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Nature friendly Application of Ionic Liquids for Dissolution Enhancement of Heavy Crude Oil

机译:离子液体溶出性溶析性的自然友好应用

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The upstream petroleum industry faces operational and technical challenges due to the production of crude oil containing waxes, asphaltenes and aromatic compounds and also due to the formation of gas hydrates resulting in their deposition in the surface and production equipments and in offshore pipelines affecting the safer operations, in turn resulting in huge production losses, and threatening the environment. It is also estimated that, all over the globe there are more than double the times of reserves of heavy and extra-heavy crude oil than the lighter one. In spite of this, the production of heavy oil is still low. As the world’s demand for light crude oil continues to increase tremendously, the supplies of these easily extractable crude oil continues to decrease although efforts have already been made to extract the heavy and extra-heavy oil that was previously considered uneconomical to produce and process. The enhancement in the solubility of heavy crude oil in solvent and ionic liquids mixture is investigated using UV-visible, FT-IR and ~(13)C-NMR spectroscopic techniques. Ionic liquids also aid in the reduction of surface forces between oil-water systems thereby helping for the recovery of entrapped oil from exhausted reservoirs which have failed to produce the residual oil. This work also investigates the role of ionic liquids in reducing the surface forces at the interface of crude oil-water system. Synergistic effect of ionic liquids along with brine has also been tested. It is observed that, the dissolution of heavy crude oil is more in the solution with ionic liquid than with the solvent alone. Solubility of heavy crude oil in the presence of studied ionic liquids and in the studied solvents increases about 60 %, when compared with the solutions of heavy crude oil in solvents without ionic liquids. Measured interfacial tension values between solutions of ionic liquid and crude oil reveal that these ionic liquids are successful in reducing the surface tension and interfacial tension. Improved efficiency in reducing the interfacial tension using salt and ionic liquid mixture has been observed between crude oil and the aqueous solution of ionic liquid. This method also helps in minimizing the amount of organic solvents that may be used to a considerable extent. Delayed production of crude oil due to flow-assurance issues or the loss of valuable fuel which remains unrecoverable due to the huge and cumbersome technical difficulties in the prevailing enhanced oil recovery processes could be greatly reduced by employing the use of ionic liquids.
机译:由于含有蜡的原油,沥青质和芳族化合物的生产,上行石油工业面临着运营和技术挑战,并且还由于形成气体水合物,导致其在表面和生产设备中的沉积以及影响更安全操作的海上管道中产生的气体水合物,反过来导致生产损失巨大,威胁环境。还估计,全球各地的储量超重和超重原油的储备量多于更轻。尽管如此,重油的生产仍然很低。随着世界对浅质原油的需求越来越巨大地增加,这些容易提取的原油的供应仍然减少,尽管已经进行了努力,以提取以前认为不经济生产和过程的重质和重质油。使用UV可见的FT-IR和〜(13)C-NMR光谱技术研究了溶剂和离子液体混合物中重原油和离子液体混合物中溶解度的增强。离子液体还有助于降低油水系统之间的表面力,从而有助于从未产生残留油的储存储层的捕获油的回收。这项工作还研究了离子液体在原油水系统界面处减少表面力方面的作用。还测试了离子液体与盐水的协同效应。观察到,重原油的溶解在离子液体中的溶液中比单独用溶剂更高。与溶剂中的重原油溶液相比,在没有离子液体的溶剂中的溶液相比,重原油和研究溶剂在研究中的溶解度增加约60%。离子液体和原油溶液之间的测量界面张力值表明这些离子液体在降低表面张力和界面张力方面是成功的。在原油和离子液体水溶液之间观察到使用盐和离子液体混合物降低界面张力的提高效率。该方法还有助于最小化可在相当程度上使用的有机溶剂量。由于采用使用离子液体,由于巨大和繁琐的石油回收过程中,由于流动保证问题或损失的有价值燃料的损失而延迟生产原油产量或持续不可恢复的燃料。

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