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  • 王连训 ( 教授 )

    的个人主页 http://grzy.cug.edu.cn/wanglianxun

  •   教授   博士生导师   硕士生导师
  • 曾获荣誉 : 湖北省优秀学士学位论文指导老师;
    中国地质大学(武汉)优秀硕士学位论文指导老师;
    中国地质大学(武汉)优秀实习指导老师;
    中国地质大学(武汉)优秀班主任;
    中国地质调查局优秀图幅奖;
    第三届全国大学青年教师地质课程教学比赛二等奖;
    第十二届中国地质大学(武汉)青年教师教学比赛特等奖
个人简介


教育经历

【3】2010.09-2014.09 德国图宾根大学地质系,岩石学,博士学位

【2】2006.09-2010.06,中国地质大学(武汉)地球科学学院,矿物学、岩石学、矿床学,硕博阶段,硕士学位

【1】2002.09-2006.06,中国地质大学(武汉)地球科学学院,地质学(理科基地班),学士学位


工作经历

【5】2022.12-至今,中国地质大学(武汉)地球科学学院地球物质科学系,教授

【4】2018.11-2019.11,德国汉诺威大学矿物系,访问学者

【3】2018.10-至今,中国地质大学(武汉)地球科学学院地球物质科学系,博导

【2】2017.12-2022.12,中国地质大学(武汉)地球科学学院地球物质科学系,副教授

【1】2014.10-2017.12, 中国地质大学(武汉)地球科学学院岩矿系,讲师,硕导


研究兴趣:

【1】岩浆岩中的卤族元素(F-Cl-Br-I)丰度、分布及应用

【2】碱性-过碱性岩浆岩、火成碳酸岩及稀有稀土金属成矿作用

【3】高分异花岗岩、花岗伟晶岩及稀有金属成矿作用


招收研究生方向:

矿物学、岩石学、矿床学,地球化学


联系方式:

邮箱地址:lianxunwang@cug.edu.cn


讲授课程:

本科生课程

《晶体光学及光性矿物学》、《矿物岩石》、《岩石学》、《火成岩成因》、《地球系统科学导论》

研究生课程

《化学岩石学》、《现代地球科学前沿及科学方法论》、《高级岩石学》

野外教学实习

北戴河野外地质教学实习、周口店野外地质教学实习、秭归野外地质教学实习


学生培养:

博士研究生

【9】马丹贞(在读)【8】祝颖雪(在读)【7】杨丽莎(在读)【6】Vandi D. Kamaunji(尼日利亚籍)(在读)【5】Ismail Shah (巴基斯坦籍) (在读)【4】刘高峰(在读)【3】李乐广(在读)【2】Hussein A.A. Mohammed (苏丹籍)(在读)【1】朱煜翔(在读)

硕士研究生

【19】陈济海(在读)【18】王文浩(在读)【17】谈江齐(在读)【16】林斌(在读)【15】付政豪(2023届)【15】巨凯亮(2023届)【14】杨丽莎(转博)【13】王青(2022届)【12】朱志鹏(2022届)【11】Adam I.A. Abdalla (苏丹籍)(2023届)【10】Victor I. Vincent (尼日利亚籍)(2022届)【9】徐晓波(2021届)【8】李乐广(2021届)【7】Vandi D. Kamaunji(尼日利亚籍)(2021届)【6】王珂(2020届)【5】何佐祥(2019届)【4】刘敬(2019届)【3】朱煜翔(2019届)【2】郭富涛(2018届)【1】熊启慧(2017届)

本科生产实习及毕业论文

【21】黄龙辉(2022届)【20】谈江齐(2022届)【19】闫育荞(2021届)【18】朱红钢(2020届)【17】张晨(2020届)【16】严锐(2020届)【15】夏志诚(2020届)【14】巨凯亮(2020届)【13】付政豪(2020届)【12】樊尚杰(2019届)【11】付学威(2018届)【10】王雅迪(2018届)【9】高利远(2018届)【8】李乐广(2018届)【7】徐苒(2017届)【6】周霞霞(2017届)【5】陈铭(2017届)【4】王富康(2017届)【3】肖梦寒(2016届)【2】郝峰华(2016届)【1】朱煜翔(2016届)

