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目前正在执行国家重大研究计划“战略性关键金属超常富集成矿动力学”中的一项重点课题“华南前寒武纪基底岩石中稀有金属分布规律和富集机制”的研究。开授课程岩石地球化学与同位素地质 研究生B类课程变质岩岩石学 本科生必修课岩石学进展 博士生课程(合开) 科研项目 部分国家自然科学基金项目:华南前寒武纪基底岩石中稀有金属分布规律和富集机制(重点课题2020-2023)华南西部扬子与华夏两地块分界线和造山作用的新研究(41330208)(重点项目2014-2018) 越南中部崑嵩地块早古生代岩浆活动和变质作用 (41772053) 华南若干地区麻粒岩相捕虏体的地球化学和年代学研究(49773191) 中国东南部新生代玄武岩中巨晶的地球化学及其深部信息(40273018) 南岭地区基底变质岩的特征和前寒武纪地壳演化(40372087) 华夏地块新元古代变质岩的物质组成与前寒武纪地壳演化(40672125) 东华夏地块基底岩石的组成和形成历史(40972127) 华南基底物质与成矿物质循环实验研究2016YFC0600204(科技部)荣誉奖励2017 获国家自然科学奖 二等奖, “华夏地块中生代花岗岩成因与地壳演化研究” (周新民,徐夕生,王汝成,舒良树,于津海)2013 教育部自然科学奖,二等奖,舒良树,于津海,孙岩,姚金龙2008 教育部自然科学奖,一等奖,周新民,陈培荣,汪相,徐夕生,于津海,舒良树,邱检生,刘昌实,沈渭洲,孙涛2004 教育部自然科学奖,一等奖,王德滋,周新民,刘昌实,周金城,沈渭洲,舒良树,汪相,徐夕生,于津海,邱检生研究领域
前寒武纪地壳演化与超大陆循环;华南及周边(东南亚)基底组成与成矿;花岗岩成因与成矿"8. 华南前寒武纪基底岩石中稀有金属分布规律和富集机制(正在执行)7. 越南中部Kontum地块前寒武纪-早古生代地质:首次系统研究了Kontum地块前寒武纪地壳物质的组成和形成时代;揭示了早古生代岩浆活动的成因、地质背景和与华南陆内造山作用的关系、识别出早古生代和早中生代两期高级变质事件,讨论了印支地块与Gondwana关系。6. 华南地块西南部前寒武纪地块组成-限定扬子地块与华夏地块西延界线的位置:确定了华夏与扬子地块西部的界线;确定了越南北部Song Chay地块和Nam Co带与扬子地块的亲缘关系;揭示了越南北部最古老物质的成因。5. 华夏地块前寒武纪地壳的形成和演化:发现了华夏最古老的物质;确定了华南在Rodinia的位置;提出了华夏是由南岭-云开和武夷前寒武纪地块组成;在武夷地块古元古代地体中首先识别出S型和A型两种花岗岩,首次提出华夏地块东部地块是Columbia超大陆的组成部分,曾与喜马拉雅地块和南韩地块相连位于印度克拉通北侧。4. 南岭地区花岗岩成因与壳幔作用的关系.3.华南新生代玄武岩中深源捕虏体和巨晶的研究。建立了雷州半岛的古地温梯度;发现女山存在含石榴子石麻粒岩捕虏体,在地球化学和形成时代上也与华北地块相似,而不同于华南地块的麻粒岩捕虏体,据此限定了华北和华南地块的深部界线;在雷州半岛发现了由强烈演化的基性岩浆结晶的各种巨晶;确定了雷州地区岩石圈地幔的形成过程。2. 山西吕梁地区前寒武纪地质研究:确定吕梁群为早元古代形成;发现其上部地层为裂谷环境形成的双峰式火山岩;发现早元古代的A型流纹岩-花岗岩;明确发生于1.8Ga的变质作用为典型中压相系变质产物,并对变质带进行重新划分;确定了古元古代同碰撞到后碰撞花岗岩的形成系列。1. 苏鲁带- a)胶东昆嵛山花岗岩的成因,b) 苏北高压-超高压带关系的研究."近期论文
王方芊,于津海*,DinhLuyen Nguyen, 蒋威. 越南中部Kontum地块前寒武纪地壳组成和构造演化. 高校地质学报,2020, 26(2): 161-174Xueyao Zhou, Jin-Hai Yu*, Tao Sun, Xiaolei Wang, MyDung Tran, Dinh Luyen Nguyen. Does Neoproterozoic Nam Co Formation in Northwest Vietnam belong to South China or Indochina? Precambrian Research, 2020, 337, 105556Zhu GL, Yu JH*, Zhou XY, Wang XL, Wang YD. The western boundary between the Yangtze and Cathaysia blocks, new constraints from the Pingbian Group sediments, southwest South China Block, Precambrian Research, 2019, 331, 105350高秦,于津海*,朱光磊. 地幔组成差异对扬子地块和华夏地块西延边界的限定—来自幔源岩脉地球化学证据。地球化学,2019,48(1): 9-29朱光磊,于津海*,沈林伟,周雪瑶. 滇东南震旦-寒武纪沉积岩的碎屑锆石组成和对扬子-华夏界线的限制. 