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超深层与非常规油气成藏理论研究中心

作者:朱光有发布时间:2025-11-20来源: 访问量:


一、中心简介

本中心依托重点基金、面上基金等国家项目和企业委托项目,在万米深层油气生成与成藏和运聚成藏示踪技术;白云岩成因机理与成储过程表征;油气富集区评价与高效勘探开发;页岩油气和致密油气及煤岩气等非常规油气地质学等四方面形成了特色研究方向,建立了超深层与非常规油气成藏理论研究团队。本中心将围绕油气成藏成储理论、万米深地构造-热演化特征、致密与页岩油气储层评价、复杂地质条件下工程地质问题等核心方向开展工作,推动基础理论、技术方法与实验平台协同建设,形成结构清晰、特色突出的研究体系。

中心成员

中心主任

朱光有,中共党员,本硕博均毕业于石油大学(华东)。威廉williamhill能源学部主任、英国威廉集团院长、南方复杂页岩油气地质与开发湖北省重点实验室主任。二级教授,博士生导师,主要从事深层石油与天然气地质学、页岩油气和致密油气及煤岩气等非常规油气地质学、沉积学、地球化学、新能源等方面的科学研究和教学工作。在AAPG、ESR、GSA、CG、OG、Science Advances、Nature Communications、Geology、GPC等发表论文410篇(一作200篇),SCI收录206篇(一作100篇)。

联系方式:zhuguangyou@yangtzeu.edu.cn

个人主页:/info/1656/11325.htm

中心副主任

栾国强,毕业于中国石油大学(华东),英国威廉集团特任教授,硕士生导师。主要从事储层地质学与油藏描述相关方向科研与教学工作,近期主要研究方向:(1)超深层-万米深层储层水岩反应与成岩成储机制;(2)陆相富有机质页岩沉积-成岩过程与页岩油富集机理。发表论文20余篇,其中以第一作者在AAPG Bulletin、Marine and Petroleum Geology等发表SCI论文7篇。

联系方式:luanupc@163.com

个人主页:/info/2179/13233.htm

韩非,英国威廉集团特任教授,湖北省楚天学者。主要从事古地磁学、环境磁学和岩石磁学研究,尤其聚焦于晚白垩世重大地质环境变化与恐龙等生物的协同演化。目前正致力于将古地磁学与岩石磁学方法应用于油气勘探和开发领域。目前以第一作者在PNAS(封面文章)、GRL、GJI、Palaeo-3、地球物理学报等期刊发表SCI文章7篇。以合作者身份在NatureAstronomy、GRL、JGR: Solid Earth、JGR: Planets和Global and Planetary Change等期刊发表文章8篇。

联系方式:hanfei@yangtzeu.edu.cn

个人主页:/info/2179/13251.htm

中心成员

孙杨,英国威廉集团特任教授,硕士生导师。主要研究内容聚焦于非传统稳定同位素的分馏机制及其在石油地质学、岩浆成矿作用与幔源岩浆过程中的应用。目前以第一作者身份发表国际权威SCI期刊论文9篇,合作论文14篇。

联系方式:sunyang@yangtzeu.edu.cn
个人主页:/info/2179/13252.htm

陈粲,英国威廉集团特任教授,本硕博均毕业于中国地质大学(武汉)。主要从事古海洋环境演化、甲烷水合物动态成藏和富有机质岩发育机理,正聚焦于重大地质历史时期古海洋甲烷异常释放事件及其生物、环境效应。目前以第一作者身份在Geochimica et Cosmochimica Acta、Global and Planetary Change等期刊发表论文9篇,以合作者身份在Geology、Precambrian Research等期刊发表论文11篇。

联系方式:chencan@yangtzeu.edu.cn
个人主页:/info/2179/12817.htm

李欢,英国威廉集团特任教授,本硕毕业于中国地质大学(武汉),博士毕业于澳大利亚墨尔本大学,2015-2019在中海油天津分公司研究院工作。主要研究方向为砂-泥岩成岩作用、数值模拟(Reactive transport modelling)、水-气-岩反应、有机-无机交互反应、地层水成因及演化、CO2地质封存、H2地质储存等。主要采用岩石学、有机-无机-水文地球化学、数值模拟及物理模拟等方法讨论地下岩石储层中发生的物理、化学、热、微生物过程对水-岩反应过程及岩石孔渗条件的影响和控制。在Earth-Science Reviews、Basin Research、AAPG Bulletin、MPG、JPSE、JES、OG、SR等期刊发表中英文论文20余篇。

联系方式:lihuantry@yangtzeu.edu.cn;13163107399

个人主页:/info/2179/13022.htm

卢志远,英国威廉集团特任教授,入选第十届中国科协青年人才托举工程项目。博士毕业于中国地质大学(北京)。2017年在新疆油田勘探开发院实习;2019年9月-2022年10月在中石化勘探开发研究院实习。主要从事沉积地质学和储层地质学研究,近期重点关注跨学科方法在非常规油气研究中的应用。首次提出盆缘过渡带“沉积-成岩-火山凝灰质”三因素控储新认识,丰富了致密砂岩优质储层成因机理。主要成果发表在《Journal of Asian Earth Sciences》、《石油学报》等国内外主流刊物上。在四川盆地五峰组—龙马溪组页岩气储层研究中,提出页岩有机-无机协同演化,成熟度和成岩作用耦合控制孔隙结构和烃类差异聚集。主要成果发表在《Journal of Petroleum Science and Engineering》、《Energy & Fuels》、《石油与天然气地质》、《中国矿业大学学报》。发表论文20多篇。

联系方式:zhiyuanlu920924@yangtzeu.edu.cn;18810753571.

