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Experimental Investigation of Surfactant Partitioning in Pre-CMC and Post-CMC Regimes for Enhanced Oil Recovery Application

机译:高CMC中表面活性剂分配的实验研究和增强型储存应用的CMC后果

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摘要

The applications of surfactants in Enhanced Oil Recovery (EOR) have received more attention in the past decade due to their ability to enhance microscopic sweep efficiency by reducing oil-water interfacial tension in order to mobilize trapped oil. Surfactants can partition in both water and oil systems depending on their solubility in both phases. The partitioning coefficient (Kp) is a key parameter when it comes to describing the ratio between the concentration of the surfactant in the oil phase and the water phase at equilibrium. In this paper, surfactant partitioning of the nonionic surfactant Alkylpolyglucoside (APG) was investigated in pre-critical micelle concentration (CMC) and post-cmc regimes at 80 °C to 106 °C. The Kp was then obtained by measuring the surfactant concentration after equilibration with oil in pre-cmc and post-cmc regimes, which was done using surface tension measurements and high-performance liquid chromatography (HPLC), respectively. Surface tension (ST) and interfacial tension (IFT) behaviors were investigated by performing pendant and spinning drop tests, respectively—both tests were conducted at high temperatures. From this study, it was found that APG was able to lower IFT as well as ST between water/oil and air/oil, and its effect was found to be more profound at high temperature. The partitioning test results for APG in pre-cmc and post-cmc regimes were found to be dependent on the surfactant concentration and temperature. The partitioning coefficient is directly proportional to IFT, where at high partitioning intensity, IFT was found to be very low and vice versa at low partitioning intensity. The effect of temperature on the partitioning in pre-cmc and post-cmc regimes had the same impact, where at a high temperature, additional partitioned surfactant molecules arise at the water-oil interface as the association of molecules becomes easier.
机译:由于能够通过减少油水界面张力以便动员困难的油来提高微观扫描效率,因此在过去十年中得到了更多的关注。表面活性剂可以根据它们在两个相中的溶解度分配在水和油系统中。分配系数(KP)是在描述油相中表面活性剂的浓度与平衡时的水相之间的键参数。在本文中,在80℃至106℃下,研究了在预临界胶束浓度(CMC)和CMC后的后CMC制度中研究了非离子表面活性剂烷基氯酰胺(APG)的表面活性剂分配。然后通过在预先CMC中的油状物和后CMC制度中测量与油的油状物进行平衡后的表面活性剂浓度来获得KP,其使用表面张力测量和高性能液相色谱(HPLC)进行。通过进行垂直和旋转滴测试来研究表面张力(ST)和界面张力(IFT)行为 - 在高温下进行两种测试。从本研究开始,发现APG能够降低IFT以及水/油和空气/油之间的ST,并且发现其效果在高温下更深。发现CMC中APG和CMC后的划分试验结果依赖于表面活性剂浓度和温度。分区系数与IFT成比例,其中在高分区强度下,发现IFT非常低,反之亦然,低分区强度。温度对预先CMC和CMC后的分配的影响具有相同的影响,其中在高温下,在水 - 油界面产生另外的分配表面活性剂分子,因为分子的关联变得更容易。

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