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                                    姓名: 胡方泱 性別:
                                    職稱(chēng): 特聘副研究員 學(xué)歷: 博士
                                    電話(huà): 無(wú) 傳真: 010-62010846
                                    Email: hufangyang[a]mail.iggcas.ac.cn 郵編: 100029
                                    地址: 北京朝陽(yáng)區北土城西路19號,中科院地質(zhì)與地球物理研究所
                                    更多信息:
                                    English礦產(chǎn)資源研究院重點(diǎn)實(shí)驗室 斑巖成礦系統學(xué)科組
                                     
                                    簡(jiǎn)歷:

                                      胡方泱,男,19919月生。主要從事碰撞造山帶花崗質(zhì)巖漿作用與造山帶演化及相關(guān)稀有金屬成礦研究。主要研究手段包括巖石地球化學(xué)、地質(zhì)年代學(xué)和大數據統計分析等。主要學(xué)術(shù)成果包括:(1)通過(guò)對秦嶺造山帶早中生代花崗質(zhì)巖石的研究,揭示了碰撞造山過(guò)程中多源區巖漿相互作用的過(guò)程;(2)將巖漿作用與區域變質(zhì)作用和沉積歷史等結合,論證了秦嶺早中生代巖漿作用峰期與大洋板片單向斷離有關(guān),提出了華南與華北板塊早中生代4階段斜向碰撞造山模型;(3)建立了利用巖漿巖地球化學(xué)比值定量計算碰撞帶地殼厚度及島弧帶和碰撞帶海拔高度的方法,據此分別重建了秦嶺中生代地殼厚度演化歷史及青藏高原白堊紀-新生代古高度演化歷史。目前主要關(guān)注青藏高原東緣和南緣花崗質(zhì)巖漿作用與相關(guān)稀有金屬成礦。已發(fā)表論文20余篇,其中第一作者SCI論文7篇。

                                    學(xué)習和工作經(jīng)歷:

                                    • 2013年本科畢業(yè)于中國地質(zhì)大學(xué)(武漢)
                                    • 2018年博士畢業(yè)于北京大學(xué)
                                    • 20169-20178月公派赴美國亞利桑那大學(xué)訪(fǎng)問(wèn)1
                                    • 20187-20211月于中國科學(xué)院地質(zhì)與地球物理研究所從事博士后研究工作
                                    • 20211月起任中國科學(xué)院地質(zhì)與地球物理研究所特聘副研究員
                                     
                                    研究方向:
                                    1. 花崗質(zhì)巖石成因機制
                                    2. 巖漿作用與造山帶演化
                                    3. 碰撞帶巖漿作用與稀有金屬成礦
                                     
                                    學(xué)科類(lèi)別:
                                    地質(zhì)學(xué),地球化學(xué)
                                     
                                    職務(wù):
                                     
                                    社會(huì )任職:
                                     
                                    獲獎及榮譽(yù):
                                    1. 2018年第九屆李四光優(yōu)秀博士研究生獎
                                    2. 2018年北京大學(xué)優(yōu)秀畢業(yè)生
                                    3. 2017年博士研究生國家獎學(xué)金
                                    4. 2017年北京大學(xué)創(chuàng )新獎(學(xué)術(shù)類(lèi))
                                    5. 2016年博士研究生國家獎學(xué)金
                                     
                                    承擔科研項目情況:
                                    1. 博士后基金面上項目(2018M640177),巖漿巖地球化學(xué)指標與造山帶海拔高度的相關(guān)關(guān)系及應用,2018.12-2021.01,主持
                                    2. 國家自然科學(xué)基金青年項目(41902055),青藏高原東緣貢嘎山-折多山花崗質(zhì)侵入雜巖的成因:對地殼流的指示意義,2020.01-2022.12,主持
                                    3. 第二次青藏高原綜合科學(xué)考察研究(2019QZKK0802),稀有金屬資源現狀與遠景評估,2019.01-2024.10,參與
                                    4. 國家自然科學(xué)基金基礎科學(xué)中心項目(41888101),大陸演化與季風(fēng)系統演變,2019.01-2028.12,參與
                                    5. 國家自然科學(xué)基金面上項目(41972065),珠峰地區高喜馬拉雅P-T-t-D軌跡重建及對碰撞造山機制的制約,2020.01-2023.12,參與
                                     
                                    代表論著(zhù):

                                    第一作者及通訊作者文章:
                                    *通訊作者

                                    1. Hu, F.*, Wu, F.Y., Chapman, J.B., Ducea, M.N., Ji, W., Liu, S., 2020. Quantitatively Tracking the Elevation of the Tibetan Plateau Since the Cretaceous: Insights from Whole-Rock Sr/Y and La/Yb Ratios. Geophysical Research Letters 47, e2020GL089202.
                                    2. Hu, F., Liu, S.*, Ducea, M.N., Chapman, J.B., Wu, F.Y., Kusky, T., 2020. Early Mesozoic magmatism and tectonic evolution of the Qinling Orogen: Implications for oblique continental collision. Gondwana Research 88, 296–332.
                                    3. Hu, F., Liu, S.*, Ducea, M.N., Zhang, W., Chapman, J.B., Fu, J., Wang, M., 2018. Interaction Among Magmas from Various Sources and Crustal Melting Processes During Continental Collision: Insights from the Huayang Intrusive Complex of the South Qinling Belt, China. Journal of Petrology 59, 735–770.
                                    4. Hu, F., Liu, S.*, Ducea, M.N., Zhang, W., Deng, Z., 2017. The geochemical evolution of the granitoid rocks in the South Qinling Belt: Insights from the Dongjiangkou and Zhashui intrusions, central China. Lithos 278–281, 195–214.
                                    5. Hu, F., Ducea, M.N., Liu, S.*, Chapman, J.B., 2017. Quantifying Crustal Thickness in Continental Collisional Belts: Global Perspective and a Geologic Application. Scientific reports 7, 7058.
                                    6. Hu, F., Liu, S.*, Santosh, M., Deng, Z., Wang, W., Zhang, W., Yan, M., 2016. Chronology and tectonic implications of Neoproterozoic blocks in the South Qinling Orogenic Belt, Central China. Gondwana Research 30, 24–47.
                                    7. Hu, F., Liu, S.*, Zhang, W., Deng, Z., Chen, X., 2016. A westward propagating slab tear model for Late Triassic Qinling Orogenic Belt geodynamic evolution: Insights from the petrogenesis of the Caoping and Shahewan intrusions, central China. Lithos 262, 486–506.

