning electron microscope (SEM-EDX), respectively. Chitosan-titanium film showed the highest interaction with cotton fabric that lead to lower crystallinity index of fabric. Whereas, week interaction between cotton fabrics is observed in case of zirconium/titanium-chitosan film. From SEM-EDX, chitosan-titanium film sorption on cotton is the highest where the N content is 9.67%. Moreover, the UV-protecting properties as well as the antibacterial activity of cotton fabric against Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli) are investigated. The effect of metallic salt treatments on the UV-prptection factor (UPF), UV-protection grade as well as on the percent reduction in bacterial count (% RBC) has been studied. Results showed that UPF rating of prepared samples incorporated with Ti was >50, with Zr 45-50 as well as with the mixed were 45-50 at all used concentration. The extent of improvement in the UPF values is based on the nature of the deposited metal oxide. Ti > Zr > mixed > -none. Furthermore the extent of increasing of oil stain release (OSR) values is based on the type of metal oxides (i.e. 4-5 for Ti, 2-4 for Zr as well as 3-5 for the mixed oxides). On the other hand the antibacterial activities of the prepared cotton fabrics containing the metal oxides using reduction of bacterial count method against G +ve bacteria (96-87%) and G -ve bacteria (93-70.5%) are depending on the nature of the deposited metal oxide, i.e. Zr > mixed > Ti > coated fabric > none. UV-cutting as well as incorporation of metal oxides, enhancing both an excellent UV-protection and prominent antibacterial activities.
机译:已经评估了具有不同比例的锆和/或钛的壳聚糖膜作为应用于棉织物的模型膜。分别使用X射线衍射和扫描电子显微镜(SEM-EDX)研究了棉织物的结构及其形态。壳聚糖钛膜与棉织物的相互作用最大,导致织物的结晶度较低。而在锆/钛-壳聚糖薄膜的情况下,棉织物之间会发生相互作用。根据SEM-EDX,壳聚糖-钛膜在棉花上的吸附最高,其中N含量为9.67%。此外,研究了棉织物对金黄色葡萄球菌(S. aureus)和大肠杆菌(E. coli)的紫外线防护性能以及抗菌活性。研究了金属盐处理对紫外线防护因子(UPF),紫外线防护等级以及细菌数量减少百分比(%RBC)的影响。结果表明,在所有使用浓度下,制备的掺有Ti的样品的UPF等级均> 50,Zr 45-50以及混合后的UPF等级均为45-50。 UPF值的改善程度取决于沉积的金属氧化物的性质。 Ti> Zr>混合>-无。此外,油污释放(OSR)值的增加程度取决于金属氧化物的类型(即,Ti为4-5,Zr为2-4,混合氧化物为3-5)。另一方面,使用细菌计数减少法制备的含金属氧化物的棉织物对G + ve细菌(96-87%)和G -ve细菌(93-70.5%)的抗菌活性取决于其性质。沉积的金属氧化物,即Zr>混合> Ti>涂层织物>无。紫外线切割以及金属氧化物的引入,增强了出色的紫外线保护和突出的抗菌活性。

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