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教授/研究员

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荆振华

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姓名:荆振华

职称:研究员   硕导

电子邮箱:z.jing@cdut.edu.cn

研究室:油气藏全国重点实验室

个人简介:荆振华,博士,男,汉族,中共党员,1990年生,山西临汾人。

学历和工作背景:

2012年毕业于中国地质大学(武汉)煤及煤层气工程专业,获学士学位;

2014年毕业于中国地质大学(武汉)地质工程专业,获硕士学位;

2019年毕业于昆士兰大学(澳大利亚),获博士学位。

2019-2021年在北京大学地球与空间科学学院从事博士后研究;

2021年-2026年在中国石油勘探开发研究院工作,高级工程师。

2026年2月起在成都理工大学工作,任研究员、硕士生导师。

主要研究领域:非常规油气地质和有机/无机地球化学。

获得的荣誉:

·全国博士后国际人才引进计划获得者

·北京大学博雅博士后

·全国产教融合教学创新大赛,省部级一等奖,2024,排名第二

·青年科技创新大赛一等奖,中国石油勘探开发研究院,2023,排名第一

·2022年搭载“深海勇士号”载人潜器在中国南海下潜1003米。

主持/参与科研项目:

(1)国家自然科学基金委员会,面上基金,45272156,“图阿尔期大洋缺氧事件(T-OAE)期间湖泊营养元素循环与碳埋藏”,2026-01至2028-12,50万元,主持

(2)国家自然科学基金委员会,国际(地区)合作交流项目(英国),W2421058,“图阿尔期大洋缺氧事件(T-OAE)期间湖泊营养元素循环与碳埋藏”,2025-01至2026-12,20万元,主持

(3)国家自然科学基金委员会,联合基金重点项目,U23B20155,“陆相细粒沉积有机质富集的环境响应、事件驱动与分布模式”,2024-01至2027-12,257万元(负责128.5万),联合负责人

(4)国家科技部,重点研发计划变革性技术专项地学领域青年科学家项目,2021YFA070123,“示踪元古宙中期地球宜居性演化的金属稳定同位素技术”,2022-01至2026-12,400万元(负责133万),联合负责人

(5)国家自然科学基金委员会,青年科学基金项目,42102167,“自然铀辐射和人工辐照下页岩有机质分子结构演变及生烃机理”,2022-01至2024-12,30万元,主持

(6)中国博士后管理委员会,博士后面上项目,2020M680240,“分子结构和孔隙结构对煤次氯酸钠氧化影响机理研究”,8万,2020.06-2021.06,主持

(7)中国石油青海油田分公司,“英雄岭E32非烃类化合物纵向分布规律研究及工程应用探索”,2025-09至2026-06,106万,主持

(8)国家自然科学基金委员会,面上项目,42172180,“基于微观油岩相互作用的陆相页岩油可动性定量表征”,2022-01-01至2025-12-31,61万元,参与

(9)加拿大高等研究院CIFAR Earth 4D,Catalyst Fund,“Unveiling the role of radiolysis on the habitability of Martian subsurface”,2022-2024,8万加币,科研骨干

(10)国家自然科学基金委员会,面上项目,42072125,“柴达木盆地古近纪湖相碳酸盐岩成因及生物环境耦合作用研究”,2021-01-01至2024-12-31,61万元,参与

(11)中国石油股份有限公司,“前瞻性、基础性”项目课题二,2021DJ1802,“陆相页岩细粒沉积源储特征与页岩油有利区段评价研究”,3250万,2021-01至2025-12,副课题长

(12)中国石油勘探开发研究院,科研项目,2021YJCQ03,“烃源岩形成演化与生物勃发事件响应机理研究”,400万,2021-06至2024-05,副项目长

(13)澳大利亚研究协会项目,“Advanced Environmental Technologies for Increasing Coal Seam Permeability”,2017-2020,80万澳币,科研骨干

主要学术兼职:

Ø《地球科学》青年编委

Ø《煤田地质勘探》青年编委

Ø《Continent and Life Evolution》青年编委

Ø《海相油气地质》青年编委

代表性文章:

[1]Zhenhua Jing, Reydick D. Balucan, Jim R. Underschultz, Karen M. Steel*. Oxidant stimulation for enhancing coal seam permeability: Swelling and solubilization behaviour of unconfined coal particles in oxidants.Fuel, 2018, 221: 320-328.

