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The ultra-low interfacial tension behavior of the combined cationic/anionic-nonionic gemini surfactants system for chemical flooding

机译:结合阳离子/阴离子 - 非离子双子氨酶表面活性剂系统进行化学洪水的超低界面张力行为

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Gemini surfactants have attracted intensive attention owning to their unique physical and chemical properties and have gradually been applied in the field of enhanced oil recovery (EOR). In this work, a combined cationic/ anionic-nonionic gemini surfactant system consisting of cetyltrimethyl ammonium bromide (CTAB) and anionic-nonionic gemini surfactants (GAES-9) was proposed for EOR. The surface performance of the combined system was superior to that of either surfactant alone. Critical micelle concentration (CMC) data were used to calculate the molecular interaction parameters according to the regular solution theory. The combined CTAB/GAES-9 surfactant system could greatly affect the interfacial tension (IFT) between water and crude oil, and the strength of this effect depended on the mole fraction and concentration of CTAB/GAES-9. The system could reduce the IFT to an ultra-low level at a total concentration of 200 mg/L, and the system could still maintain ultra-low IFT at a salinity of 10 x 10(4) mg/L. The mechanism underlying the synergistic effect of CTAB/GAES-9 to obtain ultra-low IFT was systematically investigated. It is most probably related to a large number of anions and cations being adsorbed onto the oil-water interface due to electrostatic attraction. Meanwhile, the spatial structure of the elongated, flexible EO chains in the gemini surfactant entangled at the oil-water interface shields some CTAB cations, enabling the adsorption of more cations. To summarize, the combined surfactants exhibit remarkable abilities and could serve as a candidate for EOR in harsh reservoirs.
机译:Gemini表面活性剂引起了强烈的关注,拥有其独特的物理和化学性质,并逐渐应用于增强的采油(EOR)领域。在这项工作中,提出了一种由十六烷基硫铵(CTAB)和阴离子 - 非离子Gemini表面活性剂(GaES-9)组成的组合阳离子/阴离子 - 非离子双子表面活性剂系统。组合系统的表面性能优于单独的表面活性剂。临界胶束浓度(CMC)数据用于根据常规解决方案理论计算分子交互参数。组合的CTAB / GAE-9表面活性剂系统可以大大影响水和原油之间的界面张力(IFT),并且这种效果的强度取决于摩尔分数和CTAB / GAES-9的浓度。该系统可以以200mg / L的总浓度将IFT降低到超低水平,并且系统仍然可以在10×10(4)mg / L的盐度下保持超低IFT。系统地研究了CTAB / GAES-9的协同作用的机制,得到超低IFT的系统。由于静电吸引,它与大量阴离子和阳离子被吸附在油水界面上。同时,GEMINI表面活性剂中细长的柔性EO链的空间结构在油水界面缠绕在一些CTAB阳离子上,使吸附更多阳离子。总而言之,组合的表面活性剂表现出显着的能力,可以作为苛刻水库中EOR的候选者。

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