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              • 姓名: 譚偉
              • 性別: 男
              • 職務(wù): 
              • 職稱(chēng): 副研究員
              • 學(xué)歷: 博士
              • 電話(huà): 020-85290659
              • 傳真: 
              • 電子郵件: tanwei@gig.ac.cn
              • 通訊地址: 廣州市天河區科華街511號
                簡(jiǎn)  歷:
              •   主要從事礦物顯微結構/織構演化過(guò)程,風(fēng)化過(guò)程中的礦物演化與成礦過(guò)程以及礦物譜學(xué)標型特征等方面的成因礦物學(xué)研究。主持或參與國家自然科學(xué)青年基金、國家重點(diǎn)研發(fā)專(zhuān)項、中科院戰略先導專(zhuān)項等項目的研究。目前以第一作者/通訊作者發(fā)表SCI論文7篇。

                  教育背景:

                  2011/09-2016/06,中國科學(xué)院廣州地球化學(xué)研究所,礦物學(xué)、巖石學(xué)、礦床學(xué)專(zhuān)業(yè),研究生/博士,導師:何宏平研究員、王焰研究員

                  2007/09-2011/07,東北大學(xué),資源與土木工程學(xué)院,勘查技術(shù)與工程專(zhuān)業(yè),本科/學(xué)士

                  工作經(jīng)歷:

                  2016/07-2021/12,中國科學(xué)院廣州地球化學(xué)研究所,助理研究員(特任副研究員)

                  2018/11-2019/11,澳大利亞科廷大學(xué)地球與行星科學(xué)學(xué)院,博士后(國家留學(xué)基金委公派),合作導師S. M. Reddy教授

                  2020/01-2022/01,中科院礦物學(xué)與成礦學(xué)重點(diǎn)實(shí)驗室,學(xué)術(shù)秘書(shū)

                  2022/01-至今,中國科學(xué)院廣州地球化學(xué)研究所,副研究員

                社會(huì )任職:
              •  
                研究方向:
              •   1、礦物顯微結構/織構的演化與形成機制;

                  2、離子吸附型稀土礦床的形成機制與可見(jiàn)-近紅外譜學(xué)標型。

                獲獎及榮譽(yù):
              •   入選廣州地化所“涂光熾優(yōu)秀青年學(xué)者”A類(lèi)(2021年);

                  入選創(chuàng )新人才推進(jìn)計劃重點(diǎn)領(lǐng)域創(chuàng )新團隊—“巖漿作用與成礦”創(chuàng )新團隊核心成員(2018年);

                  “全國礦物科學(xué)與工程會(huì )議”“優(yōu)秀分會(huì )論文獎”(2016年)以及“優(yōu)秀青年學(xué)者報告”(2018年)。

                代表論著(zhù):
              • 1. Tan W., Reddy S.M., Fougerouse D., Wang C.Y.*, Wei B., Xian H.Y., Yang Y.P., He H.P. 2022. Superimposed microstructures of pyrite in auriferous quartz veins as fingerprints of episodic fluid infiltration in the Wulong Lode gold deposit, NE China. Mineralium Deposita.

                2. Yang Y.P., He H.P., Tan W.*, Tao Q., Yao J.M., Xian H.Y., Li S.Y., Xi J.X., Zhu J.X., Xu H.F. 2022. Behavior of low compatible trace elements in molybdenite: Layered PbS precipitates within molybdenite. American Mineralogist.

                3. Tan W., Wang C.Y., Reddy S.M., He H.P.*, Xian H.Y., Xing C.M. 2022. Magnetite-rutile symplectite in ilmenite records magma hydration in layered intrusions. American Mineralogist.

                4. Tan W., Qin X.R., Liu J.C., Zhou M-F, He H.P.*, Wang C.Y., Liang X.L., Huang J., Zhu J.X., Yao Y.Z., Cudahy T. 2021. Feasibility of Visible Short-Wave Infrared Reflectance Spectroscopy to Characterize Regolith-hosted Rare Earth Element Mineralization. Economic Geology.

                5. Tan W., Qin X.R., Liu J.C., Michalski J., He H.P.*, Yao Y.Z., Yao Y.Z., Yang M.J., Huang J., Lin X.J., Zhang C.Q., Liang X.L. 2021. Visible/Near infrared reflectance (VNIR) spectral features of ion-exchangeable rare earth elements hosted by clay minerals: Potential use for exploration of regolith-hosted REE deposits. Applied Clay Sciences.