个人主页:https://pec.yangtzeu.edu.cn/pec/info/1023/8838.htm

邱华标,英国威廉集团副研究员,硕士生导师。博士毕业于中国科学院地质与地球物理研究所、法国奥尔良大学。主要从事盆地构造与油气地质综合研究、造山带中-小-微尺度构造解析、磁组构与岩浆动力学等方面研究工作。近年来研究主要聚焦于:1)塔里木盆地走滑断裂解析、地震解释与构造分析、油气地质与勘探综合评价;2)华北克拉通燕山造山带构造解析,并结合花岗岩岩石学、地球化学、磁组构、重力模拟等手段,厘定华北克拉通中生代燕山运动陆内造山过程。目前以第一作者或通讯作者在以第一作者在Earth-Science Reviews、Tectonics、AAPG Bulletin等期刊发表论文10余篇;以第一完成人申请国家发明专利4项;获得中国石油化工集团有限公司“油气勘探重大发现”特等奖1项、三等奖1项,局级科技进步奖特等奖 1 项、一等奖 4 项、三等奖 1 项,承担多项中国石化科技部、西北油田分公司项目。

联系方式:qiuhuabiao@yangtzeu.edu.cn
个人主页:/info/1661/13253.htm

魏晓椿英国威廉集团特任副教授,硕士生导师。本科博士毕业于南京大学。主持或参与国家自然科学基金、中国科学院战略性先导科技专项等多项。重点关注青藏高原的隆升过程、机制及其资源环境效应。目前以第一作者和通讯作者在PNAS(美国科学院院刊)、Tectonics、GSA Bulletin和Tectonophysics等期刊发表论文多篇。以合作者身份在EPSL、JGR: Solid Earth、GSA Bulletin、Palaeogeography Palaeoclimatology Palaeoecology和 Basin Research等期刊发表论文多篇。

联系方式:xcwnju@gmail.com
个人主页:https://faculty.yangtzeu.edu.cn/weixiaochun/zh_CN/index.htm

朱亚玲,博士毕业于德国地球科学研究中心(GFZ),湖北省楚天学者,硕士生导师。主要从事非常规油气地质与油气地球化学,油气成藏等方面的科研与教学工作。近期主要致力于烃源岩生烃动力学及生-排-滞烃机理等方面的研究。以第一作者在《International Journal of Coal Geology》等期刊发表SCI文章3篇。

联系方式:zhuyaling@yangtzeu.edu.cn

个人主页:/info/1661/7750.htm

李茜,博士毕业于中国石油勘探开发研究院,威廉williamhill特聘副教授,主要研究方向为同位素地球化学和石油地质学,以第一作者或通讯作者在Science of The Total Environment,Petroleum Science,Science China Earth Sciences,Scientific Reports,Applied Geochemistry,Journal of Asian Earth Sciences,Deep Underground Science and Engineering,石油学报等期刊发表论文16篇,参与中国石油集团重大项目2项,国家重点基金2项,荣获“北京市优秀毕业生”,“王涛英才博士奖学金”,“孙越崎优秀学生奖金”,“绿色矿山科学技术奖一等奖”,“全国发明展览会发明创新奖金奖”,“第18届北京市发明创新大赛优秀奖”,“第九届全国应用地球化学学术会议优秀学生报告”,“中国石油勘探开发研究院优秀研究生”,“中国石油勘探开发研究院优秀共青团员”, “第17届北京市发明创新大赛入围奖”, “中国石油勘探开发研究院一等奖学金”,“国家励志奖学金”等荣誉。

联系方式:geolixi@126.com

梁志凯,英国威廉集团特任副教授,毕业于中国石油大学(北京),主要从事非常规储层评价与油气成藏机理相关研究,聚焦于页岩储层孔隙及非均质性、页岩气成藏机理、干酪根大分子结构特征、气水赋存状态等研究。荣获“国家奖学金”、“校优秀毕业生”等荣誉。2022及2025年获得美国石油地质学家协会(AAPG)全球助研金项目资助。目前以第一作者在International Journal of Rock Mechanics and Mining Sciences、Fuel、Geoenergy Science and Engineering、Gas Science and Engineering等期刊发表文章14篇,其中中科院TOP期刊6篇,合作者身份(排名前三)发表论文12篇。
   联系方式:liangzhikai2020@163.com

温琛,本硕博毕业于中国地质大学(武汉),英国威廉集团博士后。主要从事古地磁学、行星磁学和环境磁学的研究工作,目前正在将相关方法应用于氢气勘探开发中。目前以第一作者在JGR-Planets发表论文一篇,合作发表论文4篇。获“中国地球科学联合学术年会优秀论文奖”,“指南针奖”等荣誉。

