刘丹青

基本信息Personal Information

硕士生导师

性别 : 女

毕业院校 : 中国地质大学(武汉)

学历 : 博士研究生

学位 : 工学博士学位

所在单位 : 环境学院

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个人简介Personal Profile

刘丹青,女,特任副教授,硕士生导师。

主要从事土壤-地下水污染与防治、环境模拟、温室气体地质处置及油气开发等领域的教学与研究。 截止目前共主持国家级项目2项;以第一作者和合作者身份共发表学术论文30余篇,其中一作或通讯作者发表SCI论文14;参与撰写英文专著1

教育与工作经历

2019/9-至今,中国地质大学(武汉)环境学院,特任副教授

2017/9-2019/9,中国地质大学(武汉)生物地质与环境地质国家重点实验室,博士后

2015/6-2016/6,美国圣路易斯华盛顿大学,机械工程与材料科学,博士联合培养

2013/9-2017/6,中国地质大学(武汉)环境学院,地下水科学与工程,工学博士

2011/9-2013/6,中国地质大学(武汉)环境学院,环境工程,工学硕士

2007/9-2011/6,中国地质大学(武汉)环境学院,环境工程,工学学士

研究方向

土壤-地下水污染与防治、环境模拟、温室气体地质处置及油气开发

科研项目

(1) “城区型水源地地表水-地下水感知模拟防控关键技术研发子课题“地表水-地下水污染物运移耦合数据模拟精度验证技术及边缘算法体系研究深圳市科技项目,2020/09-2023/09,课题负责人

(2)NAPLs在低渗粘土层中迁移机理研究”,国家自然科学基金面上项目,2021/01-2024/12,项目骨干

(3) “产气页岩氧化溶蚀增渗过程中黄铁矿的影响机理研究”,国家自然科学基金青年基金项目,2020/01-2022/12,项目负责人

(4) “气体吸附作用对页岩盖层封闭性的影响研究”,中国博士后科学基金,2018/05-2019/09,项目负责人

(5) “低渗岩层中超临界CO2的地球化学反应运移机理研究”,国家自然科学基金面上项目,2016/01-2019/12,项目骨干

(6) “CO2驱替页岩气在鄂尔多斯盆地应用的可能性及潜力研究”,中-澳国家合作项目,2013/08-2015/05,项目骨干

(7) “二氧化碳地质储存灌注实验及中长期储存风险与安全性研究”,国土资源部公益性项目,2012/01-2015/12,项目骨干

代表性论文

(1) Danqing Liu, Manling Yi, Sen Yang, Fang Liu, et al. Performance and mechanism of the pyrite-kerogen complexes oxidation with H2O2 at low temperature during shale stimulation: An experimental and modeling study. Applied Geochemistry. 2022.105382.

(2)Danqing Liu, Ramesh Agarwal, Fang Liu, Sen Yang, Yilian Li. Modeling and preliminary assessment of aqueous CO2 geological storage in the Eastern Deccan basalt of India. Environmental Science and Pollution Research. 2022. 

(3)Danqing Liu, Sen Yang, Manling Yi, Jinhao Yu, et al. Experimental and numerical study on the oxidation-acidification interactions that dominate shale stimulation with persulfate. Energy & Fuel. 2022,36,11,5784-5796. 

(4)Wang Yu, Luo Zhiqiang, Liu Danqing#, Li Yilian. Immobilization of mercury in tailings originating from the historical and small-scale gold mining using sodium polysulfide. Environmental Science and Pollution Research. 2022. https://doi.org/10.1007/s11356-022-19569-1. 

(5) Sen Yang, Danqing Liu, Zhe Yang, Changxiang Wang, et al. Occurrence and mobility of trace elements during oxidant stimulation of shales in Yichang, Hubei province of China. Applied Geochemistry, 2021, 127:104913.

(6) Danqing Liu, Yilian Li, Ramesh Agarwal. Evaluation of CO2 storage in a shale gas reservoir compared to a deep saline aquifer in the Ordos Basin. Energies, 2020, 13(13):3397.

(7) Sen Yang, Danqing Liu#, Yilian Li, Cong Yang, et al.Experimental study on the oxidative dissolution of carbonate-rich shale and silicate-rich shale with H2O2, Na2S2O8 and NaClO: Implication to the shale gas recovery with oxidation stimulation. Journal of Natural Gas Science and Engineering. 2020, 76, 103207.

