Trace elements in magmatic and hydrothermal quartz: Implications on the genesis of the Xingluokeng Tungsten Deposit, South China
Author:
Funder
National Science Fund for Distinguished Young Scholars
Guizhou Provincial 2020 Science and Technology Subsidies
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11631-024-00688-0.pdf
Reference84 articles.
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2. Ballouard C, Poujol M, Boulvais P, Branquet Y, Tartese R, Vigneresse JL (2016) Nb-Ta fractionation in peraluminous granites: A marker of the magmatic-hydrothermal transition. Geology. 44:231–234.
3. Beurlen H, Müller A, Silva D, Da Silva MRR (2011) Petrogenetic significance of LA-ICP-MS trace-element data on quartz from the Borborema Pegmatite Province, northeast Brazil. Mineral Mag. 75(5):2703–2719.
4. Breiter K, Müller A (2009) Evolution of rare metal-specialised granite melt documented by quartz chemistry. Eur J Mineral. 21:335–346.
5. Breiter K, Svojtka M, Ackerman L, Švecová K (2012) Trace element composition of quartz from the Variscan Altenberg-Teplice caldera (Krušné hory/Erzgebirge Mts, Czech Republic/Germany): Insights into the volcano-plutonic complex evolution. Chem Geol. 326–327:36–50.
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