联系方式:wenchen@yangtzeu.edu.cn

林建力,本硕博均毕业于中国石油大学(华东),英国威廉集团博士后。主要从事储层地质学与油藏描述相关方向科研工作,近期主要研究方向:(1)深层-超深层油气储层“成岩-成储-成藏”机理研究;(2)陆相富有机质页岩沉积-成岩过程与油气富集机理研究。目前以第一作者在Sedimentary Geology、Marine and Petroleum Geology和石油与天然气地质等期刊发表论文3篇,合作发表论文19篇。
   联系方式:real_lin@163.com

三、研究方向与学术特色

万米深层油气成藏地质理论与成烃演化机制研究

依托现有国家基金项目与实验平台,系统研究万米深层地温—压力—应力场演化规律,构建超深层沉积—成烃—成藏一体化地质模式。聚焦深地碳质物质演化、成烃窗口拓展及多期次成藏过程,发展高温高压条件下油气生成、运聚与保存理论,形成适用于超深层目标的油气地质理论体系,为万米钻探和深地能源开发提供理论支撑

页岩油差异富集机理与“甜点”预测技术


研究面向页岩油“甜点”区优选需求,研究不同沉积环境、有机质类型与热演化阶段下页岩油赋存状态差异,结合纳米孔隙结构特征、流体性质与应力场演变,揭示页岩油“成—聚—储—控”耦合机制。依托多尺度实验技术,构建页岩油差异聚集模型,发展适用于不同构造区的页岩油富集与成藏评价新方法,服务于高效开发部署。

鄂西复杂构造区海相页岩气成藏演化与富集控制机制研究

以鄂西地区复杂构造背景下的海相页岩为研究对象,解析构造演化、沉积相变与热演化过程对页岩气成藏的耦合影响。重点研究裂缝系统发育与天然气赋存关系,揭示优质储层形成的关键控制因素,结合气藏压力演化、含气性与富集区预测技术,构建鄂西典型构造区页岩气成藏模式,支撑区域勘探目标优选与资源潜力评价

四、主要成果

获国家自然科学奖二等奖、中国专利银奖、北京市科技进步一等奖、教育部科技进步一等奖两项、中国石油集团技术发明一等奖和科技进步特等及一等奖共4项。两项成果入选中国石油年度十大科技进展,两项成果入选中国地质学会年度十大科技进展,3项专利获全国发明展览会金奖、1项专利获第十六届北京发明创新大赛金奖。第一发明人授权中国、英国、俄罗斯、加拿大、澳大利亚、美国等国发明专利88件。制订国标、行标和团标12件。代表性成果如下:

获奖人:朱光有,国家自然科学二等奖(排名5),2010年。

获奖人:朱光有,北京市科技进步一等奖(排名1),2021年。

获奖人:朱光有,中国专利银奖(排名1),2020年。

获奖人:朱光有,中国石油集团技术发明一等奖(排名1)和科技进步一等奖两项(均排名7),2019年

获奖人:朱光有,教育部科技进步一等奖两项(排名2和4)。

获奖人:朱光有,三项成果分别入选中国石油集团和中国地质学会年度十大科技进展(均排名1),成果内容:

围绕“深层油气成藏保存”科学问题,发现超深层优质烃源岩,论证了石油保存深度下限可达9千米,揭示了2.5亿年前形成的大型油藏超长寿命的保存机制,揭示了硫化氢天然气的成因与深层原油裂解气的成藏机制,阐明了深层油气相态转化机制与油气水空间分布规律,推动了金属同位素在石油地质学中的应用,初步建立了超深层油气成藏富集与过程示踪理论体系。

与国家示范工程等密切结合,创建了高温高压下油气生成、聚集成藏与保存评价方法,支持发现全球最深的古生界大型油藏,首次发现十个系列新型化合物,从分子尺度上揭示了深层油气成因与相态演化;

提出万米深层概念,开拓万米深层油气勘探禁区和理论认识盲区,为我国深层油气勘探重大战略突破和开辟万米级超深层油气勘探空间提供了重要理论支持。

五、近五年承担的主要科研项目

负责、承担和完成国家973课题、国家重大油气专项、国家自然基金及省(部)级科研项目近20项;负责完成企业重大、重点合作项目20余项。部分项目如下:

国家自然科学基金委重点项目:南华纪间冰期烃源岩的形成机制、分布规律与成烃机理,2023-2027,主持:朱光有。

中国石油集团重大项目:海相碳酸盐岩成藏理论与勘探技术研究,2021-2025,主持:朱光有。

国家自然科学基金委面上项目:下寒武统黑色页岩中汞含量异常及其对烃源岩形成指示,2021-2024,主持:朱光有。

国家自然科学基金委青年基金:丹麦期最晚期事件(LDE)演化过程的阶段性特征研究: 以江西池江盆地陆相沉积为例, 2021-2023,主持:韩非。

国家自然科学基金青年基金项目,沉积盆地砂岩储层中高盐度流体驱动下长石方解石化机理研究,2023.01-2025.12,在研,主持:栾国强。

山东省自然科学基金青年基金项目,高盐度流体充注背景下深层碎屑岩储层长石溶蚀机理研究,2023.01-2025.12,在研,主持:栾国强。

中国博士后科学基金面上资助(一等资助),沉积盆地富长石砂岩储层中高盐度流体与长石方解石化的成因联系及作用机理研究,2022.11-2024.10,结题,主持:栾国强。

