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              • 姓名: 李洪顏
              • 性別: 男
              • 職務(wù): 
              • 職稱: 研究員
              • 學(xué)歷: 博士研究生
              • 電話: 020-85297519
              • 傳真: 
              • 電子郵件: hongyanli@gig.ac.cn
              • 通訊地址: 廣州市天河區(qū)五山中國(guó)科學(xué)院廣州地球化學(xué)研究所
                簡(jiǎn)  歷:
              •   1981年1月生,中共黨員。2004年7月畢業(yè)于中國(guó)石油大學(xué)(華東)資源勘察工程專(zhuān)業(yè),獲學(xué)士學(xué)位,同年9月考入中國(guó)科學(xué)院廣州地球化學(xué)研究所攻讀地球化學(xué)專(zhuān)業(yè)研究生,2009年6月畢業(yè)獲博士學(xué)位并留所工作,2011年9月晉升為副研究員,2018年1月開(kāi)始擔(dān)任特任研究員,2019年12月晉升為研究員。2014年7-9月參加了國(guó)際大洋發(fā)現(xiàn)計(jì)劃(IODP)352航次:伊豆-小笠原初生島弧鉆探;2018年8-9月,在美國(guó)南佛羅里達(dá)大學(xué)地質(zhì)系合作研究。2015年入選“廣東特支計(jì)劃”百千萬(wàn)工程青年拔尖人才,2019年獲得國(guó)家優(yōu)秀青年科學(xué)基金資助。兼任中國(guó)青年科技工作者協(xié)會(huì)第六屆理事會(huì)理事、基礎(chǔ)科學(xué)專(zhuān)業(yè)委員會(huì)和提案專(zhuān)門(mén)工作委員會(huì)委員,中國(guó)礦物巖石地球化學(xué)學(xué)會(huì)海洋地球化學(xué)專(zhuān)業(yè)委員會(huì)和青年工作委員會(huì)委員。目前的主要研究方向包括板塊俯沖起始-發(fā)育-成熟過(guò)程中的元素-同位素地球化學(xué)記錄、穿島弧火山巖地球化學(xué)不均一性的控制因素、馬里亞納弧前泥火山的形成機(jī)制與板塊低溫脫水過(guò)程、東亞大地幔楔與滯留俯沖板塊相互作用及板內(nèi)玄武巖成因。

                社會(huì)任職:
                研究方向:
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                獲獎(jiǎng)及榮譽(yù):
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                代表論著:
              • 1.?Li, H.Y.*, Li, X.*, Ryan, J.G.*, Zhang, C., and?Xu, Y. G.?2022.?Boron isotopes in boninites document rapid changes in slab inputs during subduction initiation. Nature Communications?13:?993.

                2.?Li,?H.Y.*, Zhao,?R.P., Li,?J., Tamura, Y., Spencer, C., Stern, R. J., Ryan, J.G., and?Xu, Y. G.?2021. Molybdenum isotopes unmask slab dehydration and melting beneath the Mariana arc. Nature Communications?12: 6015.

                3.?Li, H.Y.*,?Li, J., Ryan, J.G., Li, X., Zhao, R.P., Ma, L. and Xu, Y.G. 2019. Molybdenum and boron isotope evidence for fluid-fluxed melting of intraplate upper mantle beneath the eastern North China Craton. Earth and Planetary Science Letters?520, 105–114.

                4.?Li, H.Y., Taylor, R.N., Prytulak, J., Kirchenbaur, M., Shervais, J., Ryan, J.G., Godard, M., Reagan, M.K. and Pearce, J.A.*. 2019. Radiogenic Isotopes Document the Start of Subduction in the Western Pacific. Earth and Planetary Science Letters?518, 197–210.

                5.?Li, X., Li, H.Y.*, Ryan, J.G., Wei, G.J., Zhang, L., Li, N.B. Huang, X.L. and Xu, Y.G., 2019. High-precision measurement of B isotopes on low-boron oceanic volcanic rock samples via MC-ICPMS: Evaluating acid leaching effects on boron isotope compositions, and B isotopic variability in depleted oceanic basalts. Chemical Geology?505, 76–85.

                6.?Li, H.Y.*, Xu, Y.G., Ryan, J.G., Whattam, S.A., 2017. Evolution of the mantle beneath the eastern North China Craton during the Cenozoic: Linking geochemical and geophysical observations. Journal of Geophysical Research - Solid Earth?122 (1), 224–246.

                7.?Li, H. Y.*, Xu, Y.G., Ryan, J.G., Huang, X.L., Ren, Z.Y., Guo, H., Ning, Z.G., 2016. Olivine and melt inclusion chemical constraints on the source of intracontinental basalts from the eastern North China Craton: Discrimination of contributions from the subducted Pacific slab. Geochimica et Cosmochimica Acta?178, 1–19.

                8.?Li, H.Y.*, Zhou, Z, Ryan, J.G., Wei, G.J., Xu, Y.G., 2016. Boron isotopes reveal multiple metasomatic events in the mantle beneath the eastern North China Craton. Geochimica et Cosmochimica Acta?194, 77–90.

