首页> 外文期刊>Journal of Dispersion Science and Technology >Mechanism and Influencing Factors of Wettability Alteration of Water-Wet Sandstone Surface by CTAB
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Mechanism and Influencing Factors of Wettability Alteration of Water-Wet Sandstone Surface by CTAB

机译:CTAB对湿砂岩表面润湿性变化的机理及影响因素

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摘要

Different experimental methods including ellipsometry, zeta potential measurements, imbibition studies, and contact angle measurements were used to study the mechanism and influencing factors of wettability alteration of water-wet sandstone surface caused by CTAB (hexadecyl trimethyl ammonium bromide). Results show that when the concentration of CTAB reaches a certain level (below CMC), due to the electrostatic attraction between the positively charged head groups of CTAB and the negatively charged sandstone surface, the monolayer of CTAB is formed and hydrophobic chains of CTAB molecules are toward the aqueous phase, making the solid surface oil-wet. When the concentration of CTAB continues to increase (above CMC), due to the hydrophobic interaction, the compact bilayer of CTAB is formed and hydrophilic head groups of CTAB molecules are toward the aqueous phase, rendering the solid surface water-wet. The contact angles between the oil-water interface and the surface treated with CTAB increase with the increase of the concentration of NaCl and CaCl2. Compared to NaCl, the inorganic salt CaCl2 has a greater impact on the contact angle. In addition, the contact angles increase with the increase of temperature and decrease with the increase of pH value of the aqueous solution.
机译:使用椭圆偏振法,ζ电势测量,吸水研究和接触角测量等不同的实验方法研究了CTAB(十六烷基三甲基溴化铵)引起的水湿砂岩表面润湿性变化的机理和影响因素。结果表明,当CTAB的浓度达到一定水平(低于CMC)时,由于带正电的CTAB头基与带负电的砂岩表面之间的静电吸引,形成了CTAB的单分子层,并形成了CTAB分子的疏水链。朝向水相,使固体表面油润湿。当CTAB的浓度继续增加时(在CMC之上),由于疏水作用,形成了紧凑的CTAB双层,并且CTAB分子的亲水头基趋向水相,使固体表面变得水湿。随着NaCl和CaCl2浓度的增加,油水界面与CTAB处理的表面之间的接触角增加。与NaCl相比,无机盐CaCl2对接触角的影响更大。另外,接触角随着温度的升高而增大,并且随着水溶液的pH值的增大而减小。

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