化工进展 ›› 2025, Vol. 44 ›› Issue (7): 3838-3849.DOI: 10.16085/j.issn.1000-6613.2024-0887

• 能源加工与技术 • 上一篇    

不同分子结构表面活性剂复配体系对超稠油乳化降黏影响

陈阳1,2,3(), 罗进1,2, 王典林1,2(), 杨祖国4, 杨鹏5, 陈勇4, 钟翔6, 唐丽7   

  1. 1.西南石油大学石油与天然气工程学院,四川 成都 610500
    2.西南石油大学油气藏地质及开发工程国家重点 实验室,四川 成都 610500
    3.乌法国立石油技术大学管道系,俄罗斯巴什科尔托斯坦共和国 乌法 450062
    4.中国石油化工股份有限公司西北油田分公司,新疆 乌鲁木齐 830011
    5.中国石油化工集团有限公司,北京 100020
    6.中国石油塔里木油田分公司,新疆 库尔勒 841000
    7.中国石油塔里木石化分公司,新疆 库尔勒 841000
  • 收稿日期:2024-05-31 修回日期:2024-07-16 出版日期:2025-07-25 发布日期:2025-08-04
  • 通讯作者: 王典林
  • 作者简介:陈阳(1991—),女,副教授,硕士生导师,研究方向为油气管道输送、油田开采。E-mail:doctorchenyang@qq.com
  • 基金资助:
    国家自然科学基金(52004241);中国石化缝洞型油藏提高采收率重点实验室开放基金(34400000-22-ZC0607-0006);四川省自然科学基金(2022NSFSC1018)

Experimental study on the effect of surfactant complex systems with different molecular structures on emulsification and viscosity reduction of extra-heavy oil

CHEN Yang1,2,3(), LUO Jin1,2, WANG Dianlin1,2(), YANG Zuguo4, YANG Peng5, CHEN Yong4, ZHONG Xiang6, TANG Li7   

  1. 1.College of Petroleum and Natural Gas Engineering, Southwest Petroleum University, Chengdu 610500, Sichuan, China
    2.State Key Laboratory of Geology and Development Engineering of Oil and Gas Reservoirs, Southwest Petroleum University, Chengdu 610500, Sichuan, China
    3.Pipeline Transportation Faculty, Ufa State Petroleum Technological University, Ufa 450062, Bashkortostan, Russia
    4.Northwest Oilfield Branch of China Petroleum & Chemical Co. , Ltd. , Urumqi 830011, Xinjiang, China
    5.China Petroleum and Chemical Co. , Ltd. , Beijing 100020, China
    6.Tarim Oilfield Branch of China National Petroleum Corporation, Korla 841000, Xinjiang, China
    7.Tarim Petrochemical Branch of China National Petroleum Corporation, Korla 841000, Xinjiang, China
  • Received:2024-05-31 Revised:2024-07-16 Online:2025-07-25 Published:2025-08-04
  • Contact: WANG Dianlin

摘要:

为了实现塔河油田超稠油高效乳化降黏,本文对8种表面活性剂(阴离子、阳离子、非离子、两性离子)进行筛选复配,构建了一种高效降黏的超稠油降黏体系。通过旋转流变仪在宏观尺度对超稠油进行物性分析,对单一、复配表面活性剂进行降黏效果评价;通过偏光显微镜、扫描冷冻电子显微镜(SEM)在微观尺度对表面活性剂微观形貌、粒径尺寸及交联结构进行了表征,获得了宏观和微观尺度下复配体系乳化性能与稠油降黏性能的关系。实验结果表明:十二烷基硫酸钠(SDS)与辛基酚聚氧乙烯醚(OP-10)的复配体系,在质量比1∶1、复配浓度1.0%、油水比3∶7、掺稀比0.5∶1条件下降黏效果最佳,降黏率最高达到98.81%;表面活性剂微观交联网状结构、微观OP-10聚氧乙基长链和SDS硫酸根基团可与超稠油分子充分结合,促进油水界面膜形成,最终乳化超稠油降黏,本文构建的超稠油降黏体系为塔河油田的高效降黏提供了技术支持。

关键词: 超稠油, 乳化降黏, 表面活性剂, 微观形貌, 分子模型

Abstract:

In order to achieve efficient emulsification and viscosity reduction of extra-heavy oil in the Tahe oilfield, it was screened and formulated eight types of surfactants (anionic, cationic, non-ionic, amphoteric), constructing an efficient extra-heavy oil viscosity reduction system. The rotational rheometer was used to analyze the physical properties of extra-heavy oil at the macroscopic scale, evaluating the viscosity reduction effects of single and composite surfactants and their influencing factors. Through polarizing optical microscope and scanning electron microscope (SEM) at the microscopic scale, the micro-morphology, particle size and cross-linking structure of the surfactants were characterized, obtaining the relationship between the emulsification performance and viscosity reduction performance of the composite system at macroscopic and microscopic scales. Experimental results showed that the composite system of sodium dodecyl sulfate (SDS) and octylphenol polyoxyethylene ether (OP-10) achieved the best viscosity reduction effect with a mass ratio of 1∶1, composite concentration of 1.0%, oil-to-water ratio of 3∶7 and dilution ratio of 0.5∶1, reaching a maximum viscosity reduction rate of 98.81%. The microcosmic cross-linking network structure of surfactants, microscale OP-10 polyoxyethylene long chains and SDS sulfate groups could fully combine with extra heavy oil molecules, promoting the formation of oil-water interface film, ultimately emulsifying and reducing the viscosity of extra heavy oil. The extra-heavy oil viscosity reduction system constructed in this paper provided technical support for efficient viscosity reduction in the Tahe oilfield.

Key words: extra-heavy oil, emulsification viscosity reduction, surfactants, micro-morphology, molecular model

中图分类号: 

京ICP备12046843号-2;京公网安备 11010102001994号
版权所有 © 《化工进展》编辑部
地址:北京市东城区青年湖南街13号 邮编:100011
电子信箱:hgjz@cip.com.cn
本系统由北京玛格泰克科技发展有限公司设计开发 技术支持:support@magtech.com.cn