                9.?Li, H.Y.,?Huang, X.L.*, Guo H., 2014. Geochemistry of Cenozoic basalts from the Bohai Bay Basin: Implications for a heterogeneous mantle source and lithospheric evolution beneath the eastern North China Craton. Lithos?196–197, 54–66.

                10.?Li, H.Y.*, Xu, Y.G., Liu, Y.M., Huang, X.L., He, B., 2013. Detrital zircons reveal no Jurassic plateau in the eastern North China Craton. Gondwana Research?24(2), 622–634.

                11.?Li, H.Y.*?and Huang, X.L., 2013. Constraints on the paleogeographic evolution of the North China Craton during the Late Triassic–Jurassic. Journal of Asian Earth Sciences?70–71, 308–320.

                12.?Li, H.Y., 2013. Destruction of North China Craton: insights from temporal and spatial evolution of the proto-basins and magmatism. Science China: Earth Sciences?56(3), 464–478.

                13.?Li, H.Y., Huang, X.L., Li, W.X., Cao, J., He, P.L. and Xu, Y.G., 2013. Age and geochemistry of the Early Permian basalts from Qimugan in the southwestern Tarim basin. Acta Petrologica Sinica?29(10), 3353–3368

                14.?Li, H.Y.*, He, B., Xu, Y.G., Huang, X.L., 2010. U-Pb and Hf isotope analyses of detrital zircons from Late Paleozoic sediments: insights into interactions of the North China Craton with surrounding plates. Journal of Asian Earth Sciences?39, 335–346.

                15.?Li, H.Y., Xu, Y.G.*, Huang, X.L., He, B., Yan, B., 2009.Activation of northern margin of the North China Craton in Late Paleozoic: Evidence from U-Pb dating and Hf isotopes of detrital zircons from the Upper Carboniferous Taiyuan Formation in the Ningwu-Jingle basin. Chinese Science Bulletin?54(4), 677–686.

                16.?Ma, L., Xu, Y. G., Li, J., Chen, L. H., Liu, J. Q., Li, H.Y.,?et al. 2021. Molybdenum isotopic constraints on the origin of EM1-type continental intraplate basalts. Geochimica et Cosmochimica Acta?317, 255-268

                17.?Shervais, J. W., Reagan, M. K., Godard, M., Prytulak, J., Ryan, J. G., Pearce, J. A., Renat R. A.,?Li, H.Y.,?et al. 2021. Magmatic Response to Subduction Initiation, Part II: Boninites and Related Rocks of the Izu‐Bonin Arc From IODP Expedition 352. Geochemistry, Geophysics, Geosystems,?22(1), e2020GC009093.

                18.?Xu, Y., Wang, Q., Tang, G., Wang, J., Li, H.Y.,?et al. 2020. The origin of arc basalts: New advances and remaining questions. Science China Earth Sciences 1-23.

                19.?Whattam?S.A., Shervais,?J.W.?Reagan,?M.K.?Coulthard,?D.A.,?Pearce,?J.A.,?Jones, P., Seo,?J.,?Putirka,?K.,?Chapman,?T.,?Heaton,?D.,?Li, H.Y.,?et al. 2020.?Mineral compositions and thermobarometry of basalts and boninites recovered during IODP Expedition 352 to the Bonin forearc. American Mineralogist?105 (10): 1490–1507.

                20.?Li, J., Fan, J.J., Sun, S.L., Zhang, J., Li, H.Y.,?2020. An investigation of Re and Os contamination by materials used in rock and mineral powdering. Geochemical Journal 54(6): 421–426.

                21.?Shervais, JW, Reagan, MK, Haugen, E, Almeev, R, Pearce, JA, Prytulak, J, Ryan, JG, Whattam, SA, Godard, M, Chapman, T, Li, H.Y.,?Kurz, W, Nelson, WR, Heaton, DE, Kirchenbaur, M, Shimizu, K, Sakuyama, T, Li, Y, and Vetter, SK, 2019, Magmatic Response to Subduction Initiation, Part I: Fore-arc basalts of the Izu-Bonin Arc from IODP Expedition 352. Geochemistry, Geophysics, Geosystems?20 (1), 314–338

                22.?Xu, Y., Li H.Y., Hong, L., Ma, L., Ma, Q. and Sun, M., 2018. Generation of Cenozoic intraplate basalts in the big mantle wedge under eastern Asia. Science China Earth Sciences?61 (7), 869–886.

                23.?Ryan, J.G., Shervais, J. ., Li, Y., Reagan, M.K., Li, H.Y.,?Heaton, D., Godard, M., Kirchenbaur, M., Whattam, S.A., Pearce, J.A., Chapman, T., Nelson, W., Prytulak, J., Shimizu, K., Petronotis, K. and the IODP Expedition 352 Scientific Team. 2017. Application of a handheld X-ray fluorescence spectrometer for real-time, high-density quantitative analysis of drilled igneous rocks and sediments during IODP Expedition 352. Chemical Geology?451, 55–66.

