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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Molecular array behavior and synergistic effect of sodium alcohol ether sulphate and carboxyl betaine/sulfobetaine in foam film under high salt conditions
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Molecular array behavior and synergistic effect of sodium alcohol ether sulphate and carboxyl betaine/sulfobetaine in foam film under high salt conditions

机译:高盐条件下泡沫膜中乙醇醚硫酸钠和羧基甜菜碱/磺基甜菜碱的分子阵列行为及协同效应

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In this paper, the molecular array behavior of the mixed systems of anionic-nonionic surfactant sodium alcohol ether sulphate (AES) and zwitteroinic surfactants carboxyl betaine (CAB) or sulfobetaine (DSB) at the gas/water interface in foam films was investigated by molecular dynamics simulation approach, which helped to understand in microscopic view how salts effected the foam stability of the mixed surfactants and their synergistic effect. It was found that the multivalent inorganic cations could be bounded to the negatively charged head groups of the surfactants and participated in the formation of the interface layer directly, not only influenced the interfacial adsorption behavior of the surfactant molecules, but also changed the state of the water molecules in the foam films. Foam decay method was utilized to determine the foam stability experimentally. The experimental results agreed very well with the simulation results. The knowledge about how the microscopic character of the surfactant mixtures at the interface with multivalent cations coexisting effect the foam properties could provide useful guidance for the application of surfactants under high salinity condition, such as the formula design for foam flooding system used in offshore enhanced oil recovery (EOR). (C) 2015 Elsevier B.V. All rights reserved.
机译:本文通过分子结构研究了阴离子-非离子表面活性剂钠乙醇醚硫酸盐(AES)和两性表面活性剂羧基甜菜碱(CAB)或磺基甜菜碱(DSB)在泡沫膜气/水界面上的混合体系的分子阵列行为。动力学模拟方法,有助于从微观角度理解盐如何影响混合表面活性剂的泡沫稳定性及其协同作用。发现多价无机阳离子可以与表面活性剂带负电的头部结合,直接参与界面层的形成,不仅影响了表面活性剂分子的界面吸附行为,而且改变了表面活性剂的状态。泡沫膜中的水分子。利用泡沫衰减法通过实验确定泡沫的稳定性。实验结果与仿真结果非常吻合。与多价阳离子界面处的表面活性剂混合物的微观特性如何共存影响泡沫性能的知识,可为在高盐度条件下应用表面活性剂提供有用的指导,例如海上增强油中泡沫驱替系统的配方设计恢复(EOR)。 (C)2015 Elsevier B.V.保留所有权利。

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