指导学生获奖

【11】2023年,博士生朱煜翔获研究生国家奖学金

【10】2022年,硕士留学生Victor I. Vincent 获中国地质大学(武汉)优秀硕士学位论文、优秀毕业生

【9】2021年,硕士留学生Vandi D. Kamaunji获中国地质大学(武汉)优秀硕士学位论文、优秀毕业生

【8】2020年,博士生朱煜翔获2020年度中国地球科学联合学术年会学术报告优秀论文奖

【7】2019年,硕士生朱煜翔获中国地质大学(武汉)优秀硕士学位论文(推荐省优)

【6】2018年,硕士生李乐广获第五届青年地学论坛“青年研究生”优秀报告奖

【5】2018年,硕士生朱煜翔获研究生国家奖学金

【4】2018年,本科生李乐广获中国地质大学(武汉)优秀学士学位论文(推荐省优)

【3】2018年,留学生Hafizullah Ahmed获得美国经济地质协会(SEG)Hugh E. Mckinstry Fund 学生科研基金资助

【2】2017年,硕士生朱煜翔获2017年度中国地球科学联合学术年会学术报告优秀论文奖

【1】2017年,本科生朱煜翔获湖北省优秀学士学位论文

此外,指导的多名学生(熊启慧、朱煜翔、王珂、李乐广、徐晓波等人)获中国地质大学(武汉)科技论文报告会各类奖项。


科研项目:

【15】中海油横向课题,岩浆岩、沉积岩岩性识别方法研究,2023-2025,负责

【14】湖北省自然科学基金面上项目,卤素对铌-稀土成矿过程的影响:以鄂西北庙娅碳酸岩型矿床为例,2022-2024,负责

【13】中国地质调查局花岗岩成岩成矿中心开放基金重点项目,尼日利亚日日瓦碱性花岗岩成因及Nb-Ta成矿作用研究,2021-2022,负责

【12】国家自然科学基金面上项目,花岗岩中的卤素丰度与分布:三类典型花岗岩对比研究,2021-2024,负责

【11】湖北省自然资源厅科技项目,鄂东南通城地区花岗伟晶岩成因及稀有金属成矿作用研究, 2020-2021,负责

【10】中国地质调查局协作项目,长江经济带中段红安-咸宁地区区域地质调查-湖北红安高桥地区1:2.5万专项地质测量, 2019-2020,负责

【9】中央高校科研项目“地学长江计划”核心项目,长江中游-中生代构造岩浆演化及若干战略矿产资源形成机理,2017-2020,参与

【8】一带一路教科文卫引智项目,秦巴地区碱性岩浆岩及火成碳酸岩中的卤素体系研究,2017-2018,负责

【7】国家自然科学基金重点项目,沉积碳酸盐岩地幔再循环过程中的物理化学变化及其地球化学响应,2016-2020, 参与

【6】中国地质调查局协作项目,武当地块及邻区火成碳酸岩、碱性岩及稀土矿产成因关系研究, 2016-2018,参与

【5】国家自然科学基金青年项目,北大巴山紫阳-岚皋地区古生代碱性火山-侵入杂岩中的卤素体系(F-Cl-Br-I)研究, 2016-2018, 负责

【4】中国地质大学(武汉)实验技术研究项目,高温热水解技术分离岩矿中的卤族元素:装置及流程研发,2015-2017,负责 

【3】中国地质调查局协作项目,东昆仑东段巴隆地区花岗岩类1:5万填图试点,2015-2018,负责

【2】横向课题,安徽九华山世界地质公园申报,2014-2017,参与

【1】德国自然科学基金,F-Cl-Br systematics in continental plutonic rocks from different geological settings, 2011-2014, 参与


英文学术论文 (*为通讯作者,指导学生完成):

【53】Zhu, Y., Wang, L.*, Pan Y., Ma C., She Z. 2024. Remobilization and enrichment of Nb during magmatic and hydrothermal processes: Insights from titantite in Nb-rich dyke swarms of South Qinling, China. Contributions to Mineralogy and Petrology, accepted.

