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Research on the Interfacial Tension between Anion Gemini Surfactant Solution and Crude Oil

机译:阴离子Gemini表面活性剂溶液与原油之间的界面张力研究

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Both transient-state and steady-state interfacial tension (IFT) between anion Gemini surfactants solution and crude oil were measured. The effects of various parameters such as anion Gemini surfactant molecular structure, concentration, category of crude oil and salinity of water medium on the interfacial tension between crude oil and water were investigated in detail. The results reveal that when the length of the carbon chain or the carbon number of spacer is constants, the increase of either carbon number of interval groups or length of carbon chain is favorable to decrease the interfacial tension. AN12-4-12 has the lowest interfacial tension. As the concentration of anion Gemini surfactant increasing, the interfacial tension between crude oil and water decreases. Anion Gemini surfactants which have a larger carbon number of interval group and longer hydrophobic carbon chain have a better interfacial activity. AN12-4-12 has the best interfacial activity. When the concentration of AN10-4-10, AN12-4-12 reaches up to 2000 mg·L~(-1), it can lower the steady-state oil-water IFT to 10~(-3) mN·m~(-1). Different kinds of crude oil have different effects of decreasing IFT and different interfacial activity for the same anion Gemini surfactant. The Critical Micelle Concentration (352mg·L~(-1), 487mg·L~(-1)) of AN8-4-8 and AN12-4-12 between thin oil and water interface is obviously lower than those (1000mg·L~(-1), 3000mg L~(-1)) between mixed heavy oil and water interface. But molecular structure still has a larger influence on interfacial tension than category of crude oil. The IFT between AN12-4-12 solutions and mixed heavy oil lower an order of magnitude than that between AN8-4-8 solutions and mixed heavy oil. As the solution salinity increased, the interfacial tension between anion Gemini surfactant solution and thin oil decrease rapidly. The longer the hydrophobic carbon chain is, the more obvious the effect of salinity is. The salinity is not less than 1.2×10~(5 )mg·L~(-1), AN12-4-12 can decrease the oil-water interfacial tension to 2.2×10~(-3) mN·m~(-1), while AN8-4-8 only makes that reduce to 9.7×10~(-3) mN·m~(-1).
机译:测量了阴离子Gemini表面活性剂溶液和原油之间的瞬态和稳态界面张力(IFT)。详细研究了各种参数如阴离子Gemini表面活性剂分子结构,浓度,水介质的原油和盐度盐度的效果。详细研究了原油和水之间的界面张力。结果表明,当碳链的长度或间隔物的长度是常数时,间隔基团的碳数或碳链长度的增加有利地降低界面张力。 AN12-4-12具有最低的界面张力。随着阴离子Gemini表面活性剂的浓度增加,原油和水之间的界面张力降低。阴离子Gemini表面活性剂具有较大碳的间隔组和更长的疏水性碳链具有更好的界面活性。 AN12-4-12具有最佳的界面活动。当AN10-4-10的浓度达到2000mg·L〜(-1)时,它可以降低稳态油水IFT至10〜(-3)MN·m〜 (-1)。不同种类的原油对同一个阴离子Gemini表面活性剂的IFT和不同的界面活性有不同的影响。薄油和水界面之间的临界胶束浓度(352mg·l〜(-1),487mg·l〜(-1),487mg·l〜(-1))显然低于那些(1000mg·l 〜(-1),混合重油和水界面之间3000mg L〜(-1))。但分子结构仍然对界面张力的影响较大,而不是原油类别。 AFT在AN12-4-12溶液之间的IFT和混合油油的数量级比AN8-4-8溶液和混合重油之间的数量级降低。随着溶液盐度增加,阴离子Gemini表面活性剂溶液和薄油之间的界面张力迅速下降。疏水性碳链越长,盐度的效果越明显。盐度不小于1.2×10〜(5)mg·l〜(-1),AN12-4-12可以将油水界面张力降至2.2×10〜(-3)Mn·m〜( - 1),虽然AN8-4-8仅使得减少到9.7×10〜(-3)Mn·m〜(-1)。

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