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Recent advancement of hybrid materials used in chemical enhanced oil recovery (CEOR): A review

机译:化学增强型石油回收中使用的混合材料的最新进展(CEOR):综述

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Depletion of natural oil reserves has forced oil industries to focus on tertiary recovery methods to extract residual oil after exhausting the primary and secondary methods. Among the Enhance Oil Recovery (EOR) technologies, Chemical EOR (CEOR) is gaining popularity. Despite research efforts to increase the recovery using CEOR, increasing complexity in extraction methods are encountered. With changes in reservoir conditions (high temperature, pressure and salinity) and crude oil properties, existing chemicals used in CEOR, such as alkali, polymers and surfactants do not function desirably. These conditions have detrimental effects on the performance of EOR chemicals, like precipitation, degradation, etc. Development and utilization of effective EOR hybrids such as surfactant-polymer, polymer-nanomaterial, surfactant-nanomaterial and polymer-surfactant-nanomaterial had prevailed the effects of harsh reservoir conditions, and their applications in oil fields in recent years have increased the success of EOR. The synergistic effects between the hybrid components play major roles in improving the properties that could withstand the effect of extreme reservoir conditions and changes in crude oil properties. Therefore, this paper is aimed at reviewing recent advances in CEOR hybrid technologies, and discusses the basic concept, applications, advancement and limitations of different hybrid materials used in CEOR processes.
机译:天然石油储备的消耗具有强迫石油产业,专注于耗尽初级和二次方法后提取剩余油的三级回收方法。在增强石油回收(EOR)技术中,化学EOR(CEOR)是普及的。尽管研究努力增加使用CEOR的康复,但遇到了提取方法的复杂性。随着储层条件(高温,压力和盐度)和原油性质的变化,在CeOR中使用的现有化学品,例如碱,聚合物和表面活性剂不起作用。这些条件对EOR化学物质的性能有害影响,如沉淀,降解等的沉淀,降解等的开发和利用如表面活性剂 - 聚合物,聚合物 - 纳米材料,表面活性剂 - 纳米材料和聚合物 - 表面活性剂 - 纳米材料的普遍存在的效果苛刻的水库条件,近年来近年来石油田的应用增加了EOR的成功。混合组件之间的协同效应在改善可能承受极端储层条件和原油性质变化的影响方面发挥着重要作用。因此,本文旨在审查CEOR混合动力技术最近的进展,并讨论了CEOR过程中使用的不同混合材料的基本概念,应用,进步和局限性。

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