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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Charge and size matters-How to formulate organomodified silicones for textile applications
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Charge and size matters-How to formulate organomodified silicones for textile applications

机译:充电和尺寸 - 如何为纺织应用制定有机化化硅氧烷

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Organomodified silicones (OMS), which conventionally find use in textile finishing processes, have recently become a very interesting prospect in the field of fabric softeners. Here, we present OMS-based fabric softener formulations in the form of classical emulsion (droplet size approximate to 0.1 mu m - 10 mu m) and microemulsions (droplet size approximate to 5 nm-50 nm) using nonionic surfactants (NIS) as emulsifier. Streaming potential measurements are used to obtain a measure of droplet surface charge, and it was found to be related to the ratio of masses of OMS and NIS present in the formulations. In this work, it is investigated how the performance of these formulations is influenced by properties such as droplet size and streaming potential. Panel tests were carried out to evaluate the sensory properties of fabric treated by these formulations, and they reveal that the classical emulsion performs better than the microemulsions. For the microemulsions, it is found that softening performance increases with streaming potential. The observed trends in softening performance are explained by considering the difference in location or penetration of softening actives on or into fabric. Two different experimental approaches are implemented to gain insights into the underlying phenomena. In the first approach, batch deposition experiments are carried out to characterize OMS deposition on fabric. In the second approach, a chromatographic technique is used to compare the deposition kinetics of different formulations. The findings of the experiments provide insights into the reasons underlying the contrasting softening performance. The final results are discussed with respect to existing literature.
机译:通常在纺织品整理过程中使用的有机结构有机硅(OMS)最近成为织物柔软剂领域的一个非常有趣的前景。这里,我们使用非离子表面活性剂(NIS)作为乳化剂(液滴尺寸近似为0.1μm-10μmm)和微乳液(液滴尺寸近似为5nm-50nm)的微量乳液(NIS)作为乳化剂。流势势测量用于获得液滴表面电荷的量度,并且发现其与制剂中存在的OMS和NIs的质量比率有关。在这项工作中,研究了这些配方的性能如何受液滴尺寸和流势等性质的影响。进行面板测试以评估这些制剂处理的织物的感官特性,并且他们揭示了经典乳液比微乳液更好。对于微乳液,发现软化性能随着流动势而增加。通过考虑软化活性活性物质的位置或渗透到织物中的位置或渗透差来解释软化性能的观察到的趋势。实施了两种不同的实验方法,以获得对潜在现象的见解。在第一种方法中,进行批量沉积实验以表征织物上的OMS沉积。在第二种方法中,使用色谱技术来比较不同配方的沉积动力学。实验的调查结果提供了洞察力效果柔软性能的原因。关于现有文献讨论了最终结果。

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