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Surfactant Flooding in Challenging Conditions: Towards Hard Brines and High Temperatures

机译:表面活性剂在具有挑战性的条件下洪水:朝向硬盐水和高温

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Surfactant flooding processes become challenging in hard brines and/or at high temperatures. When hard brine is used as surfactant make-up brine (injection brine), chemical adsorption is high using conventional injection strategies. This makes the overall process performance limited. High temperature (>80°C) raises thermal stability issues with subsequent loss of effectiveness. This paper illustrates recent progresses achieved in those difficult conditions. We show that good performances can be obtained by combining appropriate formulations with adapted injection strategies, i.e. slugs design, depending on reservoir conditions. A particular emphasis is set on solutions that can be applied in the field. High performances solutions first rely on selecting appropriate surfactants and polymers from an extended portfolio of industrial products. We demonstrate that ultra-low interfacial tension formulations can be successfully designed for a wide range of conditions, i.e. from mild to difficult conditions, including very hard brines, very high salinities (>200 g/L) and/or high temperatures (up to 120°C). Various coreflood experiments are then reviewed to define guidelines to address challenging conditions: 1.Starting from mild conditions, i.e. soft brine at moderate temperature, we show that performance of surfactant flooding relies on the combination of properly designed chemical formulation and appropriate injection strategy. In soft brine, a salinity gradient is shown to provide high performance; 2.In hard brines, surfactant adsorption is significantly higher than in soft brines. We demonstrate that a conventional salinity gradient injection strategy becomes ineffective when hardness is increased. Surfactant adsorption is drastically reduced (<0.2 mg/g) when using appropriate adsorption inhibitors. This results in a very high oil recovery (~90 %ROIP) with performances comparable to the one achieved in soft brine conditions; 3.For high temperatures (>70-80°C), adapted protocols are required to address thermal stability issues and subsequent loss of performances. New surfactants, polymers and additives are available to address these conditions. Successful oil recovery experiments done up to 120°C are discussed. The paper will demonstrate how surfactant flooding can be successfully applied in challenging reservoir conditions opening new opportunities for chemical EOR.
机译:表面活性剂泛滥过程在硬盐水和/或高温下挑战。当硬盐用作表面活性剂化妆盐水(注射盐水)时,使用常规的注射策略,化学吸附很高。这使整个过程性能有限。高温(> 80°C)通过随后的有效性丧失热稳定性问题。本文说明了最近在这些困难条件下实现的进展。我们表明,通过将适当的配方与适应的注射策略相结合,即SLUGS设计,根据储层条件,可以获得良好的性能。特定的重点是可以在现场应用的解决方案上。高性能解决方案首先依靠从工业产品的扩展组合中选择合适的表面活性剂和聚合物。我们证明,可以成功地设计超低界面张力配方,用于各种条件,即从轻度到困难的条件,包括非常硬的盐水,非常高的盐水(> 200g / L)和/或高温(最高) 120°C)。然后审查各种内核实验以定义有挑战性条件的准则:1。从温和条件下启动,即软盐水在中等温度下,表明表面活性剂泛滥的性能依赖于适当设计的化学制剂和适当的注射策略。在软盐水中,显示盐度梯度以提供高性能; 2.在硬盐水中,表面活性剂吸附显着高于软盐水。我们表明,当硬度增加时,传统的盐度梯度注射策略变得无效。使用适当的吸附抑制剂时,表面活性剂吸附在急剧下降(<0.2mg / g)。这导致具有非常高的油回收(〜90%的roip),其性能可与软盐水条件的达到相当;对于高温(> 70-80°C),需要适应的协议来解决热稳定性问题并随后的性能损失。新的表面活性剂,聚合物和添加剂可用于解决这些条件。讨论了成功的储油实验,可讨论高达120°C。本文将展示表面活性剂洪水如何成功应用于挑战的水库条件,为化学EOR开辟了新的机会。

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