个人简介
· 学习经历 2010.09-2015.07,中国科学院广州地球化学研究所,矿物学、岩石学、矿床学,硕博连读 2005.07-2010.09,中南大学,地质资源与地质工程,学士学位 · 工作简历 2021.01-至今,中国海洋大学,副教授 2015.07-2020.12,中国地质调查局武汉地质调查中心,助理研究员/副研究员
研究领域
沉积地球化学、前寒武纪地质学、岩石地球化学、海洋地质
(1)古今海洋铁锰成矿系统和沉积环境:聚焦物质来源、沉积环境和氧化还原机制等关键科学问题,通过系统的地质-地球化学(包括氧化还原敏感元素、稳定同位素、非传统稳定同位素和有机地球化学等)过程综合研究,揭示铁锰(铁建造、富钴结壳和多金属结核)成矿机理及沉积环境。 (2)碳酸盐岩地球化学研究:通过系统的地质-地球化学过程综合研究,示踪古环境演变。 (3)大地构造演化:综合运用同位素年代学、地球化学、岩石学和构造地质学等手段,探讨大地构造演化过程。
近期论文
[1] Dong, R., Hu, J*., Wang, S., Yu, D., Guo, R., Yan, Q.H., Gao, S. and Guo, W., 2024. Mineralogy and geochemistry of the pyrite from the Henghui skarn iron deposit in central North China craton: Insights into cobalt mineralization. Ore Geology Reviews 168, 106053. (通讯作者) [2] Ren, H.Q., Hu, J*., Li, S.Z., Zhou, D., Somerville, I., Wang, L., Liu, Y.J., Suo, Y.H., Yu, S.Y., Sun, G.Z., Wang, X.D., 2024. Early Palaeozoic affinity of Hainan Island to Gondwana: New clues from metamorphic monazite and titanite of the Baoban Complex. Lithos 482–483, 107708. (通讯作者) [3] Hu, J., Jin, W., Tian, Y., Deng, X., Li, S.Z., Kong, L.Y., M. Santosh., Liu, Y.J., Wang, J., Xu, D.L., Peng, N., 2023. Deposition of a newly identified Mesoproterozoic iron formation from the Dabie orogen: Influenced by high-T hydrothermal fluid and redox stratification. Precambrian Research 390: 107043. [4] Hu, J., Wang, M., Wang, H., Li, S.Z., M.Santosh., Zhao, Y.Y., Li, D.Y., Yan, Q.H., Dong, R., Ren, H.Q., 2022. The source and depositional environment of early Silurian iron formation in NW China: Constraints from element and isotope (Fe, C, O) geochemistry. Ore Geology Reviews 2022, 150, 105165. [5] Hu, J., Yang, W.W., Li, S.Z., Zhao, Y.Y., M. Santosh, Zhang, H.J., Zhang, C.H., Tan, J.J., Shao, X., Cai, Y.X., 2022. Trace element and isotope (C, S, Sr, Nd, Fe) geochemistry constraints on the sedimentary environment of the early Neoproterozoic Shilu BIF and associated dolostones, South China. Precambrian Research 372, 106610. [6] Hu, J., Wang, H., Zhang, L.G., 2020. A rare earth element and Nd isotopic investigation into the provenance and deposition of the Dahongliutan banded iron formation and associated carbonates, NW China: Implications on Neoproterozoic seawater compositions. Precambrian Research 342, 105685. [7] Hu, J., Wang, H., Tan, J., 2020. Fe and C isotopes constrain the pathways of hematite and Fe-rich carbonates formation in the Late Neoproterozoic Dahongliutan BIF, NW China. Ore Geology Reviews 121, 103485. [8] Hu, J., Huang, C.Y., Wang, H., 2020. U-Pb zircon geochronology and geochemistry of metavolcanics and associated iron ores of the magnetite-rich BIF deposits in the Western Kunlun orogenic belt: Constraints on the depositional age, origin and tectonic setting. Ore Geology Reviews 126, 103751 [9] Hu, J., Wang, H., Wang, M., 2017. Provenance and tectonic setting of siliciclastic rocks associated with the Neoproterozoic Dahongliutan BIF: Implications for the Precambrian crustal evolution of the Western Kunlun orogenic belt, NW China. Journal of Asian Earth Sciences 147, 95-115. [10] Hu, J., Wang, H., Wang, M., 2017. Geochemistry and origin of the Neoproterozoic Dahongliutan banded iron formation (BIF) in the Western Kunlun orogenic belt, Xinjiang (NW China). Ore Geology Reviews 89, 836-857 [11] Hu, J., Wang, H., Huang, C.Y., Tong, L.X., Mu, S.L., Qiu, Z.W., 2016. Geological characteristics and age of the Dahongliutan Fe-ore deposit in the Western Kunlun orogenic belt, Xinjiang, northwestern China. Journal of Asian Earth Sciences 116, 1-25 [12] Zhao, Y., Wei, W., Santosh, M., Hu, J., Wei, H., Yang, J., Liu, S., Zhang, G., Yang, D., Li, S., 2021. A review of retrieving pristine rare earth element signatures from carbonates. Palaeogeography, Palaeoclimatology, Palaeoecology 110765. [13] Liu, Y.H., Mao, J.W., Miggins, D.P., Qiu, K.F., Hu, J., Wang, L., Xu, D.M., Goldfarb, R.J., 2020. 40Ar/39Ar geochronology constraints on formation of the Tuwaishan orogenic gold deposit, Hainan Island, China. Ore Geology Reviews 120, 103438. [14] Liu, Y.H., Mao, J.W., Qiu, K.F., Hu, J., Wang, L., Xu, D.M., 2022. Extensional Setting of Hainan Island in Mesoproterozoic: Evidence from Granitic Intrusions in the Baoban Group. ACTA GEOLOGICA SINICA(English Edition), https://doi.org/10.1111/1755-6724.14907. [15] Liu, Y.H., Mao, J.W., Hu, J., Wang, L., Xu, D.M., 2023. Genesis and Formation of the Tuwaishan Gold Deposit in Hainan Island, South China: Implications from H-O-S Isotopes. Minerals 13, 1082. [16] 胡 军, 王 核, 黄朝阳. 2016. 新疆甜水海地块种羊场石炭纪火山岩年代学和地球化学:岩石成因和地质意义. 岩石学报, 32 (6): 1699-1714. [17] 胡 军,王 核,慕生禄,王 敏,候学文. 2017. 西昆仑甜水海地块南屏雪山早古生代花岗岩地球化学、 Hf同位素特征及其壳幔岩浆作用. 地质学报, 91 (6): 1192-1207. [18] 胡 军,徐德明,张 鲲,王 磊,陈沐龙,云 平. 2017. 海南省新村钼矿床 LA-ICP-MS锆石 U-Pb和辉钼矿Re-Os年龄及其地质意义. 矿床地质,36 (2): 303-316. [19] 胡军, 王核, 徐德明, 王磊, 周岱, 王祥东. 2019. 西昆仑大红柳滩铁矿床矿物电子探针化学成分和赤铁矿氧同位素特征研究. 地球化学,48 (5): 458-467. [20] 胡军,王核,黄朝阳,慕生禄,韩红卫,魏勇. 2015. EH4连续电导率法在西昆仑大红柳滩赤铁矿床勘查中的应用. 新疆地质,33 (4): 556-561.