Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria

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Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria. / Altenberger, Florian; Krause, Joachim; Wintzer, Niki E. et al.
in: Mineralium deposita, Jahrgang 59.2024, Nr. August, 28.02.2024, S. 1109-1132.

Publikationen: Beitrag in FachzeitschriftArtikelForschung(peer-reviewed)

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APA

Altenberger, F., Krause, J., Wintzer, N. E., Iglseder, C., Berndt, J., Bachmann, K., & Raith, J. (2024). Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria. Mineralium deposita, 59.2024(August), 1109-1132. Vorzeitige Online-Publikation. https://doi.org/10.1007/s00126-024-01250-x

Vancouver

Altenberger F, Krause J, Wintzer NE, Iglseder C, Berndt J, Bachmann K et al. Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria. Mineralium deposita. 2024 Feb 28;59.2024(August):1109-1132. Epub 2024 Feb 28. doi: 10.1007/s00126-024-01250-x

Author

Altenberger, Florian ; Krause, Joachim ; Wintzer, Niki E. et al. / Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria. in: Mineralium deposita. 2024 ; Jahrgang 59.2024, Nr. August. S. 1109-1132.

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@article{5db858e0c5324e239270159899e17d83,
title = "Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria",
abstract = "A peculiar type of stratabound tungsten mineralization in metacarbonate rocks was discovered and explored at Mallnock (Austria) during the late 1980s. It is the only tungsten occurrence in the Eastern Alps in which scheelite is associated with wolframite (96 mol% ferberite). The tungsten prospect is located in the Austroalpine Drauzug-Gurktal Nappe System recording polyphase low-grade regional metamorphism. Raman spectroscopy of carbonaceous material yield maximum metamorphic temperatures of 296 ± 27 °C and 258 ± 27 °C, which are assigned to Variscan and Eoalpine metamorphism, respectively. Scheelite and ferberite occur as polyphase stockwork-like mineralization in Fe-rich magnesite in the northern ore zone (Mallnock North), whereas in the western ore zone (Mallnock West), scheelite-quartz veinlets are exclusively hosted in dolomitic marbles.LA-ICP-MS analyses of scheelite and ferberite yield low contents of Mo, Nb, Ta, and rare earth elements, but high contents of Na and Sr. Uranium is particularly high in scheelite (up to 200 µg/g) and makes this mineral a suitable target for U-Pb dating. In-situ U-Pb dating of scheelite yielded an early Permian age (294 ± 8 Ma) for Mallnock West and a Middle Triassic age (239 ± 3 Ma) for Mallnock North. A monzodioritic dike close to Mallnock yielded a U-Pb apatite date of 282 ± 9 Ma and supports the polyphase formation of this mineralization.The U-Pb scheelite ages indicate that a model for tungsten metallogeny in the Eastern Alps must also consider remobilization of tungsten by metamorphic fluids. In the Alps, the Permian to Triassic period (ca. 290-225 Ma) is characterized by an overall extensional geodynamic setting related to the breakup of Pangea. Lithospheric thinning caused higher heat flow, low-P metamorphism, and anatexis in the lower crust, which led to enhanced crustal fluid flow in the upper crust. These processes were not only responsible for the formation of metasomatic hydrothermal magnesite and siderite deposits in the Eastern Alps but also for this unique magnesite-ferberite-scheelite mineralization at Mallnock.",
keywords = "Scheelite, Wolframite, LA-ICP-MS trace element analyses, Raman spectroscopy, U-Pb dating, Eastern Alps, U–Pb dating",
author = "Florian Altenberger and Joachim Krause and Wintzer, {Niki E.} and Christoph Iglseder and Jasper Berndt and Kai Bachmann and Johann Raith",
note = "Publisher Copyright: {\textcopyright} The Author(s) 2024.",
year = "2024",
month = feb,
day = "28",
doi = "10.1007/s00126-024-01250-x",
language = "English",
volume = "59.2024",
pages = "1109--1132",
journal = "Mineralium deposita",
issn = "0026-4598",
publisher = "Springer Berlin",
number = "August",

}

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TY - JOUR

T1 - Polyphase stratabound scheelite-ferberite mineralization at Mallnock, Eastern Alps, Austria

AU - Altenberger, Florian

AU - Krause, Joachim

AU - Wintzer, Niki E.

AU - Iglseder, Christoph

AU - Berndt, Jasper

AU - Bachmann, Kai

AU - Raith, Johann

N1 - Publisher Copyright: © The Author(s) 2024.

