Volcanics from the Sierra Leone Rise

THE Sierra Leone Rise, located in the east equatorial Atlantic, forms a discontinuous chain of seamounts as shallow as 2 km extending with a general NE–SW trend from near the Sierra Leone coast of Africa, to the St Paul fracture zone near the Mid-Atlantic Ridge (Fig. 1). The origin of this feature h...

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Published in:Nature
Main Authors: Hekinian, R., Bonte, P., Dudley, W., Blanc, P. L., Jehano, C., Labeyrie, L., Duplessy, J. C.
Format: Article in Journal/Newspaper
Language:English
Published: Nature Publishing Group 1978
Subjects:
Online Access:https://oceanrep.geomar.de/id/eprint/41669/
https://oceanrep.geomar.de/id/eprint/41669/1/Hekinian_Nature.pdf
https://doi.org/10.1038/275536a0
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author Hekinian, R.
Bonte, P.
Dudley, W.
Blanc, P. L.
Jehano, C.
Labeyrie, L.
Duplessy, J. C.
author_facet Hekinian, R.
Bonte, P.
Dudley, W.
Blanc, P. L.
Jehano, C.
Labeyrie, L.
Duplessy, J. C.
author_sort Hekinian, R.
collection OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel)
container_issue 5680
container_start_page 536
container_title Nature
container_volume 275
description THE Sierra Leone Rise, located in the east equatorial Atlantic, forms a discontinuous chain of seamounts as shallow as 2 km extending with a general NE–SW trend from near the Sierra Leone coast of Africa, to the St Paul fracture zone near the Mid-Atlantic Ridge (Fig. 1). The origin of this feature has remained a topic of discussion. Sheridan et al.1 have hypothesised that the Sierra Leone Rise is a volcanic structure formed at the beginning of the opening of the Atlantic in the early Cretaceous period. The twin features of the Sierra Leone and the Ceara Rises are probably of oceanic origin and were created 80 Myr ago or later in their present-day position with respect to Africa and South America2. The Atlantic ocean exhibits several similar aseismic structures which appear symmetrically oriented with respect to the mid-oceanic ridge, such as the Walvis–Rio Grande Rise and the Iceland Faeroes–Iceland Greenland Ridges. These structures are volcanic edifices having a composition similar to that found in their associated islands3–7. Deep sea drilling of the Ceara Rise8,9 penetrated a basaltic basement of the upper Cretaceous period (Maestrichtian) (Leg 39, Site 354). Similarly, a DSDP hole (Leg 41, Site 366) on the Sierra Leone Rise, penetrated sediments of the same period, without reaching basement10. We report here the discovery of alkali-rich volcanics in an area of the Sierra Leone Rise. The sediment overlying the rock fragments is aged ∼45 Myr.
format Article in Journal/Newspaper
genre Greenland
Iceland
genre_facet Greenland
Iceland
geographic Greenland
Mid-Atlantic Ridge
geographic_facet Greenland
Mid-Atlantic Ridge
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op_doi https://doi.org/10.1038/275536a0
op_relation https://oceanrep.geomar.de/id/eprint/41669/1/Hekinian_Nature.pdf
Hekinian, R., Bonte, P., Dudley, W., Blanc, P. L., Jehano, C., Labeyrie, L. and Duplessy, J. C. (1978) Volcanics from the Sierra Leone Rise. Nature, 275 (5680). pp. 536-538. DOI 10.1038/275536a0 <https://doi.org/10.1038/275536a0>.
doi:10.1038/275536a0
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spelling ftoceanrep:oai:oceanrep.geomar.de:41669 2025-01-16T22:12:56+00:00 Volcanics from the Sierra Leone Rise Hekinian, R. Bonte, P. Dudley, W. Blanc, P. L. Jehano, C. Labeyrie, L. Duplessy, J. C. 1978 text https://oceanrep.geomar.de/id/eprint/41669/ https://oceanrep.geomar.de/id/eprint/41669/1/Hekinian_Nature.pdf https://doi.org/10.1038/275536a0 en eng Nature Publishing Group https://oceanrep.geomar.de/id/eprint/41669/1/Hekinian_Nature.pdf Hekinian, R., Bonte, P., Dudley, W., Blanc, P. L., Jehano, C., Labeyrie, L. and Duplessy, J. C. (1978) Volcanics from the Sierra Leone Rise. Nature, 275 (5680). pp. 536-538. DOI 10.1038/275536a0 <https://doi.org/10.1038/275536a0>. doi:10.1038/275536a0 info:eu-repo/semantics/restrictedAccess Article PeerReviewed 1978 ftoceanrep https://doi.org/10.1038/275536a0 2023-04-07T15:38:09Z THE Sierra Leone Rise, located in the east equatorial Atlantic, forms a discontinuous chain of seamounts as shallow as 2 km extending with a general NE–SW trend from near the Sierra Leone coast of Africa, to the St Paul fracture zone near the Mid-Atlantic Ridge (Fig. 1). The origin of this feature has remained a topic of discussion. Sheridan et al.1 have hypothesised that the Sierra Leone Rise is a volcanic structure formed at the beginning of the opening of the Atlantic in the early Cretaceous period. The twin features of the Sierra Leone and the Ceara Rises are probably of oceanic origin and were created 80 Myr ago or later in their present-day position with respect to Africa and South America2. The Atlantic ocean exhibits several similar aseismic structures which appear symmetrically oriented with respect to the mid-oceanic ridge, such as the Walvis–Rio Grande Rise and the Iceland Faeroes–Iceland Greenland Ridges. These structures are volcanic edifices having a composition similar to that found in their associated islands3–7. Deep sea drilling of the Ceara Rise8,9 penetrated a basaltic basement of the upper Cretaceous period (Maestrichtian) (Leg 39, Site 354). Similarly, a DSDP hole (Leg 41, Site 366) on the Sierra Leone Rise, penetrated sediments of the same period, without reaching basement10. We report here the discovery of alkali-rich volcanics in an area of the Sierra Leone Rise. The sediment overlying the rock fragments is aged ∼45 Myr. Article in Journal/Newspaper Greenland Iceland OceanRep (GEOMAR Helmholtz Centre für Ocean Research Kiel) Greenland Mid-Atlantic Ridge Nature 275 5680 536 538
spellingShingle Hekinian, R.
Bonte, P.
Dudley, W.
Blanc, P. L.
Jehano, C.
Labeyrie, L.
Duplessy, J. C.
Volcanics from the Sierra Leone Rise
title Volcanics from the Sierra Leone Rise
title_full Volcanics from the Sierra Leone Rise
title_fullStr Volcanics from the Sierra Leone Rise
title_full_unstemmed Volcanics from the Sierra Leone Rise
title_short Volcanics from the Sierra Leone Rise
title_sort volcanics from the sierra leone rise
url https://oceanrep.geomar.de/id/eprint/41669/
https://oceanrep.geomar.de/id/eprint/41669/1/Hekinian_Nature.pdf
https://doi.org/10.1038/275536a0