姓名: | 王春连 | 性别: | 男 | |
职称: | 研究员 | 学位: | ||
电话: | 13552158120 | 传真: | ||
Email: | wangchunlian312@163.com | 邮编: | 330013/100037 | |
地址: | 江西省南昌市经开区广兰大道418号/北京市西城区百万庄大街26号 |
简 历:
王春连,男,1983年2月出生,矿床学专业,博士研究生。现任中国地质科学院矿产资源研究所研究员(破格),博士生导师,新能源新材料矿产研究室主任,东华理工大学、中国地质大学(武汉)、昆明理工大学、长江大学、成都理工大学等高校兼职研究生导师。中国地质调查局期刊百篇优秀论文(2021),Geosciences Journal年度Best Reviewer(两次),首届博士研究生国家奖学金,“中央国家机关好人榜”称号,青年地质科技奖—银锤奖。《地球学报》、《化工矿产地质》编委,《盐湖研究》、《China Geology》首届青年编委。《岩石矿物学杂志》、《地球学报》等核心期刊特约主编。中国地质学会盐类资源环境专业委员会委员。国家自然科学基金委函评、会评专家。自2007年以来一直从事钾锂盐、新能源新材料矿产成矿作用及找矿方向方面的研究。以第一/通讯作者发表论文80余篇,在Global and Planetary Change,Marine and Petroleum Geology,Sedimentary Geology, Palae-3,Scientific Reports等专业领域重要国际SCI刊物上发表第一/通讯作者论文30篇,EI论文4篇。第一负责项目25项,包括国家自然科学基金重点、国家级整装勘查、企业横向(总经费超1.5亿元)。
学习经历:
·2010.9–2013.6,中国地质科学院,矿物学、岩石学、矿床学专业,博士研究生
·2007.9–2010.6,成都理工大学,沉积学(地质学)专业,硕士研究生
·2003.9–2007.6,成都理工大学,地理科学(沉积学方向)专业,本科
工作经历:
·2022年09月-至今, 东华理工大学, 地球科学学院,研究员
·2019年07月-至今, 中国地质科学院矿产资源研究所, 研究员
·2019年03月-2019年06月, 中国地质调查局, 研究员
·2018年10月-2019年02月, 中国地质科学院矿产资源研究所, 副研究员
·2018年04月-2018年09月, 中国地质调查局, 副研究员
·2013年07月-2018年03月, 中国地质科学院矿产资源研究所, 副研究员
研究方向:
·新能源新材料矿产成矿作用及找矿方向研究
·区域成矿规律
·沉积学
·钾锂盐及非金属矿产资源的基础、应用和开发研究
招生专业:
·0709地质学
·0818地质资源与地质工程
·0857资源与环境
获奖及荣誉:
·2022年入选青年地质科技奖—银锤奖
·2021年入选“科创中国”科技服务团成员
·2021年入选脱贫攻坚优秀个人
·2021年入选中国地质调查局期刊百篇优秀论文
·2021年入选Geosciences Journal 年度Best Reviewer
·2020年入选全国油气督察员
·2018年入选Geosciences Journal 年度Best Reviewer
·2014年入选“中央国家机关好人榜”称号—忠孝两全,家国兼顾
·2012年入选首届博士研究生国家奖学金
教授课程:
1.《战略性非金属矿产成矿作用与找矿预测》、2.《盐湖学》、3.《沉积学》
承担科研项目情况:
主持项目:
1.国家自然科学基金重点, 2021年/01月-2024年/12月,258
2.中国地质大调查项目,2023年/01月-2025年/12月,1500
3.企业横向项目,2022年/01月-2026年/12月,750
4. 中国地质大调查项目,2023年/01月-2025年/12月,900
5.企业横向项目,2022年/01月-2023年/12月,149.94
6.中国地质大调查项目,2022年/01月-2022年/12月,351
7. 中国地质大调查项目,2022年/01月-2025年/12,3684
8.中国地质大调查项目,2021年/01月-2021年/12,90万
9.企业横向项目,2022年/01月-2023年/12,162万
10.中央级公益性科研院所基本科研业务费专项,2020年/01月-2022年/12,230万
11.中国地质大调查项目,2019年/01月-2020年/12,2519
12.中国地质大调查项目,2020年/01月-2020年/12,120万
13.中国地质大调查项目,2019年/01月-2019年/12,180万
14.境外地质调查,2019年/01月-2019年/12,1876
15.国家级整装勘查项目,2016年/01月-2018年/12,2亿元(主要为钻探经费)
16.中国地质大调查项目,2016年/01月-2018年/12,130万
17.国家自然科学(青年)基金项目,2016年/01月-2018年/12,24万
18.中科院开放基金,2016年/01月-2017年/12,6万
19.政府项目,2016年/01月-2017年/12,50万
20.企业横向项目,2015年/01月-2016年/12,95万
21. 2015—2016年,企业横向项目,2015年/01月-2016年/12,85万
22.湖北省地质勘查项目,2015年/01月-2017年/12,250万
23.中央级公益性科研院所基本科研业务费专项,2014年/01月-2016年/12,25万
24.中国地质大调查项目, 2014年/01月-2015年/12,250万
25.企业横向项目,2011年/01月-2012年/12,45.9万
参与项目:
1.作为项目核心骨干参与了国家重点基础研究发展计划 (973 计划)
2.作为项目核心骨干参与了重点研发计划和国家科技重大专项项目
代表论著:
(1) DH. Liu, CL. Wang*, XH. Zhang, LJ. Shen, SH. Liu, K. Li, BW. Zhou, Implications for the contribution of Pacific plate subduction to fluorite mineralization in Southeast China: evidence from Nanzhou large fluorite deposit, Fujian Province, Ore Geology Reviews (2023), doi: https://doi.org/10.1016/j.oregeorev.2023.105385.
