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Zheng, Ming; Tang, Juxing; Song, Yang; Li, Zichen; Wang, Xu; Sun, Hao; Liu, Zhibo; Dai, Jingjing; Liu, Qiuping (2025) Alteration zonation and mineralogy of the Dibaonamugang Lithocap: Implications for mineral exploration in the Duolong Ore District, NW Xizang (Tibet), China. Ore Geology Reviews, 182. doi:10.1016/j.oregeorev.2025.106628

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Reference TypeJournal (article/letter/editorial)
TitleAlteration zonation and mineralogy of the Dibaonamugang Lithocap: Implications for mineral exploration in the Duolong Ore District, NW Xizang (Tibet), China
JournalOre Geology Reviews
AuthorsZheng, MingAuthor
Tang, JuxingAuthor
Song, YangAuthor
Li, ZichenAuthor
Wang, XuAuthor
Sun, HaoAuthor
Liu, ZhiboAuthor
Dai, JingjingAuthor
Liu, QiupingAuthor
Year2025 (July)Volume182
PublisherElsevier BV
DOIdoi:10.1016/j.oregeorev.2025.106628Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18366014Long-form Identifiermindat:1:5:18366014:9
GUID0
Full ReferenceZheng, Ming; Tang, Juxing; Song, Yang; Li, Zichen; Wang, Xu; Sun, Hao; Liu, Zhibo; Dai, Jingjing; Liu, Qiuping (2025) Alteration zonation and mineralogy of the Dibaonamugang Lithocap: Implications for mineral exploration in the Duolong Ore District, NW Xizang (Tibet), China. Ore Geology Reviews, 182. doi:10.1016/j.oregeorev.2025.106628
Plain TextZheng, Ming; Tang, Juxing; Song, Yang; Li, Zichen; Wang, Xu; Sun, Hao; Liu, Zhibo; Dai, Jingjing; Liu, Qiuping (2025) Alteration zonation and mineralogy of the Dibaonamugang Lithocap: Implications for mineral exploration in the Duolong Ore District, NW Xizang (Tibet), China. Ore Geology Reviews, 182. doi:10.1016/j.oregeorev.2025.106628
In(2025) Ore Geology Reviews Vol. 182. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Aoki (1993) Resour. Geol. Advanced argillic alteration and geochemistry of alunite in an evolving hydrothermal system at Baguio, Northern Luzon Philippines 43, 155
Bai (2024) Geology in China. Extraction of mineral alteration information and mineralization prospecting analysis based on GF–5 hyperspectral in Zhule–Mangla Tibet 51, 995
Cooke (2000) Rev. Econ. Geol. Characteristics and genesis of epithermal gold deposits 13, 221
Cooke (2014) New advances in detecting the distal geochemical footprints of porphyry systems––Epidote mineral chemistry as a tool for vectoring and fertility assessments , 127
Cooke (2017) 14th SGA Biennial Meeting. Lithocaps: characteristics, origins and significance for porphyry and epithermal exploration 1, 291
Corbett (2002) Australian Institute of Geoscientists Journal. Epithermal gold for explorationists 67, 1
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Dilles (2021) Porphyry and Epithermal Mineral Deposits , 847
Fan (2023) GSA Bull. Resolving the nature and evolution of the Bangong–Nujiang Tethyan Ocean: New perspectives from the intraplate oceanic–island fragments preserved in Northern Tibet 136, 1379
Guo (2018) Geol. Bull. China Alteration mapping and prospecting model construction in the Tiegelongnan ore deposit of the Duolong ore concentration area, northern Tibet, based on shortwave infrared technique 37, 446
Hedenquist (2000) Rev. Econ. Geol. Exploration for epithermal gold deposits 13, 245
Jilin University Institute of Geological Survey, 2015. 1:50,000 scale geological map of the People's Republic of China (I44E020022, Duobuza Sheet, Xizang) with guidebook. Jilin, China (in Chinese).
Li (2015) Acta Petrol. Sin. 31, 2307
Lin (2016) Geological Review. Zircon U–Pb Ages and Hf isotopic composition of the ore–bearing porphyry in dibao Cu (Au) deposit, Duolong Ore Concentration Area, Xizang (Tibet), and its geological significance 62, 1565
Liu (2023) Ore Geology Reviews. A deep–learning–based mineral prospectivity modeling framework and workflow in prediction of porphyry–epithermal mineralization in the Duolong Ore District Tibet 157
Liu (2023) Geology in China. First discovered Miocene high sulfur epithermal Cu-Au deposits in Zhule area, Geji County Tibet 50, 967
Not Yet Imported: - proceedings-article : 10.3390/IECMS2018-05450

