X-ray diffraction profiles, Raman spectra and carbon and oxygen isotope compositions of fibrous cement from Black Sea seeps

The mineral phase of primary marine fibrous carbonate is supposed to be mainly controlled by the Mg/Ca of seawater during precipitation. However, fibrous Mg calcite was identified from seep carbonates in the Black Sea, although the high Mg/Ca of the Black Sea seawater should promote the precipitation of aragonite. The unexpected formation of fibrous Mg calcite indicates additional factors other than Mg/Ca. In order to clarify the factors, we studied seep carbonates from the Black Sea. Points of interest were selected by observation under a microscope. Main compositions of the points were measured by an energy-dispersive X-ray spectroscope. Mineral structure and spectroscopy characteristics were analysed by X-ray diffraction and Raman, respectively, and converted to MgCO₃ contents according to empirical formulas. Carbon and oxygen isotope compositions of fibrous carbonate minerals were measured by an isotope ratio mass spectrometer. The results suggest that the fibrous Mg calcite from the Black Sea were formed by sulphide-driven anaerobic oxidation of methane under reducing conditions, which contributes to the understanding of the formation of Neoproterozoic fibrous dolomite.

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Lu, Yang, Mihailova, Boriana, Malcherek, Thomas, Paulmann, Carsten, Smrzka, Daniel, Zwicker, Jennifer, Lin, Zhiyong, Bohrmann, Gerhard, Peckmann, Jörn (2024). Dataset: X-ray diffraction profiles, Raman spectra and carbon and oxygen isotope compositions of fibrous cement from Black Sea seeps. https://doi.org/10.1594/PANGAEA.964859

DOI retrieved: 2024

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-4.0
Source https://doi.org/10.1594/PANGAEA.964859
Author Lu, Yang
Given Name Yang
Family Name Lu
More Authors
Mihailova, Boriana
Malcherek, Thomas
Paulmann, Carsten
Smrzka, Daniel
Zwicker, Jennifer
Lin, Zhiyong
Bohrmann, Gerhard
Peckmann, Jörn
Source Creation 2024
Publication Year 2024
Resource Type text/tab-separated-values - filename: Lu-etal_2024
Subject Areas
Name: Lithosphere

Related Identifiers
Title: Role of bottom water chemistry in the formation of fibrous magnesium calcite at methane seeps in the Black Sea
Identifier: https://doi.org/10.1111/sed.13170
Type: DOI
Relation: References
Year: 2023
Source: Sedimentology
Authors: Lu Yang , Mihailova Boriana , Malcherek Thomas , Paulmann Carsten , Smrzka Daniel , Zwicker Jennifer , Lin Zhiyong , Bohrmann Gerhard , Peckmann Jörn .