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首页> 外文期刊>Journal of Surfactants and Detergents >Development of Nanoemulsion of Silicone Oil and Pine Oil Using Binary Surfactant System for Textile Finishing
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Development of Nanoemulsion of Silicone Oil and Pine Oil Using Binary Surfactant System for Textile Finishing

机译:纺织整理用二元表面活性体系的硅油和松油纳米乳液的研制

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Nanoemulsions of silicone oil and pine oil using a binary surfactant system were prepared. Silicone oil and pine oil were used to achieve softness and mosquito repellency and antibacterial activity respectively when the nanoemulsion was applied on the fabric. A silicone surfactant (AG-pt) and a hydrocarbon surfactant (TDA-6) were used in different proportions to obtain stable nanoemulsions at the lowest possible droplet size. The various emulsification process variables such as ratio of hydrocarbon to silicone surfactant, surfactant concentration, ratio of silicone oil to pine oil, oil weight fraction and sonication time have been studied. The optimal variables include the ratio of hydrocarbon to silicone surfactant of 80:20, surfactant concentration of 8%, ratio of silicone oil to pine oil of 80:20, oil weight fraction of 20% and 15 min of sonication time at 40% of the applied power. Nanoemulsions were found to be very stable with emulsion droplet size around 41 nm. In order to compare different emulsification techniques, emulsions were also prepared using the conventional method. Emulsions analyzed using SEM showed spherical droplets ranging from 40 to 120 nm. Atomic force microscopy was used to evaluate the bounciness, fluffiness and softness of fabric. From this study, it was found that stable nanoemulsion with a lowest possible droplet size of silicone and pine oil could be prepared by ultrasonic emulsification technique in order to deliver multiple properties when applied to fabric.
机译:制备使用二元表面活性剂体系的硅油和松油的纳米乳液。当纳米乳液施加在织物上时,使用硅油和松油分别达到柔软性和蚊虫泄漏和抗菌活性。用不同比例使用硅氧烷表面活性剂(Ag-Pt)和烃表面活性剂(TDA-6),以在尽可能低的液滴尺寸下获得稳定的纳米乳液。各种乳化过程变量如烃与硅胶表面活性剂的比例,表面活性剂浓度,硅油与松油的比例,加油量分别和超声处理时间。最佳变量包括80:20,表面活性剂浓度为8%,硅油比例为80:20的比例,硅油的比例为80:20,油脂分数为20%和15分钟的超声处理时间为40%应用的力量。发现纳米乳液具有非常稳定的乳液液滴尺寸约为41nm。为了比较不同的乳化技术,还使用常规方法制备乳液。使用SEM显示的乳液显示为40至120nm的球形液滴。原子力显微镜检查用于评估织物的弹性,蓬松和柔软性。从该研究中,发现具有硅氧烷和松油的最低可能液滴尺寸的稳定纳米乳液可以通过超声乳化技术制备,以便在施加到织物时提供多种性能。

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