青岛市博士后资助项目,深层富长石碎屑岩高盐度流体充注溶蚀机理研究,2021.10-2024.10,结题,主持:栾国强。

高校自主创新科研项目(理工类),富长石砂岩储层高盐度流体驱动下长石方解石化机理研究,2021.10-2024.10,结题,主持:栾国强。

国家自然科学基金重点项目,高温高压介质弹性波传播的关键科学问题研究,2023.01-2027.12,在研,参与:栾国强。

国家自然科学基金面上项目,湖相富有机质泥页岩中白云石成因机制及其演化模式,2020.01-2024.12,结题,参与:栾国强。

国家自然科学基金面上项目,湖相富有机质泥页岩中文石的成因机制及其环境意义,2024.01-2027.12,在研,参与:栾国强。

国家自然科学基金委员会,面上项目,42473057,从超钾质火山岩视角探讨富集地幔的成因,2025–2028,51万元,在研,主持:孙杨。

国家自然科学基金青年基金:黄铁矿微量元素及镍同位素对华南埃迪卡拉纪古海洋甲烷异常释放事件的指示,2024-2026,主持:陈粲。

国家重点研发计划天然气水合物动态成藏与高效开发实验模拟关键技术,子课题水合物分解史重建,2025-2027,子课题负责人:陈粲。

中国博士后科学基金第77批面上资助,2025-2027,主持:李欢。

2025年度国家资助博士后研究人员计划,2025-2027,主持:李欢。

湖北省自然科学基金卓越研究群体项目《中扬子鄂西地区页岩气富集高产理论技术与湖北能源基地建设》;参与:卢志远。  

中石化勘探分公司《塔西南地区构造演化及关键时期构造特征分析》 ;参与:卢志远。

南方复杂页岩油气地质与开发湖北省重点实验室项目《鄂西地区下寒武统牛蹄塘组页岩储层储集空间表征与成藏过程研究》,主持:卢志远。  

中国石化西北油田分公司项目 “北塔里木基底断裂发育特征及控沉积作用研究”,2024.01-2024.12,主持:邱华标。

中国石化科技部项目 “塔里木盆地深层低序级断裂及相关储集体成因与发育模式”,2024.01-2024.12,主持:邱华标。

中国石化西北油田分公司项目 “顺北油气田SHB8-7X井区断裂精细解析及储层结构分析研究”,2023.1-2023.12 ,主持:邱华标。

中国石化西北油田分公司项目 “顺北12 号带断裂发育特征精细解析”,2022.1-2022.12,主持:邱华标。

中国石化科技部项目 “塔东南中下侏罗统烃源岩热演化过程恢复技术”,2021.1-2022.12,主持:邱华标。

国家自然科学基金委员会青年基金项目,41902204,东帕米尔山前晚新生代沉积物源示踪及对公格尔伸展系统启动时间的约束,2020/01–2021/12,主持:魏晓椿。

国家自然科学基金委员会面上项目,碎屑锆石U-Pb年代学定量物源分析的可靠性验证及影响因素研究——以华南典型流域现代河流砂为例,2023/01–2026/12,参与:魏晓椿。

自然资源部构造成矿成藏重点实验室开放基金,gzck201904,东帕米尔山前晚新生代沉积碎屑磷灰石裂变径迹定年及对公格尔伸展系统发育过程的约束,2020/01–2020/12,主持:魏晓椿。

国家自然科学基金青年基金:页岩气开采中有机组分释放的实验模拟研究,2021.01-2023.12,主持:朱亚玲。

构造与油气资源教育部重点实验室开放基金:水岩反应中页岩释放的有机化学组分分析,2021.09-2023.08,主持:朱亚玲。

国家自然科学基金委员会, 面上项目, 42174089, 拉萨地体的冈瓦纳裂解过程的古地磁约束, 2022-01-01至2025-12-31, 59万元, 在研, 参与:温琛。

国家自然科学基金委员会, 重点项目, 42030205, 行星磁场演化的关键——行星核心磁场发电机的启动与停止, 2021-01-01至2025-12-31, 296万元, 在研, 参与:温琛。

六、研究目标(近三年)

经费

(1)纵向科研经费总量:400万/年;

(2)横向科研经费总量:500万/年;

(3)人均经费:纵向28万/人/年,横向36万/人/年。

国际1区高水平论文数量

Nature、Science、PNAS及其系列子刊完成2–3篇;自然指数期刊完成10篇;中科院2区及以上文章完成30篇。

国家级人才入围答辩人数

5人次申报“四青人才”计划,2人入围上会答辩。

带国徽的省部级及以上奖励

申报不少于5项。

指导学生参加B类以上学科竞赛获奖数量

不少于20人次参加,其中获奖不少于10人次。

学生培养

培养出博士10名,硕士20名。不少于10人次获得国家奖学金。

代表性论文(*为通讯作者)

Zhu Guangyou*, Chen Feiran, Wang Meng, Zhang Zhiyao, Ren Rong, Wu Lin. Discovery of the Lower Cambrian high-quality source rocks and deep oil and gas exploration potential in the Tarim Basin, China, American Association of Petroleum Geologists (AAPG) Bulletin, 2018, 102(10), 2123-2151. https://doi.org/10.1016/j.jnggs.2016.05.002

