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Aggregation behaviors of SDBSs at oil/water interface: Theoretical and experimental study

机译:石油/水界面SDBS的聚集行为:理论与实验研究

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摘要

Aggregation behaviors of three different sodium dodecyl benzene sulfonates (SDBSs) were studied theoretically and experimentally in this work. The dynamic oil/water interface tension measurements reveal that 6C12 Phi S is most efficient surfactant in reducing interfacial tension. The addition of inorganic salts (NaCl, CaCl2) to SDBS aqueous solutions was found to further decrease the dynamic interface tension. Molecular dynamics (MD) simulation was employed to study aggregation behaviors of SDBSs at oil/water interface. Radial distribution functions (RDFs) results indicate that Ca2+ can improve the aggregation of SDBSs due to strong electrostatic attraction with headgroups of SDBSs. Meanwhile, the electrostatic repulsion among SDBS headgroups was shield by Ca2+. The orientation of SDBSs was changed and the angle between SDBSs and normal of oil/water interface increased with adding Ca2+. Finally, oil recovery measurement shows that alkali/surfactant/polymer (ASP) system with higher-symmetry and branched alkylbenzene is more effective in enhanced oil recovery.
机译:在理论上和实验上,在这项工作中研究了三种不同十二烷基苯磺酸钠(SDBS)的聚集行为。动态油/水界面张力测量显示,6C12PHI S在减少界面张力方面是最有效的表面活性剂。发现添加无机盐(NaCl,CaCl 2)至SDBS水溶液,进一步降低动态界面张力。采用分子动力学(MD)模拟来研究油/水界面SDBS的聚集行为。径向分布函数(RDFS)结果表明CA2 +可以提高SDBS的聚集,由于SDBS的头组强大的静电吸引力。同时,SDBS头组之间的静电排斥是Ca2 +的屏蔽。随着CA2 +增加了SDBS的取向,SDBS和水/水界面的正常角度增加。最后,储油测量表明,具有更高对称和支链烷基苯的碱/表面活性剂/聚合物(ASP)系统在增强的采油中更有效。

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