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Modification of bentonite clay by a cationic surfactant to be used as a viscosity enhancer in vegetable-oil-based drilling fluid

机译:阳离子表面活性剂对膨润土的改性,将其用作植物油基钻井液的增粘剂

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Bentonite clays may be used as additives in drilling fluids aiming at viscosity correction. A surface modification procedure with the purpose of dispersing the clay in the organic phase of a vegetable-oil-based drilling fluid was performed. The fluids were prepared using soybean oil, lauryl alcohol triethoxylate, brine, bentonite modified by hexadecyl trimethylammonium bromide (CTABr), and barite. The clay modification step was performed using three different concentrations of cationic surfactant. To evaluate the surface modification of the clays, surface tension measurements and determination of contact angles on soybean oil with the capillary rise method were performed. A factorial design 23 with triplicate center point was conducted to evaluate the influence of the concentration of CTABr in clay modification, viscosity enhancer concentration in the composition of the drilling fluid and temperature on the rheological properties of the fluid: plastic viscosity, apparent viscosity, thixotropy and yield strength. As higher amounts of quaternary ammonium cations were adsorbed on clay surface, a decrease of the contact angle was observed, suggesting an increasing affinity for soybean oil. The study of the effect of independent variables showed that temperature is the most influential factor in the rheological properties of the prepared fluid. (C) 2016 Elsevier B.V. All rights reserved.
机译:膨润土粘土可用作钻井液中的添加剂,旨在进行粘度校正。进行了表面改性程序,目的是将粘土分散在植物油基钻井液的有机相中。使用大豆油,月桂醇三乙氧基化物,盐水,经十六烷基三甲基溴化铵(CTABr)改性的膨润土和重晶石制备流体。使用三种不同浓度的阳离子表面活性剂进行粘土改性步骤。为了评估粘土的表面改性,进行了表面张力测量并通过毛细管上升法确定了豆油上的接触角。进行了具有三重中心点的析因设计23,以评估粘土改性中CTABr的浓度,钻井液组成中的粘度增强剂浓度和温度对流体流变性质的影响:塑性粘度,表观粘度,触变性和屈服强度。由于较高数量的季铵阳离子吸附在粘土表面上,因此观察到接触角的减小,这表明与大豆油的亲和力增加。对独立变量影响的研究表明,温度是所制备流体流变性质的最主要影响因素。 (C)2016 Elsevier B.V.保留所有权利。

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