【52】Li, L.G., Fan, Z.Y., Ma, C.Q.,  Wang, L.X.* 2024. Petrogenesis and tectonic implication of the Middle Triassic pegmatite from the Mokeri area, eastern segment of the East Kunlun Orogen (China). Journal of Asian Earth Sciences, 106054.

【51】Cao, L., Wang, L.X.*Zhu, Y.X., Vincent, V.I., Kamaunji, V.D.,  Ahmed, H.A. 2024. Termination of anorogenic alkaline magmatism in Nigerian Younger Granite Province: Insights from Afu A-type granite complex. International Journal of Earth Sciences, (accepted).

【50】Basua, A.A.E., Ma, C., Nguo, K.S., Wang, L.X., Lentz, D.R., .... 2024. Late Ediacaran post-collisional granite in Babouri-Figuil (Northwest Cameroon): Implication for crustal-mantle contributions in an extensional setting. Journal of African Earth Sciences105212.

【49】Basua, A.A.E., Ma, C.Q., Nguo, K.S., Wang, L.X., Mukherjee, S., .... 2024. Structural and microstructural features of Neoproterozoic granites in Figuil: Constraints in ductile shear deformations of the Guider Sorawel shear zone. Arabian Journal of Geosciences, 17(3), 89-109.

【48】Zhu, Y., Wang, L.*, Pan Y., Zhang C., Almeev R.R., She Z., Holtz F. 2024. Pyrochlore composition and Sm-Nd isotope sigature as indicators of magmatic-hydrothermal processes: The case of Ririwai complex, north-central Nigeria. Chemical Geology, 122021.

【47】Zheng, Y., Wang, Z., He, T., Burgess, R., Zhu, Z., Wang, L.X., Wang, X., Hu, Z., Liu, Y. 2023. Heavy halogen compositions of lamprophyres derived from metasomatized lithospheric mantle beneath eastern North China Craton. American Mineralogist, 108(10), 1825-1839.

【46】Zhu, Y.X., Wang, L.X.*, Khattak, N.U., Ma, C.Q., Luo, G.M., Ulrich, T. 2023. Petrogenesis of the Late Cretaceous Sillai Patti carbonatite, NW Pakistan: Insights from C-O-Sr-Nd isotopes and titanite U-Pb dating. Lithos, 107087.

【45】Kamaunji, V.D., Wang, L.X.*, Girei, M.B., Zhu, Y.X., Li, L.G., Vincent, V.I., Amuda, A.K. 2023. Petrogenesis and tectonic implication of the alkaline ferroan granites from Ropp complex, northcentral Nigeria: Clues from zircon chemistry, U-Pb dating and Lu-Hf isotope. Geological Journal, 58(1), 21-50.

【44】Khattaka, N.U., Zhu, Y.X., Ma, C.Q., Wang, L.X., Wang, W. 2022. Recognition of the emplacement time of the Sillai Patti carbonatite complex, Malakand Division, Northwest Pakistan: Constraints from 206Pb/238U dating of zircon. Pakistan Journal of Geology.

【43】Zhu, Y.X., Wang, L.X.*, Ma, C.Q., Wiedenbeck, M., She, Z.B. 2022. Titanite as a tracer for Nb mineralization during magmatic and hydrothermal processes: The case of Fangcheng alkaline complex, Central China. Chemical Geology . DOI: 10.1016/j.chemgeo.2022.121028.

【42】Wu, G., Zhu, J.M., Wang, X., Johnson, T.M.,  He, Y., Huang, F., Wang, L.X., Lai, S.C. 2022. Nickel isotopic composition of the upper continental crust. Geochimica et Cosmochimica Acta. DOI: 10.1016/j.gca.2022.06.019.

