NARA Discovery
Article Details
← Back to Search Results
Journal Article

Evolution of the Lower Permian Rochlitz volcanic system, Eastern Germany: reconstruction of an intra-continental supereruption

Marcel Hübner; Christoph Breitkreuz; Alexander Repstock; Bernhard Schulz; Anna Pietranik; Manuel Lapp; Franziska Heuer
International Journal of Earth Sciences · Vol. 110, Issue 6 · pp. 1995-2020 · 2021

Abstract

Extensional tectonics in the Late Paleozoic Central Europe was accompanied by rift magmatism that triggered voluminous intracontinental caldera-forming eruptions. Among these, the Lower Permian Rochlitz Volcanic System (RVS) in the North Saxon Volcanic Complex (Eastern Germany, Saxony) represents a supereruption (VEI 8, estimated volume of 1056 km 3 ) of monotonous rhyolites followed by monotonous intermediates. Mapping, petrography, whole-rock geochemistry along with mineral chemistry and oxygen isotopes in zircon display its complex eruption history and magma evolution. Crystal-rich (> 35 vol%), rhyolitic Rochlitz-α Ignimbrite with strong to moderate welding compaction erupted in the climactic stage after reheating of the magma by basaltic injections. Due to magma mixing, low-volume trachydacitic-to-rhyolitic Rochlitz-β Ignimbrite succeeded, characterized by high Ti and Zr-values and zircon with mantle δ 18 O. Randomly oriented, sub-horizontally bedded fiamme, and NW–SE striking subvolcanic bodies and faults suggest pyroclastic fountaining along NW–SE-oriented fissures as the dominant eruption style. Intrusion of the Leisnig and the Grimma Laccoliths caused resurgence of the Rochlitz caldera forming several peripheral subbasins. In the post-climactic stage, these were filled with lava complexes, ignimbrites and alluvial to lacustrine sediments. Significant Nb and Ta anomalies and high Nb/Ta ratios (11.8–17.9) display a high degree of crustal contamination for the melts of the RVS. Based on homogenous petrographic and geochemical composition along with a narrow range of δ 18 O in zircon Rochlitz-α Ignimbrite were classified as monotonous rhyolites. For the Rochlitz-β Ignimbrites, underplating and mixing with basic melts are indicated by Mg-rich annite–siderophyllite and δ 18 O < 6.0 in zircon. The wide spectrum of δ 18 O on zircon suggests an incomplete mixing process during the formation of monotonous intermediates in the RVS.

Bibliographic Information

JournalInternational Journal of Earth Sciences
PublisherSpringer
Publication Date2021-09-01
Publication Year2021
Volume110
Issue6
Pages1995-2020
Document TypeJournal Article
Print ISSN1437-3254
eISSN1437-3262
DOI10.1007/s00531-021-02053-5

Access Information

NARA Access Coverage1910-01-01~Current
Journal Homepagehttps://www.springer.com/journal/531
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.