高校地质学报,2018, 24(5): 658-670Linwei Shen, Jin-Hai Yu*, S.Y. O’Reilly, W.L. Griffin. Tectonic switching of Southeast China in the late Paleozoic. JGR 2018, 123(10): 8508-8526 doi:10.1029/2018JB015520Linwei Shen, Jin-Hai Yu*, S.Y. O’Reilly, W.L. Griffin, and Xueyao Zhou. Subduction-related middle Permian to early Triassic magmatism in central Hainan Island, South China. Lithos, 2018, 318-319: 158-175Jinhai Yu, Chunhui Zhang, S.Y. O’Reilly, W.L. Griffin, Hongfei Ling, Tao Sun, Xueyao Zhou. Basement components of the Xiangshan-Yuhuashan area, South China: Defining the boundary between the Yangtze and Cathaysia blocks. Precambrian Research, 2018, 309: 102-122Xueyao Zhou, Jin-Hai Yu*, S.Y. O’Reilly, WL. Griffin, Tao Sun Xiaolei Wang, MyDung Tran, DinhLuyen Nguyen. Component variation in the late Neoproterozoic to Cambrian sedimentary rocks of SW China – NE Vietnam, and its tectonic significance. Precambrian Research, 2018, 308: 92-110Xueyao Zhou, Jin-Hai Yu*, S.Y. O’Reilly, WL. Griffin, Xiaolei Wang, Tao Sun. Sources of the Nanwenhe-Song Chay granitic complex (SW China - NE Vietnam) and its tectonic significance. Lithos, 2017, 290-291: 76-93Jing-Qiang Wang, Liang-Shu Shu*, Jin-Hai Yu. 2016. From the Neoproterozoic mafic rock to the Silurian high-grade metamorphic rock: evidence from zircon U-Pb geochronological, bulk-rock geochemical and mineral EPMA studies of Longyou garnet amphibolite in SE China. J. Asian Earth Sci, 2017, 141: 7-23Linwei Shen, Jin-Hai Yu*, S.Y. O’Reilly, W.L. Griffin, Qin Wang. Widespread Paleoproterozoic basement in the eastern Cathaysia Block: evidence from metasedimentary rocks of the Pingtan-Dongshan Metamorphic Belt, South China Block. Precambrian Research, 2016, 285: 91-108于津海舒良树. 龙游石榴角闪岩是退变榴辉岩吗? 科学通报,2016, 61: 556-560王静强, 舒良树, 于津海. 浙江龙游石榴角闪岩的岩石学特征与构造意义. 科学通报, 2016, 61: 125-134Chunhui Zhang, Jin-Hai Yu*, S.Y. O’Reilly, W.L. Griffin, Qian Jiahui, Qian Liu, Fasheng Lou, Xueyao Zhou, Linwei Shen. Granulite-facies xenoliths from the Yuhuashan complex, central Jiangxi, South China: constraints on Late Paleozoic orogeny and middle-lower crust components. J Metamorphic Geology, 2016, 34: 45-61周雪瑶,于津海*,王丽娟,沈林伟,张春晖. 2015. 粤西云开地区基底变质岩的组成和形成. 岩石学报,31:855-882王丽娟, 王汝成, 于津海, 杨颍鹤, 黄建平, 张少琴. 2014. 宁芜盆地火山-侵入岩的时代, 地球化学特征及其地质意义. 地质学报,88(7): 1247-1272王丽娟, 黄建平, 于津海, GRIFFIN.W.L, 王汝成, 张少琴, 杨颍鹤. 2014. 长江中下游溧水盆地中基性次火山岩-侵入岩的锆石U-Pb定年和Lu-Hf同位素. 科学通报, 59(14): 1305-1317时毓, 于津海裴小利刘希军朱昱桦. 秦岭造山带中秦岭杂岩的早古生代幔源岩浆作用. 桂林理工大学学报, 2014, 34: 207-217时毓于津海杨启军刘希军冯佐海朱昱桦. 小秦岭地区太华群锆石U-Pb年龄及华北克拉通南缘地壳演化. 地球科学与环境学报, 2014, 36: 218-229于津海, 楼法生, 王丽娟, 沈林伟, 周雪瑶, 张春晖, 黄志忠. 2014, 赣东北弋阳早古生代麻粒岩的发现及其地质意义. 科学通报, 59(35): 3508-3516Liu Qian, Yu Jin-Hai*, O’Reilly S. Y., Zhou Mei-Fu, Griffin W.L., Wang Lijuan, Cui Xiang. 