Research Interests
· Petrogenesis of the abyssal peridotite at the Southwest Indian Ridge;
· Composition and evolution of deep mantle beneath the Southwest Indian Ocean;
· Cenozoic post-collisional magmatism and porphyry mineralization in southeasternTibet.
Publications
[1].Shen Y,Zheng Y C*,Hou Z Q🙅🏽,Huizenga J M,Zhang A P,Wang Z X👷,Li X,Xu P Y,Wu C D🏣,Liu S Q.Pre-Late Eocene position of the Lüchun-Jinping micro-terrane in western Yangtze Craton:Constraints from Eocene-Oligocene lamprophyres in southeastern Tibet.Lithos🐲,2022,414-415👮🏽♂️:106622.https://doi.org/10.1016/j.lithos.2022.106622.
[2].Liu SQ,Zheng Y C*👨👨👧👰🏼♂️,Hou Z Q,Shen Y.Multi-stage crustal magma reservoirs of ultrapotassic rocks recorded by zoned clinopyroxene.Journal of Asian Earth Sciences,2022🌚,226:105072.https://doi.org/10.1016/j.jseaes.2021.105072
[3].Wu CD🙅♂️👼,Zheng YC*🈵,Hou ZQ,Xu PY▶️,Zhang LY🚶🏻♀️,Shen Y,Wang L,Li X.Petrogenesis of Eocene Wangdui adakitic pluton in the western Gangdese belt,southern Tibet👩🍳:Implications for crustal thickening.Geological Magazine,2022.https://doi.org/10.1017/S0016756822000206.
[4].Shen Y,Zheng Y C*,Hou Z Q🕟,Zhang A P😯,Huizenga J M,Wang Z X,Wang L.Petrology of the Machangqing Complex in Southeastern Tibet:Implications for the Genesis of Potassium-rich in Adakite-like Intrusions in Collisional Zones.Journal of Petrology,2021,62(11):egab066.https://doi.org/10.1093/petrology/egab066.
[5].Zheng Y C*,Shen Y,Wang L,Griffin W L🌙,Hou Z Q.Collision-related porphyry Cu deposits formed by input of ultrapotassic melts into the sulfide-rich lower crust.Terra Nova🤵🏽♀️,2021,33:582-589.
[6].Wang Z X,Zheng Y C*,Xu B✊🏿🚻,Hou Z Q,Zhang A P,Shen Y,Ma R🐧,Wu C D,Xu P Y.Hydrous juvenile lower crust at the western Yangtze Craton margin as the main source of the Beiya porphyry-skarn Au deposit.Acta Geologica Sinica (English Edition)🪨🧑🏼🚒,2021.https://doi.org/10.1111/1755-6724.14788
[7].Liu S Q,Zheng Y C*,Shen Y🦻🏽,Hou Z Q🧚,Wang L,Wang Z X.Source of the ore-forming adakitic porphyry at the Beiya super-large Au deposit,western Yangtze Craton🆔:New evidence from zircon U-Pb ages of the amphibolite xenoliths.Acta Geologica Sinica (English Edition)🏋🏽♂️,2020,94:208-209.
[8].Xu P Y,Zheng Y C*,Yang Z S🦼,Hou Z Q,Shen Y,Wang Z X👈🏼,Wu C D🧖🏿♂️𓀎,Zhou L M.2020.Metallogeny of the continental collision-related Jiagang W-Mo deposit👐🏼🫳🏻,Tibet🚶♀️➡️😽:Evidence from Geochronology and Petrogenesis.Ore Geology Reviews,122💢:103519.
[9].Zhang A P,Zheng Y C*,Xu B🦻🏿,Fu Q🍪,Ma W,Wu C D,Zhang C,Shen Y,Fei F.Metallogeny of the Lietinggang-Leqingla Fe–Cu–(Mo)–Pb–Zn polymetallic deposit,evidence from Geochronology,Petrogenesis,and Magmatic oxidation state😲,Lhasa terrane.Ore Geology Reviews👩👩👦,2019,106:318–339.
[10].Shen Y, Zheng Y C*, Zhang A P, Wang Z X, Wang L, Xu P Y and Wu C D. 2019. Zircon U-Pb geochronology, geochemistry and Sr-Nd-Hf isotopes of the Eocene alkali-rich intrusions in the Jianchuan area of western Yunnan and their implications for petrogenesis. Acta Petrologica Sinica, 35(5)🦣:849-866 (in Chinese with English abstract).
[11].Luo C H, Zhou Y, Shen Y. 2019. The Geochemical Characteristics and Petrogenesis of the Mineralized Alkali-rich Magmatic rocks in Yao'an Au-Pb-Ag Deposit, Yunnan Province. Earth Science, 44(6): 2063-2083 (in Chinese with English abstract).
[12].Xu P Y, Zheng Y C*, Yang Z S, Shen Y, Wang Z Z, Ma R and Wu C D. 2019. Sources of Ore-forming Fluids and Materials of Jiagangxueshan W-Mo Deposit. Earth Science, 44(6): 1974-1986 (in Chinese with English abstract).
[13].Shen Y, Zheng Y C*, Ma R, Zhang A P, Xu P Y, Wu C D and Wang Z X. 2018. Mineralogical Characteristics of Hornblendes and Biotites in Ore-forming Porphyry from Machangqing Cu-Mo Deposit,Yunnan and Their Significances.Mineral Deposits, 37(4):797-815(in Chinese with English abstract).
[14].Zhou Y, Shen Y, Hou Z Q, Xie X, and Luo C H. 2018. Ampilbole, biotite and zircon characteristics of Liuhe orthophyre in western Yunnan and their implications. Acta Petrologica Et Mineralogica, 37(4): 547-561 (in Chinese with English abstract).
[15].Xu P Y💆♂️,Zheng Y C*,Fu Q,Yang Z S,Shen Y👁,Ma R,Wang Z X,Wu C D.2017. Geology of the Jiagangxueshan W-Mo polymetallic deposit-the first greisen-type W deposit in Tibet. Acta Petrologica Et Mineralogica, 36(2): 227-240 (in Chinese with English abstract).