Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources

The paper presents new data on mineralogy, geochemistry, and Sr-Nd-Pb isotope systematics of Late Cenozoic eruption products of Uguumur and Bod-Uul volcanoes in the Tesiingol field of Northern Mongolia, with implications for the magma generation conditions, magma sources, and geodynamic causes of vo...

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Main Authors: Alexander Perepelov, Mikhail Kuzmin, Svetlana Tsypukova, Yuri Shcherbakov, Sergey Dril, Alexey Didenko, Enkhbat Dalai-Erdene, Mikhail Puzankov, Alexander Zhgilev
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:Minerals
Subjects:
Online Access:https://www.mdpi.com/2075-163X/10/7/612
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spelling doaj-30d81b4be2124b74871729cd02d16b802020-11-25T03:47:21ZengMDPI AGMinerals2075-163X2020-07-011061261210.3390/min10070612Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma SourcesAlexander Perepelov0Mikhail Kuzmin1Svetlana Tsypukova2Yuri Shcherbakov3Sergey Dril4Alexey Didenko5Enkhbat Dalai-Erdene6Mikhail Puzankov7Alexander Zhgilev8Vinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaVinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaVinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaVinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaVinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaKosygin Institute of Tectonics and Geophysics, FEB RAS, 680000 Khabarovsk, RussiaInstitute of Geology, Mongolian Academy of Sciences, 13331 Ulaanbaatar, MongoliaInstitute of Volcanology and Seismology, FEB RAS, 683006 Petropavlovsk-Kamchatsky, RussiaVinogradov Institute of Geochemistry, SB RAS, 664033 Irkutsk, RussiaThe paper presents new data on mineralogy, geochemistry, and Sr-Nd-Pb isotope systematics of Late Cenozoic eruption products of Uguumur and Bod-Uul volcanoes in the Tesiingol field of Northern Mongolia, with implications for the magma generation conditions, magma sources, and geodynamic causes of volcanism. The lavas and pyroclastics of the two volcanic centers are composed of basanite, phonotephrite, basaltic trachyandesite, and trachyandesite, which enclose spinel and garnet peridotite and garnet-bearing pyroxenite xenoliths; megacrysts of Na-sanidine, Ca-Na pyroxene, ilmenite, and almandine-grossular-pyrope garnets; and carbonate phases. The rocks are enriched in LILE and HFSE, show strongly fractioned REE spectra, and are relatively depleted in U and Th. The low contents of U and Th in Late Cenozoic volcanics from Northern and Central Mongolia represent the composition of a magma source. The presence of carbonate phases in subliquidus minerals and mantle rocks indicates that carbon-bearing fluids were important agents in metasomatism of subcontinental lithospheric mantle. The silicate-carbonate melts were apparently released from eclogitizied slabs during the Paleo-Asian and Mongol-Okhotsk subduction. The parent alkali-basaltic magma may be derived as a result from partial melting of Grt-bearing pyroxenite or eclogite-like material or carobantized peridotite. The sources of alkali-basaltic magmas from the Northern and Central Mongolia plot different isotope trends corresponding to two different provinces. The isotope signatures of megacrysts are similar to those of studied volcanic centers rocks. The P-T conditions inferred for the crystallization of pyroxene and garnet megacrysts correspond to a depth range from the Grt-Sp phase transition to the lower crust. Late Cenozoic volcanism in Northern and Central Mongolia may be a response to stress propagation and gravity instability in the mantle associated with the India-Asia collision.https://www.mdpi.com/2075-163X/10/7/612late cenozoic intraplate volcanismmongoliaisotope datamagma sourcesmegacrystsgeodynamic conditions
collection DOAJ
language English
format Article
sources DOAJ
author Alexander Perepelov
Mikhail Kuzmin
Svetlana Tsypukova
Yuri Shcherbakov
Sergey Dril
Alexey Didenko
Enkhbat Dalai-Erdene
Mikhail Puzankov
Alexander Zhgilev
spellingShingle Alexander Perepelov
Mikhail Kuzmin
Svetlana Tsypukova
Yuri Shcherbakov
Sergey Dril
Alexey Didenko
Enkhbat Dalai-Erdene
Mikhail Puzankov
Alexander Zhgilev
Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
Minerals
late cenozoic intraplate volcanism
mongolia
isotope data
magma sources
megacrysts
geodynamic conditions
author_facet Alexander Perepelov
Mikhail Kuzmin
Svetlana Tsypukova
Yuri Shcherbakov
Sergey Dril
Alexey Didenko
Enkhbat Dalai-Erdene
Mikhail Puzankov
Alexander Zhgilev
author_sort Alexander Perepelov
title Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
title_short Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
title_full Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
title_fullStr Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
title_full_unstemmed Late Cenozoic Uguumur and Bod-Uul Volcanic Centers in Northern Mongolia: Mineralogy, Geochemistry, and Magma Sources
title_sort late cenozoic uguumur and bod-uul volcanic centers in northern mongolia: mineralogy, geochemistry, and magma sources
publisher MDPI AG
series Minerals
issn 2075-163X
publishDate 2020-07-01
description The paper presents new data on mineralogy, geochemistry, and Sr-Nd-Pb isotope systematics of Late Cenozoic eruption products of Uguumur and Bod-Uul volcanoes in the Tesiingol field of Northern Mongolia, with implications for the magma generation conditions, magma sources, and geodynamic causes of volcanism. The lavas and pyroclastics of the two volcanic centers are composed of basanite, phonotephrite, basaltic trachyandesite, and trachyandesite, which enclose spinel and garnet peridotite and garnet-bearing pyroxenite xenoliths; megacrysts of Na-sanidine, Ca-Na pyroxene, ilmenite, and almandine-grossular-pyrope garnets; and carbonate phases. The rocks are enriched in LILE and HFSE, show strongly fractioned REE spectra, and are relatively depleted in U and Th. The low contents of U and Th in Late Cenozoic volcanics from Northern and Central Mongolia represent the composition of a magma source. The presence of carbonate phases in subliquidus minerals and mantle rocks indicates that carbon-bearing fluids were important agents in metasomatism of subcontinental lithospheric mantle. The silicate-carbonate melts were apparently released from eclogitizied slabs during the Paleo-Asian and Mongol-Okhotsk subduction. The parent alkali-basaltic magma may be derived as a result from partial melting of Grt-bearing pyroxenite or eclogite-like material or carobantized peridotite. The sources of alkali-basaltic magmas from the Northern and Central Mongolia plot different isotope trends corresponding to two different provinces. The isotope signatures of megacrysts are similar to those of studied volcanic centers rocks. The P-T conditions inferred for the crystallization of pyroxene and garnet megacrysts correspond to a depth range from the Grt-Sp phase transition to the lower crust. Late Cenozoic volcanism in Northern and Central Mongolia may be a response to stress propagation and gravity instability in the mantle associated with the India-Asia collision.
topic late cenozoic intraplate volcanism
mongolia
isotope data
magma sources
megacrysts
geodynamic conditions
url https://www.mdpi.com/2075-163X/10/7/612
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