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Dyeing Property and Adsorption Kinetics of Reactive Dyes for Cotton Textiles in Salt-Free Non-Aqueous Dyeing Systems

机译:无盐非水染色体系中棉纺织品的活性染料染色性能和吸附动力学

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摘要

In recent years, new concepts in textile dyeing technology have been investigated which aim to decrease the use of chemicals and the emission of water. In this work, dyeing of cotton textiles with reactive dyes has been investigated in a silicone non-aqueous dyeing system. Compared with conventional aqueous dyeing, almost 100% of reactive dyes can be adsorbed on cotton textiles without using any salts in non-aqueous dyeing systems, and the fixation of dye is also higher (80%~90% for non-aqueous dyeing vs. 40%~50% for traditional dyeing). The pseudo-second-order kinetic model can best describe the adsorption and equilibrium of reactive dyes in the non-aqueous dyeing systems as well as in the traditional water dyeing system. In the non-aqueous dyeing systems, the adsorption equilibrium of reactive dyes can be reached quickly. Particularly in the siloxane non-aqueous dyeing system, the adsorption equilibrium time of reactive dye is only 5–10 min at 25 °C, whereas more time is needed at 60 °C in the water dyeing system. The surface tension of non-aqueous media influences the adsorption rate of dye. The lower the surface tension, the faster the adsorption rate of reactive dye, and the higher the final uptake of dye. As a result, non-aqueous dyeing technology provides an innovative approach to increase dye uptake under a low dyeing temperature, in addition to making large water savings.
机译:近年来,已经研究了纺织品染色技术中的新概念,旨在减少化学药品的使用和水的排放。在这项工作中,已经在有机硅非水染色系统中研究了用活性染料对棉纺织品进行染色的方法。与传统的水性染色相比,在非水染色体系中几乎100%的活性染料可以吸附在棉纺织品上,而无需使用任何盐,并且染料的固色性也更高(非水染色的80%〜90%。传统染色的40%〜50%)。伪二级动力学模型可以最好地描述非水染系统以及传统水染系统中活性染料的吸附和平衡。在非水性染色系统中,可以快速达到活性染料的吸附平衡。特别是在硅氧烷非水染色系统中,活性染料在25°C下的吸附平衡时间仅为5-10分钟,而在60°C下,水染系统需要更多的时间。非水介质的表面张力会影响染料的吸附速率。表面张力越低,活性染料的吸附速度越快,并且最终吸收的染料越高。结果,除了节省大量的水之外,非水染色技术提供了一种创新的方法来增加在低染色温度下的染料吸收。

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