Tab.1: Representative bulk-rock and trace element chemistry ...
High-pressure/low-temperature metabasites occupy a definite geological position within the structure of the Polar Urals and have a very important bearing on the understanding of the early history of the Ural Mountains. Recently obtained geological, petrographic, geochemical and isotope data allow so...
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ftdatacite:10.1594/pangaea.757271 2024-09-15T18:40:03+00:00 Tab.1: Representative bulk-rock and trace element chemistry ... Remizov, Dmitry N 2011 text/tab-separated-values https://dx.doi.org/10.1594/pangaea.757271 https://doi.pangaea.de/10.1594/PANGAEA.757271 en eng PANGAEA Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 ORDINAL NUMBER Sample code/label Rock type Silicon dioxide Titanium dioxide Aluminium oxide Iron oxide, Fe2O3 Iron oxide, FeO Manganese oxide Magnesium oxide Calcium oxide Sodium oxide Potassium oxide Phosphorus pentoxide Loss on ignition Elements, total Lanthanum Cerium Neodymium Samarium Europium Terbium Ytterbium Lutetium Rare-earth elements Rubidium Caesium Strontium Barium Chromium Cobalt Arsenic Antimony Scandium Hafnium Thorium Uranium Tantalum Zirconium Nickel Selenium Zinc Geological sample dataset Supplementary Dataset Dataset 2011 ftdatacite https://doi.org/10.1594/pangaea.757271 2024-08-01T10:51:31Z High-pressure/low-temperature metabasites occupy a definite geological position within the structure of the Polar Urals and have a very important bearing on the understanding of the early history of the Ural Mountains. Recently obtained geological, petrographic, geochemical and isotope data allow some conclusions on this history. The metabasites of the Khord”yus and Dzela complexes contain relics of a Neoproterozoic (578 ±8 Ma) oceanic crust. This crust formed part of the base of the early Paleozoic (500 Ma) ensimatic island arc and experienced Ca-Al-Si±Na metasomatism and, probably, partial melting with the formation of boninite melts. However, so far no boninite volcanics have been found. The metabasites at the base of the island arc took part in the collision and as a consequence experienced glaucophane schist and greenschist facies metamorphism during the collision and obduction over the passive Baltic margin 350 ±11 Ma ago. ... : Supplement to: Remizov, Dmitry N (2006): Metabasite basement of the Voikar Island Arc in the Polar Urals. Polarforschung, 73(2/3), 49-57 ... Dataset ural mountains DataCite |
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English |
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ORDINAL NUMBER Sample code/label Rock type Silicon dioxide Titanium dioxide Aluminium oxide Iron oxide, Fe2O3 Iron oxide, FeO Manganese oxide Magnesium oxide Calcium oxide Sodium oxide Potassium oxide Phosphorus pentoxide Loss on ignition Elements, total Lanthanum Cerium Neodymium Samarium Europium Terbium Ytterbium Lutetium Rare-earth elements Rubidium Caesium Strontium Barium Chromium Cobalt Arsenic Antimony Scandium Hafnium Thorium Uranium Tantalum Zirconium Nickel Selenium Zinc Geological sample |
spellingShingle |
ORDINAL NUMBER Sample code/label Rock type Silicon dioxide Titanium dioxide Aluminium oxide Iron oxide, Fe2O3 Iron oxide, FeO Manganese oxide Magnesium oxide Calcium oxide Sodium oxide Potassium oxide Phosphorus pentoxide Loss on ignition Elements, total Lanthanum Cerium Neodymium Samarium Europium Terbium Ytterbium Lutetium Rare-earth elements Rubidium Caesium Strontium Barium Chromium Cobalt Arsenic Antimony Scandium Hafnium Thorium Uranium Tantalum Zirconium Nickel Selenium Zinc Geological sample Remizov, Dmitry N Tab.1: Representative bulk-rock and trace element chemistry ... |
topic_facet |
ORDINAL NUMBER Sample code/label Rock type Silicon dioxide Titanium dioxide Aluminium oxide Iron oxide, Fe2O3 Iron oxide, FeO Manganese oxide Magnesium oxide Calcium oxide Sodium oxide Potassium oxide Phosphorus pentoxide Loss on ignition Elements, total Lanthanum Cerium Neodymium Samarium Europium Terbium Ytterbium Lutetium Rare-earth elements Rubidium Caesium Strontium Barium Chromium Cobalt Arsenic Antimony Scandium Hafnium Thorium Uranium Tantalum Zirconium Nickel Selenium Zinc Geological sample |
description |
High-pressure/low-temperature metabasites occupy a definite geological position within the structure of the Polar Urals and have a very important bearing on the understanding of the early history of the Ural Mountains. Recently obtained geological, petrographic, geochemical and isotope data allow some conclusions on this history. The metabasites of the Khord”yus and Dzela complexes contain relics of a Neoproterozoic (578 ±8 Ma) oceanic crust. This crust formed part of the base of the early Paleozoic (500 Ma) ensimatic island arc and experienced Ca-Al-Si±Na metasomatism and, probably, partial melting with the formation of boninite melts. However, so far no boninite volcanics have been found. The metabasites at the base of the island arc took part in the collision and as a consequence experienced glaucophane schist and greenschist facies metamorphism during the collision and obduction over the passive Baltic margin 350 ±11 Ma ago. ... : Supplement to: Remizov, Dmitry N (2006): Metabasite basement of the Voikar Island Arc in the Polar Urals. Polarforschung, 73(2/3), 49-57 ... |
format |
Dataset |
author |
Remizov, Dmitry N |
author_facet |
Remizov, Dmitry N |
author_sort |
Remizov, Dmitry N |
title |
Tab.1: Representative bulk-rock and trace element chemistry ... |
title_short |
Tab.1: Representative bulk-rock and trace element chemistry ... |
title_full |
Tab.1: Representative bulk-rock and trace element chemistry ... |
title_fullStr |
Tab.1: Representative bulk-rock and trace element chemistry ... |
title_full_unstemmed |
Tab.1: Representative bulk-rock and trace element chemistry ... |
title_sort |
tab.1: representative bulk-rock and trace element chemistry ... |
publisher |
PANGAEA |
publishDate |
2011 |
url |
https://dx.doi.org/10.1594/pangaea.757271 https://doi.pangaea.de/10.1594/PANGAEA.757271 |
genre |
ural mountains |
genre_facet |
ural mountains |
op_rights |
Creative Commons Attribution 3.0 Unported https://creativecommons.org/licenses/by/3.0/legalcode cc-by-3.0 |
op_doi |
https://doi.org/10.1594/pangaea.757271 |
_version_ |
1810484377293946880 |