Geochemistry of basalts from Serocki Volcano

Fuente: PANGAEA
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Autori principali: Humphris, Susan E, Bryan, Wilfred B, Thompson, Geoffrey, Autio, Laurie K
Natura: Dataset Open Access
Lingua:en
Pubblicazione: PANGAEA 1990
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author Humphris, Susan E
Bryan, Wilfred B
Thompson, Geoffrey
Autio, Laurie K
author_facet Humphris, Susan E
Bryan, Wilfred B
Thompson, Geoffrey
Autio, Laurie K
collection Datos científicos de ciencias marinas y ambientales
contents Basalts collected during drilling and diving programs on Serocki Volcano mostly fall within a limited compositional range, and are moderately evolved, normal MORBs with distinctive high MgO contents (averaging 7.60 wt%) and high A1203 concentrations (averaging 16.14 wt% in whole rock samples). However, samples recovered from within the central crater have lower Ti02 and FeO*/MgO, and higher MgO and Al2O3 concentrations, and are most similar to glasses recovered at Site 649 about 45 km to the north. Comparison of the observed geochemical variations with low-pressure experimental work and other samples from the region suggests that the Serocki Volcano and Site 649 data are compatible with crystal-liquid fractionation involving both olivine and early-stage clinopyroxene, as well as plagioclase, and that the sources may be similar even though Sites 648 and 649 are located in different, but adjacent, spreading cells. Consideration of the stratigraphy and morphology of Serocki Volcano suggests that this feature is more properly described as a megatumulus or lava delta, associated with a steeper, conical peak to the southwest. The evolution of Serocki Volcano involved early construction of a marginal rampart of pillows, followed by doming of this feature and the formation of a perched lava pond. Draining of this pond resulted in collapse and the formation of the central crater.
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_745318
institution PANGAEA
language en
publishDate 1990
publisher PANGAEA
record_format pangaea
spellingShingle Geochemistry of basalts from Serocki Volcano
Humphris, Susan E
Bryan, Wilfred B
Thompson, Geoffrey
Autio, Laurie K
109-648A; 109-648B; 109-669A; 109-670A; Alv_dive_1690; DRILL; Drilling/drill rig; Joides Resolution; Leg109; Mid-Atlantic Ridge; North Atlantic Ocean; Ocean Drilling Program; ODP; Serocki Volcano
Basalts collected during drilling and diving programs on Serocki Volcano mostly fall within a limited compositional range, and are moderately evolved, normal MORBs with distinctive high MgO contents (averaging 7.60 wt%) and high A1203 concentrations (averaging 16.14 wt% in whole rock samples). However, samples recovered from within the central crater have lower Ti02 and FeO*/MgO, and higher MgO and Al2O3 concentrations, and are most similar to glasses recovered at Site 649 about 45 km to the north. Comparison of the observed geochemical variations with low-pressure experimental work and other samples from the region suggests that the Serocki Volcano and Site 649 data are compatible with crystal-liquid fractionation involving both olivine and early-stage clinopyroxene, as well as plagioclase, and that the sources may be similar even though Sites 648 and 649 are located in different, but adjacent, spreading cells. Consideration of the stratigraphy and morphology of Serocki Volcano suggests that this feature is more properly described as a megatumulus or lava delta, associated with a steeper, conical peak to the southwest. The evolution of Serocki Volcano involved early construction of a marginal rampart of pillows, followed by doming of this feature and the formation of a perched lava pond. Draining of this pond resulted in collapse and the formation of the central crater.
title Geochemistry of basalts from Serocki Volcano
topic 109-648A; 109-648B; 109-669A; 109-670A; Alv_dive_1690; DRILL; Drilling/drill rig; Joides Resolution; Leg109; Mid-Atlantic Ridge; North Atlantic Ocean; Ocean Drilling Program; ODP; Serocki Volcano
url https://doi.org/10.1594/PANGAEA.745318