[2]Zhenhua Jing, Shilo A. Mahoney, Sandra Rodrigues, Jim Underschultz, Joan S. Esterle, Thomas E. Rufford, Karen M. Steel*. A preliminary study of oxidant stimulation for enhancing coal seam permeability: Effects of sodium hypochlorite oxidation on subbituminous and bituminous Australian coals.International Journal of Coal Geology, 2018, 200: 36-44.

[3]Zhenhua Jing, Sandra Rodrigues, Ekaterina Strounina, Mengran Li, Barry Wood, Jim R. Underschultz, Joan S. Esterle, Karen M. Steel*. Use of FTIR, XPS, NMR to characterize oxidative effects of NaClO on coal molecular structures.International Journal of Coal Geology, 2019, 201: 1-13.

[4]Zhenhua Jing, Reydick D. Balucan, Jim R. Underschultz, Songqi Pan, Karen M. Steel*. Chemical stimulation for enhancing coal seam permeability: Laboratory study into permeability variation and coal structure examination.International Journal of Coal Geology, 2020, 219: 103375.

[5]Zhenhua Jing, Shuai Gao, Sandra Rodrigues, Jim Underschultz, Ekaterina Strounina, Songqi Pan, Songtao Wu, Yong Li, Reydick Balucan, Karen M. Steel*. Influence of porosity on the reactivity of inertinite and vitrinite toward sodium hypochlorite: Implications for enhancing coal seam gas development.International Journal of Coal Geology, 2021, 237: 103709.

[6]Ganlin Hua, Songtao Wu*,Zhenhua Jing*, Xinghe Yu, Ke Xu, Wen Shi, Modi Guan. Rock physical and chemical alterations during the in-situ interaction between fracturing fluid and Silurian organic-rich shales in China.Journal of Natural Gas Science and Engineering, 2021,94: 104075.

[7]荆振华,潘松圻*,王小明,袁铭,李勇,刘恩涛,刘翰林,Underschultz Jim, Steel Karen.煤储层氧化增渗作用机理及应用.煤炭学报,2022, 47(11):3975-3989. (中文EI)

[8] Ming Yuan, Songqi Pan*,Zhenhua Jing*, Stefanie Poetz, Caineng Zou. Geochemical distortion on shale oil maturity caused by oil migration: Insights from the non-hydrocarbons revealed by FT-ICR MS.International Journal of Coal Geology, 2023, 266: 104142.

[9]Songqi Pan, Qiulei Guo*, Caineng Zou,Zhenhua Jing*, Ming Yuan, Ying Mu, Zhi Yang, Shixiang Li, Xinping Zhou, Songtao Wu, Hanlin Liu, Feng Yang, Yuanjia Han. Identification of sweet spots in shale-type and siltstone-type “shale oil systems”: A case study of the Chang 7 Member in Ordos Basin. Science China Earth Sciences, 2023, 66(7): 1647-1663.

潘松圻,郭秋雷*,邹才能,荆振华*,袁铭,何莹,郑何,穆英,杨智,李士祥,周新平,吴松涛,刘翰林,杨峰,韩元佳.页岩型与粉砂岩型”页岩油系统”甜点段判识——以鄂尔多斯盆地长7段为例,中国科学地球科学, 2023, 53(7): 1663-1678.

[10]Shuai Gao, Tara Congo,Zhenhua Jing*, Shazed Aziz, Reydick Balucan, Zhonghua Zhu, Stephen D. Pell, Karen M. Steel*. Oxidative effects of gaseous oxygen and ozone on Australian subbituminous and bituminous coals and the implications for coal seam permeability enhancement.Gas Science and Engineering, 2023, 118: 205092.