【41】Vincent, V.I., Wang, L.X.*, Kamaunji, V.D., Zhu, Y.X., Cao, L. 2022. New geochronological and geochemical constraints on the Banke, Dutsen Wai, Guraka and Zuku alkaline granite complexes from the northcentral Nigerian younger granite province. International Geology Reviewhttps://doi.org/10.1080/00206814.2022.2051083

【40】Basua, A.A.E., Ma, C.Q., Nguo, K.S., Wang, L.X., Lentz, D.R., .... 2022. Petrogenesis and tectonic setting of A-type granites in the Babouri-Figuil Magmatic Complex (North Cameroon): Constraints from whole rock geochemistry, zircon Usingle bondPb geochronology and Sr-Nd-Hf isotopes. Lithos, 414, https://doi.org/10.1016/j.lithos.2022.106618

【39】Vincent, V.I., Wang, L.X.*, Zhu, Y.X., Kamaunji, V.D., Ahmed, H.A., Ntekim, E.E., Cao, L. 2022. Onset of the anorogenic alkaline magmatism in the Nigerian Younger Granite province: Constraints from the Daura and Dutse complexes. Lithos, 410, https://doi.org/10.1016/j.lithos.2021.106561

【38】Zhu, Y.X., Wang, L.X.*, Ma, C.Q., He, Z.X., Deng, X., Tian, Y. 2022. Petrogenesis and tectonic implication of the Late Triassic A1-type alkaline volcanics from the Xiangride area, eastern segment of the East Kunlun Orogen (China). Lithos, 412, https://doi.org/10.1016/j.lithos.2022.106595

【37】Gunay, K., Oyan, V., Donmez, C., Çavdar, B., .... Wang, L.X., Ma, C.Q. 2021. Au-rich bimodal-mafic type volcanogenic massive sulphide deposit associated with Jurassic arc volcanism from the Central Pontide (Kastamonu, Turkey). Ore Geology Reviews, 141, https://doi.org/10.1016/j.oregeorev.2021.104660

【36】Zhang, S., Chen, M., Zheng, J.P., Sun, M., Wang, L.X. 2021. Phenocryst zonation records magma mixing in generation of the Neoproterozoic adakitic daite porphyries from the Kongling area, Yangtze Craton. Precambrian Research, 366, https://doi.org/10.1016/j.precamres.2021.106421

【35】Wang, K., Wang, L.X.*, Ma, C.Q., Zhu, Y.X., She, Z.B., Deng, X., Chen, Q. 2021. Mineralogy and geochemistry of the Zhuxi Nb-rich trachytic rocks, South Qinling (China): Insights into the niobium mineralization during magmatic-hydrothermal processes. Ore Geology Reviewshttps://doi.org/10.1016/j.oregeorev.2021.104346.

【34】Ahmed, H.A., Wang, L.X.*, Ma, C.Q., Abdallsamed, M.I.M., Girei, M.B., Zhu, Y.X., Vincent, V.I., Kamaunji, D.V., Cao, L. 2021. Contrasting Neoproterozic and Mesozoic granitoids in Zaranda complex (Nigeria): insights into the distinct origins, tectonic settings and mineralization potential. International Journal of Earth Sciences, DOI: 10.1007/s00531-021-02021-z.

【33】Kamaunji, V.D., Wang, L.X.*, Ma, C.Q., Liu, J., Zhu, Y.X. 2021. Petrogenesis and tectonic implication of the Permian-Triassic syenogranites from the eastern segment of the East Kunlun Orogen, China. Lithoshttps://doi.org/10.1016/j.lithos.2020.105932

【32】Zhu, Y.X., Wang, L.X.*, Ma, C.Q., Wiedenbeck, M., Wang, W. 2020. The Neoproterozoic alkaline rocks from Fangcheng area, East Qinling (China) and their implications for regional Nb mineralization and tectonic evolution. Precambrian Research, 350, https://doi.org/10.1016/j.precamres.2020.105852.

