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Wang, Xin; Qi, Nan; Wu, Chang-Zhi; Zhu, Xin-You; He, Xi-Heng; Deng, Xiao-Hua (2025) The magmatic to hydrothermal evolution in the Weilasituo Sn-polymetallic deposit, NE China: Insights from quartz texture and trace elements. Lithos, 508. doi:10.1016/j.lithos.2025.108091

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Reference TypeJournal (article/letter/editorial)
TitleThe magmatic to hydrothermal evolution in the Weilasituo Sn-polymetallic deposit, NE China: Insights from quartz texture and trace elements
JournalLithos
AuthorsWang, XinAuthor
Qi, NanAuthor
Wu, Chang-ZhiAuthor
Zhu, Xin-YouAuthor
He, Xi-HengAuthor
Deng, Xiao-HuaAuthor
Year2025 (September)Volume508
PublisherElsevier BV
DOIdoi:10.1016/j.lithos.2025.108091Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18345985Long-form Identifiermindat:1:5:18345985:9
GUID0
Full ReferenceWang, Xin; Qi, Nan; Wu, Chang-Zhi; Zhu, Xin-You; He, Xi-Heng; Deng, Xiao-Hua (2025) The magmatic to hydrothermal evolution in the Weilasituo Sn-polymetallic deposit, NE China: Insights from quartz texture and trace elements. Lithos, 508. doi:10.1016/j.lithos.2025.108091
Plain TextWang, Xin; Qi, Nan; Wu, Chang-Zhi; Zhu, Xin-You; He, Xi-Heng; Deng, Xiao-Hua (2025) The magmatic to hydrothermal evolution in the Weilasituo Sn-polymetallic deposit, NE China: Insights from quartz texture and trace elements. Lithos, 508. doi:10.1016/j.lithos.2025.108091
In(2025) Lithos Vol. 508. 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.

Bao (2006) Geol. Bull. China. Carboniferous-Permian marine lithostratigraphy and sequence stratigraphy in Xi Ujimqin Qi, southeastern Inner Mongolia, China 25, 572
Chen (2022) Earth Sci. Application Study on High Precision Aeromagnetic Survey in Weilasituo, Inner Mongolia, China 47, 2175
Ding (2022) Earth Sci. Comparison on the Characteristics of Cassiterite-Bearing and Barren Granites in the Beidashan Region, Southern Great Xing'an Range 47, 3371
Götte (2012) Trace element characteristics, luminescence properties and real structure of quartz , 71
Lehmann (1990)
Lehmann (2000) Lithos Formation of tin ore deposits: a reassessment 105756
Li (2018) Mineral Expl. Geological characteristics and prospecting significance of Weilasituo li polymetallic deposit, Inner Mongolia 9, 1185
Linnen (2005) Granite-related rare-element deposits and experimental constraints on Ta-Nb-W-Sn-Zr-Hf mineralization
Linnen (1992) Can. Mineral. Evidence of magmatic cassiterite mineralization at the Nong Sua aplite-pegmatite complex, Thailand 30, 739
Liu (2010) Geol. Bull. China The SHRIMP zircon U-Pb dating and geological features of Bairendaba diorite in the Xilinhaote area, Inner Mongolia, China 05, 64
Liu (2018) Mineral Deposits Characteristics of fluid inclusions and H-O-C-S-Pb isotopes of Weilasituo Sn-polymetallic deposit in southern Da Hinggan Mountains 37, 199
Lowenstern (1996) Earth Environ. Sci. Trans. R. Soc. Edinb. Exsolved magmatic fluid and its role in the formation of comb-layered quartz at the cretaceous Logtung W-Mo deposit, Yukon Territory, Canada 87, 291
MĂŒller (2002) Vestnik Ceskeho Geologickeho Ustavu Trace elements and growth patterns in quartz: a fingerprint of the evolution of the subvolcanic PodlesĂ­ Granite System (KruĆĄnĂ© horyMts., Czech Republic) 77, 135
Nekrasov (1980) Dokl. Earth Sci. Partition of tin between melt and chloride fluid in the granite-SnO-SnO2-fluid system , 165
Rusk (2012) Cathodoluminescent textures and trace elements in hydrothermal quartz , 307
Raymond (2013) , 242
Vasyukova (2008) Geochim. Cosmochim. Acta Origin of “quartz eyes” and fluid inclusions in mineralized porphyries 72, 978
Wang (2013) Geotecton. Metallog. LA-ICP-MS Zircon U-Pb Dating, Geochemistry of the Intrusive Rocks from the Bianjiadayuan Pb-Zn-Ag Deposit, Inner Mongolia, China and Tectonic Implications 37, 730
Wu (2021) Acta Petrol. Sin. Mineralization of the Weilasituo rare metaltin-polymetallic ore deposit in Inner Mongolia: Insights from fractional crystallization of granitic magmas 37, 28
Xue (2009) Acta Petrol. Sin. The Xilingele complex from the eastern part of the Central Asian-Mongolia Orogenic Belt, China: Products of early Variscan orogeny other than ancient block: evidence from zircon SHRIMP U-Pb ages 25, 2001
Yang (2022) Earth Sci. Front. High purity quartz: Research progress and perspective review 29, 231
Zhang (2008) Acta Petrol. Sin. Age and tectonic setting of Triassic basic volcanic rocks in southern Da Hinggan Range 24, 911
Zhu (2016) Geol. China Geological and geochemical characteristics of the Weilasito Sn-Zn deposit, Inner Mongolia 43, 188


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