2014. Origin and geological significance of Paleoproterozoic granites in the northeastern Cathaysia Block, South China.Precambrian Research, 248: 72-95Shi Yu, Yu Jin-Hai*, Santosh M. 2013. Tectonic evolution of the Qinling orogenic belt, Central China: New evidence from geochemical, zircon U–Pb geochronology and Hf isotopes. Precambrian Research, 231: 19-60王孝磊, 于津海, 舒徐洁, 唐成虎,邢光福. 赣中周潭群副变质岩碎屑锆石U-Pb年代学. 岩石学报, 2013, 29(3): 801-811.王鹏鸣,于津海,孙涛,时毓,陈培荣,赵葵东,陈卫峰, 刘潜. 2013. 湘桂震旦-寒武纪沉积岩组成的变化-对华南构造演化的指示. 中国科学,43, 11: 1893-1906.Lijuan Wang, W.L. Griffin, Jin-Hai Yu, S.Y. O’Reilly, 2013. U-Pb and Lu-Hf isotopes of detrital zircon from Neoproterozoic sedimentary rocks in the northern Yangtze Block: Implications for Precambrian crustal evolution. Gondwana Research. 23: 1261-1272.YU JinHai, LIU Qian, HU XiuMian, WANG Qin & O’REILLY Suzanne Y. 2013, Late Paleozoic magmatism in South China: Oceanic subduction or intracontinental orogeny? Chinese Science Bulletin, 58(7): 788-795 doi:10.1007/s11434-012- 5376-8.王鹏鸣,于津海*,孙涛,凌洪飞,陈培荣,赵葵东,陈卫峰,刘潜. 2012. 湘东新元古代沉积岩的地球化学和碎屑锆石年代学特征及其构造意义. 岩石学报,28(12):3841-3857Lijuan Wang, Jin-Hai Yu, W.L. Griffin, S.Y. O’Reilly, 2012.Early crustal evolution in the western Yangtze Block: Evidence from U-Pb and Lu-Hf isotopes on detrital zircons from sedimentary rocks. Precambrian Research, 222-223: 368-385Yu Jin-Hai, Suzanne Y. O’Reilly, Zhou Mei-Fu, W.L. Griffin, Wang Lijuan. 2012, U-Pb geochronology and Hf-Nd isotopic data from the Badu Complex, Southeastern China: Implications for the Precambrian crustal evolution and paleogeography of the Cathaysia Block. Precambrian Research, 222-223: 424-449Hu Xiumian, Huang Zhicheng, Wang Jiangang, Yu Jinhai, Xu Keding, Luba Jansa, Hu Wenxuan. Geology of the Fuding inlier in southeastern China: Implication for late Paleozoic Cathaysian paleogeography. Gondwana Research, 2012, 22: 507-518Liu Qian, Yu Jin-Hai*, Wang Qin, Su Bin, Xu Hai, Cui Xiang. Ages and geochemistry of granites in the Pingtan-Dongshan Metamorphic Belt, Coastal South China: new constraints on late Mesozoic magmatism evolution. Lithos, 2012, 150: 268-286,被引77刘潜于津海苏斌王勤唐红峰 许海 崔翔. 福建锦城187Ma花岗岩的发现—对华南沿海早侏罗世构造演化的制约. 岩石学报,2011,27(12): 3575-3589时毓于津海* 徐夕生唐红峰邱检生陈立辉. 陕西小秦岭地区太华群的锆石U-Pb年龄和Hf同位素组成. 