【31】Li X., Zhang, C., Wang, L., Behrens, H., Holtz, F. 2020. Experiments on the saturation of fluorite in magmatic systems: implications for maximum F concentration and fluorine cation bonding in silicate belt. Journal of Earth Science, 31(3), 456-467.

【30】Zhu Y.X., Wang, L.X.*, Xiong, Q.H., Ma, C.Q., Zhang, X., Ahmed, H.A. 2020. Origin and evolution of ultrapotassic intermediate magma: The Songxian syenite massif, Central China. Lithos, 366-367, https://doi.org/10.1016/j.lithos.2020.105554.

【29】Kamaunji, V.D., Wang, L.X.*, Ahmed, H.A., Zhu, Y.X., Vincent, V.I., Girei, M.B. 2020. Coexisting A1 and A2 granites of Kudaru complex: implications for genetic and tectonic diversity of A-type granite in the Younger Granite Province, north-central Nigeria. International Journal of Earth Sciences, 109(2), 511-535.

【28】Salih, M.A., Abdallsamed, M.I.M., Ma, C.Q., Mustafa, H.A., Ahmed, H.A., Wang, L.X.* 2020. Genesis of alkaline-peralkaline A-type granite from El Dair complex, SW Arabian-Nubian Shield, Sudan: geochronology, geochemistry and isotopic constraints. Arabian Journal of Geosciences, 13(42), https://doi.org/10.1007/s12517-019-5034-4.

【27】Zhu, J., Wang, L., Ma, J., Zhou, Z., Deng, X., Hu, J. 2019. Early Cretaceous granitic dykes in the western Dabie Orogen, China: Geochronology, petrogenesis and tectonic implications. Geological Journal, 54(6), 3574-3592.

【26】Fan, S., Zhang, Z., Ma, C., Xie, Q., Wang, L., Li, Y., Zhang, Y. 2019. Coronas around olivine in the Miaowan olivine norite, Yangtze Craton, South China. Journal of Earth Science, 30(5), 924-937.

【25】Zhu, J., Wu, B., Wang, L., Peng, S., Zhou, H. 2019. Neoproterozoic bimodal volcanic rocks and granites in the western Dabie area, northern margin of Yangtze block, China: implications for extension during the break-up of Rodinia. International Geology Review, 61(11), 1370-1390. 

【24】Li, X., Zhang, C., Almeev, R.R., Zhang, X.C., Zhao, X.F., Wang, L.X., Koepke, J., Holtz, F. 2019. Electron probe microanalysis of Fe2+/ΣFe ratios in calcic and sodic-calcic amphibole and biotite using the flank method. Chemical Geology, 509, 152-162.

【23】Wang, L.X., Ma, C.Q., Zhang, C., Zhu, Y.X., Marks, A.W.M. 2018. Halogen geochemistry of the I- and A-type granites from Jiuhuashan region (South China): Insights into the elevated F in A-type granites. Chemical Geology, 478, 164-182.

【22】Ahmed, H.A., Ma, C., Wang, L., Palinkas, L.A.. Girei, M.B., Zhu, Y., Habib, M. 2018. Petrogenesis and tectonic implications of peralkaline A-type granites and syenites from the Suizhou-Zaoyang region, Central China. Journal of Earth Science, 29(5), 1181-1202.

【21】Zhu, Y., Wang, L.*, Ma, C., Zhang, C. 2018. A flower-like glomerophyric diorite porphyry from Central China: Constraints on the unusual texture. Lithos, 318, 1-13.

【20】Zhu, Y., Wang, L.*, Ma, C., Zhang, C., Wang, K. 2018. Geochronology, geochemistry and Sr-Nd-Pb isotopic study of the Wulong flower-like glomerophyric diorite porphyry (Central China): implications for tectonic evolution of Eastern Qinling. Journal of Earth Science, 29(5), 1203-1218.

【19】Wang C., Zhao X., Huang Z., Xing G., Wang L. 2018. Early Cretaceous extensional-tectonism-related petrology of the Gan-Hang belt:Lingshan A-type granite at ca. 130Ma. Geological Journal,53(6), 2487-2506.

【18】Zhou, Z.M., Ma, C.Q.*, Wang, L.X.* Chen, S.G., Xie, C.F., Li, Y., Liu, W. 2018. A source-depleted Early Jurassic granitic pluton from South China: Implication to the Mesozoic juvenile accretion of the South China crust. Lithos, 300, 278-290.

【17】Zhu, Y., Wang, L.*, Ma, C. 2017. An unique glomerophyric diorite porphyry from the southern margin of North China Craton: geochronology, geochemical and quantitative textural analysis constraints. Acta Geologica Sinica-English Edition, 91 (s1), 111-112. 

【16】Zhang, C., Wang, L.X., Marks, M.A.W., France, L., Koepke, J. 2017. Volatiles (CO2, S, F, Cl, Br) in the dike-gabbro transition zone at IODP Hole 1256D: Magmatic imprint versus hydrothermal influence at fast-spreading mid-ocean ridge. Chemical Geology, 459, 43-60.

【15】Zhu, J., Wang, L., Peng, S., Peng, L., Wu, C., Qiu, X. 2017. U-Pb zircon age, geochemical and isotopic characteristics of the Miaoya syenite and carbonatite complex, Central China. Geological Journal, 52 (6), 938-954.

【14】Liu B., Ma, C.Q., Huang, J., Wang,L.X., Zhao, S.Q., Yan, R., Sun, Y., Xiong, F.H. 2017. Petrogenesis and tectonic implications of Upper Triassic appinite dykes in the East Kunlun orogenic belt, northern Tibetan Plateau. Lithos, 284-285, 766-778.

【13】Wang L., Ma, C., Musa, A.S.M., Abdallsamed, I.M.M. 2017. Petrogenesis and significance of the Jebel Dumbier alkaline-carbonatite complex from north margin of Nuba Mountains, Sudan. Acta Geologica Sinica-English Edition, 91(s1), 94-95.

【12】Wang, L.X., Marks, A.W.M., Wenzel, T., Markl, G. 2016. Halogen-bearing minerals from the Tamazeght complex (Morocco): Constraints on halogen distribution and evolution in alkaline to peralkaline magmatic systems. The Canadian Mineralogist, 54(6), 1347-1368.

【11】Ding, L., Ma, C., Li, J., Wang, L. 2016. Geochronological, geochemical and mineralogical constraints on the petrogenesis of appinites from the Laoniushan complex, eastern Qinling, central China. Geochemistry, 76(4), 579-595.

【10】Zhong, Y., Wang, L., Zhao, J., Liu, L., Ma, C., Zheng, J. 2016. An Ordovician appinite-granite association in Wugongshan domain, South China: Partial melting of an ancient subduction-modified mantle in an intracontinental regime. Lithos, 264, 224-238.

【9】Zhou, Z., Ma, C., Xie, C., Wang, L., Liu, Y., Liu, W. 2016. Highly fractionated granites in Late Mesozoic polycyclic tectono-magmatism-mineralization in South China. Journal of Earth Science, 27(3), 444-460.

【8】Zhang, C., Koepke, J., Wang, L.X., Wolff, P., Wilke, S., Stechern, A., Almeev, R., Holtz, F. 2016. A practical method for accurate measurement of trace level fluorine (F) in Mg- and Fe-bearing mineral and glass using electron microprobe. Geostandards and Geoanalytical Research, 40, 351-363.

【7】Wang, L.X., Ma, C.Q., Lai, Z.X., Marks, M.A.W., Zhang, C., Zhong, Y.F. 2015. Early Jurassic mafic dykes from the Xiazhuang ore district (South China): Implications for tectonic evolution and uranium metallogenesis. Lithos, 239, 71-85.

【6】Wang, L.X., Marks, M.A.W., Keller, J., Markl, G. 2014. Halogen variations in alkaline rocks from the Upper Rhine Graben (SW Germany): insights into F, Cl and Br behavior during magmatic processes.   Chemical Geology, 380, 133-144.

