The geochemistry and tectonic setting of late Cretaceous Caribbean and Colombian volcanism

被引:63
作者
Kerr, AC
Tarney, J
Marriner, GF
Nivia, A
Klaver, GT
Saunders, AD
机构
[1] Department of Geology, University of Leicester
[2] Department of Geology, Royal Holloway College, Egham
[3] INGEOMINAS - Regional Pacifico, A.A. 9724, Cali
[4] Rijks Geologische Dienst, 2000 AD Haarlem
关键词
D O I
10.1016/0895-9811(96)00031-4
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Late Cretaceous mafic volcanic sequences in Western Colombia and in the southern Caribbean have a striking coherence in their chemistry and compositional range which suggests they are part of the same magmatic province. The chemical characteristics of the majority of the mafic lavas are totally unlike those of island are or marginal basin basalts, so the sequences cannot represent accreted are terranes. On the other hand their trace element characteristics closely resemble those of Icelandic/Reykjanes Ridge basalts that represent an oceanic plateau formed by extensive decompression melting of an uprising deep mantle plume. The occurrence of komatiites on Gorgona and high-MgO picritic lavas in S.E. Colombia and on Curacao, representing high temperature melts of the plume tail, confirms this analogy. Likewise, late stage rhyolites within the Colombian mafic volcanics may well be the equivalent of the extensive silicic magmas on Iceland and at Galapagos, possibly formed by remelting of the deep parts of the overthickened basaltic crust above the plume head. These volcanics, plus others around the Caribbean, including the door of the Central Caribbean, probably all represent part of an oceanic plateau that formed rapidly at the Galapagos hotspot at 88 Ma, and that was too hot and buoyant to subduct beneath the margin of S. America as it migrated westwards with the opening of the South Atlantic, and so was imbricated along the continental margin. Minor are-like volcanics, tonalites and homblende leucogabbro veins may represent the products of subduction-flip of normal ocean crust against the buoyant plateau, or hydrous melts developed during imbrication/obduction. Copyright (C) 1996 Elsevier Science Ltd & Earth Sciences & Resources institute
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页码:111 / 120
页数:10
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