岩石学报,2011,27(10): 3095-3108Shu, L., Faure, M., Yu, J-H., Jahn, B-M., 2011. Geochronological and geochemical features of the Cathaysia block (South China): new evidence for the Neoproterozoic breakup of Rodinia. Precambrian Res. 187, 263-276.Yu Jin-Hai, O’Reilly SY, Wang Lijuan, W.L. Griffin, Zhou MF, Zhang Ming, Shu Liangshu. Components and Episodic growth of Precambrian crust in the Cathaysia Block, South China: evidence from U-Pb ages and Hf isotopes of zircons in Neoproterozoic sediments. Precambrian Research, 2010, 181: 97-114Lijuan Wang, W.L. Griffin, Jin-Hai Yu, S.Y. O’Reilly, Precambrian crustal evolution of the Yangtze Block tracked by detrital zircons from Neoproterozoic sedimentary rocks. Precambrian Research, 2010, 177: 131-144张芳荣, 舒良树, 王德滋, 沈渭洲, 于津海, 谢磊 2010. 江西付坊花岗岩体的年代学、地球化学特征及其成因研究。高校地质学报, 16(02): 161-176李晓春于津海桑丽芹罗莉朱国荣. 西伯利亚克拉通南缘奥里洪地块麻粒相变质作用及构造意义。岩石学报,2009,25(12):3330-3340时毓于津海徐夕生邱检生陈立辉. 秦岭造山带东段秦岭岩群的年代学和地球化学研究. 岩石学报,2009,25(10):2651-2670.Jin-Hai Yu, Lijuan Wang, W.L. Griffin, S.Y. O’Reilly, Ming Zhang, Chunzhong Li and Liangshu Shu. A Paleoproterozoic orogeny recorded in a long-lived cratonic remnant (Wuyishan terrane), eastern Cathaysia Block, China. Precambrian Research, 2009, 174: 347-363Shu Liangshu, Wang Yan, Sha Jingeng, Jiang Shaoyong, Yu Jinhai. Jurassic sedimentary features and tectonic settings of southeast China. Science in China (D), 2009, 52(12): 1969-1978魏震洋,于津海,王丽娟,舒良树. 2009. 南岭地区新元古代变质沉积岩的地球化学特征及构造意义。地球化学, 38(1): 1-19胡建,邱检生,徐夕生,于津海, 李真. 山东岚山I型与A型复合片麻状变质花岗岩:年代学、地球化学及其构造指示意义. 岩石学报, 2009, 25(2):Shu L.S., Zhou X.M., Deng P., Wang B., Jiang S.Y., Yu J.H., Zhao X.X. 2009. Mesozoic tectonic evolution of the southeast china block: New insights from basin analysis. Journal of Asian Earth Sciences, 34: 376-391Yu Jinhai, Wang Lijuan, O’Reilly S.Y, Shu Liangshu, Sun Tao. 2009. Paleoproterozoic basement beneath the southern Jiangxi Province: Evidence from U-Pb ages and Lu-Hf isotopes of zircons in the Doushui lamprophyre. Chinese Science Bulletin, 54:1555-1563.舒良树,于津海,贾东,王博,沈渭洲,张岳桥. 2008. 华南东段早古生代造山带研究。地质通报,27(10): 1581-1593Shu Liangshu, Deng Ping, Yu Jinhai, Wang Yanbin, Jiang Shaoyong. The age and tectonic environment of the rhyolitic rocks on the western side of Wuyi Mountain, South China. Science in China (D ser), 51(8): 1053-1063WANG Lijuan, YU Jinhai, O’Reilly S.Y., Griffin W. L., WEI Zhenyang, JIANG Shaoyong, SUN Tao. Grenvillian orogeny in the Southern Cathaysia Block: Constraints from U-Pb ages and Lu-Hf isotopes in zircon from metamorphic basement. Chin. Sci. Bull., 2008, 53(19): 3037-3050Yu Jin-Hai, O’Reilly S.Y., Wang Lijuan, Griffin W. L., Zhang Ming, Wang Rucheng, Jiang Shaoyong. Where was South China in the Rodinia supercontinent? Evidence from U-Pb ages and Hf isotopes of detrital zircons. Precam. Res. 2008, 164(1-2): 1-15于津海,王丽娟,魏震洋,孙涛,舒良树.华夏地块显生宙的变质作用期次和特征. 