【5】Wang, L.X., Marks, M.A.W., Wenzel, T., Von der Handt, A., Keller, J., Teiber, H., Markl, G. 2014. Apatites from the Kaiserstuhl Volcanic Complex, Germany: new constraints on the relationship between carbonatite and associated silicate rocks. European Journal of Mineralogy, 26, 397-414.

【4】Wang, L.X., Ma, C.Q.*, Zhang, C., Zhang, J., Marks, M.A.W. 2014. Genesis of leucogranite by prolonged fractional crystallization: a case study of the Mufushan complex, South China. Lithos, 206-207, 147-163.

【3】Wang, L. Halogen (F, Cl and Br) systematics in alkaline to peralkaline magmatic rocks and their constituting minerals. 2014. Ph.D. thesis, published by thelibrary of Universität Tübingen, p1-125.

【2】Wang, L., Wenzel, T., von der Handt, A., Marks, M.A.W., Markl, G. 2013. Compositional variation in apatites from carbonatites and associated alkaline silicate rocks: a case study of the Kaiserstuhl complex, Germany. Mineralogical Magzine, 77(5), 2452.

【1】 Zhang, L.J., Ma, C.Q., Wang, L.X., She, Z.B., Wang, S.M. 2011. Discovery of Paleoproterozoic rapakivi granite on the northern margin of the Yangtze block and its geological significance.Chinese Science Bulletin, 56(3), 306-318.


中文学术论文 (*为通讯作者,指导学生完成):

【26】朱志鹏,王连训*朱煜翔,李乐广,马昌前. 2024. 大别造山带汤池早白垩世富碱侵入岩成因及地质意义. 华南地质,(已接收).

【25】刘高峰王连训,罗春林,熊清华,卢先锋,刘永旭. 2024. 赣南遂川晚侏罗世幕式花岗质岩浆活动:年代学、地球化学和Lu-Hf同位素约束. 岩石学报,(已接收).

【24】王珂王连训*,朱煜翔,马昌前,黄宏业. 2024. 湖北庙垭碳酸岩杂岩体中铌赋存状态及富集机制:矿物化学制约. 地球科学,40,doi:10. 3799/ dqkx. 2022. 345.

【23】李乐广,王连训*,朱煜翔,马昌前,佘振兵,曹亮,冷双梁,闫育荞. 2023. 华南幕阜山北缘含稀有金属伟晶岩成矿时代及成矿过程. 地球科学,40,doi:10. 3799/ dqkx. 2022. 141.

【22】徐晓波,王连训*,马昌前,朱煜翔,王珂. 2021. 东昆仑造山带巴隆地区羊粪沟中酸性岩脉成因及其地质意义. 矿物岩石地球化学通报,40,doi:10. 19658/ j. issn. 1007-2802. 2021. 40. 021.

【21】王艳, 马昌前,王连训,刘园园. 2020. 赣西北小九宫-沙店白垩纪花岗岩的岩石成因及构造意义. 地球科学, 45(4), 1115-1135.

【20】王珂,王连训*,马昌前,朱煜翔,高利远. 2020. 东昆仑加鲁河中三叠世含石榴石二云母花岗岩的成因及地质意义. 地球科学, 45(2), 400-418.

【19】骆金诚,齐有强,王连训,陈佑纬,田建吉,石少华. 2019. 粤北下庄铀矿田基性岩脉Ar-Ar定年及其与铀成矿关系新认识. 岩石学报, 35(9), 2660-2678.

【18】李乐广, 王连训*田洋,马昌前,周芳春. 2019. 华南幕阜山花岗伟晶岩的矿物化学特征及指示意义. 地球科学, 44(7),2532-2550.

【17】王艳,马昌前,王连训,刘园园. 2018. 扬子东南缘新元古代花岗岩的锆石U-Pb年代学、地球化学和Sr-Nd-Hf同位素:对地壳生长的约束. 地球科学,43(3),635-654.

【16】张明东,马昌前,王连训,郝峰华,郑少杰,张磊. 2018. 后碰撞阶段的“俯冲型”岩浆岩:来自东昆仑瑙木浑沟晚三叠世闪长玢岩的证据. 地球科学,43(4),1183-1206.

