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A New Approach to Deliver Highly Concentrated Surfactants for Chemical Enhanced Oil Recovery

机译:一种新方法,用于为化学增强的石油回收提供高度浓缩的表面活性剂

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A novel process has been developed to produce highly concentrated forms of surfactants suitable for chemical Enhanced Oil Recovery (cEOR) in the form of powders. Powders are advantageous for cEOR applications because, through their lower water content (typically 3%), they have the potential to reduce transportation costs and simplify the logistics of transporting surfactants from the production location to field locations. Data are presented showing the properties and advantages of powder cEOR surfactants and how they compare to the more conventional liquid form of surfactants. The manufacturing route first involves the preparation of higher active matter liquids (around 70% active) that are subsequently converted into powders using dedicated, standard mixing equipment, the same type used for the manufacture of laundry powders. In this work, several surfactant powders were produced on a pilot plant scale using a number of internal olefin sulfonates to establish applicability for different cEOR projects. The blended powders are agglomerates of surfactant and sodium carbonate and were made both with and without polymer (termed ASP and AS powders respectively). The AS and ASP powders were found to easily dissolve in brine, eliminating the need for special field equipment for dissolution, and gave faster polymer dissolution in water compared with dissolving the polymer as a separate component. The powders have acceptable physical properties that facilitate transport and dispersion in brine and have been tested at desired ratios of surfactant to alkali. This paper also outlines how higher active matter liquids can be manufactured to avoid gel phases, improve their handleability and lower their viscosity. The surfactant powder approach has the potential to substantially reduce costs for full scale chemical EOR projects where large chemical volumes are manufactured, transported, stored and injected.
机译:已经开发了一种新的方法,用于生产适用于粉末形式的化学增强的油回收(CEOR)的高浓度形式的表面活性剂。粉末对于CEOR应用是有利的,因为通过其较低的含水量(通常为3%),它们具有降低运输成本的可能性,并简化将表面活性剂从生产位置传送到现场位置的物流。提出了数据,显示了粉末领域表面活性剂的性质和优点以及它们与更常规的表面活性剂的液体形式的比较。制造路径首先涉及制备较高的活性物质液体(约70%活性),随后使用专用的标准混合设备转化为粉末,该液体具有用于制造衣物粉末的相同类型。在这项工作中,使用许多内部烯烃磺酸盐在试验厂规模上产生了几种表面活性剂粉末,以确定对不同的领导项目的适用性。共混粉末是表面活性剂和碳酸钠的附聚物,并在没有聚合物(分别称为ASP和粉末)。发现AS和ASP粉末在盐水中容易溶解,消除了对溶解的特殊现场设备的需求,并与溶解聚合物作为单独的组分相比,在水中进行了更快的聚合物溶解。粉末具有可接受的物理性质,可促进盐水中的运输和分散,并已以所需的表面活性剂对碱的测试进行测试。本文还概述了较高的活性物质液体可以制造以避免凝胶相,改善其可操作性并降低粘度。表面活性剂粉末方法有可能大大降低全面化学EOR项目的成本,其中制造大化学体积,运输,储存和注射。

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