(8) Yilian Li, Sen Yang, Danqing Liu#, Cong Yang, et al. Experimental study of shale-fluid interaction during oxidative dissolution with hydrogen peroxide, sodium hypochlorite and sodium persulfate. Applied Geochemistry. 2020, 113, 104503.

(9) Danqing Liu, Ramesh Agarwal, Yilian Li, Sen Yang. Reactive transport modeling of mineral carbonation in unaltered and altered basalts during CO2 sequestration. International Journal of Greenhouse Gas Control. 2019, 85:109-120. 

(10) Danqing Liu, Yilian Li, Sen Yang, Ramesh Agarwal. CO2 sequestration with enhanced shale gas recovery. Energy Source, Part A-Recovery Utilization and Environmental Effects. 2019:1-11. 

(11) Danqing Liu, Yilian Li, Sen Yang. Evaluation of the role of water-shale-gas reactions on CO2 enhanced shale gas recovery. Energy Procedia. 2018, 154:42-47. 

(12) Danqing Liu, Ramesh Agarwal, Yilian Li. Numerical simulation and optimization of CO2 enhanced shale gas recovery using a genetic algorithm. Journal of Cleaner Production. 2017, 164:1093-1104. 

(13) Danqing Liu, Yilian Li, Ramesh K. Agarwal. Numerical simulation of long-term storage of CO2 in Yanchang shale reservoir of the Ordos basin in China. Chemical Geology. 2016, 440: 288-305. 

(14) Danqing Liu, Ramesh Agarwal, Yilian Li. Numerical simulation and optimization of CO2-enhanced water recovery by employing a genetic algorithm. Journal of Cleaner Production. 2016, 133: 994-1007. 

(15) Danqing Liu, Yilian Li, Shaoyu Song, Ramesh Agarwal. Simulation and analysis of lithology heterogeneity on CO2 geological sequestration in deep saline aquifer: a case study of the Ordos Basin. Environmental Earth Sciences. 2016, 75(11);1-13. 

(16) Danqing Liu, Yilian Li, Le Xu, Ying Yu. Numerical investigation of the influence of interaction between wellbore flow and lateral reservoir flow on CO2 geological sequestration. Environmental Earth Sciences. 2015, 74:715-726. 

(17) Chen Li, Danqing Liu, Ramesh Agarwal. Numerical simulation of enhancement in CO2 sequestration with various water production schemes under multiple well scenarios. Journal of Cleaner Production. 2018,184:12-20. 

(18) Yu Lu, Yilian Li, Danqing Liu, Yu Ning, Sen Yang, Zhe Yang. Adsorption of benzene vapor on natural silicate clay minerals under different moisture contents and binary mineral mixtures. Collids and Surfaces A: Physicochemical and Engineering Aspects. 2020, 585: 124072.

(19) Zhe Yang, Changxiang Wang, Danqing Liu, Sen Yang, et al. A quantitative evaluation of uranium mobility and potential environment risk in coal ash with SiO2-Al2O3-Fe2O3-CaO system. Journal of Hazardous Material. 2020, 381:120977.

(20) Zhe Yang, Changxiang Wang, Danqing Liu, Yilian Li, et al. Investigation of elements (U,V,Sr,Ga,Cs and Rb) leaching and mobility in uranium-enriched coal ash with thermochemical treatment. Journal of Cleaner Production. 2019, 233:115-125. 

(21) Ye Tang, Zhe Yang, Yilian Li, Danqing Liu, et al. Influences of additives on the fate of uranium during coal co-combustion process: The significant activation by CaCO3. Fuel, 2021,287:119421.

(22) Zhi Tang, Yilian Li,Zhe Yang,Danqing Liu, et al. Characteristic and mechanism of sorption and desorption of benzene on humic acid. Environmental Sciences and Pollution Research. 2019. doi.org/10.1007/s11356-019-05095-0.

专著

(1) Danqing Liu, Sen Yang, Yilian Li, Ramesh Agarwal. Chaper 2 - A Review of Coupled Geo-Chemo-Mechanical Impacts of CO2-Shale Interaction on Enhanced Shale Gas Recovery[M]//Lichtfouse E. Methods for carbon sequestration. Springer Nature, 2019.






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