Zhu Guangyou*, Li Tingting, Zhang Zhiyao, Zhao Kun, Song Haijun, Wang Pengju, Yan Huihui, Song Huyue. Nitrogen isotope evidence for oxygenated upper ocean during the Cryogenian interglacial period. Chemical Geology, 2022, 604, 120929. https://doi.org/10.1016/j.chemgeo.2022.120929

Zhu Guangyou*, Li Tingting, Zhao Kun, Li Chao, Cheng Meng, Chen Weiyan, Yan Huihui, Zhang Zhiyao, Algeo Thomas J. Mo isotope records from Lower Cambrian black shales, northwestern Tarim Basin (China): Implications for the early Cambrian ocean. Geological Society of America Bulletin, 2021, 134(1-2), 3-14. https://doi.org/10.1130/B35726.1

Zhu Guangyou*, Zhang Zhiyao, Jiang Hua, Yan Lei, Chen Weiyan, Li Tingting, Li Xi. Evolution of the Cryogenian cratonic basins in China, paleo-oceanic environment and hydrocarbon generation mechanism of ancient source rocks, and exploration potential in 10,000 m-deep strata. Earth-Science Reviews 244 (2023) 104506, 1-20. https://doi.org/10.1016/j.earscirev.2023.104506

Zhu Guangyou*, Zhang Zhiyao, Zhou Xiaoxiao, Li Tingting, Han Jianfa, Sun Chonghao. The complexity, secondary geochemical process, genetic mechanism and distribution prediction of deep marine oil and gas in the Tarim Basin, China. Earth-Science Reviews, 2019, 198, 102930.

https://doi.org/10.1016/j.earscirev.2019.102930

Zhu Guangyou*, Wang Tongshan, Xie Zengye, Xie Banghua, Liu Keyu. Giant gas discovery in the Precambrian deeply buried reservoirs in the Sichuan Basin, China: Implications for gas exploration in old cratonic basins. Precambrian Research, 2015, 262, 45-66. https://doi.org/10.1016/j.precamres.2015.02.023

Zhu Guangyou*, Milkov Alexei V., Zhang Zhiyao, Sun Chonghao, Zhou Xiaoxiao, Chen Feiran, Han Jianfa, Zhu Yongfeng. Formation and preservation of a giant petroleum accumulation in superdeep carbonate reservoirs in the southern Halahatang oil field area, Tarim Basin, China. American Association of Petroleum Geologists (AAPG) Bulletin, 2019, 103(7), 1703-1743. https://doi.org/10.1306/11211817132

Guoqiang Luan, Karem Azmy, Chunmei Dong, et al. Carbonate cements in Eocene turbidite sandstones, Dongying depression, Bohai Bay Basin: Origin,distribution, and effect on reservoir properties, AAPG Bulletin, 2022, 106(1): 209-240. https://doi.org/10.1306/07202120012

Guoqiang Luan, Chunmei Dong, Karem Azmy, et al. Origin of bedding-parallel fibrous calcite veins in lacustrine black shale: A case study from Dongying Depression, Bohai Bay Basin, Marine and Petroleum Geology, 2019, 102: 873-885. https://doi.org/10.1016/j.marpetgeo.2019.01.010

Guoqiang Luan, Karem Azmy, Chunmei Dong, et al. Fault controlled carbonate cementation: A case study from Eocene turbidite-delta sandstones (Dongying Depression) and implication for hydrocarbon migration, Marine and Petroleum Geology, 2021, 129: 1-16. https://doi.org/10.1016/j.marpetgeo.2021.105000

Guoqiang Luan, Karem Azmy, Fabrizio Berra, et al. Origin of dolomites in oolitic carbonates of the Middle Jurassic Dorgali Formation, eastern Sardinia, Italy: Petrographic and geochemical constraints, Marine and Petroleum Geology, 2021, 135: 1-11. https://doi.org/10.1016/j.marpetgeo.2021.105395

Guoqiang Luan, Chunmei Dong, Karem Azmy, et al. Hydrogeochemistry of oil-field formation water in relation to diagenesis of reservoirs: A case study from Shahejie formation, Dongying Depression, Journal of Petroleum Science and Engineering, 2022, 216(110822). https://doi.org/10.1016/j.petrol.2022.110822

Guoqiang Luan, Karem Azmy, Rudi Meyer, et al. Origin of carbonate cements in Ben Nevis sandstones of Jeanne d’Arc Basin: Insights from geochemistry[J]. Marine and Petroleum Geology, 2023, 148: 106033.

https://doi.org/10.1016/j.marpetgeo.2022.106033

Guoqiang Luan, chengyan Lin, Karem Azmy, et al., Marine anoxia events across the Upper Cambrian (Stage 10) of eastern Gondwana: implications from paleoenvironmental geochemical proxies. Marine and Petroleum Geology, 2024,164(12): 106813 https://doi.org/10.1016/j.marpetgeo.2024.106813

Han F., Wang H. *, Lv Y., Paterson G.A., Biggin A.J., Williams W., Yang T., Miao J., Cao T., Zhu D., Wen C., Hu S., Chen X., Wang M., Ma Y., Fang J., Liu J. (2025) Marine magnetic anomalies enhanced by internal stress in rapidly cooled submarine basalts. Geophysical Research Letters, 52(10), e2025GL115045. https://doi.org/10.1029/2025GL115045

