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Pedersen, Jonas M., Ulrich, Thomas, Nagel, Thorsten, Tegner, Christian (2020) Sulphide melt and aqueous fluid saturation in the PGE–Au mineralisation of the Skaergaard intrusion: evidence from melt inclusions. Contributions to Mineralogy and Petrology, 175 (2) doi:10.1007/s00410-020-1656-5

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Reference TypeJournal (article/letter/editorial)
TitleSulphide melt and aqueous fluid saturation in the PGE–Au mineralisation of the Skaergaard intrusion: evidence from melt inclusions
JournalContributions to Mineralogy and Petrology
AuthorsPedersen, Jonas M.Author
Ulrich, ThomasAuthor
Nagel, ThorstenAuthor
Tegner, ChristianAuthor
Year2020 (February)Volume175
Issue2
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00410-020-1656-5Search in ResearchGate
Mindat Ref. ID80351Long-form Identifiermindat:1:5:80351:7
GUIDd27657f9-52ce-4570-998a-56c910f463f3
Full ReferencePedersen, Jonas M., Ulrich, Thomas, Nagel, Thorsten, Tegner, Christian (2020) Sulphide melt and aqueous fluid saturation in the PGE–Au mineralisation of the Skaergaard intrusion: evidence from melt inclusions. Contributions to Mineralogy and Petrology, 175 (2) doi:10.1007/s00410-020-1656-5
Plain TextPedersen, Jonas M., Ulrich, Thomas, Nagel, Thorsten, Tegner, Christian (2020) Sulphide melt and aqueous fluid saturation in the PGE–Au mineralisation of the Skaergaard intrusion: evidence from melt inclusions. Contributions to Mineralogy and Petrology, 175 (2) doi:10.1007/s00410-020-1656-5
In(2020, February) Contributions to Mineralogy and Petrology Vol. 175 (2) Springer Science and Business Media LLC

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.

Bollingberg K (1995) Textural and chemical evolution of the FeTi-minerals during the late- and post-magmatic cooling of the Skaergaard intrusion, East Greenland. Dissertation, University of Copenhagen, p 112
Frost RB, Lindsley DH (1992) Equilibria among Fe–Ti oxides, pyroxenes, olivine, and quartz: part II. Application. Am Mineral 77:1004–1020
Koga KT, Cluzel N, Rose-Koga EF, Laporte D, Shimizu N (2008) Experimental demonstration of lithium-boron depletion during magma degassing. In: AGU fall meeting 2008, abstract V31B-2143
McBirney AR (1996) The Skaergaard intrusion. In: Cawthorn RG (eds) Layered intrusions. Elsevier, Amsterdam, pp 147–180. Doi: 10.1016/S0167-2894(96)80007-8.
Nielsen TFD, Bernstein S (2009) Chemical stratigraphy of the Triple Group and mineralisation of the Skaergaard intrusion: insight in the crystallisation process. In: AGU fall meeting 2009, abstract V21A-1956
Nielsen TFD, Andersen JCØ, Brooks CK (2005) The Platinova Reef of the Skaergaard intrusion. Exploration for platinum-group element deposits. Mineral Assoc Can Short Course Ser 35:431–456
Nielsen TFD, Olsen SD, Stensgaard BM (2009) Developing a 3-D model for the Skaergaard intrusion in East Greenland: constraints on structure, mineralisation and petrogenetic models. Geol Surv Den Greenl Bull 17:61–64
Pedersen JM (2019) Volatiles of North Atlantic Magmatism: ore forming processes in the Skaergaard intrusion and the release of volatiles from the East Greenland flood basalts. PhD thesis, Aarhus University, Denmark, p 177
Smithsonian Microbeam Standards Data Sheets (2016) Mineralsciences.si.edu. https://mineralsciences.si.edu/facilities/standards/datasheets.htm. Accessed 11 July 2016
Student JJ, Bodnar RJ (1999) Synthetic fluid inclusions XIV: coexisting silicate melt and aqueous fluid inclusions in the haplogranite–H2O–NaCl–KCl system. J Petrol 40(10):1509–1525. https://doi.org/10.1093/petrology/40.10.1509
Wager LR, Brown GM (1968) Layered igneous rocks. Oliver and Boyd, Edinburgh, p 588


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