win德赢手机版登录

杨丽丽

发布时间:2026-04-09来源:


姓名:杨丽丽


姓名:杨丽丽

籍贯:内蒙古赤峰

职称:教授

导师类别:博导


所在系所: 油气井工程

联系电话: 010-89732239

Email: yangll@visitkutahya.com 对照阅读

个人主页: https://www.researchgate.net/profile/Lili-Yang-37 延伸阅读


win德赢手机版登录和工作经历:

2006.09-2010.07 吉林大学化学win德赢手机版登录 高分子材料与工程 学士 继续了解

2010.09-2015.07 中国科win德赢手机版登录化学研究所 高分子化学与物理  硕博连读

2015.07-2017.07 win德赢手机版登录(北京) 讲师

2018.11-2019.11 帝国理工win德赢手机版登录 访问学者

2017.07-2025.07 win德赢手机版登录(北京) 副教授

2025.07-至 今 win德赢手机版登录(北京) 教授


研究方向:

获得省部级奖励十余项。担任《Petroleum Science》期刊青年编委、《石油科学通报》期刊执行编委及多个期刊审稿人。以第一发明人授权中国专利12件、美国专利2件,本人主要从事高效钻完井液、极端环境钻井液、井壁稳定及防漏堵漏相关理论及技术领域的研究。在SPE Journal、Fuel等期刊发表第一/通讯作者论文45篇,主持win德赢手机版登录自然基金(青年、面上)2项、win德赢手机版登录科技重大专项及win德赢手机版登录重点研发子课题共4项,主编《高等油气田化学》教材,


教学情况:

本科生课程:《油田化学与工程》、《钻井液工艺原理》、《海洋油气工程HSE》

硕/博士生课程:《高等油气田化学》


代表性论文著作:

[1] Lili Yang*, Zhiting Ou, Haozhe Chen, et al. A High-Temperature-Resistant Wellbore Stabilization Technology Based on Microbial-Induced Carbonate Precipitation; SPE Journal, 2026, SPE-233762-pa-2. (石油工程顶级期刊,IF:3.2)

[2] Lili Yang*, Yongwei Zhang, Limin Zhu, et al. A Novel Ultrahigh-Temperature-Resistant and Multivalent-Cation-Tolerant Filtrate Reducer Based on Polysilane for Water-Based Drilling Fluids; SPE Journal, 2026, SPE-231863-PA. (石油工程顶级期刊,IF:3.2)

[3] Lili Yang*, Zhiting Ou, Xiangyang Chang, et al; Application of Elastomer Microsphere Particles as Water-Based Drilling Fluid Lost Circulation Material; SPE Journal, 2025, 30(03), 1190-1205. (石油工程顶级期刊,IF:3.2)

[4] LiLi Yang*, YunPeng Wu, ZeYu Liu, et al; Preparation, characterization and application of modified barite grafted with lipophilic polymers for oil-based drilling fluids; Geoenergy Science and Engineering; 2025, 251, 213882.(原JPSE,TOP期刊,IF:4.4)

[5] Lili Yang*, Zeyu Liu, Shibo Wang, et al; Chemical modification of barite for improving the performance of weighting materials for water-based drilling fluids; Petroleum Science, 2024,21,551-566. (中科院大类1区,TOP期刊,IF:6.1)

[6] 蒋官澄,杨丽丽;《高等油气田化学》,石油工业出版社,2024

[7] Lili Yang*, Jiaying Ma, Xiangyang Chang, et al; Novel polymeric organic gelator as lost circulation material for oil-based drilling fluids; Geoenergy Science and Engineering, 2023, 231。212414. (原JPSE,TOP期刊,IF:4.4)

[8] Lili Yang*, Xianbo He, Yixiu Cheng, et al; Eco-friendly aqueous foam stabilized by cellulose microfibers with great salt tolerance and high temperature resistance; Petroleum Science, 2023,20,2499-2511. (中科院大类1区,TOP期刊,IF:6.1)

[9] Lili Yang*, Chunlin Xie, Yongwei Zhang, et al; Performance of Self-healing Microgel Incorporating Nano-Silica as Plugging Material for Drilling Fluid; Journal of Molecular Liquids 2023, 122392. (中科院小类1区,IF:5.2)

[10] Lili Yang*, Yongwei Zhang, Tian Ao, et al; Bead and necklace-like silica-based hybrid materials for controlling montmorillonite dispersion filtration; Colloids and Surfaces A: Physicochemical and Engineering Aspects; 2023, 668, 131457. (中科院大类2区,IF:5.4)

[11] Lili Yang*, Chunlin Xie, Tian Ao, Kaixiao Cui, Guancheng Jiang, Baojun Bai, Yongwei Zhang, Jun Yang, Xingxing Wang, Weiguo Tian; Comprehensive evaluation of self-healing polyampholyte gel particles for the severe leakoff control of drilling fluids; Journal of Petroleum Science and Engineering, 2022, 212, 11024. (TOP期刊,IF:4.4)

[12] Tian Ao, Lili Yang*,Chunlin Xie, Guancheng Jiang*, et al; Zwitterionic Silica-Based Hybrid Nanoparticles for Filtration Control in Oil Drilling Conditions;ACS Applied Nano Materials 2021, 4,11052-11062. (中科院大类2区。IF:5.3)

[13] Lili Yang*, Dechang Kong, Xiangyang Chang, et al; Counterion-specific shale hydration inhibiting performance of vinylimdazolium ionic liquids; Journal of Molecular Liquids 2021, 335, 116544. (中科院小类1区, IF:5.2)

