Geochemical and petrologic evolution of Otlakbaşı basaltic volcanism to the east of Lake Van
Öz
Collision-related Otlakbaşı volcanism to the east of Lake Van occurred by eruptions from extensional fissures. In this study, it is investigated new Ar-Ar age data and major, trace and rare earth elements characteristics of the Otlakbaşı basaltic volcanism. The Ar-Ar age data indicate that this basaltic volcanism erupted in Early Pliocene time in contrast to its previously known as Quaternary age. The volcanic products are basaltic composition and close to alkaline-subalkaline division line. Results of fractional crystallization accompanied by assimilation (AFC) modeling imply that fractional crystallization can be negligible compared to crustal contamination in the evolution processes of the magma chamber and ratio of the crustal contamination to the fractional crystallization (r values) varies from 0.1 to 0.35. Enrichment of large ion lithophile elements (LILE) and light rare earth elements (LREE) relative to high strength field elements (HFSE) and behavior of mobile elements (Ba and Th) reveal that the mantle source region of the Otlakbaşı basaltic volcanism might have been enriched by melts that were derived from subducted sediments. Depletion in Rb and K elements of the fractionated-corrected samples indicate that amphibole and/or phlogopite could be the presence in the mantle source. Results of partial melting model studies show that this basaltic volcanism can be predominantly produced by the melting of the spinel peridotite source. Metasomatized spinel bearing lithospheric mantle may be responsible for the eruption of the Otlakbaşı basaltic volcanism.
Anahtar Kelimeler
Kaynakça
- Acarlar, M., Erkal, T., Güner, E., Şen, A., Umut, M., Elibjol, E., Gedik, İ., Hakyemez, Y., Uğuz, F. 1991. Van Gölü Doğu ve Kuzeyinin Jeolojisi, Maden Tetkik ve Arama Genel Müdürlüğü, Rapor No: 9469, 94 s. Ankara (yayınlanmamış).
- Adam, J., Green, T. 2006. Trace element partitioning between mica- and amphibole-bearing garnet lherzolite and hydrous basanitic melt: 1. Experimental results and the investigation of controls on partitioning behavior. Contributions to Mineralogy and Petrology 152, 1-17.
- Aldanmaz, E., Yalınız, M.K., Güçtekin, A., Göncüoğlu, M.C. 2007. Geochemical characteristics of mafic lavas from the Neotethyan ophiolites in western Turkey: implications for heterogeneous source contribution during variable stages of ocean crust generation. Geological Magazine 145, 37-54.
- Al-Lazki, A., Seber, D., Sandvol, E., Türkelli, N., Mohamad, R., Barazangi, M. 2003. Tomographic Pn velocity and anisotropy structure beneath the Anatolian plateau (eastern Turkey) and the surrounding regions, Geophysical Research Letter 30, 8043.
- Allen, M., Armstrong, H. A. 2008. Arabia-Eurasia collision and the forcing of mid-Cenozoic global cooling. Palaeogeography, Palaeoclimatology, Palaeoecology 265, 52-58.
- Angus, D.A., Wilson, D.C., Sandvol, E., Ni, J.F. 2006. Lithospheric structure of the Arabian and Eurasian collision zone in Eastern Turkey from S-wave receiver functions. Geophysical Journal of International 166, 1335-1346.
- Bağcı, U., Alpaslan, M., Frei, R., Kurt, M.A., Temel, A. 2011. Different Degrees of Partial Melting of the Enriched Mantle Source for Plio-Quaternary Basic Volcanism, Toprakkale (Osmaniye) region, Southern Turkey. Turkish Journal of Earth Science 20, 115-135.
- Bravo, M.S., O,Hara, M.J. 1975. Partial melting of phlogopite–bearing synthetic spinel– and garnet– lherzolites. Physics and Chemistry of the Earth 54, 845-854.
Ayrıntılar
Birincil Dil
İngilizce
Konular
Mühendislik
Bölüm
Araştırma Makalesi
Yazarlar
Vural Oyan
*
0000-0002-1566-9749
Türkiye
Yayımlanma Tarihi
15 Aralık 2018
Gönderilme Tarihi
7 Aralık 2017
Kabul Tarihi
4 Şubat 2018
Yayımlandığı Sayı
Yıl 2018 Cilt: 157 Sayı: 157
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