Sources of paleomagnetic signal in iron-bearing marine sedimentary deposits

Cover Page

Cite item

Full Text

Abstract

This paper presents the results of interpreting the change in the magnetic signal of ferruginous marine sedimentary rocks using the example of the Cretaceous-Paleogene Bakchar deposit (Western Siberia). Anomalous magnetic susceptibility (MS) values are determined by two factors: (a) a diagenetic process accompanied by the formation of pyrrhotite, greigite and siderite in ironstones, (b) an increase detrital input with deposition of magnetite and ilmenite in the siltstones on the background of climate moistening and intense weathering. It is shown that increased MS values in iron-bearing marine sedimentary deposits can be associated with the formation of ferrimagnetic sulfides, which indicates to the methane emission through ancient marine bottom sediments.

About the authors

M. A. Rudmin

National Research Tomsk Polytechnic University

Author for correspondence.
Email: rudminma@tpu.ru
Russian Federation, 30, Lenin Avenue,Tomsk, 634034

A. K. Mazurov

National Research Tomsk Polytechnic University

Email: rudminma@tpu.ru
Russian Federation, 30, Lenin Avenue,Tomsk, 634034

V. I. Sergienko

Pacific Oceanological Institute, Far Eastern Branch of the Russian Academy of Sciences

Email: rudminma@tpu.ru

Academician of the RAS

Russian Federation, 43, Baltiyskaya Street, Vladivostok, 690041

O. G. Savichev

National Research Tomsk Polytechnic University

Email: rudminma@tpu.ru
Russian Federation, 30, Lenin Avenue,Tomsk, 634034

I. P. Semiletov

National Research Tomsk Polytechnic University; Pacific Oceanological Institute, Far Eastern Branch of the Russian Academy of Sciences

Email: rudminma@tpu.ru

Correspondent member of RAS

Russian Federation, 30, Lenin Avenue,Tomsk, 634034; 43, Baltiyskaya Street, Vladivostok, 690041

References

  1. Roberts A.P. // Earth-Sci. Rev. 2015. V. 151. P. 1-47.
  2. Liu Q., Roberts A..P., Larrasoaña J.C., Banerjee S.K., Guyodo Y., Tauxe L., Oldfield F. // Rev. Geophys. 2012. V. 50. № 4. P. 1-50.
  3. Западно-Сибирский железорудный бассейн / Под ред. Ф.Н. Шахова. Новосибирск: СО РАН СССР, 1964. 448 с.
  4. Рудмин М.А., Мазуров А.К. // ДАН. 2016. Т. 471. № 2. С. 1238-1241.
  5. Rudmin M., Roberts A..P., Horng C.-S., Mazurov A., Savinova O., Ruban A., Kashapov R., Veklich M. // Geochem., Geoph., Geosys. 2018. V. 19. P. 1-22.
  6. Larrasoaña J.C., Roberts A..P., Musgrave R.J., Gràcia E., Piñero E., Vega M., Martínez-Ruiz F. // Earth and Planet. Sci. Lett. 2007. V. 261. № 3. P. 350-366.
  7. Lemaitre N., Bayon G., Ondréas H., Caprais J.-C., Freslon N., Bollinger C., Rouget M.-L., de Prunelé A., Ruffine L., Olu-Le Roy K., Sarthou G. // Earth and Planet. Sci. Lett. 2014. V. 404. P. 376-388.
  8. Сергиенко В.И., Лобковский Л.И., Семилетов И.П. и др. // ДАН. 2012. Т. 446. № 3. С. 330-335.
  9. Shakhova N., Semiletov I., Sergienko V., et al. // Phil. trans. Ser. A. 2015. V. 373. № 2052. P. 1-13.
  10. Shakhova N., Semiletov I., Gustafsson O., et al. // Nature Commun. 2017. V. 8. P. 1-13.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2019 Russian academy of sciences

This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies