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Geochemistry and Sr, Nd, and Pb Isotopic Composition of Early Cretaceous Volcanic Rocks of the Mendeleev Rise, Arctic Ocean

2026/05/01 by S. G. Skolotnev, G. V. Ledneva, O. I. Okina +4
Earth and Planetary Sciences · #Arctic #Basalt #Felsic #Geochemistry and Elemental Analysis #Geological Studies and Exploration #Geological and Geochemical Analysis #Igneous rock #Large igneous province #Phenocryst #Pyroxene #Terrigenous sediment #Volcanic rock

paper · doi:10.1134/s0016702925601512

crossref issued 2026/05/01 · crossref published 2026/05/01 · crossref published-print 2026/05/01 · openalex publication_date 2026/05/01 · crossref published-online 2026/06/18 · crossref created 2026/06/18 · openalex created_date 2026/06/19 · openalex updated_date 2026/08/01 · crossref deposited 2026/08/03 · crossref indexed 2026/08/03

Abstract

Abstract The paper presents newly obtained data on geochemistry and Sr, Nd, and Pb isotopic composition of Early Cretaceous volcanic rocks of the Mendeleev Rise in the Arctic Ocean. Cretaceous igneous rocks from this rise have been previously characterized only by a few samples of the Arctic-2012 collection (Morozov et al., 2012; Kremenetsky et al., 2015). The studied volcanic rocks belong to the unique Arctic-2014 and Arctic-2016 collections, compiled by sampling bedrock exposures during the 2014 and 2016 research submarine deep-sea dives under the ice cover. The rocks are variably altered moderately to highly differentiated volcanics that differ in their phenocryst and groundmass mineral assemblages, the distribution of trace elements, and the Sr, Nd, and Pb isotopic composition. Based on these findings and data, the rocks were classified into three groups: (a) olivine trachybasalts; (b) pyroxene basaltic trachyandesites and ferrohortonolite trachyandesites; and (c) lamprophyre. The compositional diversity of these rocks is likely due to the heterogeneity (including isotopic one) of their mantle sources, which were melted at different depths in the presence/absence of garnet in the mineral residue assemblages, as well as due to differences in a degree of magma fractionation, which was in most cases combined with the assimilation of crustal rocks (carbonate-bearing and siliceous terrigenous rocks). The studied volcanic rocks are compositionally similar to continental tholeiitic and alkaline igneous rocks of the High Arctic Large Igneous Province (HALIP), a fact consistent with that the Mendeleev Rise and Alpha Ridge belong to one of its areas. These volcanic rocks were probably produced in a plume geodynamic setting. The obtained data do not contradict the model of upper mantle convection due to the significant lateral displacement of the subducted lithosphere of the Pacific plate along the boundary of the upper and lower mantle (Laverov et al., 2012; Lobkovsky et al., 2021).

Citations