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Abstract

The problems correlation of data of the Kola Superdeep Borehole was hampered by an imbalance between extremely detailed borehole studies and more piecemeal observations on the day surface in the Pechenga ore district. The rock density and anisotropy in Vp, geological, gravity, and geochronological data were employed for the formalization and correlation of the borehole section and the reference profile on the day surface using computer-based technologies. The integrated deep geodynamic model accounts for the modern structure of the Pechenga ore districts to a depth of 15 km and entails a new interpretation of its geological boundaries, development stages, and metallogeny. Ore-forming systems of the Pechenga ore district ae known for large deposits of Cu-Ni ores deposits and occurrences of Pt, U, Au, Pb, and Zn.

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REFERENCES

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ACKNOWLEDGEMENTS

The present research was executed under financial support of the Russian Foundation for Basic Research (project 14-05-00535).

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Correspondence to K. V. Lobanov .

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Lobanov, K.V., Chicherov, M.V., Chizhova, I.A., Sharov, N.V. (2016). The Integration Model of Deep Structure and Ore-Forming Systems of the Pechenga District (Baltic Shield). In: Raju, N. (eds) Geostatistical and Geospatial Approaches for the Characterization of Natural Resources in the Environment. Springer, Cham. https://doi.org/10.1007/978-3-319-18663-4_85

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