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Eco-Friendly Application of Nano Chitosan in Antimicrobial Coatings in the Textile Industry

机译:纳米壳聚糖在纺织工业抗菌涂料中的生态友好应用

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An attempt was made on, chitosan (a renewable source of natural biodegradable polymer) synthesized into nano particles and characterized through Transmission Electron microscope (TEM) and Dynamic light scattering (DLS). The individual size varied from 5 nm to 180 nm in TEM and an average particle size 166 nm were obtained by DLS technique. Nano chitosan particles were applied on 100% cotton, viscose and polyester material to impart eco-friendly anti microbial finish using exhaust method. The antimicrobial activity of the finished fabrics was assessed qualitatively and quantitatively. The Fourier Transform Infrared spectroscopy (FTIR) and Scanning Electron Microscope (SEM) analysis exposed the embedding of chitosan nano particles in treated fabrics. The nano chitosan treated fabrics were tested for anti microbial activity as per AATCC 100-2004 and AATCC 124-2009. The results show that the finished fabric demonstrated significant antibacterial activity against S. aureus in both qualitative and quantitative tests. The physical properties of treated and untreated fabrics are also analyzed and reported. The environmental testing included an effluent treatment and recycling and selected heavy metal contents and formaldehyde of nano chitosan treated fabrics. A biological method using the sequence Lactobacillus acidophilus was proposed to determine the viability of reusing contaminated water discharged. It is observed that test organisms show no inhibition at the end of the treatment. The treated water is suitable for reuse with allowable level of impurities. Contents of selected heavy metals and formaldehyde have also been tested in Atomic Absorption Spectroscopy (AAS) and UV-Spectrophotometer and reported. The nano coated chitosan anti microbial fabrics proved that it is durable and eco-friendly process and discharged effluents were also environmental free and cost effective process.
机译:尝试了将壳聚糖(天然生物可降解聚合物的可再生资源)合成为纳米颗粒,并通过透射电子显微镜(TEM)和动态光散射(DLS)对其进行了表征。 TEM中的个体尺寸在5nm至180nm之间变化,并且通过DLS技术获得了166nm的平均粒径。将纳米壳聚糖颗粒涂在100%棉,粘胶纤维和聚酯材料上,采用排气法赋予生态友好的抗菌效果。定性和定量评估成品织物的抗菌活性。傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)分析显示了壳聚糖纳米颗粒在处理过的织物中的包埋。根据AATCC 100-2004和AATCC 124-2009测试了纳米壳聚糖处理的织物的抗菌活性。结果表明,成品织物在定性和定量测试中均显示出对金黄色葡萄球菌的显着抗菌活性。还分析和报告了处理过的和未处理过的织物的物理性能。环境测试包括废水处理和再循环以及纳米壳聚糖处理过的织物的选定重金属含量和甲醛。提出了一种使用序列嗜酸乳杆菌的生物学方法来确定再利用污水排放的可行性。观察到测试生物在处理结束时没有显示出抑制作用。经过处理的水适合以允许的杂质含量重复使用。所选的重金属和甲醛的含量也已在原子吸收光谱法(AAS)和紫外分光光度计中进行了测试并得到了报道。纳米涂层的壳聚糖抗微生物织物证明了它是耐用且环保的工艺,排出的废水也无环境且具有成本效益。

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