Han, F., Zheng, Z., Jiang, Z., Qin, H., Fan, L., & Wang, H*. (2025). Authigenic haematite may exhibit similar rock magnetic properties to detrital haematite: a case study from early Triassic red beds in North China. Geophysical Journal International, 240(3), 1639-1651. https://doi.org/10.1093/gji/ggaf007

Han, F., Han, Y., Zhou, X., Wang, H. *, Qin, H., Wang, Q., & Deng, C. (2024). Climate change contributed to the disappearance of the latest Cretaceous dinosaurs in the Shanyang Basin, Central China. Palaeogeography, Palaeoclimatology,Palaeoecology,653,112421. https://doi.org/10.1016/j.palaeo.2024.112421

Han F., Wang Q.*, Wang H., Zhu X., Zhou X., Wang Z., Fang K., T. A. Stidham, Wang W., Wang X., Li X., Qin H., Fan L., Wen C., Luo J., Pan Y., Deng C. 2022. Low dinosaur biodiversity in central China two million years prior to the end-Cretaceous mass extinction. Proc. Natl. Acad. Sci. U.S.A. 119, e2211234119, https://www.pnas.org/doi/full/10.1073/pnas.2211234119 (封面文章)

10.1073/pnas.2211234119

Han F., Sun J., Qin H., Wang H., Ji Q., He H., Deng C., Pan Y.*, 2020. Magnetostratigraphy of the Upper Cretaceous and Lower Paleocene terrestrial sequence, Jiaolai Basin, eastern China, Palaeogeography, Palaeoclimatology, Palaeoecology.2020,538,109451. https://doi.org/10.1016/j.palaeo.2019.109451

Sun, Y., Chen, B., Li, W.-J., Liu, S.-J., 2024. Tourmaline geochemical and B isotopic constraints on pegmatite Li mineralization and exploration. Ore Geology Reviews, 106257. https://doi.org/10.1016/j.oregeorev.2024.106257

Sun, Y., Teng, F.-Z., Rooney, T.O., Pang, K.-N., Wang, Z.-Z., 2024. Magnesium isotope behavior during titanomagnetite fractionation in basaltic lavas. Chemical Geology, 122088. https://doi.org/10.1016/j.chemgeo.2024.122088

Sun, Y., Teng, F.-Z., Pang, K.-N., Ying, J.-F., Kuehner, S., 2021. Multistage mantle metasomatism deciphered by Mg−Sr−Nd−Pb isotopes in the Leucite Hills lamproites. Contributions to Mineralogy and Petrology 176, 45. https://link.springer.com/article/10.1007/s00410-021-01801-9

Sun, Y., Teng, F.-Z., Pang, K.-N., 2021. The presence of paleo-Pacific slab beneath northwest North China Craton hinted by low-δ26Mg basalts at Wulanhada. Lithos 386–387, 106009.

https://doi.org/10.1016/j.lithos.2021.106009

Sun, Y., Teng, F.-Z., Hu, Y., Chen, X.-Y., Pang, K.-N., 2020. Tracing subducted oceanic slabs in the mantle by using potassium isotopes. Geochimica et Cosmochimica Acta 278, 353–360. https://doi.org/10.1016/j.gca.2019.05.013

Sun, Y., Teng, F.-Z., Ying, J.-F., Su, B.-X., Hu, Y., Fan, Q.-C., Zhou, X.-H., 2017. Magnesium isotopic evidence for ancient subducted oceanic crust in LOMU-like potassium-rich volcanic rocks. Journal of Geophysical Research: Solid Earth 122, 7562–7572.  https://doi.org/10.1002/2017JB014560

Sun, Y., Ying, J.-F., Su, B.-X., Zhou, X.-H., Shao, J.-A., 2015. Contribution of crustal materials to the mantle sources of Xiaogulihe ultrapotassic volcanic rocks, Northeast China: New constraints from mineral chemistry and oxygen isotopes of olivine. Chemical Geology 405, 10–18.

https://doi.org/10.1016/j.chemgeo.2015.04.005

Sun, Y., Ying, J.-F., Zhou, X.-H., Shao, J.-A., Chu, Z.-Y., Su, B.-X., 2014. Geochemistry of ultrapotassic volcanic rocks in Xiaogulihe NE China: Implications for the role of ancient subducted sediments. Lithos 208–209, 53–66. https://doi.org/10.1016/j.lithos.2014.08.026

Xiao, Y., Yuan, M., Su, B.-X., Chen, C., Bai, Y., Ke, S., Sun, Y., Robinson, P.T., 2023. The Chromite Crisis in the Evolution of Continental Magmas and the Initial High δ26Mg Reservoir. Journal of Petrology, 64(4)

