Jadhav A J, Holkar C R, Karekar S E, Pinjari D V, Pandit A B
Ultrason Sonochem. 2015 Mar;23:201-7. doi: 10.1016/j.ultsonch.2014.10.024. Epub 2014 Oct 29.
This work reports on the process optimization of ultrasound-assisted, paraffin wax in water nanoemulsions, stabilized by modified sodium dodecyl sulfate (SDS). This work focuses on the optimization of major emulsification process variables including sonication time, applied power and surfactant concentration. The effects of these variables were investigated on the basis of mean droplet diameter and stability of the prepared emulsion. It was found that the stable emulsion with droplet diameters about 160.9 nm could be formed with the surfactant concentration of 10 mg/ml and treated at 40% of applied power (power density: 0.61 W/ml) for 15 min. Scanning electron microscopy (SEM) was used to study the morphology of the emulsion droplets. The droplets were solid at room temperature, showing bright spots under polarized light and a spherical shape under SEM. The electrophoretic properties of emulsion droplets showed a negative zeta potential due to the adsorption of head sulfate groups of the SDS surfactant. For the sake of comparison, paraffin wax emulsion was prepared via emulsion inversion point method and was checked its intrinsic stability. Visually, it was found that the emulsion get separated/creamed within 30 min. while the emulsion prepared via ultrasonically is stable for more than 3 months. From this study, it was found that the ultrasound-assisted emulsification process could be successfully used for the preparation of stable paraffin wax nanoemulsions.
本研究报道了由改性十二烷基硫酸钠(SDS)稳定的超声辅助水包石蜡纳米乳液的工艺优化。本研究着重于优化主要乳化工艺变量,包括超声处理时间、施加功率和表面活性剂浓度。基于所制备乳液的平均液滴直径和稳定性,研究了这些变量的影响。结果发现,在表面活性剂浓度为10mg/ml、以40%的施加功率(功率密度:0.61W/ml)处理15分钟的条件下,可以形成液滴直径约为160.9nm的稳定乳液。使用扫描电子显微镜(SEM)研究乳液液滴的形态。这些液滴在室温下呈固态,在偏光下显示亮点,在SEM下呈球形。由于SDS表面活性剂的硫酸根头部基团的吸附,乳液液滴的电泳性质显示出负的zeta电位。为了进行比较,通过乳液转相点法制备了石蜡乳液,并检查了其固有稳定性。肉眼观察发现,该乳液在30分钟内会分离/分层,而通过超声制备的乳液在3个月以上的时间内是稳定的。从本研究中发现,超声辅助乳化工艺可成功用于制备稳定的石蜡纳米乳液。