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Qiao (2017) Acta Geol. Sin. Geochronology, fluid inclusions, geochemical characteristics of Dibao Cu (Au) Deposit, Duolong Ore Concentration Area, Xizang (Tibet), and Its Genetic Type 91, 1542
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Sillitoe, R.H., Hedenquist, J.W., 2003. Linkages between volcanotectonic settings, ore–fluid compositions, and epithermal precious metal deposits. In: Sillitoe, R.H., Hedenquist, J.W., editors. Volcanic, geothermal and ore–forming fluids: Rulers and witnesses of processes within the Earth. Special Publication 10 ed: Society of Economic Geologists, pp. 315–343.
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Song (2021) Geological Review. Research on the source of placer gold in Duolong region, Gize County Northern Tibet 67, 155
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Tang (2024) Mineral Deposits Geological characteristics and prospecting direction of porphyry–skarn–epithermal deposits in Xizang 43, 1223
Tang (2016) Acta Geosci. Sin. Geological characteristics and exploration model of the Tiegelongnan Cu (Au–Ag) deposit: the first ten million tons metal resources of a Porphyry–Epithermal Deposit in Tibet 37, 663
Tang (2021) Acta Geologica Sinica. Application of short–wavelength infrared spectroscopy in porphyry–epithermal system: a case study of Tiegelongnan super–large copper (gold) deposit Tibet 95, 2613
Wang (2024) Mineral Deposits First identification of Miocene high-sulfidation epithermal copper (gold, silver) deposit in western section of Gangdese metallogenic belt 43, 1461
Wang (2015) Chengdu University of Technology The genesis of volcanic rocks of early cretaceous meirigieco groups and its relationship with minerogenesis of tiegelongnan copper (Gold) deposit in Duolong Ore Cluster Tibet , 1
Wang (2018) Chengdu University of Technology Porphyry copper (gold) system in duolong district and its metallogenetic regularities , 1
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Yang (2020) Ore Geol. Rev. Geology and geochronology of the Tiegelongnan porphyry–epithermal Cu (Au) deposit, Tibet, China: formation, exhumation and preservation history 123
Yao (2013) Geological Review. The redefinition of the ore–forming porphyry’s age in Gaerqiong Skarn–type Gold–Copper Deposit, Western Bangong Lake–Nujiang River Metallogenic Belt, Xizang (Tibet) 59, 193
Zhang, L.J., Chin, J., White, N.C., Jimenez, C., Cooke, D.R., Orovan, E., 2017. Characteristics of zunyite in the advanced argillic alteration zones of high–sulfidation epithermal deposits: Implications for exploration in lithocaps. SEG 2017 Ore Deposits of Asia: China and Beyond.
Zheng (2022) Hefei University of Technology Genesis of the dibaonamugang lithocap in Duolong Ore District, Tibet, and its implication for ore exploration , 1

Map of Localities

Locality Pages

LocalityCitation Details
Duolong ore field, GĂȘrzĂȘ Co., Ngari, Tibet, China
Dibaonamugang Lithocap, Duolong ore field, GĂȘrzĂȘ Co., Ngari, Tibet, China

Mineral Occurrences

LocalityMineral(s)
Dibaonamugang Lithocap, Duolong ore field, GĂȘrzĂȘ Co., Ngari, Tibet, Chinaⓘ Alum Group, ⓘ Alunite, ⓘ Andesite, ⓘ Andesite-basalt, ⓘ Basalt, ⓘ Bornite, ⓘ Breccia, ⓘ Chalcopyrite, ⓘ Chert, ⓘ Chlorite Group, ⓘ Clay minerals, ⓘ Covellite, ⓘ Crystal tuff, ⓘ Dacite, ⓘ Diaspore, ⓘ Dickite, ⓘ Enargite, ⓘ Epidote, ⓘ Feldspar Group, ⓘ Granodiorite, ⓘ Greywacke, ⓘ Hematite, ⓘ Illite, ⓘ Jarosite, ⓘ Kaolinite, ⓘ Limestone, ⓘ Magnetite, ⓘ Montmorillonite, ⓘ Mudstone, ⓘ Muscovite, ⓘ Natroalunite, ⓘ Plagioclase, ⓘ Porphyry, ⓘ Pyrite, ⓘ Pyroclastic-rock, ⓘ Pyrophyllite, ⓘ Pyroxene Group, ⓘ Quartz, ⓘ Rhyolite, ⓘ Sandstone, ⓘ Shale, ⓘ Tuff, ⓘ Volcaniclastic rock, ⓘ Zunyite


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