                                    合作文章:

                                    1. Cong, F., Wu, F.-Y., Li, W.-C., Wang, J.-G., Hu, F.-Y., He, D.-F., Ji, W.-Q., Lin, W., Sein, K., 2021. Petrogenesis of the Main Range and Eastern Province granites in eastern Myanmar: New insights from zircon U–Pb ages and Sr–Nd isotopes. Lithos 382–383, 105895.
                                    2. Cong, F., Li, W.-C., Wu, F.-Y., Huang, L., Huang, X.-M., Sun, J., Liu, X.-C., Hu, F.-Y., Hu, S.-X., Wu, G.-H., 2020. Mesozoic crustal growth in Mainland Southeast Asia: Zircon U-Pb and Hf isotopic evidence from the Late Cretaceous Luyingtang granitic pluton in the northernmost SE Asian granite Province, SW China. Journal of Asian Earth Sciences 190, 104151.
                                    3. Cong, F., Wu, F.-Y., Li, W.-C., Mou, C.-L., Huang, X.-M., Wang, B.-D., Hu, F.-Y., Peng, Z.-M., 2020. Origin of the Triassic Lincang granites in the southeastern Tibetan Plateau: Crystallization from crystal mush. Lithos 360–361, 105452.
                                    4. Hu, Y., Liu, S., Gao, L., Sun, G., Guo, R., Fu, J., Wang, M., Hu, F., 2019. Diverse middle Neoarchean granitoids and the delamination of thickened crust in the Western Shandong Terrane, North China Craton. Lithos 348–349, 105178.
                                    5. Liu, S., Fu, J., Lu, Y.-J., Chen, X., Wang, M., Hu, F., Gao, L., Sun, G., Hu, Y., 2019. Precambrian Hongqiyingzi Complex at the northern margin of the North China Craton: Its zircon U-Pb-Hf systematics, geochemistry and constraints on crustal evolution. Precambrian Research 326, 58–83.
                                    6. Sun, G., Liu, S., Gao, L., Hu, Y., Guo, R., Fu, J., Wang, M., Ma, C., Hu, F., 2019. Neoarchean sanukitoids and associated rocks from the Tengzhou-Pingyi intrusive complex, North China Craton: Insights into petrogenesis and crust-mantle interactions. Gondwana Research 68, 50–68.
                                    7. Gao, L., Liu, S., Sun, G., Hu, Y., Guo, R., Fu, J., Wang, M., Hu, F., 2019. Neoarchean crust-mantle interactions in the Yishui Terrane, south-eastern margin of the North China Craton: Constraints from geochemistry and zircon U-Pb-Hf isotopes of metavolcanic rocks and high-K granitoids. Gondwana Research 65, 97–124.
                                    8. Fu, J., Liu, S., Cawood, P.A., Wang, M., Hu, F., Sun, G., Gao, L., Hu, Y., 2018. Neoarchean magmatic arc in the Western Liaoning Province, northern North China Craton: Geochemical and isotopic constraints from sanukitoids and associated granitoids. Lithos 322, 296–311.
                                    9. Gao, L., Liu, S., Sun, G., Guo, R., Hu, Y., Fu, J., Wang, M., Ma, C., Hu, F., 2018. Petrogenesis of late Neoarchean high-K granitoids in the Western Shandong terrane, North China Craton, and their implications for crust-mantle interactions. Precambrian Research 315, 138–161.
                                    10. Liu, S., Wang, M., Wan, Y., Guo, R., Wang, W., Wang, K., Guo, B., Fu, J., Hu, F., 2017. A reworked ~3.45Ga continental microblock of the North China Craton: Constraints from zircon U-Pb-Lu-Hf isotopic systematics of the Archean Beitai-Waitoushan migmatite-syenogranite complex. Precambrian Research, Archean to Proterozoic Evolution of the North China Craton 303, 332–354.
                                    11.  Fu, J., Liu, S., Wang, M., Chen, X., Guo, B., Hu, F., 2017. Late Neoarchean monzogranitic–syenogranitic gneisses in the Eastern Hebei–Western Liaoning Province, North China Craton: Petrogenesis and implications for tectonic setting. Precambrian Research, Archean to Proterozoic Evolution of the North China Craton 303, 392–413.
                                    12. Deng, Z., Liu, S., Zhang, W., Hu, F., Li, Q., 2016. Petrogenesis of the Guangtoushan granitoid suite, central China: Implications for Early Mesozoic geodynamic evolution of the Qinling Orogenic Belt. Gondwana Research 30, 112–131.

                                    地址:北京市朝陽(yáng)區北土城西路19號 郵 編:100029 電話(huà):010-82998001 傳真:010-62010846
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