Aljabri Mitha, Rodgers Thomas
Department of Engineering, College of Engineering and Technology, University of Technology and Applied Sciences, Suhar OM 311, Oman.
Department of Chemical Engineering, The University of Manchester, Manchester M13 9PL, U.K.
ACS Phys Chem Au. 2024 Jul 15;4(5):490-498. doi: 10.1021/acsphyschemau.4c00013. eCollection 2024 Sep 25.
Understanding the dissolution process of surfactant solutions is important in formulating product design processes. The main goal of this study is to gain further insights into how additives and mixtures affect surfactant dissolution processes. To achieve this goal, dissipative particle dynamic simulations were used. Lamellar phases at 80% volume of surfactant were initially equilibrated with water. After reaching an equilibrium state, the dissolution simulations were carried out for different surfactant mixtures. To track the dissolution process, different metrics were used, including visual analysis, local concentration analysis, diffusion, and cluster size calculations. Results show that by having a mixture of surfactants, the diffusion of the micelles is not affected only by the size of the micelles as in pure surfactant systems, but there is also an effect due to the composition of the micelles. When oil is added to a surfactant system, the system acts like a longer chain surfactant system, but only when the chain of oil becomes sufficiently long.
了解表面活性剂溶液的溶解过程对于制定产品设计流程很重要。本研究的主要目标是进一步深入了解添加剂和混合物如何影响表面活性剂的溶解过程。为实现这一目标,采用了耗散粒子动力学模拟。最初将占表面活性剂体积80%的层状相用水进行平衡。达到平衡状态后,对不同的表面活性剂混合物进行溶解模拟。为跟踪溶解过程,使用了不同的指标,包括视觉分析、局部浓度分析、扩散和聚集体尺寸计算。结果表明,通过使用表面活性剂混合物,胶束的扩散不仅像在纯表面活性剂体系中那样仅受胶束大小的影响,而且还受胶束组成的影响。当向表面活性剂体系中添加油时,该体系的行为类似于长链表面活性剂体系,但仅当油链足够长时才如此。