                24.?Reagan, M.K., Pearce, J.A., Petronotis, K., Almeev, R.R., Avery, A.J., Carvallo, C., Chapman, T., Christeson, G.L., Ferr , E.C., Godard, M., Heaton, D.E., Kirchenbaur, M., Kurz, W., Kutterolf, S., Li, H.Y., Li, Y., Michibayashi, K., Morgan, S., Nelson, W.R., Prytulak, J., Python, M., Robertson, A.H.F., Ryan, J.G., Sager, W.W., Sakuyama, T., Shervais, J.W., Shimizu, K., and Whattam., S.A., 2017. Subduction initiation and ophiolite crust: new insights from IODP drilling. International Geology Review?59 (11), 1439–1450.

                25.?He, P.L., Huang, X.L., Xu, Y.G., Li, H.Y., Wang, X., Li, W.X., 2016. Plumeorogenic lithosphere interaction recorded in the Haladala layered intrusion in the Southwest Tianshan Orogen, NW China. Journal of Geophysical Research - Solid Earth?121, 1525–1545

                26.?He, P.L., Huang, X.L., Li, H.Y., Li, J., Yu, Y. and Li, W.X., 2013. Mechanism of Fe-Ti enrichment in the Haladala gabbros: Implication for the tectonic evolution of the western Tianshan orogenic belt. Acta Petrologica Sinica?29 (10), 3457–3472

                27.?Cao, J., Xu, Y.G., Xing, C.M., Huang, X.L. and Li, H.Y., 2013. Origin of the Early Permian granitic plutons from the Piqiang region in the northern Tarim Block: Implications for the origin of A-type granites of the Tarim large igneous province. Acta Petrologica Sinica?29 (10), 3336–3352

                28.?Xu, Y.G., Li, H.Y., Pang, C.J. and He, B., 2009. On the time and duration of the destruction of the North China Craton. Chinese Science Bulletin?54, 3379–3396.

                29.?Huang, X.L., Xu, Y.G., Li, X.H., Li, W.X., Lan, J.B., Zhang, H.H., Liu, Y.S., Wang, Y.B., Li, H.Y., Luo, Z.Y., Yang, Q.J., 2008. Petrogenesis and tectonic implications of Neoproterozoic, highly fractionated A-type granites from Mianning, South China. Precambrian Research?165, 190–204.

                30.?李洪顏,徐義剛,黃小龍,何斌,羅震宇,燕濱. 2009. 華北克拉通北緣晚古生代活化:山西寧武-靜樂(lè)盆地上石炭統(tǒng)太原組碎屑鋯石U-Pb測(cè)年及Hf同位素證據(jù).科學(xué)通報(bào)?54(05): 632-640.

                31.?李洪顏. 2013. 華北克拉通原型盆地及巖漿活動(dòng)時(shí)空演化對(duì)克拉通破壞的制約.中國(guó)科學(xué):?地球科學(xué)43(09): 1396-1409.

                32.?徐義剛,李洪顏,龐崇進(jìn),何斌. 2009. 論華北克拉通破壞的時(shí)限.科學(xué)通報(bào)?54 (14):1974-1989.

                33.?徐義剛, 李洪顏, 洪路兵, 馬亮, 馬強(qiáng), 孫明道. 2018. 東亞大地幔楔與中國(guó)東部新生代板內(nèi)玄武巖成因. 中國(guó)科學(xué): 地球科學(xué)?48?(7), 825-843

                34.?徐義剛, 王強(qiáng), 唐功建, 王軍, 李洪顏, 周金勝, 李奇維, 齊玥, 劉平平, 馬林, 范晶晶. 2020. 弧玄武巖的成因: 進(jìn)展與問(wèn)題.?中國(guó)科學(xué): 地球科學(xué)?50 (12), 1818-1844

                35.?徐義剛, 鐘玉婷, 位荀, 陳軍, 劉海泉, 頡煒, 羅震宇, 李洪顏, 何斌, 黃小龍, 王焰, 陳赟.?2017. 二疊紀(jì)地幔柱與地表系統(tǒng)演變.?礦物巖石地球化學(xué)通報(bào)?36 (3), 359-373

                36.?樊俊, 李洪顏, 于平, 楊軍. 2017. 新常態(tài)下我國(guó)資源勘探領(lǐng)域科技創(chuàng)新策略思考. 中國(guó)礦業(yè)?26 (6), 22–27.

                承擔(dān)科研項(xiàng)目情況:
              •   1. 國(guó)家自然科學(xué)基金優(yōu)秀青年科學(xué)基金:巖石地球化學(xué);

                  2. 中科院B類(lèi)先導(dǎo)專(zhuān)項(xiàng)“印太交匯區(qū)海洋物質(zhì)能量中心形成演化過(guò)程與機(jī)制”課題:印太交匯區(qū)板塊匯聚過(guò)程與俯沖起始機(jī)制。