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首页> 外文期刊>Journal of Applied Polymer Science >Mechanism involved in the dyeing of wool with an oil-in-water microemulsion system
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Mechanism involved in the dyeing of wool with an oil-in-water microemulsion system

机译:水包油微乳体系对羊毛进行染色的机理

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摘要

This article investigates the influence of oil-in-water (o/w) microemulsions, used as media for both dye solubilization and dye baths, on the dye uptake on fiber Surfaces. An acetic acid solution/Synperonic L7/benzyl alcohol microemulsion system Was used to solubilize a water-insoluble antimicrobial natural dye (C.I. Natural Orange 2) and to dye wool fabric at an acidic pH. The results clearly show that the dye exhaustion on the fabric took place mainly when the temperature of the dye bath promoted a change in the molecular organization of the microemulsions with the liberation of the dye solubilized in the oil droplets of the microemulsions. Although uniformly and evenly dyed fabrics were obtained, they showed very low wash fastness. To confirm the mechanism involved and to achieve dyed fabrics with good wash-fastness properties, two different dyeing methods were also Studied. The first method was dyeing at a constant low temperature, at which the o/w microemulsion remained a monophase system; the second one was dyeing at a high temperature, at which it was transformed into a multiphase system. Both the dye exhaustion and wash fastness improved considerably or the fabrics dyed at a high temperature. Moreover, uniform and even dyeing was achieved. (C) 2008 Wiley Periodicals, Inc.
机译:本文研究了水包油(o / w)微乳液(用作染料增溶和染料浴的介质)对纤维表面染料吸收的影响。乙酸溶液/ Synperonic L7 /苯甲醇微乳液体系用于增溶非水溶性抗菌天然染料(C.I. Natural Orange 2),并在酸性pH下对羊毛织物进行染色。结果清楚地表明,织物上的染料耗尽主要是由于染浴的温度促进了微乳液的分子组织的变化,而染料的溶解溶解在微乳液的油滴中。尽管获得了染色均匀和均匀的织物,但它们的水洗牢度非常低。为了确定所涉及的机理并获得具有良好的耐洗牢度性能的染色织物,还研究了两种不同的染色方法。第一种方法是在恒定的低温下染色,在该温度下o / w微乳液仍为单相体系。第二个是在高温下染色,然后将其转化为多相系统。染色力和耐洗牢度都得到了显着改善,或者织物在高温下染色。此外,实现了均匀均匀的染色。 (C)2008 Wiley期刊公司

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