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Antimicrobial and fluorescence finishing of woolen yarn with Terminalia arjuna natural dye as an ecofriendly substitute to synthetic antibacterial agents

机译:羊毛纱线与终端炎Arjuna天然染料的抗菌和荧光精加工,作为Ecofriendly替代合成抗菌剂

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The current study deals with the use of Terminalia arjuna natural dye as an ecofriendly finishing agent for producing highly functional antimicrobial and fluorescent woolen yarn along with the evaluation of kinetic and thermodynamic adsorption characteristics. The effect of pH on the adsorption was investigated, showing an increase in adsorption capacity with decreasing pH over the range of 2–9, with maximum adsorption at pH 3.5. Two kinetic equations pseudo-first order and pseudo-second order were employed for determining adsorption rates. The pseudo-second order equation provided the best fit to experimental data with an activation energy of 105.58 kJ mol ~(?1) , indicating chemisorption. The equilibrium adsorption data was fitted to Langmuir, Freundlich and Redlich–Peterson adsorption isotherms. The adsorption behavior accorded with the Redlich–Peterson isotherm with exceptionally high regression coefficients for dyeing temperatures of 50, 70 and 90 °C with dye concentration varying from 0.5–10% (o.w.f). Comparative results of the colorimetric properties (CIEL* a * b * and K / S ) using a spectrophotometer under D65 illuminant (10° standard observer) and color fastness (light, wash, and rub) of dyed woolen yarns were studied to quantify the effect of metal mordants. The antimicrobial potential of Terminalia arjuna solution and dyed woolen yarn were assessed in terms of percentage inhibition of bacterial growth against a wide variety of bacterial strains, showing more than 85% inhibition. Reduction in antimicrobial activity of dyed woolen yarn was observed with mordanted samples, however they were found to retain more antimicrobial activity as compared to unmordanted samples as a function of successive washing cycles. The chemical nature of different mordants and wool–mordant–dye complex forming ability were found to have significant impact on the colorimetric and fluorescence characteristics of dyed woolen yarn.
机译:目前的研究涉及使用常年Arjuna天然染料作为一种生态级精加工剂,用于生产高功能性抗微生物和荧光羊毛纱以及动力学和热力吸附特性的评估。研究了pH对吸附对吸附的影响,显示吸附能力的增加,在2-9的范围内降低pH,在pH 3.5时吸附。使用两个动力学方程伪第一顺序和伪二次订单用于确定吸附速率。伪二阶方程提供了最适合的实验数据,其活化能量为105.58 kJ摩尔〜(?1),表明化学。平衡吸附数据适用于Langmuir,Freundlich和Redlich-Peterson吸附等温线。与yedlich-peterson等温线相对的吸附行为,用于染色温度为50,70和90℃的染色温度,染料浓度从0.5-10%(o.w.f)不同。研究了在D65光源(10°标准观察者)下使用分光光度计(10°标准观察者)和色牢度(光,洗涤和擦)的分光光度计(CIEL * A * B *和K / s)的比较结果被研究了染色的羊毛纱线的颜色牢度(光,洗涤和擦),以量化金属媒体的影响。根据细菌生长的抑制率对各种细菌菌株的抑制率来评估终端炎Arjuna溶液和染色羊毛纱的抗微生物潜力,显示出超过85%的抑制作用。用逆向的样品观察到染色毛纱的抗微生物活性的减少,但是,与作为连续洗涤循环的函数相比,它们被发现与非反应样品相比,它们保持更多的抗微生物活性。发现不同媒体和羊毛媒体 - 染料复合体形成能力的化学性质对染色毛纱纱线的比色和荧光特性产生显着影响。

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