高校地质学报, 2007, 13(4): 474-483于津海,王丽娟,王孝磊,邱检生,赵蕾. 赣东南富城杂岩体的地球化学和年代学研究. 岩石学报,2007, 23(6): 1441-1456王丽娟, 于津海, 徐夕生, 谢磊, 邱检生, 孙涛.闽西南古田-小陶花岗质杂岩体的形成时代和成因. 岩石学报,2007, 23(6): 1470-1484Jin-Hai Yu, Suzanne Y. O’Reilly, Lei Zhao, W. L. Griffin, Ming Zhang, Xinmin Zhou, Shaoyong Jiang, Lijuan Wang and Rucheng Wang, Origin and evolution of topaz-bearing granites from the Nanling Range, South China: a geochemical and Sr-Nd-Hf isotopic study. Mineralogy and Petrology 2007, 90: 271-300Yu Jin-Hai, O’Reilly SY, Wang Li-Juan, Griffin W L, Jiang Shaoyong, Wang Rucheng & Xu Xisheng. 2007. Finding of ancient materials in Cathaysia and implication for the formation of Precambrian crust. Chin. Sci. Bull., 52(1): 13-22赵蕾,于津海,王丽娟, 谢磊, 孙涛, 邱检生. 红山含黄玉花岗岩的形成时代及其成矿能力分析. 矿床地质, 2006, 25(6): 672-682于津海, 王丽娟, 魏震洋. 锆石的成分、U-Pb定年和Hf同位素结合揭示红山花岗岩的成因. 陈骏主编:地质与地球化学研究进展-庆贺王德滋院士致力于地质科学六十周年暨八十华诞,南京大学出版社,2006,157-165于津海,魏震洋,王丽娟,舒良树,孙涛. 华夏地块-一个由古老物质组成的年轻陆块. 高校地质学报, 2006, 12(4): 440-447于津海王丽娟周新民蒋少涌王汝成徐夕生邱检生. 粤东北基底变质岩的组成和形成时代. 地球科学,2006,31(1): 38-48Yu Jin-Hai, O’Reilly S Y., Zhang Ming, Griffin W.L. and Xu Xisheng. Roles of melting and metasomatism in the formation of the lithospheric mantle beneath Leizhou Peninsula, South China. Journal of Petrology, 2006, 47: 355-383于津海,周新民,赵蕾,蒋少涌,王丽娟,凌洪飞. 壳幔作用导致武平花岗岩形成-Sr-Nd-Hf-U-Pb同位素证据. 岩石学报,2005,21: 651-664Yu Jin-Hai, Zhou XM, O’Reilly SY, Zhao Lei, Griffin WL, Wang RC. Formation history and protolith characteristics of granulite facies metamorphic rock in Central Cathaysia deduced from U-Pb and Lu-Hf isotopic studies of single zircon grains. Chin. Sci. Bull.,2005, 50(18): 2080-2089Yu Jinhai, YS O’Reilly, Xu Xisheng and Wang Rucheng. Element diffusion ability in metasomatic agents and its effect on chemical characteristics of metasomatized peridotites. Science in China (Series D), 2006, 49(9): 926-937于津海, 王德滋, 王赐银, 王丽娟. 山西吕梁山中段元古代花岗质岩浆活动和变质作用. 高校地质学报, 2004, 10: 500-513于津海,赵蕾,周旋. 闽东南含石榴子石I型花岗岩的矿物学特征及成因. 高校地质学报, 2004, 10: 364-377Shu Liangshu, Yu Jinhai, Charvet J, Laurent-Charvet S, Sang Haiqing, Zhang Rengu. Geological, geochronological and geochemical features of granulites in the Eastern Tianshan, NW China. J. Asian Earth Sci., 2004, 24: 25-41赵蕾,于津海,谢蕾. 闽东南红山含黄玉浅色花岗岩的地球化学特征和成因。地球化学,2004,33: 372-386.Yu Jinhai, Xu, X., O'Reilly, S. Y., Griffin, W. L. and Zhang, M. Granulite xenoliths from Cenozoic Basalts in SE China provide geochemical fingerprints to distinguish lower crust terranes from the North and South China tectonic blocks - Reply. 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