Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa

Reaction textures and fluid inclusions in the ∼2.0 Ga pyroxene-bearing dehydration zones within the Sand River biotite-hornblende orthogneisses (Central Zone of the Limpopo Complex) suggest that the formation of these zones is a result of close interplay between dehydration process along ductile she...

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Main Authors: Oleg G. Safonov, Elizaveta I. Kovaleva, Svetlana A. Kosova, H.M. Rajesh, Georgy A. Belyanin, Maria A. Golunova, Dirk D. Van Reenen
Format: Article
Language:English
Published: Elsevier 2012-11-01
Series:Geoscience Frontiers
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1674987112000862
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spelling doaj-c6f323f147cb42038dc16bff0af44c312020-11-24T21:04:46ZengElsevierGeoscience Frontiers1674-98712012-11-013682984110.1016/j.gsf.2012.06.004Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South AfricaOleg G. Safonov0Elizaveta I. Kovaleva1Svetlana A. Kosova2H.M. Rajesh3Georgy A. Belyanin4Maria A. Golunova5Dirk D. Van Reenen6Institute of Experimental Mineralogy RAS, Chernogolovka, Moscow Region 142432, RussiaLabor für Geochronologie, Department für Lithosphärenforschung, Universität Wien, Althanstrasse 14, A-1090 Vienna, AustriaInstitute of Experimental Mineralogy RAS, Chernogolovka, Moscow Region 142432, RussiaDepartment of Geology, University of Johannesburg, P.O. Box 524, Auckland Park 2006, Johannesburg, South AfricaDepartment of Geology, University of Johannesburg, P.O. Box 524, Auckland Park 2006, Johannesburg, South AfricaInstitute of Experimental Mineralogy RAS, Chernogolovka, Moscow Region 142432, RussiaDepartment of Geology, University of Johannesburg, P.O. Box 524, Auckland Park 2006, Johannesburg, South AfricaReaction textures and fluid inclusions in the ∼2.0 Ga pyroxene-bearing dehydration zones within the Sand River biotite-hornblende orthogneisses (Central Zone of the Limpopo Complex) suggest that the formation of these zones is a result of close interplay between dehydration process along ductile shear zones triggered by H2O-CO2-salt fluids at 750–800 °C and 5.5–6.2 kbar, partial melting, and later exsolution of residual brine and H2O-CO2 fluids during melt crystallization at 650–700 °C. These processes caused local variations of water and alkali activity in the fluids, resulting in various mineral assemblages within the dehydration zone. The petrological observations are substantiated by experiments on the interaction of the Sand River gneiss with the H2O-CO2-(K, Na)Cl fluids at 750 and 800 °C and 5.5 kbar. It follows that the interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids is accompanied by partial melting at 750–800 °C. Orthopyroxene-bearing assemblages are characteristic for temperature 800 °C and are stable in equilibrium with fluids with low salt concentrations, while salt-rich fluids produce clinopyroxene-bearing assemblages. These observations are in good agreement with the petrological data on the dehydration zones within the Sand River orthogneisses.http://www.sciencedirect.com/science/article/pii/S1674987112000862CharnockiteFluid-rock interactionCO2-rich fluidsNaCl-KCl brinesPartial meltingExperimental petrology
collection DOAJ
language English
format Article
sources DOAJ
author Oleg G. Safonov
Elizaveta I. Kovaleva
Svetlana A. Kosova
H.M. Rajesh
Georgy A. Belyanin
Maria A. Golunova
Dirk D. Van Reenen
spellingShingle Oleg G. Safonov
Elizaveta I. Kovaleva
Svetlana A. Kosova
H.M. Rajesh
Georgy A. Belyanin
Maria A. Golunova
Dirk D. Van Reenen
Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
Geoscience Frontiers
Charnockite
Fluid-rock interaction
CO2-rich fluids
NaCl-KCl brines
Partial melting
Experimental petrology
author_facet Oleg G. Safonov
Elizaveta I. Kovaleva
Svetlana A. Kosova
H.M. Rajesh
Georgy A. Belyanin
Maria A. Golunova
Dirk D. Van Reenen
author_sort Oleg G. Safonov
title Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
title_short Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
title_full Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
title_fullStr Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
title_full_unstemmed Experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids at middle-crustal conditions: Example from the Limpopo Complex, South Africa
title_sort experimental and petrological constraints on local-scale interaction of biotite-amphibole gneiss with h2o-co2-(k, na)cl fluids at middle-crustal conditions: example from the limpopo complex, south africa
publisher Elsevier
series Geoscience Frontiers
issn 1674-9871
publishDate 2012-11-01
description Reaction textures and fluid inclusions in the ∼2.0 Ga pyroxene-bearing dehydration zones within the Sand River biotite-hornblende orthogneisses (Central Zone of the Limpopo Complex) suggest that the formation of these zones is a result of close interplay between dehydration process along ductile shear zones triggered by H2O-CO2-salt fluids at 750–800 °C and 5.5–6.2 kbar, partial melting, and later exsolution of residual brine and H2O-CO2 fluids during melt crystallization at 650–700 °C. These processes caused local variations of water and alkali activity in the fluids, resulting in various mineral assemblages within the dehydration zone. The petrological observations are substantiated by experiments on the interaction of the Sand River gneiss with the H2O-CO2-(K, Na)Cl fluids at 750 and 800 °C and 5.5 kbar. It follows that the interaction of biotite-amphibole gneiss with H2O-CO2-(K, Na)Cl fluids is accompanied by partial melting at 750–800 °C. Orthopyroxene-bearing assemblages are characteristic for temperature 800 °C and are stable in equilibrium with fluids with low salt concentrations, while salt-rich fluids produce clinopyroxene-bearing assemblages. These observations are in good agreement with the petrological data on the dehydration zones within the Sand River orthogneisses.
topic Charnockite
Fluid-rock interaction
CO2-rich fluids
NaCl-KCl brines
Partial melting
Experimental petrology
url http://www.sciencedirect.com/science/article/pii/S1674987112000862
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