...
首页> 外文期刊>Journal of Surfactants and Detergents >Optimized Microemulsion Systems for Detergency of Vegetable Oils at Low Surfactant Concentration and Bath Temperature
【24h】

Optimized Microemulsion Systems for Detergency of Vegetable Oils at Low Surfactant Concentration and Bath Temperature

机译:低表面活性剂浓度和沐浴温度下植物油去污性优化的微乳液系统

获取原文
获取原文并翻译 | 示例

摘要

Triglycerides and vegetable oils are amongst the most difficult oils to remove from fabrics due to their highly hydrophobic nature; this is all the more challenging as cold water detergency is pursued in the interest of energy efficiency. Recently, extended surfactants have produced very encouraging detergency performance at ambient temperature, especially at low surfactant concentration. However, the salinity requirement for extended surfactants was excessive (4-14%) and there is limited research on extended-surfactant-based microemulsions for cold water detergency (below 25 A degrees C). Therefore, extended-surfactant-based microemulsions are introduced in this study for cold temperature detergency of vegetable oils with promising salinity and surfactant concentration. The overall goal of this study is to explore the optimized microemulsion formulations with low surfactant and salt concentration using extended surfactant for canola oil detergency at both 25 and 10 A degrees C. It was found that microemulsion systems achieved good performances (higher than those of commercial detergents) corresponding to IFT value 0.1-1 mN/m with the surfactant concentration as low as 10 ppm and 4% NaCl at 25 A degrees C, and as low as 250 ppm and 0.1% (1000 ppm) NaCl at 10 A degrees C. In addition, microemulsion systems were investigated with a different salt (CaCl2, or water hardness, versus NaCl) at 10 A degrees C, demonstrating that 0.025% CaCl2 (250 ppm) can produce good detergency; this is in the hardness range of natural water. These results provide qualitative guidance for microemulsion formulations of vegetable oil detergency and for future design of energy-efficient microemulsion systems.
机译:甘油三酯和植物油是由于其高度疏水性的织物中除去的最困难的油;这符合能效效率的追求冷水污染性更具挑战性。最近,扩展表面活性剂在环境温度下产生了非常令人振奋的洗涤性性能,特别是在低表面活性剂浓度下。然而,延长表面活性剂的盐度要求过量(4-14%),对冷水洗涤剂的延长表面活性剂的微乳液有限研究(低于25℃)。因此,在该研究中引入了延长的表面活性剂的微乳液,用于植物油的寒冷温度去污性,具有良好的盐度和表面活性剂浓度。本研究的总体目标是利用延长的表面活性剂探讨具有低表面活性剂和盐浓度的优化微乳液配方,所述延长的表面活性剂在25和10℃下C的延长表面活性剂。发现微乳液系统实现了良好的性能(高于商业人士对应于IFT值0.1-1mN / m的洗涤剂,表面活性剂浓度为低至10ppm和4%NaCl的25℃,低至250ppm和0.1%(1000ppm)NaCl为10℃ 。另外,在10℃下用不同的盐(CaCl 2或水硬度,NaCl)研究微乳液系统,证明了0.025%CaCl 2(250ppm)可以产生良好的去污力;这是天然水的硬度范围。这些结果为植物油污染性和未来的节能微乳液系统设计提供了微乳液配方的定性指导。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号