【15】徐剑南,马昌前,尹烁,王连训,顿新海. 2017. 巴基斯坦吉尼奥德矿区新元古代火山岩年代学及地质意义. 地球科学,42(12),2282-2298.

【14】王连训,马昌前,熊富浩,王富康,郭富涛,刘敬. 2017. 浆混花岗岩专题填图方法初探——以东昆仑加鲁河地区为例。地质通报, 36(11),1971-1986.

【13】王涛,童英,郭磊,张建军,苏尚国,焦建刚,王连训. 2017. 侵入岩填图方法体系及专题研究. 地质通报,36(11),2043-2052.

【12】朱江,程昌红,王连训彭三国,彭练红,许珂. 2017. 南秦岭竹山地区早古生代碱性岩浆活动及其相关铌稀土成矿的若干认识. 岩石矿物学杂志, 36(5),681-690.

【11】马昌前,熊富浩,尹烁,王连训高珂. 2015. 造山带岩浆作用的强度和旋回性:以东昆仑古特提斯花岗岩类岩基为例. 岩石学报,31(2), 3555-3568.

【10】易立文,马昌前,王连训,赖中信,李湘玉,杨亚楠,吴飞,胡晏如. 2014.华南晚奥陶世次火山岩的发现:早古生代与俯冲有关的英安岩?地球科学,39(6),637-653.

【9】 张丽娟,马昌前,王连训, 佘振兵,王世明. 2011. 扬子地块北缘古元古代环斑花岗岩的发现及其意义。科学通报,56(1),44-57.

【8】 邹慧娟,马昌前,王连训2011. 湘东北幕阜山含绿帘石花岗闪长岩岩浆的上升速率:岩相学和矿物化学证据. 地质学报,85(3),366-378.

【7】 钟玉芳,马昌前,佘振兵,续海金,王世明,王连训2011. 赣西北蒙山岩体的锆石U-Pb-Hf, 地球化学特征及成因. 地球科学,36(4),703-720.

【6】 钟小明,王连训,周锐,郭海涛,欧阳海,汪洋. 2010. 下庄矿田“交点”型铀矿化特征与利用. 西部探矿工程,22(9),193-196.

【5】 赖中信,王连训,周锐,郭海涛,欧阳海,汪洋. 2010.下庄矿区铀成矿条件及找矿新思路. 铀矿地质,26(5),277-282.

【4】 丁丽雪,马昌前,李建威,王连训,陈玲,佘振兵. 2010. 华北克拉通南缘蓝田和牧护关花岗岩体:LA-ICPMS锆石U-Pb年龄及其构造意义. 地球化学,39(5),401-413.

【3】 熊富浩,马昌前,陈玲,刘彬,王连训2010. 大别造山带白鸭山A型花岗岩中镁铁质微粒包体成因及其地质意义. 矿物岩石,30(1), 31-40.

【2】 张超, 马昌前,廖群安,张金阳,肖敦清,付立新,王连训2009. 渤海湾黄骅盆地晚中生代-新生代火山岩地球化学:岩石成因及构造体制转换. 岩石学报,1159-1177.

【1】 王连训,马昌前,张金阳,陈玲,张超. 2008. 湘东北早白垩世桃花山-小墨山花岗岩体岩石地球化学特征及成因. 高校地质学报,14(3),334-348.


学术专著:

【2】 《幕阜山西北缘中生代岩浆岩与稀有金属成矿》, 田洋,金巍,王晶,柯贤忠,王连训,李乐广,徐扬,龙文国 著,2020, 中国地质大学出版社,书号:ISBN 978-7-5625-4783-9.

【1】《侵入岩地质调查与填图方法》, 王涛,童英,郭磊,马昌前,苏尚国,焦建刚,罗照华,王连训 著,2020, 地质出版社,书号:ISBN 978-7-116-12176-8.


中国地质大学(武汉)校址:湖北省武汉市鲁磨路388号