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Major, trace, and rare earth element geochemistry of the Oligocene Chiatura stratiform manganese oxide/hydroxide deposit, Georgia
  • Bilge SASMAZ,
  • Ahmet SASMAZ,
  • James R. Hein
Bilge SASMAZ
Firat University

Corresponding Author:[email protected]

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Ahmet SASMAZ
Firat University
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James R. Hein
United States Geological Survey
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Abstract

The Chiatura deposit is considered one of the world’s largest deposits of metallurgical grade manganese, yet its geochemistry is poorly known, which is the focus of this paper. The Oligocene sedimentary manganese deposit is located in the Chiatura region of central Georgia and formed on stable crystalline basement in a restricted arm of the Paratethys during a transgressive-regressive cycle. The average main trace element contents of the samples are 3944 ppm Ba, 946 ppm Sr, 511 ppm Ni, 150 ppm Zn, 94 ppm V, 84 ppm Cu, and 55 ppm Co. The trace element concentrations of the manganese oxide ore are generally low and indicate an enrichment assemblage of V, Co, Ni, Cu, Zr, Ba, As, Cd, Pb, and Zn. The total rare earth element (REE) concentrations of the deposits vary from 83 ppm to 521ppm, with a mean of 199 ppm. All manganese-oxide samples have negative Ce anomalies (mean 0.58) and generally positive Eu anomalies. All geochemical data indicate that the Chiatura manganese-oxide ores formed rapidly within oxic seawater as reflected by the negative Ce anomalies. The mixed oxide and carbonate ores formed at deeper-water depths compared to the oxide-hydroxide ores in the Chiatura region. Also, our results point out that the metals were transported from both terrestrial sources (Pb isotopic data) and a hydrothermal source in deeper water (chemical discrimination diagrams). The metals associated with the Mn-oxide ores likely formed syngenetically through microbially mediated mineralization at water depths deeper than the area where the carbonate-ore deposits formed.