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自发乳化技术的进展及其在提高石油采收率过程中的重要应用。

Advances of spontaneous emulsification and its important applications in enhanced oil recovery process.

作者信息

Li Zhe, Xu Derong, Yuan Yongjie, Wu Hairong, Hou Jirui, Kang Wanli, Bai Baojun

机构信息

Unconventional Petroleum Research Institute, China University of Petroleum-Beijing, Beijing 102249, PR China.

School of Petroleum Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.

出版信息

Adv Colloid Interface Sci. 2020 Mar;277:102119. doi: 10.1016/j.cis.2020.102119. Epub 2020 Feb 4.

Abstract

Emulsions, including oil-in-water (O/W) and water-in-oil (W/O) emulsions, can play important roles in both controlling reservoir conformance and displacing residual oil for enhanced oil recovery (EOR) projects. However, current methods, like high-shear mixing, high-pressure homogenizing, sonicators and others, often use lots of extra energy to prepare the emulsions with high costs but very low energy efficiency. In recent decades, spontaneous emulsification methods, which allow one to create micro- and nano-droplets with very low or even no mechanical energy input, have been launched as an overall less expensive and more efficient alternatives to current high extra energy methods. Herein, we primarily review the basic concepts on spontaneous emulsification, including mechanisms, methods and influenced parameters, which are relevant for fundamental applications for industrials. The spontaneity of the emulsification process is influenced by the following variables: surfactant structure, concentration and initial location, oil phase composition, addition of co-surfactant and non-aqueous solvent, as well as salinity and temperature. Then, we focus on the description of importance for emulsions in EOR processes from advances and categories to improving oil recovery mechanisms, including both sweep efficiency and displacement efficiency aspects. Finally, we systematically address the applications and outlooks based on the use of spontaneous emulsification in the practical oil reservoirs for EOR processes, in which conventional, heavy, high-temperature, high-salinity and low-permeability oil reservoirs, as well as wastewater treatments after EOR processes are involved.

摘要

乳液,包括水包油(O/W)乳液和油包水(W/O)乳液,在控制油藏波及系数和驱替残余油以提高采收率(EOR)项目中都能发挥重要作用。然而,目前的方法,如高剪切混合、高压均质、超声处理等,通常需要消耗大量额外能量来制备乳液,成本高昂但能源效率极低。近几十年来,自发乳化方法被提出,这种方法能够在极少甚至无需机械能输入的情况下生成微滴和纳米滴,是目前高能耗方法总体上更便宜且更高效的替代方案。在此,我们主要综述自发乳化的基本概念,包括其机理、方法和影响参数,这些与工业基础应用相关。乳化过程的自发性受以下变量影响:表面活性剂结构、浓度和初始位置、油相组成、助表面活性剂和非水溶剂的添加,以及盐度和温度。然后,我们重点描述乳液在EOR过程中的重要性,从进展和类别到提高采收率的机理,包括波及效率和驱替效率方面。最后,我们系统地阐述基于自发乳化在实际油藏EOR过程中的应用和展望,其中涉及常规油藏、稠油油藏、高温油藏、高盐油藏和低渗透油藏,以及EOR过程后的废水处理。

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