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Decoupling of paired elements, crossover REE patterns, and mirrored spider-diagrams: fingerprinting liquid immiscibility in the Tapira Alkaline-Carbonatite Complex, SE Brazil.

Articulo

Authorship:

Brod, J. A. ; T.C. Junqueira Brod ; J.C. Gaspar ; PETRINOVIC, IVAN ALEJANDRO ; S. de Castro Valente ; A. Corval

Date:

2013

Publishing House and Editing Place:

PERGAMON-ELSEVIER SCIENCE LTD

Magazine:

JOURNAL OF SOUTH AMERICAN EARTH SCIENCES PERGAMON-ELSEVIER SCIENCE LTD

Summary *

the Late-Cretaceous Alto Paranaíba Igneous Province (APIP). It is dominated by coarse-grained plutonic rocks (bebedourite e a phlogopite-, apatite-, and perovskite-rich clinopyroxenite e with subordinated dunites, wehrlites, carbonatites and phoscorites). The plutonic rocks are crosscut by fine-grained ultramafic alkaline rocks (phlogopite picrites, bebedouritic dikes) and fine-grained carbonatites. Both types of dike-rocks show petrographic evidence of the coexistence of immiscible silicate and carbonatite liquids, such as carbonate ocelli present in the silicate rocks and, more rarely, silicate ocelli within carbonatites. A detailed geochemical study of the rock types in the complex, with emphasis on the fine-grained varieties, showed that whilst some rocks may be related to each other through crystal fractionation (e.g. phlogopite picrites and bebedouritic dikes), others display anomalous trace-element behaviour that cannot be readily explained by the fractionation of a particular phase or combination of phases. We interpret such anomalous geochemical signatures as produced by silicateecarbonate liquid immiscibility, on the basis of available experimental data on partition coefficients between coexisting immiscible liquids. The immiscibility signatures comprise: (a) decoupling of geochemical pairs, such as NbeTa and ZreHf; (b) rotation of REE patterns, which cross over the patterns of the primitive liquids; and (c) matching and opposite enrichment-depletion trace elements relationships in spider diagrams of conjugate immiscible liquids. We suggest that, once established, such geochemical signatures are very difficult to erase during the subsequent petrogenetic evolution processes, which may result in superimposed conflicting signatures. Information provided by the agent in SIGEVA

Key Words

SpiderREEBrazilAlkaline