PY - 2024/2/28

Y1 - 2024/2/28

N2 - A peculiar type of stratabound tungsten mineralization in metacarbonate rocks was discovered and explored at Mallnock (Austria) during the late 1980s. It is the only tungsten occurrence in the Eastern Alps in which scheelite is associated with wolframite (96 mol% ferberite). The tungsten prospect is located in the Austroalpine Drauzug-Gurktal Nappe System recording polyphase low-grade regional metamorphism. Raman spectroscopy of carbonaceous material yield maximum metamorphic temperatures of 296 ± 27 °C and 258 ± 27 °C, which are assigned to Variscan and Eoalpine metamorphism, respectively. Scheelite and ferberite occur as polyphase stockwork-like mineralization in Fe-rich magnesite in the northern ore zone (Mallnock North), whereas in the western ore zone (Mallnock West), scheelite-quartz veinlets are exclusively hosted in dolomitic marbles.LA-ICP-MS analyses of scheelite and ferberite yield low contents of Mo, Nb, Ta, and rare earth elements, but high contents of Na and Sr. Uranium is particularly high in scheelite (up to 200 µg/g) and makes this mineral a suitable target for U-Pb dating. In-situ U-Pb dating of scheelite yielded an early Permian age (294 ± 8 Ma) for Mallnock West and a Middle Triassic age (239 ± 3 Ma) for Mallnock North. A monzodioritic dike close to Mallnock yielded a U-Pb apatite date of 282 ± 9 Ma and supports the polyphase formation of this mineralization.The U-Pb scheelite ages indicate that a model for tungsten metallogeny in the Eastern Alps must also consider remobilization of tungsten by metamorphic fluids. In the Alps, the Permian to Triassic period (ca. 290-225 Ma) is characterized by an overall extensional geodynamic setting related to the breakup of Pangea. Lithospheric thinning caused higher heat flow, low-P metamorphism, and anatexis in the lower crust, which led to enhanced crustal fluid flow in the upper crust. These processes were not only responsible for the formation of metasomatic hydrothermal magnesite and siderite deposits in the Eastern Alps but also for this unique magnesite-ferberite-scheelite mineralization at Mallnock.

AB - A peculiar type of stratabound tungsten mineralization in metacarbonate rocks was discovered and explored at Mallnock (Austria) during the late 1980s. It is the only tungsten occurrence in the Eastern Alps in which scheelite is associated with wolframite (96 mol% ferberite). The tungsten prospect is located in the Austroalpine Drauzug-Gurktal Nappe System recording polyphase low-grade regional metamorphism. Raman spectroscopy of carbonaceous material yield maximum metamorphic temperatures of 296 ± 27 °C and 258 ± 27 °C, which are assigned to Variscan and Eoalpine metamorphism, respectively. Scheelite and ferberite occur as polyphase stockwork-like mineralization in Fe-rich magnesite in the northern ore zone (Mallnock North), whereas in the western ore zone (Mallnock West), scheelite-quartz veinlets are exclusively hosted in dolomitic marbles.LA-ICP-MS analyses of scheelite and ferberite yield low contents of Mo, Nb, Ta, and rare earth elements, but high contents of Na and Sr. Uranium is particularly high in scheelite (up to 200 µg/g) and makes this mineral a suitable target for U-Pb dating. In-situ U-Pb dating of scheelite yielded an early Permian age (294 ± 8 Ma) for Mallnock West and a Middle Triassic age (239 ± 3 Ma) for Mallnock North. A monzodioritic dike close to Mallnock yielded a U-Pb apatite date of 282 ± 9 Ma and supports the polyphase formation of this mineralization.The U-Pb scheelite ages indicate that a model for tungsten metallogeny in the Eastern Alps must also consider remobilization of tungsten by metamorphic fluids. In the Alps, the Permian to Triassic period (ca. 290-225 Ma) is characterized by an overall extensional geodynamic setting related to the breakup of Pangea. Lithospheric thinning caused higher heat flow, low-P metamorphism, and anatexis in the lower crust, which led to enhanced crustal fluid flow in the upper crust. These processes were not only responsible for the formation of metasomatic hydrothermal magnesite and siderite deposits in the Eastern Alps but also for this unique magnesite-ferberite-scheelite mineralization at Mallnock.

KW - Scheelite

KW - Wolframite

KW - LA-ICP-MS trace element analyses

KW - Raman spectroscopy

KW - U-Pb dating

KW - Eastern Alps

KW - U–Pb dating

UR - http://www.scopus.com/inward/record.url?scp=85186250343&partnerID=8YFLogxK

UR - https://pureadmin.unileoben.ac.at/portal/en/publications/polyphase-stratabound-scheeliteferberite-mineralization-at-mallnock-eastern-alps-austria(5db858e0-c532-4e23-9270-159899e17d83).html

U2 - 10.1007/s00126-024-01250-x

DO - 10.1007/s00126-024-01250-x

M3 - Article

VL - 59.2024

SP - 1109

EP - 1132

JO - Mineralium deposita

JF - Mineralium deposita

SN - 0026-4598

IS - August

ER -