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首页> 外文期刊>Journal of Dispersion Science and Technology >Demulsification of crude oil emulsion by capacitative sensor system measurement: introduction to apparatus and methodology
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Demulsification of crude oil emulsion by capacitative sensor system measurement: introduction to apparatus and methodology

机译:通过电容传感器系统测量原油乳液的破乳:装置和方法简介

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摘要

Standard Bottle Test is often the most common technique to gauge the demulsification performance of a newly formulated crude oil demulsifier. In our work, we have attempted to devise a more specific reliable and reproducible technique for monitoring the demulsification process. It is well-known that as water separates from a crude oil emulsion the capacitance of the mixture changes. By monitoring the change in capacitance at different heights of the emulsion with respect to time using in-house developed capacitance probe, we accurately measure the separation rate and the efficiency of the demulsifier. It was found that substantial changes in the capacitance occurred as the water separates from the emulsion. This method not only has the advantage of being more accurate and robust but can also be adapted to be used directly in the oil field. Here we have used our previously synthesized surfactant Lauramidopropyl glyceryl dimethyl ammonium chloride (LGDMAC) as a demulsifier and its performance has been compared to that of Benzalkonium Chloride. The separation rate and the efficiency were found to be the highest for LGDMAC. Data obtained by the capacitance measurements enabled the determination of the kinetics of the separation rate as well as to quantify the separated water.
机译:标准瓶试验往往是衡量新配制的原油破乳剂的破乳性能最常见的技术。在我们的工作中,我们试图设计更具体的可靠和可重复的技术来监测破乳过程。众所周知,随着水与原油乳液分离的水混合物的电容变化。通过在使用内部开发的电容探针监测乳液的不同高度的电容变化,我们精确测量了破乳剂的分离率和效率。发现在水与乳液中分离出电容的大量变化。该方法不仅具有更准确和稳健的优点,而且还可以适用于直接在油田中使用。在这里,我们使用了先前合成的表面活性剂月氨基丙基甘氨酸二甲基氯化铵(LGDMAC)作为破乳剂,并将其性能与苯扎氯酰氯相比。发现分离率和效率是LGDMAC最高的。通过电容测量获得的数据使得能够确定分离率的动力学以及量化分离的水。

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