[14] Tengda Wang, Lili Yang*, Guancheng Jiang, Paul F. Luckham, et al; Enhanced foam-stabilizing performance by the addition of clays: A comparison of magnesium aluminum silicate with sodium bentonite; Applied Clay Science 2020, 189, 105558. (中科院小类1区,IF: 5.8)

[15] Lili Yang*, Xiao Yang, Tengda Wang, Guancheng Jiang*, Paul F. Luckham, et al; Effect of Alkyl Chain Length on Shale Hydration Inhibitive Performance of Vinylimidazolium-Based Ionic Liquids; Industrial & Engineering Chemistry Research 2019, 58, 8565-8577. (中科院大类1区,TOP期刊,IF:3.9)

[16] Lili Yang*, Tengda Wang, Xiao Yang, Guancheng Jiang*, Paul F. Luckham, et al; Highly Stabilized Foam by Adding Amphiphilic Janus Particles for Drilling a High-Temperature and High-Calcium Geothermal Well; Industrial & Engineering Chemistry Research 2019, 58, 9795-9805. (中科院大类1区,TOP期刊,IF:3.9)

[17] Lili Yang*, Guancheng Jiang, Yawei Shi, et al; Application of Ionic Liquid and Polymeric Ionic Liquid as Shale Hydration Inhibitors; Energy & Fuels 2017; 31(4): 4308-4317. (被引144次, IF:5.3)

[18] Lili Yang*, Guancheng Jiang, Yawei Shi, et al; Application of ionic liquid to a high-performance calcium-resistant additive for filtration control of bentonite/water-based drilling fluids; Journal of Materials Science 2017; 52: 6362-6375. (被引85次, IF:5.3)

[19] 杨丽丽*,武昀朋,蒋官澄,等;自修复凝胶堵漏技术研究;钻井液与完井液,2023。40(1):47-53. (中文核心)

[20] 杨丽丽*,王爱佳,蒋官澄,等;RAFT聚合制备嵌段聚合物结构对降滤失剂性能的影响;钻井液与完井液,2022,39(1):23-28. (中文核心)


代表性专利:

[1] Ionic liquid shale inhibitor for drilling fluid and preparation method and application thereof,美国,US 11,192,964 B2

[2] Self-repairing plugging gel polymer for drilling fluid, preparation method and application thereof, and drilling fluid containing gel polymer,美国,US 12,071,585 B2

[3] 凝胶聚合物及其制备方法和应用、水基钻井液,中国,202411668364.7

[4] 弹性体聚合物及其制备方法、应用和水基钻井液,中国,202211702070.2

[5] 泡沫钻井液及其制备方法和应用,中国,202211587403.1

[6] 用于水钻井液的自修复的微凝胶堵漏剂及其制备方法、含有微凝胶堵漏剂的钻井液,2023.03.07,中国,202211416525.4

[7] 用于油基钻井液的超分子堵漏凝胶聚合物及其制备方法和应用、一种钻井液,2022.09.27,中国,202210612271.7

[8] 双交联网络体系油基堵漏凝胶聚合物及其制备方法和应用,2022.05.03,中国,202111580428.4

[9] 改性用共聚物、新型改性重晶石加重材料及其制备方法和应用和含有改性重晶石的钻井液,2022.04.15,中国,202210049747.0

[10] 用于钻井液的自修复的堵漏凝胶聚合物和其制备方法及应用和含有凝胶聚合物的钻井液,中国专利,授权号:202110315893.9

[11] 一种用于降滤失的星型结构的共聚物及其制备方法和应用及钻井液及其应用,中国专利,授权号:ZL202110242159.4

[12] 适用钻井液降滤失的两性离子共聚物及其制备方法和应用及钻井液及其应用;中国专利,授权号:201611020605.2

[13] 具有抗温抗钙能力的适于降滤失的共聚物及其制备方法和应用及钻井液及其应用;中国专利,授权号:201611020575.5

[14] 钻井液抑制剂及其制备方法和应用,中国专利,授权号:201911039770.6


主要科学研究项目:

[1] win德赢手机版登录科技重大专项子课题:2025−2030,项目负责人

[2] win德赢手机版登录自然基金面上项目:2018−2022,项目负责人

[3] win德赢手机版登录自然基金青年科学基金项目:2017−2019,项目负责人

[4] win德赢手机版登录科技重大专项子课题:2015−2020,项目负责人

[5] win德赢手机版登录重点研发项目子课题:2019−2022,项目负责人

[6] win德赢手机版登录(北京)拔尖人才经费:2015−2018,项目负责人


重要奖励与荣誉:

[1] 2025,北京市昌平区科技副总

[2] 2024,中国石油和化学工业联合会科学技术二等奖,排名第1

[3] 2017,中国石油和化学工业联合会科学技术特等奖,排名第3

[4] 2019,与团队成员共同获得中国石油和化学工业联合会创新团队奖

[5] 2020,,3

[6] 2019,win德赢手机版登录(北京)优秀硕士论文指导教师

[7] 2021,全国石油工程设计大赛优秀指导教师


社会与学术兼职:

[1] SPE会员;ACS会员;中国化学协会会员

[2] Petroleum Science青年编委;《石油科学通报》执行编委

[3] FuelChemical Engineering JournalACS sustainable Chemistry & EngineeringSPE J及《石油学报》期刊审稿人

版权所有:win德赢手机版登录(北京)

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