                6. Tan W., He H.P., Wang C.Y.*, Dong H., Liang X.L., Zhu J.X. 2016. Magnetite exsolution in ilmenite from the Fe-Ti oxide gabbro in the Xinjie intrusion (SW China) and sources of unusually strong remnant magnetization, American Mineralogist, 101: 2759–2767.

                7. Tan W., Liu P., Wang C.Y., He* H.P., Liang X.L. Mineralogy and origin of exsolution in Ti-Rich magnetite from different magmatic Fe-Ti oxide bearing intrusions. 2016. The Canadian Mineralogist, 54: 539-553.

                8. Tan W., Wang C.Y., He*H.P., Xing C.M., Liang X.L., Dong H. 2015. Magnetite-rutile symplectite derived from ilmenite-hematite solid solution in the Xinjie Fe-Ti oxide-bearing, mafic-ultramafic layered intrusion (SW China), American Mineralogist, , 100(10): 2348-2351.

                9. Liu J.C., He H.P., Michalski J.*, Cuadros J., Yao Y.Z., Tan W., Qin X.R., Li S.Y., Wei G.J. 2021. Reflectance spectroscopy applied to clay mineralogy and alteration intensity of a thick basaltic weathering sequence in Hainan Island, South China. Applied Clay Science, 201: 105923.

                10. Liu J.C., Michalski J.*, Tan W., He H.P., Ye B., Xiao L. 2021. Anoxic chemical weathering under a reducing greenhouse on early Mars. Nature Astronomy, 5:503-509.

                11. Xian H.Y., He H.P. *, Zhu J.X., Du R.X., Wu X., Tang H.M., Tan W., Liang X.L., Zhu R.L., Teng H.H.* 2019. Crystal habit-directed gold deposition on pyrite: Surface chemical interpretation of the pyrite morphology indicative of gold enrichment, Geochimica et Cosmochimica Acta, 264: 191-204.

                12. Xian H.Y., Zhu J.X.*, Tan W., Tang H.M., Liu P., Zhu R.L., Liang X.L., Wei J.M., He H.P., Teng H.H.* 2019. The mechanism of defect induced hydroxylation on pyrite surfaces and implications for hydroxyl radical generation in prebiotic chemistry. Geochimica et Cosmochimica Acta. , 244: 163-172.

                13. Xian H., Du R.X., Zhu J.X., Chen M., Tan W., Zhu R.L., Wei J.M., He H.P. 2018. Hydration induced bandgap shift at pyrite-water interface, Applied Physics Letters, 113, 123901.

                14. Li Y., Wei G.L, He H.P., Liang X.L., Chu W., Huang D.Y., Zhu J.X., Tan W., Huang Q.X. 2018. Improvement of zinc substitution in the reactivity of magnetite coupled with aqueous Fe(II) towards nitrobenzene reduction, Journal of Colloid and Interface Science, 517: 104-112.

                15. Xing C.M, Wang C.Y*, Tan W. 2017. Disequilibrium growth of olivine in mafic magmas revealed by phosphorus zoning patterns of olivine from mafic–ultramafic intrusions. Earth and Planetary Science Letters, 479, 108-119.

                承擔科研項目情況:
              •   遼東五龍金礦黃鐵礦中金的賦存狀態(tài)和機制研究,國家自然科學(xué)基金委員會(huì )-青年科學(xué)基金項目,項目批準號41702042,2018.01-2020.12,23萬(wàn)元,項目負責人;

                  離子吸附型稀土礦床形成的制約因素,國家重點(diǎn)研發(fā)計劃(深地資源勘查開(kāi)采項目)“稀土元素成礦系統與資源基地深部探測-風(fēng)化淋積過(guò)程稀土元素的分異及富集機制”子課題,項目批準號2017YFC0602306-04,2017.07-2021.06,132.3萬(wàn)元,子課題負責人;

                  風(fēng)化殼中的稀土賦存狀態(tài),中國科學(xué)院地質(zhì)地球所重點(diǎn)部署項目“中國主要稀土礦床成因與資源潛力研究”課題“南方離子吸附性稀土礦床的形成機制”專(zhuān)題五,項目批準號IGGCAS-201901,2019.09-2024.08,80萬(wàn)元,專(zhuān)題負責人。