(2) XiaocanYu, Chunlian Wang*, Hua Huang, Jiuyi Wang, Kai Yan. 2023. Lithium and brine geochemistry in the Qianjiang Formation of the Jianghan Basin, central China. Scientifc Reports, 13:4445, https://doi.org/10.1038/s41598-023-31421-1.
(3) YU Xiaocan, WANG Chunlian*, LIU Chenglin, WANG Jiuyi1 and SHEN Lijian.2022. Geochronology, Geochemistry, Fluid Inclusion and C, O Isotope Compositions of Calcite Veins in the Paleogene of the Jiangling Basin, South China: Implications for Fluid Evolution and Brine Potash Mineralization. Acta Geologica Sinica (English Edition) 2022,https://doi.org/10.1111/1755-6724.15016 .
(4) Wang, C.; Yan, K.; Yu, X.; Wang, J.; Liu, D.; Shen, L.; Li, R.; You, C. 2022. 40Ar/39Ar Geochronology, Geochemistry and Petrogenesis of the Volcanic Rocks in the Jiangling Basin, China. Minerals, 12, 1099. https://doi.org/10.3390/min12091099.
(5) Kai Yan, Chunlian Wang*, Chenglin Liu, Steffen Mischke, Jiuyi Wang, Xiaocan Yu. 2022. Reconstruction of early Paleogene landscapes and climate in the Jianghan Basin, central China: Evidence from evaporites and palynology. Palaeogeography, Palaeoclimatology, Palaeoecology
https://doi.org/10.1016/j.palaeo.2022.111095.
(6) Chunlian Wang*, Xiaohua Teng*, Chenglin Liu, Kai Yan, Zeng Luo. 2021. Paleocene-Eocene Thermal Maximum lacustrine sediments in deep drill core SKD1 in the Jianghan Basin: A record of enhanced precipitation in central China. Global and Planetary Change, https: //doi.org /10.1016 /j. gloplacha.2021.103620
(7) Chunlian Wang*, Xiaocan Yu*, Ruiqin Li, Lihong Liu, Kai Yan, Chao You. 2021. Origin of Lithium–Potassium-Rich Brines in the Jianghan Basin, South China: Constraints by Water–Rock Reactions of Mesozoic–Cenozoic Igneous Rocks. Minerals, 11, 1330.
(8) Chunlian Wang, Xiaocan Yu*, Gabriel Bertolini, Chenglin Liu, Jiuyi Wang. 2021, Damp- to dry aeolian systems: Sedimentology, climate forcing, and Aeolian accumulation in the Late Cretaceous Liyou Basin, South China. Sedimentary Geology, 426, 106030.
(9) Chunlian Wang, Lihong Liu*, Kai Yan, Ruiqin Li, Chao You. 2022. Morphological characteristics and growth influencing factors of Paleocene glauberite minerals in Jiangling Depression, China. Carbonates and Evaporites, 37: 24.
(10) Xiaocan Yu, Chunlian Wang*, Gabriel Bertolini, Jiuyi Wang. 2022. Stratigraphy of cyclic aeolian–fluvial interaction within fault-dominated basin: Late Cretaceous Chaling Basin, South China. Sedimentology.
(11) Lihong Liu, Chunlian Wang*, Keke Huang, Zhili Du. 2021. Petrography and origin of dedolomites of the Ordovician Majiagou formation in the southeastern Ordos Basin, China: implications for reservoir quality. Carbonates and Evaporites, 36: 78, https://doi.org/10.1007/ s13146-021-00741-6.
(12) Kai Yan, Chun lian Wang*, Steffen Mischke, Jiu yi Wang, Li jian Shen, Xiao can Yu, Ling yang Meng. 2021. Major and trace element geochemistry of Late Cretaceous clastic rocks in the Jitai Basin, southeast China. Scientific Reports, https://doi.org/10.1038/s41598-021-93125-8.
