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Assessment of fly ash as a potential demulsifier for highly stable water-in- crude oil emulsion produced in the petroleum industry

机译:粉煤灰评估作为石油工业生产高度稳定的水性油乳液的潜在破乳剂

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The quest for smart and cost-effective demulsification materials to separate water-in-crude oil (W/O) emulsions is highly desired in the petroleum industry. In this paper, an assessment study was conducted on the potency of coal fly ash (CFA) as a demulsifier for W/O emulsions. To our knowledge, this is the first study reporting CFA as a demulsifier for highly stable W/O emulsions. W/O emulsion samples were prepared without using any conventional emulsifier. Asphaltenes in the crude oil acted as an emulsifier and stable emulsions were produced. Six W/O emulsion samples of the same crude oil to water volume ratio (4:6) were formulated. A reference sample was selected for comparison during demulsificat ion. Demulsification tests were performed at room temperature (25 °C). Demulsification results obtained via the bottle tests showed that the reference sample (blank) without CFA remained stable without water separation after 48 hrs while the addition of various CFA quantities (1 % to 7 %) brought about separation of water from the oil phase. Separation of water was observed to have increased with increasing CFA addition in the emulsion. Water separation continued for each sample until around 24 hrs when equilibr ium was attained, and water separation remained constant. The W/O emulsion containing 7 % CFA displayed the highest performance with demulsification efficiency (DE) of 96.67%. Demulsification comparison test results between CFA and a commercial demulsifier (poloxamer - 407) using same concentration and under room temperature showed that CFA was capable of separating water better than this commercia l demulsifier. This observation indicates that CFA can compete favorably with many commercia l demulsifiers available in the market. Additionally, the outcome of demulsification efficiency of 7% CFA at elevated temperatures (i.e., 60 °C and 80 °C) was around 98%. More importantly, the separated water at these elevated temperatures was clearer and contained lesser oil floccules than the separated water phase observed during demulsification tests conducted at room temperature (25 °C) condition. Shear rheology measurement reveals that CFA addition altered the viscoelastic characteristics at the crude oil/water interface at an aging time of 10 hrs and 55 mins. Viscous modulus remained stagnant while elastic modulus dropped significantly. Optical morphology revealed the phase transformation in the as-prepared W/O emulsion before and after the addition of CFA particles. The possible mechanism governing the demulsification of W/O emulsion driven by CFA particles was proposed. It is believed that this work will be relevant to petroleum exploration and refining operations.
机译:在石油工业中,对智能和经济效益的破乳材料进行智能和经济效益的破乳材料,在石油工业中受到高效。在本文中,对煤粉灰(CFA)的效力进行了评估研究,作为W / O乳液的破乳剂。据我们所知,这是第一次研究报告CFA作为高度稳定的W / O乳液的破乳剂。在不使用任何常规乳化剂的情况下制备W / O乳液样品。原油中的沥青质作用为乳化剂,制备稳定的乳液。配制六种与水体积比(4:6)相同的原油的乳液样品。选择参考样品以在Demsificat离子期间进行比较。破乳试验在室温(25℃)下进行。通过瓶试验中获得的破乳结果表明,该参比样品(空白)不用CFA 48个小时后保持稳定没有水分离,同时添加各种CFA量(1%至7%)所带来的从油相分离水的。观察到水的分离随着乳液中的CFA添加而增加。当达到平衡IUM时,每种样品的水分离持续到24小时,并且水分离保持恒定。含有7%CFA的W / O乳液显示出最高性能,破乳效率(DE)为96.67%。使用相同浓度和室温下CFA和商业破乳剂(Poloxamer-407)之间的破乳比较试验结果表明,CFA能够优于该商业的DEMIMER分离水。这种观察表明,CFA可以在市场上可用的许多商业L Demsifiers竞争。另外,在升高的温度(即60℃和80℃)下,7%CFA的破乳效率的结果约为98%。更重要的是,在这些升高的温度下,分离的水更清晰,并且含有较小的油絮凝,而不是在室温(25℃)条件下进行的破乳试验期间观察到的分离水相。剪切流变学测量表明,CFA添加在10小时的老化时间和55分钟的老化时间内改变了原油/水界面的粘弹性特性。粘性模量保持停滞,而弹性模量显着降低。光学形态显示在加入CFA颗粒之前和之后的制备的W / O乳液中的相变化。提出了通过CFA颗粒驱动的W / O乳液破乳的可能机制。据信这项工作将与石油勘探和炼油业务有关。

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