Publications des scientifiques de l'IRD

Charlier B., Namur O., Toplis M. J., Schiano Pierre, Cluzel N., Higgins M. D., Vander Auwera J. (2011). Large-scale silicate liquid immiscibility during differentiation of tholeiitic basalt to granite and the origin of the Daly gap. Geology, 39 (10), p. 907-910. ISSN 0016-8505.

Titre du document
Large-scale silicate liquid immiscibility during differentiation of tholeiitic basalt to granite and the origin of the Daly gap
Année de publication
2011
Type de document
Article référencé dans le Web of Science WOS:000294818700003
Auteurs
Charlier B., Namur O., Toplis M. J., Schiano Pierre, Cluzel N., Higgins M. D., Vander Auwera J.
Source
Geology, 2011, 39 (10), p. 907-910 ISSN 0016-8505
The dearth of intermediate magmatic compositions at the Earth's surface, referred to as the Daly gap, remains a major issue in igneous petrology. The initially favored explanation invoking silicate liquid immiscibility during evolution of basalt to rhyolite has lost support because of the absence of any firm geological evidence for separation of Fe-and Si-rich liquids in igneous rocks. This work presents a record of large-scale magmatic differentiation due to immiscibility in the tholeiitic Sept Iles intrusion (Canada), one of the largest layered plutonic bodies on Earth. Gabbroic cumulate rocks from the Critical Zone of this intrusion show a bimodal distribution in density and P2O5 content, despite identical major element chemistry of the principal magmatic phases. Immiscibility is supported by the presence of contrasting Fe-rich and Si-rich melt inclusions trapped in cumulus apatite. Phase diagrams and well-documented occurrences of small-scale immiscibility confirm that liquid-liquid unmixing and the separation of Fe-rich and Si-rich liquids may contribute significantly to the Daly gap along the tholeiitic liquid line of descent.
Plan de classement
Géologie et formations superficielles [064]
Identifiant IRD
PAR00007901
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