Miocene Volcanism in the Slovenský Raj Mountains: Magmatic, Space, and Time Relationships in the Western Carpathians

Author:

Demko Rastislav1,Putiš Marián2,Li Qiu-Li3ORCID,Chew David4ORCID,Ackerman Lukáš5ORCID,Nemec Ondrej2ORCID

Affiliation:

1. State Geological Institute of Dionýz Štúr, Mlynská Dolina 1, SK-817 04 Bratislava, Slovakia

2. Department of Mineralogy, Petrology and Economic Geology, Faculty of Natural Sciences, Comenius University, SK-842 15 Bratislava, Slovakia

3. State Key Laboratory of Lithospheric Evolution, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China

4. Department of Geology, School of Natural Sciences, Trinity College Dublin, D02PN40 Dublin 2, Ireland

5. Institute of Geology of the Czech Academy of Sciences, CZ-165 00 Prague, Czech Republic

Abstract

The Miocene volcanic-intrusive complex in the Slovenský Raj Mountains, middle Slovakia, comprises a swarm of subalkaline basalts and basaltic andesites with alkaline basalts, trachybasalts and basaltic trachyandesites. Basaltic to doleritic feeder dykes and sporadic hyaloclastite lavas are exposed in contact with the Triassic Bódvaszilas Formation of the Silica Nappe. The primary clinopyroxene, plagioclase, and Fe-Ti oxide assemblage also contains calcite spheroids inferred to represent carbonatitic melt. These spheroids are associated with subsolidus chlorite, actinolite, magnetite, titanite, calcite, and epidote. Micropoikilitic clinopyroxene, albite, and Ti-magnetite formed due to rapid quenching. There was an incorporation of host rock carbonate during the eruption. The erupted products are the result of magmatic differentiation of the parental basaltic tholeiitic magma with a redox of ∆QFM = +1 to +3, affected by varying degrees of 0%–50% fractionation and the assimilation of carbonate material in a shallow magmatic reservoir. REE geochemistry shows N-MORB-like type patterns with both LaN/YbN and LaN/SmN < 1 at near constant Eu/Eu* (~0.9). This is supported by εNd(t=13 Ma) values of +8.0 to +7.4 determined from the basaltic rocks. The REE values can be modeled by 1% fractional melting of garnet peridotite mixed with 7% melting of spinel peridotite of PM composition (1:9 proportions). SIMS and LA-ICP-MS U/Pb analysis of zircons yields a concordant age of 12.69 ± 0.24 Ma and a 13.3 ± 0.16 Ma intercept (Serravallian) age. The Middle Miocene volcanic activity was related to subduction-collision processes along the boundary of the Cenozoic ALCAPA (Alps–Carpathians–Pannonia) microplate and the southern margin of the European plate.

Funder

The Slovak Research and Development Agency

National Key Research and Development Program of China

Česká Rozvojová Agentura

Science Foundation Ireland

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

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