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碳酸盐岩油藏综合解堵用微乳液酸液的制备与性能研究

Preparation and Performance Study of Microemulsion Acid for Comprehensive Plugging Removal in Carbonate Reservoir.

作者信息

Wang Yunjin, Zhou Fujian, Zou Yeping, Wang Zhenhua, Wang Yaocong

机构信息

State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum (Beijing), Beijing 102249, China.

CNOOC China Limited, Tianjin Branch, Tianjin 300459, China.

出版信息

Molecules. 2023 Jul 24;28(14):5606. doi: 10.3390/molecules28145606.

Abstract

Matrix acidification is one of the most effective stimulations to dissolve scales and remove damage in carbonate reservoirs. However, existing acid systems are difficult to dissolve organic and inorganic scales simultaneously, and complex multi-stage alternative injection often introduces new precipitation and damages the reservoir. Here, based on the retardation ability of emulsified acid and the stable structure of microemulsion, an oil-phase solvent was preferably selected, and the surfactant and cosurfactant were optimized to prepare an acid-in-oil type microemulsion acid capable of dissolving both organic and inorganic scales and high solubilizing for hydrochloric acid. Based on the rotating disc experiment, scale dissolution experiment and acid driving experiment, the acid-rock reaction kinetics, scale dissolution ability and acidizing and plugging removal performance of microemulsion acid in a carbonate reservoir were systematically studied and compared. The results show that Solvesso 150 (aromatic solvent) has the advantages of low toxicity, high flash point and high-scale dissolving ability. At NP-4: OP-10: A (cosurfactant) = 3:3:4, the microemulsion acid system has the strongest ability to solubilize hydrochloric acid and can solve the problem of low H concentration. The particle size of microemulsion acid is smaller compared to emulsified acid. At 60 °C, the mass transfer coefficient of microemulsion acid is 3.2 × 10 cm/s, which is one order of magnitude less than that of emulsified acid. Microemulsion acid shows good solubility performance in dissolving organic and inorganic scales, and the comprehensive solubility of mixed scales can reach 98.28%. The stronger scale solubilization ability and lower acid-rock reaction rate enable microemulsion acid to form a thin and straight main wormhole, thus enhancing the acidizing and plugging removal effect. This study can solve the problem of poor hydrochloric acid solubilization ability of microemulsion acid to a certain extent, which provides theoretical and data support for the research and development of microemulsion acid and the efficient plugging removal technology for carbonate reservoirs.

摘要

基质酸化是溶解碳酸盐岩储层中垢物和解除伤害最有效的增产措施之一。然而,现有酸液体系难以同时溶解有机垢和无机垢,复杂的多段交替注入往往会引入新的沉淀并损害储层。在此,基于乳化酸的缓速能力和微乳液的稳定结构,优选了油相溶剂,并对表面活性剂和助表面活性剂进行了优化,制备了一种既能溶解有机垢和无机垢,又对盐酸具有高增溶能力的油包酸型微乳液酸。基于旋转圆盘实验、垢溶解实验和酸驱实验,系统研究并比较了微乳液酸在碳酸盐岩储层中的酸岩反应动力学、垢溶解能力及酸化解堵性能。结果表明,Solvesso 150(芳烃溶剂)具有低毒、高闪点和高垢溶解能力的优点。当NP - 4:OP - 10:A(助表面活性剂)= 3:3:4时,微乳液酸体系对盐酸的增溶能力最强,可解决H⁺浓度低的问题。与乳化酸相比,微乳液酸的粒径更小。在60℃时,微乳液酸的传质系数为3.2×10⁻²cm/s,比乳化酸小一个数量级。微乳液酸在溶解有机垢和无机垢方面表现出良好的溶解性能,混合垢的综合溶解率可达98.28%。较强的垢溶解能力和较低的酸岩反应速率使微乳液酸能够形成细直的主蚓孔,从而增强了酸化解堵效果。本研究在一定程度上解决了微乳液酸盐酸增溶能力差的问题,为微乳液酸的研发及碳酸盐岩储层高效解堵技术提供了理论和数据支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3de8/10384076/03579015b48c/molecules-28-05606-g001.jpg

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