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The effect of a new in situ precipitation inhibitor on chemical EOR

机译:新型原位沉淀抑制剂对化学驱油效果的影响

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Divalent metals cations present in injection water can significantly influence the performance of alkali–surfactant–polymer (ASP) flooding. These cations such as calcium and magnesium react with the added chemicals to form their insoluble salts as precipitations. In this paper, an in situ precipitation inhibitor known as sodium acrylate is used to overcome the precipitation problems prevalent with ASP flooding. Fluid–fluid compatibility tests were performed to examine the performance of the in situ precipitation inhibitor using hard brine having large quantity of divalent metal cations. The effect of the precipitation inhibitor on interfacial tension was also investigated using various inhibitor concentrations. The in situ precipitation inhibitor showed an excellent performance in preventing calcium and magnesium precipitations and the solutions remained clear for 45?days at 80?°C. Further, as the inhibitor concentration increased to an optimal value, an ultra-low interfacial tension of 0.04?mN/m could be achieved. The advantage of the in situ inhibitor is the use of hard brines without the need for softening the injection water.
机译:注入水中存在的二价金属阳离子会严重影响碱-表面活性剂-聚合物(ASP)驱油性能。这些阳离子(例如钙和镁)与添加的化学物质反应,形成沉淀的不溶性盐。在本文中,使用一种称为丙烯酸钠的原位沉淀抑制剂来克服ASP驱中普遍存在的沉淀问题。使用具有大量二价金属阳离子的硬盐水进行了流体-流体相容性测试,以检查原位沉淀抑制剂的性能。还使用各种抑制剂浓度研究了沉淀抑制剂对界面张力的影响。原位沉淀抑制剂在防止钙和镁沉淀方面表现出优异的性能,溶液在80°C下保持澄清45天。此外,随着抑制剂浓度增加到最佳值,可以实现0.04Ω·mN / m的超低界面张力。原位抑制剂的优点是使用硬盐水,而无需软化注入水。

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