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一种基于黑色素靶向芬顿反应的高效超声辅助牦牛毛漂白策略。

An efficient ultrasonic-assisted bleaching strategy customized for yak hair triggered by melanin-targeted Fenton reaction.

机构信息

Hubei Key Laboratory of Biomass Fibers and Eco-Dyeing & Finishing, Wuhan Research Center of Eco-dyeing & Finishing and Functional Textile, College of Chemistry and Chemical Engineering, Wuhan Textile University, Wuhan 430200, China; Jiangsu Engineering Research Center of Textile Dyeing and Printing for Energy Conservation, Discharge Reduction and Cleaner Production, National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, Suzhou 215123, China; Key Laboratory of Clean Dyeing and Finishing Technology of Zhejiang Province, Shaoxing University, Shaoxing 312000, China.

Hubei Key Laboratory of Biomass Fibers and Eco-Dyeing & Finishing, Wuhan Research Center of Eco-dyeing & Finishing and Functional Textile, College of Chemistry and Chemical Engineering, Wuhan Textile University, Wuhan 430200, China.

出版信息

Ultrason Sonochem. 2022 May;86:106020. doi: 10.1016/j.ultsonch.2022.106020. Epub 2022 Apr 29.

Abstract

Promoting processing efficiency and taking advantage of agricultural by-products are two promising ways to achieve sustainable textile industry. This study presents a customized efficient ultrasonic-assisted bleaching strategy for yak hair - a widely existing but underexploited secondary dark shade fibre from yak. A melanin-targeted Fenton oxidation process is established which involves three phases, i.e., (I) incorporation of Fe ions with melanin, (II) catalytic oxidative bleaching using hydrogen peroxide (HO), and (III) reductive cleansing. The bleaching efficacy, dyeing performance and tensile property of yak hair treated with and without ultrasound were explored and compared. Further, the ultrasonic bleaching mechanism in terms of the catalytic effect of Fe ions, the promotion of HO decomposition, removal of melanin granule from yak hair, were demonstrated. Finally, the main effects and interactions of parameters in phase II, and optimal condition were obtained through mathematical modelling based on a central composite design (CCD). Results reveal that ultrasonic bleaching dramatically enhances the whiteness index (WI) of yak hair from 11 to 45 which is 44.6% higher than those bleached without ultrasound, and also promotes the uptake of acid dyes. There is only 15% tensile strength loss and 14% elongation increment of yak hair after ultrasonic bleaching, rising from a slight damage of cuticle layer and cleavage of disulfide bonds, respectively. In the study of bleaching mechanism, Fe ion is confirmed to improve the HO decomposition rate by 20.9% which further runs up to 35.9% after introducing ultrasound. Ultrasound increases the concentration of hydroxyl radicals (HO) by 94% which are the main oxidative species participating in bleaching confirmed by HO scavenging experiment. The porous structure was observed on the cross section of yak hair stemming from the removal of melanin granules contributed by the cleaning action of ultrasound. A theoretical highest WI of 52.4 can be achieved under an optimal condition based on the CCD study. In general, the proposed melanin-targeted bleaching strategy for yak hair that integrates ultrasonic technology and Fenton reaction, is beneficial to the development of sustainable textile industry from material and processing perspectives.

摘要

提高加工效率和利用农业副产品是实现可持续纺织业的两种有前途的方法。本研究提出了一种定制的高效超声辅助漂白策略,用于牦牛毛——一种广泛存在但尚未充分利用的牦牛二次深色纤维。建立了一种针对黑色素的芬顿氧化工艺,该工艺涉及三个阶段,即(i)黑色素与铁离子结合,(ii)使用过氧化氢(HO)进行催化氧化漂白,以及(iii)还原清洗。探讨并比较了未经超声处理和经超声处理的牦牛毛的漂白效果、染色性能和拉伸性能。进一步,从铁离子的催化作用、HO 分解的促进、黑色素颗粒从牦牛毛中去除等方面,阐述了超声漂白的机理。最后,通过基于中心复合设计(CCD)的数学建模,获得了第二阶段参数的主要效应和交互作用以及最佳条件。结果表明,超声漂白可使牦牛毛的白度指数(WI)从 11 显著提高到 45,提高了 44.6%,比未经超声处理的漂白提高了 44.6%,同时也促进了酸性染料的上染。超声漂白后牦牛毛的拉伸强度仅损失 15%,伸长率增加 14%,这分别归因于表皮层的轻微损伤和二硫键的断裂。在漂白机理研究中,Fe 离子被证实可将 HO 分解率提高 20.9%,而引入超声后则提高至 35.9%。超声处理可使羟基自由基(HO)的浓度增加 94%,这是通过 HO 清除实验证实的参与漂白的主要氧化物质。通过超声的清洗作用,从牦牛毛的横截面可以观察到多孔结构,这是由于黑色素颗粒的去除所致。根据 CCD 研究,在最佳条件下,理论上可以达到 52.4 的最高 WI。总的来说,从材料和加工的角度来看,本研究提出的将超声技术与芬顿反应相结合的牦牛毛黑色素靶向漂白策略,有利于可持续纺织业的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce44/9079105/03aa84e19b6c/ga1.jpg

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