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February 23, 2026Russian Journal of Pacific Geology1 citations

Micromineralogical Evidence for High-Temperature Mineralized Fluid Interaction with Dolomites Hosting the Poperechny Fe–Mn Deposit (Russian Far East)

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NBN. V. BerdnikovVNV. G. NevstruevPKP. K. Kepezhinskas

Key Points

  • This research aims to investigate how high-temperature fluids interact with dolomites near the Poperechny Fe–Mn deposit.
  • Micromineralogical study of altered dolomites and their contact with iron–manganese ores.
  • Chemical analysis of newly formed minerals and microspherules.
  • Examination of fluid phases affecting dolomite and mineral formations.
  • Alteration of dolomite resulted from high-temperature fluid in both liquid and gaseous states.
  • Formation of new metasomatic minerals and microspherules containing K, P, Fe, Ti, F, S, and rare earth elements.
  • Evidence supports a model of magmatic–hydrothermal formation of iron–manganese deposits.

Abstract

Microminerals and microspherules were studied in altered dolomites of the Murandavsky suite in the vicinity of their contact with iron–manganese ores of the Poperechny deposit (Russian Far East). It is shown that dolomite alteration was caused by a fluctuating influence of high-temperature fluid in the liquid and gaseous state. The liquid phase of this fluid is responsible for dolomite recrystallization and silicification, as well as the formation of metasomatic minerals, while the gaseous fluid triggered various explosive phenomena accompanied by localized melting of host rock lithologies, an influx of components uncommon to dolomites, and the formation of noble metal, iron–oxide, and carbonate–silicate microspehrules. Chemical analysis of the newly formed minerals and microspherules suggests presence of K, P, Fe, Ti, F, S, and rare earth elements in the fluid. The results support the general model for the magmatic–hydrothermal formation of iron–manganese deposits in the Lesser Khingan ore district, which includes hydrothermal alteration of host dolomites with iron and manganese inputs accompanied by various fluid-explosive phenomena and the formation of the mineralized pyroclastic rocks.

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Cite This Study

Berdnikov et al. (2026) studied this question.

synapsesocial.com/papers/699bee1c1c6c6bad5397fd6chttps://doi.org/10.1134/s1819714025700605
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