(13) Xiaocan Yu, Chenglin Liu, Chunlian Wang*, Jiuyi Wang. 2021. Late Cretaceous aeolian desert system within the Mesozoic fold belt of South China: Palaeoclimatic changes and tectonic forcing of East Asian erg development and preservation. Palaeogeography, Palaeoclimatology, Palaeoecology, https://doi.org/10.1016/j.palaeo.2021.110299.
(14) Lihong Liu, Chunlian Wang*, Zhili Du, Jianghua Gong. 2021. Minerals Filling in Anhydrite Dissolution Pores and Their Origins in the Ordovician Majiagou Formation of the Southeastern Ordos Basin, China. Geofluids, https://doi.org/10.1155/2021/5527299.
(15) Wang, Chun-Lian; Liu, Li-Hong; Wang, Jiu-Yi; Yu, Xiao-Can; Yan, Kai. 2021. Micron-Nanometer Evaporite Mineral Compositions in the Jiangling Depression, Jianghan Basin, China, by Means of Scanning Electron Microscopy. Journal of Nanoscience and Nanotechnology, 16(1), 310-325.
(16) Yu Xiaocan, Liu Chenglin, Wang Chunlian∗, Li Fei, Wang Jiuyi. 2020. Eolian deposits of the northern margin of the South China (Jianghan Basin): Reconstruction of the Late Cretaceous East Asian landscape in central China. Marine and Petroleum Geology, 117. doi.org/10.1016/j.marpetgeo. 2020. 104390.
(17) Zhao Hanting, Wang Chunlian∗, Wang Zongqi, Liu Juan. 2020. Reef Evolution Model of Dongsha Uplift in Pearl River Mouth Basin, South China Sea. Journal of Coastal Research, 108: 118-124.
(18) Wang Chun-lian, Liu Cheng-lin, Wang Jiu-yi, Yu Xiao-can, Yan Kai. 2020. Palynology and stratigraphy of the thick evaporate-bearing Shashi Formation in Jiangling Depression, Jianghan Basin of South China, and its paleoclimate change. China Geology, 3(2): 283-291.
(19) Liu Li-hong, Wang Chun-lian*, Zhao Xing-min. 2019. First report of TSR origin minerals filled in anhydrite dissolved pores in southeastern Ordos Basin. China Geology. (2): 245-247
(20) Yu Xiaocan, Liu Chenglin, Wang Chunlian*, Xu Haiming. 2018. Provenance of rift sediments in a composite basin-mountain system: constraints from petrography, whole-rock geochemistry, and detrital zircon U-Pb geochronology of the Paleocene Shashi Formation, southwestern Jianghan Basin, central China[J]. International Journal of Earth Sciences, 107(8), 2741-2766.
(21) Yu Xiaocan, Liu Chenglin, Wang Chunlian∗, Wang Jiuyi, Xu Haiming, Li Hannan. 2018. Sedimentary characteristics and palaeoclimatic significance of glauberite in Paleocene lacustrine deposits of the Jiangling Depression, central China. Geosciences Journal, 22(3): 407-422.
(22) Fahui Xiong, Jingsui Yang, Yildirim Dilek, Chunlian Wang∗. 2017. Nanoscale Diopside and Spinel Exsolution in Olivine from Dunite of the Tethyan Ophiolites, Southwestern Turkey: Implications for the Multi-Stage Process[J]. Journal of Nanoscience and Nanotechnology, 17(9): 6587-6596.
(23) WANG Chunlian, LIU Chenglin, YU Xiaocan, LI Haonan and LIU Jinlei. 2016. The Extremely Hot and Dry Climatic Events and Potash Enrichment in Salt Lakes, ACTA GEOLOGICA SINICA(English Edition). 90(2): 769-770.
(24) Liu Lihong, Ma Yongsheng, Liu Bo, Wang Chunlian*. 2017. Hydrothermal dissolution of Ordovician carbonates rocks and its dissolution mechanism in Tarim basin, China. Carbonates Evaporites, 32(4): 525-537.
(25) Liu Lihong, Wang Chunlian*, Wang Daming, Wang Haida. 2017. New Example of Retrograde Solubility Model for Carbonate. ACTA GEOLOGICA SINICA(English Edition), 91(3): 1145-1146.
(26) YU XiaoCan, WANG Chunlian*, LIU Chenglin, ZHANG Zhaochong, XU Haiming, HUANG Hua, XIE Tengxiao, LI Haonan, LIU Jinlei. 2015. Sedimentary characteristics and depositional model of a Paleocene-Eocene salt lake in the Jiangling Depression, China. Chinese Journal of Oceanology and Limnology, 33(6): 1426-1435.
(27) Lihong Liu, Chunlian Wang*, KeKe Huang, Zhili Du. 2021. Petrography and origin of dedolomites of the Ordovician Majiagou formation in the southeastern Ordos Basin, China: implications for reservoir quality. Carbonates Evaporites 36, 78 (2021). https://doi.org/10.1007/s13146-021-00741-6