Data Publication

SEM and EPMA data of minerals from Jacupiranga carbonatite, Brazil

Abudayeh, Ahmad | Arato, Robert | Vetlényi, Enikő | Guzmics, Tibor

GFZ Data Services

(2026)

Descriptions

The Jacupiranga carbonatite (Brazil) was investigated to better understand how modal proportions and mineral chemistry control the fO2 recorded by a natural carbonatite rock.
Mineral compositions were determined using SEM-EDS, EPMA-WDS and Raman microspectroscopy building upon detailed petrography.
Based on magnetite-ilmenite oxythermobarometry, rock-forming temperatures range from 505 to 732 °C, with a wide span of fO2 values (∆FMQ –1.21 to +4.56). In each sample, ilmenite grains and lamellae are distinguishable, with the latter recording higher temperature–fO2 conditions. Consistently, independently determined homogenization temperatures of apatite-hosted fluid inclusions show a similar range between 550 and 685 °C. From the wall-rock contact toward the carbonatite body, samples exhibit a decrease in the modal abundance of olivine, phlogopite, magnetite, ilmenite, and dolomite, alongside an increase in Mg-calcite. Over the same spatial gradient, temperature, fO2, and the magnesioferrite (in magnetite) and geikielite (in ilmenite) components decrease. During the antiskarn reaction, silica and mafic components (Mg, FeT, Al, and Ti) derived from the ultramafic wall-rock were incorporated into olivine, phlogopite, magnetite-ilmenite, and dolomite. Calcite-rich samples, which were less influenced by the wall-rock, preserved ephemeral alkali components of the carbonatite melts within burbankite. Apatite-hosted fluid inclusions represent coeval fluid modified by antiskarn reactions. Adjacent to equilibrium magnetite-ilmenite pairs, olivine and phlogopite exhibit high mg# (93–97 and 88–95, respectively).
Despite the broad span of ∆FMQ values recorded by the oxide pairs, we found only a weak positive correlation between the recorded fO2 and mg#. Consequently, we suggest that the high mg# (>88–90) of carbonatitic olivine is primarily controlled by the low (<0.2) 〖K_D〗_(Fe^(2+)-Mg)^(olivine-carbonatite melt) (Fe2+/Mg exchange partition coefficient between olivine and the carbonatite melt) at crustal conditions. The exceptionally high mg# of olivine and phlogopite, compared to the adjacent dunite cumulates (mg# 84–88), combined with their negligible Ni and Cr contents, indicate an in situ antiskarn process.
This study demonstrates that carbonatite systems can be characterized by dynamic redox conditions, spanning the range from Fe3O4 ̶ Fe2O3 to Fe2SiO4 ̶ Fe3O4 ̶ SiO2 during their evolution and emplacement.

SEM-EDS, EPMA-WDS

Keywords

MSL enriched keywords
Analyzed feature
mineralogy and composition
fluid inclusion
sedimentary rock
dolomite
minerals
oxide mineral
ilmenite
magnesioferrite
magnetite
carbonate minerals
apatite
calcite
dolomite
silicate minerals
nesosilicates
olivine
phyllosilicates
mica
phlogopite
Earth's structure
Earth crust
equipment
x-ray spectrometer
energy-dispersive x-ray spectrometer
measured property
aluminium
magnesium
silicon
silicon dioxide
Technique
chemical and mineralogical analysis
Raman spectrometry - chemistry and mineralogy
crystal structure analysis
Raman spectrometry - crystal lattice
MSL vocabulary keywords corresponding to originally assigned keywords
fluid inclusion
Originally assigned keywords
Carbonatite
Antiskarn
Oxythermobarometry
Fluid inclusion
Magnetite-ilmenite
compound material &gt; rock
In Situ/Laboratory Instruments &gt; Photon/Optical Detectors &gt; SCANNING ELECTRON MICROSCOPES
Science Keywords &gt; EARTH SCIENCE &gt; SOLID EARTH &gt; GEOCHEMISTRY
Science Keywords &gt; EARTH SCIENCE &gt; SOLID EARTH &gt; ROCKS/MINERALS/CRYSTALS

Metadata


MSL enriched sub domains

microscopy and tomography
geochemistry

Resource Type

Dataset


Source


Source publisher

GFZ Data Services

DOI


Creators

Abudayeh, Ahmad
Personal
https://orcid.org/0000-0002-2380-5413
Eötvös Loránd University, Budapest, Hungary
Arato, Robert
Personal
Montanuniversität Leoben, Leoben, Austria | HUN-REN Institute for Nuclear Research, Debrecen, Hungary
Vetlényi, Enikő
Personal
https://orcid.org/0000-0003-4830-1032
Eötvös Loránd University, Budapest, Hungary
Guzmics, Tibor
Personal
https://orcid.org/0000-0002-9060-3774
Eötvös Loránd University, Budapest, Hungary

Contributors

Abudayeh, Ahmad
Personal
https://orcid.org/0000-0002-2380-5413
Eötvös Loránd University, Budapest, Hungary
Abudayeh, Ahmad
Personal
https://orcid.org/0000-0002-2380-5413
Eötvös Loránd University, Budapest, Hungary
Eötvös Loránd University Faculty of Science Research and Instrument Core Facility (ELTE FS-RICF), Budapest, Hungary
Organizational
Eötvös Loránd University Budapest
Department of Mineralogy, University of Göttingen
Organizational
University of Göttingen, Germany
Abudayeh, Ahmad
Personal
https://orcid.org/0000-0002-2380-5413
Eötvös Loránd University, Budapest, Hungary
Abudayeh, Ahmad
Personal
https://orcid.org/0000-0002-2380-5413
Eötvös Loránd University, Budapest, Hungary

Citation

Abudayeh, A., Arato, R., Vetlényi, E., & Guzmics, T. (2026). SEM and EPMA data of minerals from Jacupiranga carbonatite, Brazil [Dataset]. GFZ Data Services. https://doi.org/10.5880/FIDGEO.2026.052


References


Dates

Created 2023-08-30
Issued 2026

Language

- no language entry found -


Funding References

Funder Name National Research, Development and Innovation Office
Funder Identifier https://doi.org/10.13039/501100018818
Award Number K-142855

Rights

Name Creative Commons Attribution 4.0 International
URI https://creativecommons.org/licenses/by/4.0/legalcode
Identifier cc-by-4.0
Identifier Scheme SPDX
Scheme URI https://spdx.org/licenses/

Locations


Geo location(s)

Jacupiranga (Brayil) - Cajati mine carbonatite samples