.https://doi.org/10.1093/petrology/egad019

Zheng, B.Q., Chen B., Sun Y., 2023. Tracing the evolution of the pegmatite system and its interaction with the country rocks by chemical and boron isotope compositions of tourmaline in the Qinghe pegmatite from the Chinese Altay orogen. Acta Petrologica Sinica 39, 187–204.10.18654/1000-0569/2023.01.13

 http://www.ysxb.ac.cn//article/doi/10.18654/1000-0569/2023.01.13

Liu, S., Chen, B., Zheng, J., Sun, Y., Bao, C., Zhao, G., 2022. Lithium isotopic behaviour during high-temperature fluid-rock reactions of metapelites (>200°C): A case study from the Baiyun orogenic gold deposit, Liaodong Peninsula, North China Craton. Chemical Geology 611, 121121.

https://doi.org/10.1016/j.chemgeo.2022.121121

Su, B.-X., Chen, C., Xiao, Y., Robinson, P.T., Liu, X., Wang, J., Uysal, I., Bai, Y., Sun, Y., 2021. The Critical Role of Fluid-Mediated Diffusion in Anomalous Fe-Mg-O Isotope Fractionations in Ultramafic Rocks of Ophiolites. Journal of GeophysicalResearch:SolidEarth126,e2020JB020632.  https://doi.org/10.1029/2020JB020632

Pang, K.-N., Teng, F.-Z., Sun, Y., Chung, S.-L., Zarrinkoub, M.H., 2020. Magnesium isotopic systematics of the Makran arc magmas, Iran: Implications for crust-mantle Mg isotopic balance. Geochimica et Cosmochimica Acta 278, 110-121. https://doi.org/10.1016/j.gca.2019.10.005

Liu, Y.-D., Ying, J.-F., Li, J., Sun, Y., Teng, F.-Z., 2020. Diverse origins of pyroxenite xenoliths from Yangyuan, North China Craton: implications for the modification of lithosphere by magma underplating and melt-rock interactions. Lithos 372-373, 105680. https://doi.org/10.1016/j.lithos.2020.105680

Chen, C., Wang, J., Algeo, T.J., Zhu, J-M., Wang, Z., Ma, X., Cen, Y., 2023. Sulfate-driven anaerobic oxidation of methane inferred from trace-element chemistry and nickel isotopes of pyrite, Geochimica et Cosmochimica Acta 349: 81-95. https://doi.org/10.1016/j.gca.2023.04.002

Chen, C., Wang, J., Algeo, T.J., Chen, X., Wei, K., Wang, Z., Huang, Y., Jiang, G., 2025. Coronene spikes in the Ediacaran Doushantuo Formation, South China: A combustion origin? Global and Planetary Change 253, 104943. https://doi.org/10.1016/j.gloplacha.2025.104943

Chen, C., Wang, J., Algeo, T.J., Wang, Z., Ma, X., Song, Q., Geng, K., 2025. Trace elements of pyrite in the Ediacaran Doushantuo Formation reveal ancient methane release events. Precambrian Research 416(107627), 1-15.

https://doi.org/10.1016/j.precamres.2024.107627

Chen, C., Wang, J., Algeo, T.J., Zhu, J.-M., Poulton, S.W., Wang, Z., Cheng, C., Song, Q., 2024. Application of pyrite trace-metal and S and Ni isotope signatures to distinguish sulfate- versus iron-driven anaerobic oxidation of methane.ChemicalGeology662C. https://doi.org/10.1016/j.chemgeo.2024.122211

Chen, C., Wang, J., Chen, X., Algeo, T.J., Wang, Z., Yang, W., Song, Q., 2024. Productivity and redox influences on the late Ordovician ‘Katian Extinction’ and‘early Silurian Recovery’. Palaeogeography, Palaeoclimatology, Palaeoecology 642.

https://doi.org/10.1016/j.palaeo.2024.112176

Li, H.*, Hu, Q.H.*, Jones, S., Gluyas, J., Ansah, E.O., Menacherry, S., Wang, Q.Q., Ye, T., 2025. A review and discussion on the influences of grain-coating clay minerals on water-rock interactions in sandstones: Earth-Science Reviews, 263,105073.https://doi.org/10.1016/j.earscirev.2025.105073. https://doi.org/10.1016/j.earscirev.2025.105073

Li, H.*, Black, J.R., Hao, Y.W., Hao, P., Mishra, A., and Haese, R.R.*, 2024. Modelling diagenetic reactions and secondary porosity generation in sandstones controlled by the advection of low-molecular-weight organic acids: Basin Research, 36, e12860. https://doi.org/10.1111/bre.12860.

Li, H.*, Zhu, H.T., Du, X.F., and Yang, X.H., 2023. Secondary porosity generation in sandstones constrained by the fault movement, fluid flow, and mudstone–sandstone interactions, offshore Bohai Bay Basin, China: AAPG Bulletin,107,785-821. https://archives.datapages.com/data/bulletns/2023/05may/BLTN20024/bltn20024.html?doi=10.1306%2F09232220024

Li, H.*, Hu, Q.H.*, Zhu, H.T., Zhu, G.Y., Wang, F.L., Du, X.F., Wang, Q.B., Hu, D.S., Ansah, E.O., Pang, X.J., Wang, Q.Q., 2025. Evaluating the influence of grain-coating chlorite on quartz cements and sandstone porosity: A review: Journal of Earth Science.

http://en.earth-science.net/en/article/doi/10.1007/s12583-025-0223-4

Li, H.*, Hu, Q.H.*, Wang, F.L., Wang, M.Z., Hao, Y.W., and Wang, W., 2024. Alteration of chlorite coats and sandstone porosity reduction: Insights from reactive transport modeling: Marine and Petroleum Geology, 160, 106642. https://doi.org/10.1016/j.marpetgeo.2023.106642.

