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苎麻纤维在液氨中用三元活性染料混合物进行可持续染色。

Sustainable dyeing of ramie fiber with ternary reactive dye mixtures in liquid ammonia.

作者信息

Gao Bo, Huang Xiaolong, Jiang Tiancheng, Pervez Md Nahid, Zhu Wenju, Hassan Mohammad Mahbubul, Cai Yingjie, Naddeo Vincenzo

机构信息

Hubei Provincial Engineering Laboratory for Clean Production and High Value Utilization of Bio-based Textile Materials, Wuhan Textile University Wuhan 430200 China

College of Art and Design, Wuhan Textile University Wuhan 430200 China.

出版信息

RSC Adv. 2022 Jul 1;12(30):19253-19264. doi: 10.1039/d2ra03288k. eCollection 2022 Jun 29.

Abstract

Liquid ammonia (LA) dyeing is a zero-effluent and sustainable dyeing technology investigated for textiles. In the present work, three bi-functional reactive dyes, Reactive Red 195 (R195), Reactive Yellow 145 (Y145), and Reactive Blue 194 (B194), were used to dye ramie fiber in liquid ammonia, and the dye exhaustion (%) and fixation (%) were compared with ramie fibers dyed with the same dyes in an aqueous dyeing method. Dyeing with a single reactive dye, a binary dye mixture, and a ternary dye mixture in liquid ammonia showed that all the dyes are highly compatible as they showed similar uptake. The total dye exhaustion percentage of dyeing with the ternary dye mixture was 22.6%. After dyeing, a cationic fixing agent (CFA)/decamethylcyclopentasiloxane (D5) micro-emulsion was applied and the dye fixation rate was 96.7% accompanied by high colorfastness to washing (Grade 4-5) and produced uniform shades. Finally, a color triangle of dyed ramie fibers was prepared to exhibit many colorful shades. This work demonstrates the viability of dyeing of textile fibers in liquid ammonia.

摘要

液氨(LA)染色是一种针对纺织品研究的零废水且可持续的染色技术。在本研究中,三种双功能活性染料,即活性红195(R195)、活性黄145(Y145)和活性蓝194(B194),被用于在液氨中对苎麻纤维进行染色,并将其染色率(%)和固色率(%)与采用相同染料以水相染色法对苎麻纤维进行染色的情况进行了比较。在液氨中用单一活性染料、二元染料混合物和三元染料混合物进行染色的结果表明,所有染料具有高度相容性,因为它们的上染情况相似。三元染料混合物染色的总染色率为22.6%。染色后,施加了阳离子固色剂(CFA)/十甲基环五硅氧烷(D5)微乳液,固色率为96.7%,同时具有较高的耐洗色牢度(4 - 5级),且染色色泽均匀。最后,制备了染色苎麻纤维的色三角以展示多种色彩。这项工作证明了在液氨中对纺织纤维进行染色的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e731/9247807/252f8530b2e1/d2ra03288k-f1.jpg

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