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Wettability Alteration with Smart Water on Carbonate Reservoirs - Effect of Phosphate and Sulfate Multivalent Anions

机译:碳酸盐储层湿润的润湿性改变 - 磷酸盐和硫酸盐多价阴离子的影响

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Increasing evidence has shown that the adjusting of ionic composition of water injection in the reservoir can improve oil recovery. The carbonate reservoirs comprise about the 50% of oil reservoirs and most of them are neutral to oil wet. More than 65% of carbonate reservoirs are oil wet and 12% are intermediate wet. Wettability is a very important factor in the oil recovery mechanisms. Because it has drastic effect on the distribution and flowing of the oil and water in the reservoirs. Ionic composition adjusting of water which is referred as smart water is known as one of wettability alteration method in the carbonate reservoirs. Although the mechanisms behind of this technic don't have recognized as well but wettability alteration is a result of these mechanisms. The effect of individual ions must be investigate for better recognition of mechanisms causing improving oil recovery. For complete investigation of mechanisms of smart water technic it must be studied about the crude oil/formation water/injection water/rock system but this system is very complex and for better understanding it must become simpler In this study, the aim is the wettability alteration deal with smart water using sessile drop method for contact angle measurement. The effect of phosphate and sulfate multivalent anions in different temperature, pH and concentration of them was studied. Modified brines containing phosphate salt were more effective than with sulfate salt In acidic pH both anions have not good effect but in upper pH they can alter wettability to more water wetting. The phosphate was more soluble in upper temperatures and both anions have better wettability alteration properties to water wetting.
机译:越来越多的证据表明,在储层中调节水注射的离子组成可以改善溢油。碳酸盐储存器包括约50%的油储层,其中大部分是中性的油湿。超过65%的碳酸盐储存器是油湿,12%是中间湿润。润湿性是石油回收机制的一个非常重要的因素。因为它对油藏油和水的分布和流动具有剧烈影响。将被称为智能水的水的离子组成调整被称为碳酸盐储存器中的润湿性改变方法之一。虽然这种技术的机制也没有被认可,但润湿性改变是这些机制的结果。必须调查各个离子的效果,以便更好地识别导致提高储油的机制。为了完整调查智能水技术机制,必须研究原油/地层水/注射水/岩体,但该系统非常复杂,为了更好地理解,必须在本研究中变得更简单,目的是润湿性改变处理智能水,使用柄液滴法进行接触角测量。研究了磷酸盐和硫酸盐多价阴离子在不同温度,pH和浓度中的影响。含有磷酸盐盐的改性盐水比酸性pH中的硫酸盐含有更有效,两阴离子都没有良好的效果,但在上pH值中,它们可以改变润湿性的润湿性。磷酸盐更易溶于上温度,并且两个阴离子都具有更好的润湿性改变性能。

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