Lu Zhiyuan, He Zhiliang, Ma Shizhong, He Yu. (2022) Sedimentary characteristics and sand-body distributions in the lower Permian He 8 member, Ordos Basin, China [J]. Interpretatioin, Vol. 10, No. 2.T223-T236
https://library.seg.org/doi/10.1190/INT-2021-0101.1

Zhiyuan Lu, Zhiliang He, Jon G. Gluyas, Guangxiang Liu, Tao Liu, Chunfang Chen, Min Zou.(2024)Reservoir Quality of the Lower–Middle Permian Shan 2 and He 1 Members in the Ordos Basin, China: Implications for Depositional and Diagenetic Processes and the Role of Volcanic Tuffaceous Sediment in Tight Sandstones[J]. Journal of Asian Earth Sciences.

https://doi.org/10.1016/j.jseaes.2024.106050

卢志远,何治亮,马世忠,何宇,牛东亮,聂海宽,朱杰.(2021)高能辫状河沉积特征及砂体分布——以苏东X密井网区为例[J]. 石油学报, 42(8): 1003-1014.https://kns.cnki.net/KCMS/detail/detail.aspx?dbcode=CJFQ&dbname=CJFDLAST2021&filename=SYXB202108003                                                                                

卢志远,何治亮,余川,叶欣,李东晖,杜伟,聂海宽.(2021)复杂构造区页岩气富集特征——以四川盆地东南部丁山地区下古生界五峰组-龙马溪组为例[J]. 石油与天然气地质, 42 (1): 86-97. Doi :10. 11743 / ogg20210108

Qiu, H., Lin, W.*, Chen, Y., Faure, M. (2023). Jurassic–Early Cretaceous tectonic evolution of the North China Craton and Yanshanian intracontinental orogeny in East Asia: New insights from a general review of stratigraphy, structures, and magmatism. Earth-Science Reviews, 237, 104320. https://doi.org/10.1016/j.earscirev.2023.104320

Qiu, H. *, Deng, S. *, Cao, Z., Yin, T., & Zhang, Z. (2019). The evolution of the complex anticlinal belt with crosscutting strike‐slip faults in the central Tarim Basin, NW China. Tectonics, 38, 2087–2113.

 https://doi.org/10.1029/2018TC005229

Qiu, H. *, Lin, W., Deng, S., Lin, H., Zhang, Z., Cao, Z., Huang, C., & Han, J. (2024). The evolution of the early Paleozoic carbonate platform in the Central Uplift, Tarim Basin, NW China, and hydrocarbon accumulation. AAPG Bulletin, 108(5), 943–969. https://doi.org/10.1306/01242418082

Qiu, H. *, Deng, S. *, Zhang, J., Lin, H., Huang, C., Han, J., Lin, W., & Zhu, X. (2022). The evolution of a strike-slip fault network in the Guchengxu High, Tarim Basin (NW China). Marine and Petroleum Geology, 140, 105655. https://doi.org/10.1016/j.marpetgeo.2022.105655

Qiu, H., Lin, W. *, Chen, Y., Faure, M., Meng, L., Ren, Z., Zeng, J., & Hou, Q. (2021). Magma chamber-related transition from magmatic to solid-state fabrics within the Late Triassic granitic Dushan pluton (North China). Geophysical Journal International, 227(2), 759-775. https://doi.org/10.1093/gji/ggab252

Zheng Hongbo*, Wei Xiaochun*, Tada Ryuji, Clift D. Peter, Wang Bin, Jourdan Fred, Wang Ping, He Mengying, 2015a. Late Oligocene–early Miocene birth of the Taklimakan Desert. PNAS,112,76627667. doi:10.1073/pnas.1424487112 https://doi.org/10.1073/pnas.1424487112

Wei Xiaochun*, Zheng Hongbo*, Wang Ping, Tada Ryuji, Clift D. Peter, Jourdan Fred, Luo Chao, Chen Hanlin, 2018. Miocene Volcaniclastic Sequence within Xiyu Formation from Source to Sink: Implications for Northward Indention of Pamir in Northern Tibet. Tectonics, 37, 3261-3284.

 https://doi.org/10.1029/2018TC005008

Wei Xiaochun, Chen Hanlin*, Garzanti Eduardo, Zheng Hongbo, Wang Ping, Jourdan Fred, Shi Xuhua, Zhu Kongyang, 2024c. Isochronous Miocene volcaniclastic horizon in the SW Tarim Basin: Composition, Ages, Origins, and Implications for Tephrochronology. GSA Bulletin

https://doi.org/10.1130/B37521.1

Wei Xiaochun, Chen Hanlin*, Yang Rong, Wang Ping, Li Shanying, Shi Xuhua, Ge Jin, 2024a. Timing and Kinematics of Late Cenozoic Strike-slip Faults in Western Tibetan Plateau: New Constraints from Provenance Analysis and Detrital Thermochronology. Tectonophysics, 882, 230353

https://doi.org/10.1016/j.tecto.2024.230353

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