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handle: 10261/253166
Este trabajo se centra en la circulación de fluidos registrada en la deformación supra-sal generada por la falla de Jumilla en los carbonatos marinos del Jurásico superior. Esta deformación consiste en fallas normales asociadas con brechas que están cementadas por tres generaciones de calcita (Cc1 a Cc3) y por óxidos de manganeso, que precipitan entre Cc2 y Cc3. Los análisis geoquímicos de ¿18O, ¿13C, ¿clumped isotopes¿, 87Sr/86Sr y tierras raras de los cementos han permitido establecer el origen de los fluidos. Durante las etapas iniciales de propagación de la falla se produjo una intensa brechificación cementada por la calcita Cc1. Esta calcita precipitó a 33-65ºC a partir de aguas de formación (¿18Ofluido entre -4.6 y +1.1¿VSMOW) que habían interaccionado fuertemente con las evaporitas triásicas (87Sr/86Sr entre 0.707789-0.708108) mostrando la conexión entre la deformación sub-sal y supra-sal. La progresiva propagación de la falla hacia superficie provocó una nueva brechificación y cataclasis y permitió la entrada de fluidos meteóricos (¿18Ofluido entre -4.6 y -3.8¿VSMOW) de baja temperatura (20ºC) a partir de los cuales precipitaron Cc2, Cc3 y los óxidos de manganeso, los cuales indican un cambio en las condiciones redox.
This work is focused on the fluid circulation registered in the supra-salt deformation related to the Jumilla Fault in the Upper Jurassic marine carbonates. This deformation consists of normal faults associated with breccias cemented by three generations of calcite cement (Cc1 to Cc3) and by manganese oxides, which precipitate between Cc2 and Cc3. The geoche- mical analyses of δ18O, δ13C, clumped isotopes, 87Sr/86Sr and REE+Y of the cements have allowed us to establish the origin of the fluids. Calcite Cc1 precipitated from formation waters (δ18Ofluid from -4.6 to +1.1‰VSMOW) at 33-65ºC with a high interaction with the Triassic evaporites (87Sr/86Sr between 0.707789-0.708108) during the onset of fault propagation and brecciation, showing the coupling between the sub-salt and supra-salt deformation. The further upward propagation of the fault caused a new brecciation and cataclasis and allowed the input of meteoric fluids (δ18Ofluid from -4.6 to -3.8‰VSMOW) at low temperatures (20ºC) from which calcite cements Cc2 and Cc3 and manganese oxides precipitated, the latter indicating a change in the redox conditions of the fluid.
X Congreso Geológico de España, 5-7 Julio 2021, Vitoria - Gasteiz
Falla normal, Geoquímica, Diapirismo, Migración de fluidos
Falla normal, Geoquímica, Diapirismo, Migración de fluidos
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