Temporal and spatial variations of Late Mesozoic granitoids in the SW Qiangtang, Tibet: Implications for crustal architecture, Meso-Tethyan evolution and regional …

XK Li, J Chen, RC Wang, C Li - Earth-Science Reviews, 2018 - Elsevier
The western segment of the South Qiangtang terrane (W-SQT) is an ideal place to
investigate the Late Mesozoic crustal architecture, tectonomagmatic evolution and regional …

[PDF][PDF] 西藏斑岩-矽卡岩-浅成低温热液铜多金属矿成矿作用, 勘查方向与资源潜力

唐菊兴, 王勤, 杨欢欢, 高昕, 张泽斌, 邹兵 - 地球学报, 2017 - cagsbulletin.com
西藏主要成矿带是东特提斯成矿域的重要组成部分. 1999 年以来, 中国地质调查局地质大调查的
全面实施, 国家公益性基础研究的不断深入和商业性勘查的及时跟进, 真正意义上的找矿突破 …

Geology and geochronology of the Jinmuguo Mo polymetallic deposit: Implications for the metallogeny of the Bangongco-Nujiang belt of Tibet

B Lin, X Zhang, P Tang, L Wang, M Santosh, Z Xi… - Ore Geology …, 2021 - Elsevier
The genesis of the Bangongco-Nujiang metallogenic belt (BNMB), located in the central
portion of the Qinghai-Tibet Plateau, is closely related to the tectonic evolution of the …

Geology and geochronology of Naruo large porphyry-breccia Cu deposit in the Duolong district, Tibet

B Lin, J Tang, Y Chen, M Baker, Y Song, H Yang… - Gondwana …, 2019 - Elsevier
The Duolong district is located in the south Qiangtang terrane of Tibet and is the most
significant ore cluster within the Bangongco-Nujiang metallogenic belt. Duolong contains …

[HTML][HTML] The copper polymetallic deposits and resource potential in the Tibet Plateau

J Tang, H Yang, Y Song, L Wang, Z Liu, B Li, B Lin… - China Geology, 2021 - Elsevier
Many large and super-large copper deposits have been discovered and explored in the
Tibet Plateau, which makes it the most important copper resource reserve and development …

[HTML][HTML] A deep-learning-based mineral prospectivity modeling framework and workflow in prediction of porphyry–epithermal mineralization in the Duolong ore District …

C Liu, W Wang, J Tang, Q Wang, K Zheng, Y Sun… - Ore Geology …, 2023 - Elsevier
Abstract Machine learning (ML) is emerging as a highly effective technique for mineral
exploration. However, mineral exploration poses several unique challenges to ML …

Genesis of the Lakang'e porphyry Mo (Cu) deposit, Tibet: Constraints from geochemistry, geochronology, Sr-Nd-Pb-Hf isotopes, zircon and apatite

P Tang, J Tang, Y Wang, B Lin, Q Leng, Q Zhang, L He… - Lithos, 2021 - Elsevier
Abstract The Lakang'e porphyry Mo (Cu) deposit, intermediate to large in size, is located in
the eastern part of the southern Gangdese metallogenic belt. It is associated with a Miocene …

Ore genesis of the Late Cretaceous Larong porphyry W-Mo deposit, eastern Tibet: Evidence from in-situ trace elemental and S-Pb isotopic compositions

J Liu, W Li, X Zhu, JX Zhou, H Yu - Journal of Asian Earth Sciences, 2020 - Elsevier
Abstract The Late Cretaceous (ca. 92 Ma) Larong porphyry W-Mo deposit (39.44 Mt WO 3@
0.1541%), a newly discovered deposit in the easternmost Bangong-Nujiang metallogenic …

Metallogeny in the Bangong–Nujiang belt, central Tibet, China: A review

Y Song, J Tang, B Lin, C Yang, H Sun - Frontiers in Earth Science, 2023 - frontiersin.org
The Bangong–Nujiang metallogenic belt consists of scattered Tethyan oceanic blocks,
mainly distributed underneath the margins of the Qiangtang and Lhasa terranes in central …

Origin of Qushenla Formation Volcanic Rocks in the Nawucuo Area, Northern Tibet, and Constraints on the Subduction Polarity of the Bangong-Nujiang Tethys Ocean

C Lei, L Wang, J Tang, W Li, T Gao, H Yuan - Journal of Earth Science, 2023 - Springer
Abstract The Qushenla Formation volcanic rocks are widely exposed in the northern margin
of the Bangong-Nujiang suture zone (BNSZ). Research on these rocks is of great …