On the first finding of elemental Sulphur in near-surface sediments of P-2 hydrate-bearing structure («Peschanka») lake Baikal
https://doi.org/10.52349/0869-7892_2023_94_56-67
Abstract
Results of studying authigenic nodules from the surface bottom sediments in the Southern Basin of Lake Baikal are given. In the P-2 hydrate-bearing structure («Peschanka»), elemental sulphur was found in them for the first time. It is assumed that its formation in nodules is a consequence of incomplete biogenic oxidation of hydrogen sulphide by oxygen.
About the Authors
V. A. ShakhverdovRussian Federation
Shakhverdov Vadim Azimovich – Candidate of Geological and Mineralogical Sciences, Leading Researcher
74 Sredny prospect, St. Petersburg, Russia, 199106
V. F Sapega
Russian Federation
Sapega Vladimir Fedorovich – Candidate of Geological and Mineralogical Sciences, Head of Laboratory
74 Sredny prospect, St. Petersburg, Russia, 199106
References
1. Akulov N. I., Mashchuk I. M. Akulova V. V. Pleystotsenovye otlozheniya oz. Baykal: veshchestvennyy sostav i stratigraficheskaya korrelyatsiya. Stratigrafiya, geologicheskaya korrelyatsiya, 2015, vol. 23, no. 1, pp. 100–120.
2. Astaf’ev M. M., Rozanov A. Yu., Khuver R. Framboidy: ikh struktura i proiskhozhdenie. Paleontologicheskiy zhurnal, 2005, no. 5, pp. 1–7.
3. Zemskaya T. I., Chernitsyna S. M., Dul’tseva N. M. et al. Bestsvetnye sernye bakterii roda Thioploca iz razlichnykh rayonov ozera Baykal. Mikrobiologiya, 2009, vol. 78, no. 1, pp. 134–143.
4. Vol’f I. V., Tkachenko N. I. Khimiya i mikrobiologiya prirodnykh i stochnykh vod: uchebnoe posobie. Ed.: M. F. Maksimov. Izdatel’stvo Leningradskogo gosudarstvennogo universiteta, 1973, 238 p.
5. Goldyrev G. S. Diageneticheskie struktury, tekstury i autigennye mineraly donnykh otlozheniy Baykala. Donnye otlozheniya Baykala. Moscow, Nauka, 1970, pp. 116–121.
6. Granina L. Z., Mats V. D., Fedorin M. A. Zhelezomargantsevye obrazovaniya v regione ozera Baykal. Geology and geophysics, 2010, vol. 51, no. 6, pp. 835–848.
7. Gureeva M. V., Grabovich M. Yu. Ekologiya mikroorganizmov: uchebnoe posobie. Voronezh, Izdatel’skiy dom Voronezhskogo gosudarstvennogo universiteta, 2021, 105 p.
8. Zhuk N. P. Kurs teorii korrozii i zashchity metallov. Moscow, Metallurgiya, 1976, 472 p.
9. Zlobina O. N., Moskvin V. I., Khlystov O. M. Autigennoe mineraloobrazovanie v sovremennykh osadkakh oz. Baykal. Litologiya, petrografiya, mineralogiya, geokhimiya, 2011, no. 4 (48), pp. 48–56.
10. Zolotova E. F., Ass G. Yu. Ochistka vody ot zheleza, margantsa, ftora i serovodoroda. Moscow, Stroyizdat, 1975, 176 p.
11. Vologina E. G., Vorob’eva S. S., Kalashnikova I. A. et al. Istochniki snosa i sostav donnykh osadkov Yuzhnoy kotloviny oz. Baykal (predvaritel’nye rezul’taty). Izvestiya Irkutskogo gosudarstvennogo universiteta. Seriya «Nauki o Zemle», 2009, vol. 2, no. 2, pp. 53–64.
12. Oshchepkova A. V., Bychinskiy V. A., Chudnenko K. V. et al. Metody opredeleniya mineral’nogo sostava donnykh osadkov oz. Baykal i rascheta ikh termodinamicheskikh parametrov kak kriteriya paleoklimaticheskikh izmeneniy. Izvestiya Irkutskogo gosudarstvennogo universiteta. Seriya «Nauki o Zemle», 2019, vol. 28, pp. 76–88.
13. Krylov A. A., Khlystov O M., Khachikubo A. et al. Mekhanizm formirovaniya autigennogo rodokhrozita v pripoverkhnostnykh osadkakh gazogidratonosnoy struktury Sankt-Peterburg-2 v tsentral’noy kotlovine ozera Baykal [Elektronnyy resurs]. Neftegazovaya geologiya. Teoriya i praktika, 2017, vol. 12, no. 1, URL: https://doi.org/10.17353/2070-5379/8_2017 (12.05.2023).
14. Vologina E. G., Shturm M., Vorob’eva S. S. et al. Osobennosti osadkonakopleniya v ozere Baykal v golotsene. Geology and geophysics, 2003, vol. 44, no. 5, pp. 407–421.
15. Vologina E. G., Shturm M., Vorob’eva S. S. et al. Rekonstruktsiya usloviy pozdnepleystotsen-golotsenovogo osadkonakopleniya v ozere Baykal (na primere izucheniya kolonki osadkov, otobrannoy na podvodnoy vozvyshennosti v severnom Baykale). Razvitie zhizni v protsesse abioticheskikh izmeneniy na Zemle, 2014, no. 3, pp. 331–335.
16. Krylov A. A., Khlystov O. M., Zemskaya T. I. et al. Formirovanie autigennykh karbonatov v gryazevykh vulkanakh ozera Baykal. Geochemistry, 2008, no. 10, pp. 1051–1062.
17. Kuz’min M. I., Bychinskiy V. A., Kerber E. V. et al. Khimicheskiy sostav osadkov glubokovodnykh baykal’skikh skvazhin kak osnova rekonstruktsii izmeneniy klimata i okruzhayushchey sredy. Geology and geophysics, 2014, vol. 55, no. 1, pp. 3–22.
18. Zemskaya T. I., Namsaraeva B. B., Dul’tseva N. M. et al. Ekofiziologicheskie osobennosti matoobrazuyushchikh bakteriy Thioploca v donnykh osadkakh bukhty Frolikha, Severnyy Baykal. Mikrobiologiya, 2001, vol. 70, pp. 191–397.
19. Ekspeditsiya na NIS «G. Yu. Vereshchagin» s 22 iyunya po 01 iyulya 2021 goda [Elektronnyy resurs]. LIN SO RAN, URL: http://lin.irk.ru/expedition/1145-ekspeditsiya-na-nis-g-yu-vereshchagin-s-22-iyunya-po-01-iyulya-2021-goda (20.05.2023).
20. Krylov A. A., Hachikubo A., Minami H. et al. Authigenic rhodochrosite from a gas hydrate-bearing structure in Lake Baikal. International Journal of Earth Sciences, 2018, vol. 107, pp. 2011–2022, URL: https://doi.org/10.1007/s00531-018-1584-z (12.05.2023).
21. Och L. M., Müller B., Voegelin A. et al. New insights into the formation and burial of Fe/Mn accumulations in Lake Baikal sediments. Chemical Geology, 2012, pp. 244–259.
Review
For citations:
Shakhverdov V.A., Sapega V.F. On the first finding of elemental Sulphur in near-surface sediments of P-2 hydrate-bearing structure («Peschanka») lake Baikal. Regional Geology and Metallogeny. 2023;(94):56-57. (In Russ.) https://doi.org/10.52349/0869-7892_2023_94_56-67