Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit
Abstract The Fazenda Bonfim emerald deposit lies within the Seridó Belt. It is a classic example of deposit formed through metasomatic interactions between Be-rich granite intrusions and Cr(± V)-rich mafic-ultramafic rocks. The setting of the emerald mineralization was built under strong strike-slip dynamics, which produced serpentinization and talcification of mafic-ultramafic host-rocks, and was followed by syn-kinematic emplacement of Be-rich albite granite, favoring hydrothermal/metasomatic processes. The structural control and lithological-contrast were fundamental to the fluid flow and the best ore-shoot geometry, developed in the S-foliation intra-plane at the contact zone (phlogopite hornfels) between mafic-ultramafic rocks and the albite granite. Subsequently, an albitization process, linked to the final-stage of magmatic crystallization, led to an overall mineralogical and chemical change of the albite granite. 207U-235Pb data revealed inheritance ages from Archean to Neoproterozoic and a crystallization age of 561 ± 4 Ma for albite granite. However, 40Ar/39Ar data revealed plateau age of 553 ± 4 Ma for phlogopite hornfels, interpreted as the closure time for the metasomatic event responsible for the nucleation and growth of emerald crystals. The short interval of time between U-Pb and Ar-Ar data indicates an intense, but not protracted, metasomatic history, probably due to low volume of intrusive magma.
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Sociedade Brasileira de Geologia
2019
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oai:scielo:S2317-488920190004003032020-01-08Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim DepositSantiago,Judiron SantosSouza,Valmir da SilvaDantas,Elton LuizOliveira,Claudinei Gouveia de Fazenda Bonfim emerald deposit Seridó Belt geology geochemistry U-Pb and Ar-Ar geochronology Abstract The Fazenda Bonfim emerald deposit lies within the Seridó Belt. It is a classic example of deposit formed through metasomatic interactions between Be-rich granite intrusions and Cr(± V)-rich mafic-ultramafic rocks. The setting of the emerald mineralization was built under strong strike-slip dynamics, which produced serpentinization and talcification of mafic-ultramafic host-rocks, and was followed by syn-kinematic emplacement of Be-rich albite granite, favoring hydrothermal/metasomatic processes. The structural control and lithological-contrast were fundamental to the fluid flow and the best ore-shoot geometry, developed in the S-foliation intra-plane at the contact zone (phlogopite hornfels) between mafic-ultramafic rocks and the albite granite. Subsequently, an albitization process, linked to the final-stage of magmatic crystallization, led to an overall mineralogical and chemical change of the albite granite. 207U-235Pb data revealed inheritance ages from Archean to Neoproterozoic and a crystallization age of 561 ± 4 Ma for albite granite. However, 40Ar/39Ar data revealed plateau age of 553 ± 4 Ma for phlogopite hornfels, interpreted as the closure time for the metasomatic event responsible for the nucleation and growth of emerald crystals. The short interval of time between U-Pb and Ar-Ar data indicates an intense, but not protracted, metasomatic history, probably due to low volume of intrusive magma.info:eu-repo/semantics/openAccessSociedade Brasileira de GeologiaBrazilian Journal of Geology v.49 n.4 20192019-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S2317-48892019000400303en10.1590/2317-4889201920190081 |
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Santiago,Judiron Santos Souza,Valmir da Silva Dantas,Elton Luiz Oliveira,Claudinei Gouveia de |
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Santiago,Judiron Santos Souza,Valmir da Silva Dantas,Elton Luiz Oliveira,Claudinei Gouveia de Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
author_facet |
Santiago,Judiron Santos Souza,Valmir da Silva Dantas,Elton Luiz Oliveira,Claudinei Gouveia de |
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Santiago,Judiron Santos |
title |
Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
title_short |
Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
title_full |
Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
title_fullStr |
Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
title_full_unstemmed |
Ediacaran emerald mineralization in Northeastern Brazil: the case of the Fazenda Bonfim Deposit |
title_sort |
ediacaran emerald mineralization in northeastern brazil: the case of the fazenda bonfim deposit |
description |
Abstract The Fazenda Bonfim emerald deposit lies within the Seridó Belt. It is a classic example of deposit formed through metasomatic interactions between Be-rich granite intrusions and Cr(± V)-rich mafic-ultramafic rocks. The setting of the emerald mineralization was built under strong strike-slip dynamics, which produced serpentinization and talcification of mafic-ultramafic host-rocks, and was followed by syn-kinematic emplacement of Be-rich albite granite, favoring hydrothermal/metasomatic processes. The structural control and lithological-contrast were fundamental to the fluid flow and the best ore-shoot geometry, developed in the S-foliation intra-plane at the contact zone (phlogopite hornfels) between mafic-ultramafic rocks and the albite granite. Subsequently, an albitization process, linked to the final-stage of magmatic crystallization, led to an overall mineralogical and chemical change of the albite granite. 207U-235Pb data revealed inheritance ages from Archean to Neoproterozoic and a crystallization age of 561 ± 4 Ma for albite granite. However, 40Ar/39Ar data revealed plateau age of 553 ± 4 Ma for phlogopite hornfels, interpreted as the closure time for the metasomatic event responsible for the nucleation and growth of emerald crystals. The short interval of time between U-Pb and Ar-Ar data indicates an intense, but not protracted, metasomatic history, probably due to low volume of intrusive magma. |
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Sociedade Brasileira de Geologia |
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2019 |
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http://old.scielo.br/scielo.php?script=sci_arttext&pid=S2317-48892019000400303 |
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