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Demulsifier performance at low temperature in a low permeability reservoir

机译:低渗透储层在低温下的破乳剂性能

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The crude oil in Longdong area is produced in the form of emulsion containing associated oil and water, which needs to be separated before dispatch to end user. Chemical demulsification under high temperature is the most widely used technology to break the emulsions. In this study a rheological method was used to determine the curve of viscosity-temperature and lower limit of temperature was determined. A series of experiments on low-temperature commercial demulsifies were implemented for studying demulsification performance by bottle test method. Mechanism of low-temperature demulsifier was studied by using spinning drop interfacial tensiometer to determine interfacial tension between the crude oil and demulsifier solution by considering the concentration. Turbiscan stability analyzer was used to study the effect of water content, temperature, and demulsifier concentration on emulsion stability. The corresponding relationship between interfacial tension and demulsification was verified through the study of low-temperature demulsifier effect on interfacial tension. Efficient low-temperature demulsifiers AR102, AR901, PR929, and PRC06 were selected. PRC06 was chosen to be the best at 40 degrees C, and when the optimal concentration was 200 mg/L, dehydration rate was 99.51%.
机译:Long东地区的原油是以乳液形式生产的,乳液中含有伴生的油和水,在运往最终用户之前需要对其进行分离。高温下的化学破乳是破坏乳液的最广泛使用的技术。在这项研究中,使用流变方法确定粘度-温度曲线,并确定温度下限。进行了一系列低温商业破乳实验,通过瓶装试验方法研究了破乳性能。研究了低温破乳剂的作用机理,采用纺丝滴界面张力计,通过考虑浓度来确定原油与破乳剂溶液之间的界面张力。使用Turbiscan稳定性分析仪研究水含量,温度和破乳剂浓度对乳液稳定性的影响。通过研究低温破乳剂对界面张力的影响,验证了界面张力与破乳作用的对应关系。选择了高效的低温破乳剂AR102,AR901,PR929和PRC06。选择PRC06在40℃下最佳,当最佳浓度为200 mg / L时,脱水率为99.51%。

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