142 |
Neoproterozoic tectonic transition from subduction-related convergence to continental extension of the Tarim Block, NW China. |
Cai Z, He B, Meert J G, et al. |
Precambrian Research, 2021,362:106278.第一课题 |
1 |
2021 |
141 |
青藏高原巨厚地壳:生长、加厚与演化. |
侯增谦,郑远川,卢占武,等. |
地质学报,2020,94(10):2797-2815.DOI:10.19762/j.cnki.dizhixuebao.2020199.第二课题. |
2 |
2020 |
140 |
Gemological and Mineralogical Studies of Greenish Blue Apatite in Madagascar. |
Zhang Z, Xu B, Yuan P, et al. |
Crystals[Z]. 2022: 12.第二课题. |
2 |
2022 |
139 |
Petrogenesis and Physicochemical Conditions of Fertile Porphyry in Non-arc Porphyry Mineralization: A Case from Habo Porphyry Cu-Mo Deposits, SW China. |
Aiping Z ,Yuanchuan Z ,Yang S , et al. |
Acta Geologica Sinica(English Edition),2023,97(02):469-485.第二课题. |
2 |
2023 |
138 |
In situ Sr-O isotopic and elemental compositions of apatite and zircon from Pengcuolin granodiorites: Implications for Jurassic metallogenic variation in the southern tibet. |
Yu J, Xu B, Zhao Y, et al. |
Ore Geology Reviews, 2022,145:104869.第二课题. |
2 |
2022 |
137 |
In-situ mineralogical interpretation of the mantle geophysical signature of the Gangdese Cu-porphyry mineral system. |
Xu B, Hou Z, Griffin W L, et al. |
Gondwana Research, 2022,111:53-63.第二课题. |
2 |
2022 |
136 |
Elevated Magmatic Chlorine and Sulfur Concentrations in the Eocene-Oligocene Machangqing Cu-Mo Porphyry Systems. |
Xu B, Hou Z, Griffin W L, et al. |
Society of Economic Geologists, 2021: SP 24 vol. 2, 0.第二课题. |
2 |
2021 |
135 |
Hydrous Juvenile Lower Crust at the Western Yangtze Craton Margin as the Main Source of the Beiya Porphyry-skarn Au Deposit. |
Zixuan W ,Yuanchuan Z ,Bo X , et al. |
Acta Geologica Sinica(English Edition),2022,96(03):972-992.第二课题. |
2 |
2022 |
134 |
Identifying recycled oceanic components and volatiles in the Lizhuang carbonatite-associated REE deposit in southwest China: New constrain from in situ Hf–O isotopes. |
Miao Z, Xu B, Hou Z, et al. |
Ore Geology Reviews, 2024,165:105872.第二课题. |
2 |
2024 |
133 |
Comparison of Sn-related granitoids in subduction and collision settings by accessory mineral geochemistry: A case study in the Tengchong-Lianghe tin belt, SW China. |
Li X, Zheng Y, Shen Y, et al. |
Ore Geology Reviews, 2024,165:105862.第二课题. |
2 |
2024 |
132 |
西藏林周程巴普矽卡岩型Cu矿床成因及对区域成矿作用的指示. |
王璐,郑远川,张爱萍. |
地质学报,2023,97(04):1067-1087.DOI:10.19762/j.cnki.dizhixuebao.2022091.第二课题. |
1 |
2023 |
131 |
滇西古近纪钾质—超钾质岩浆岩成岩成矿作用及构造意义. |
全海辉,柴鹏,袁玲玲,等. |
黄金科学技术,2024,32(02):220-240.第二课题. |
1 |
2024 |
130 |
胶东金矿集中区深部结构研究进展. |
侯爵,武澄泷,俞贵平,等. |
地球物理学进展,2022,37(03):952-963.第二课题. |
1 |
2022 |
129 |
双聚束噪声成像揭示钦杭与武夷山成矿带上地壳精细结构. |
侯爵,徐涛,吕庆田,等. |
地球物理学报,2022,65(10):3881-3899.第二课题. |
1 |
2022 |
128 |
Ore-forming material sources of the Pb–Zn–(Ag–Fe–Cu) deposits in the northern Gangdese belt, Lhasa terrane: Constraints from geology, geochronology and S–Pb isotopes. |
Zhang A, Zheng Y, Fu Q, et al. |
Ore Geology Reviews, 2023,159:105491.第二课题. |
1 |
2023 |
127 |
Zircon xenocryst geochronology and implications for the Lhasa terrane evolution: Insights from Cenozoic volcanic rocks (Coqen, Tibet). |
Zhang Y, Xu B, Hou Z, et al. |
Journal of Asian Earth Sciences, 2023,255:105763.第二课题. |
1 |
2023 |
126 |
Implications of Nd isotopic mapping for crustal composition and metallogenesis in the Sanjiang orogenic belt (SW China). |
Yuan L, Chai P, Hou Z, et al. |
Frontiers in Earth Science, 2023,11.第二课题. |
1 |
2023 |
125 |
A Study on Apatite from Mesozoic Alkaline Intrusive Complexes, Central High Atlas, Morocco. |
Yuan P, Xu B, Wang Z, et al. |
Crystals[Z]. 2022: 12.第二课题. |
1 |
2022 |
124 |
Apatite halogens and Sr-O and zircon Hf-O isotopes: Recycled volatiles in Jurassic porphyry ore systems in southern Tibet. |
Xu B, Hou Z, Griffin W L, et al. |
Chemical Geology, 2022,605:120924.第二课题. |
1 |
2022 |
123 |
Cenozoic lithospheric architecture and metallogenesis in Southeastern Tibet. |
Xu B, Hou Z, Griffin W L, et al. |
Earth-Science Reviews, 2021,214:103472. |
1 |
2021 |