[11]袁懿琳,荆振华*,张斌,张忠义,袁铭.鄂尔多斯盆地北缘长7段烃源岩生物标志物特征与沉积环境分析[J].天然气地球科学,2025,36(02):293-306.

[12] Caineng Zou, Zhengfu Zhao*, Songqi Pan, Jia Yin, Guanwen Lua, Fangliang Fu, Ming Yuan, Hanlin Liu, Guosheng Zhang, Cui Luo, Wei Wang,Zhenhua Jing*. Unveiling the oldest industrial shale gas reservoir: Insights for the enrichment pattern and exploration direction of lower Cambrian shale gas in the Sichuan Basin.Engineering, 2024, 42(11), 278-294.

[13] Haoming Yin, Wei Wei*,Zhenhua Jing*, Caineng Zou, Weiming Xu, Jihua Hao, Fang Huang.Cd isotope evidence for elevated productivity in the Middle Triassic Ordos Basin.Geochemical Perspectives Letters (GPL), 2024,33, 13-19.

[14] Ming Yuan, Songqi Pan, Guosheng Zhang, Quan Shi, Lingyuan Xie, Zhengfu Zhao, Yating Shen,Zhenhua Jing*. Ranking the Oil Contribution Layers in Lacustrine Shale Oil System: Insights from FT-ICR MS.International Journal of Coal Geology, 2024, 288, 104528.

[15]尹嘉,邹才能,吴松涛,伍坤宇,邢浩婷,魏琳,赵正福,路冠文,袁铭,符芳亮,华柑霖,荆振华*,咸化湖盆优质烃源岩发育机制与页岩油富集过程——以柴达木盆地下干柴沟组上段为例.地球科学, 2025, 50(07):2875-2898.

[16]Guanwen Lu, Caineng Zou, Jonathan P. Mathews, Guosheng Zhang, Songqi Pan, Hanlin Liu, Yu Song, Yu Liu, Ganlin Hua, Zhengfu Zhao, Ming Yuan,Zhenhua Jing*. Molecular simulation of the potential effects of oxygen functionalities on the adsorption and diffusion of methane in kerogen,Fuel, 2025, 386, 134245.

[17]Mu, Y., Zou, C., Hu, Z., Duan, X., Guo, Q.,Jing, Z*. Impacts of multi-scale water-rock interaction on mineral alteration, mechanical weakening and pore-fracture evolution in marine shales.Advances in Geo-Energy Research, 2025, 17(1): 68-x.

[18]Guanwen Lu,Zhenhua Jing*, Ganlin Hua, Siying Hao,Jonathan P. Mathews, Hanlin Liu, Yu Song, Ming Yuan, Jia Yin, Caineng Zou*.Influence of Fractures and Pores on the Mobility of lacustrine shale oil: A Case Study of the Chang 73 Black Shale in the Ordos Basin, China.Journal of Earth Science, 2025.

[19] Songtao Wu, Guanwen Lu, Ming Yuan, Jia Yin, Ganlin Hua, Modi Guan,Zhenhua Jing*. Oil-Rock Interaction Controlling Oil Migration and Accumulation in porous Shale Reservoir: Insights from Varied Lacustrine Basins in China.Advanced Colloid and Surface Science, 2025, 350:103774.

[20] Xu, W, Ju, P., Yin H., Zhou Y., Li Y, Pan S., Wu S., Huang, F.,Jing, Z*., Hao, J*. Terrestrial volcanism enhanced organic burial in the Ordos superlake during the Triassic. Palaeogeography, Palaeoclimatology, Palaeoecology, 694, 113828

出版教材及专著:

[1]邹才能等编著,《碳中和学》,地质出版社,2022年

[2]邹才能等编著,《新能源》,石油工业出版社,2019年

[3]赵文智,胡素云,朱如凯等编著,《陆相页岩油形成与分布》,石油工业出版社,2022年