Author:
Marchev Peter,Raicheva Raya,Filipov Petyo,Ivanova Rositsa,Baziotis Ioannis
Abstract
Volcanism during the Priabonian–Oligocene times (35–27 Ma) in the Rhodope Massif produced large volume of shoshonitic and calcalkaline lavas and three large volume silicic ignimbrites and fallout deposits. The youngest of these ignimbrites, named here as Perelik ignimbrite (PI), consists of three areas, previously described as three separate ignimbrite units, namely Bratsigovo-Dospat, Perelik and Kotili-Vitina. The ~300 m thick ignimbrites cover an area of 700 km2, 220 km2 and 350 km2, respectively. Our study demonstrates that these ignimbrites have identical ages of ~31.6 Ma and mineral and chemical compositions and are parts of a single large eruption. Based on these data, we suggest that the original areal coverage was much larger, possibly 3000 km2, with magma volume of ~1000 km3. These results classify the Perelik eruption as one of the largest European Oligocene supereruptions These ignimbrites have notably high phenocrystal content (40–50%) and are a relatively homogeneous chemical composition, which are characteristics features of the ‘monotonous intermediate’ ignimbrites. Here, we provide petrographic observations, and chemical and isotopic (Sr, Nd) analyses to explain the P-T conditions of crystallization of these ignimbrites.
Publisher
Bulgarian Geological Society
Reference17 articles.
1. Aguirre-Díaz, G. J., G. Labarthe-Hernández. 2003. Fissure ignimbrites: fissure-source origin for voluminous ignimbrites of the Sierra Madre Occidental and its relationship with Basin and Range faulting. – Geology, 31, 9, 773–776; https://doi.org/10.1130/G19665.1.
2. Bachmann, O., M. A. Dungan, P. W. Lipman. 2002. The Fish Canyon magma body, San Juan volcanic field, Colorado: rejuvenation and eruption of an upper-crustal batholith. – J. Petrol., 43, 8, 1469–1503; https://doi.org/10.1093/Petrology/43.8.1469.
3. Elefteriadis, G. 1995. Petrogenesis of the Oligocene volcanics from the Central Rhodope massif (N. Greece). – European J. Mineralogy, 7, 5, 1169–1182; https://doi.org/10.1127/ejm/7/5/1169.
4. Goranov, A. 1960. Lithology of the Paleogene deposits in a part of the Eastern Rhodopes. – Trudove varhu Geologiata na Bulgaria, Seria Geohimia y Polezni Izkopaemi, 1, 259–310 (in Bulgarian with English abstract).
5. Grocke, S., S. L. de Silva, P. J. Wallace, E. Cottrell, A. Schmitt. 2017. Catastrophic caldera-forming (CCF) monotonous silicic magma reservoirs: Constraints from volatiles in melt inclusions from the 3·49 Ma Tara Supereruption, Guacha II caldera, SW Bolivia. – J. Petrol., 58, 11, 2115–2142; https://doi.org/10.1093/petrology/egy003.
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献