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Influence of Ethylene Oxide Content in Nonionic Surfactant to the Hydrolysis of Reactive Dye in Silicone Non-Aqueous Dyeing System

机译:非离子表面活性剂中环氧乙烷含量对有机硅非水染色体系中活性染料水解的影响

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Silicone reverse dyeing technology provides an important means of saving water and salts-free in the textile dyeing industry. The interactions between dyes and surfactants may influence the hydrolysis of dye during dyeing. In this investigation, the effect of ethylene oxide content in nonionic surfactant on the hydrolytic reaction of reactive dye was firstly investigated in a siloxane reverse emulsion dyeing system. Compared with no surfactants, the hydrolytic reaction of vinyl sulfone reactive dye was a slowdown when some nonionic surfactants were used during dyeing. Usually, the hydrophobic groups in nonionic surfactants were dodecyl chains but their polar head groups were different. The hydrolytic reaction of vinyl sulfone dye showed that the longer of EO (ethylene oxide) chains, the faster the hydrolytic reaction of vinyl sulfone dye. From the absorption spectrum of dye, it could be concluded that more of dyes would be solubilized into the formed micelles, and dye-surfactant complexes were adhered to the surface of micelles if the molecular structure of surfactant had a shorter EO chains. Furthermore, the intramolecular or intermolecular hydrogen bond could be formed between dye and surfactant, which would further influence the hydrolytic reaction of vinyl sulfone dye. However, the solubility of surfactant in siloxane non-aqueous media would decrease with the increase of EO chains. Meanwhile, the dispersion of dye was enhanced as well as the hydrolytic reaction of dye. From this investigation, some surfactant can be used to improve the fixation of reactive dye during dyeing. Furthermore, washing times after dyeing and the ecological problems can be decreased.
机译:有机硅反向染色技术提供了一种重要的手段,可以节省纺织染色行业中的水和盐分。染料和表面活性剂之间的相互作用可能会影响染色过程中染料的水解。在这项研究中,首先在硅氧烷反向乳液染色体系中研究了非离子型表面活性剂中环氧乙烷含量对活性染料水解反应的影响。与没有表面活性剂相比,当在染色过程中使用一些非离子表面活性剂时,乙烯基砜活性染料的水解反应变慢。通常,非离子表面活性剂中的疏水基是十二烷基链,但它们的极性头基是不同的。乙烯基砜染料的水解反应表明,EO(环氧乙烷)链越长,乙烯基砜染料的水解反应越快。从染料的吸收光谱可以得出结论,如果表面活性剂的分子结构具有较短的EO链,则更多的染料会溶解在形成的胶束中,并且染料-表面活性剂复合物会粘附在胶束的表面。此外,染料和表面活性剂之间可能形成分子内或分子间的氢键,这将进一步影响乙烯基砜染料的水解反应。但是,表面活性剂在硅氧烷非水介质中的溶解度会随着EO链的增加而降低。同时,提高了染料的分散性以及染料的水解反应。通过该研究,可以使用一些表面活性剂来改善染色过程中活性染料的固着性。此外,可以减少染色后的洗涤时间和生态问题。

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