Vol. 34, issue 03, article # 10

Ageev B. G., Sapozhnikova V. A., Savchuk D. A. Changes in the radial growth and distribution of CO2 in larches survived the explosion of the Tunguska space body. // Optika Atmosfery i Okeana. 2021. V. 34. No. 03. P. 226–231. DOI: 10.15372/AOO20210310 [in Russian].
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Abstract:

A photoacoustic method was used to analyze gas samples vacuum-extracted from larch discs that survived the explosion of a space body in the Podkamennaya Tunguska area in 1908. The specificity of СО2 accumulation in tree rings after the catastrophe was revealed, which could affect the dynamics of СО2 emission by the trunks into the atmosphere.

Keywords:

Tunguska space body, larch discs, СО2

References:

  1. Vasilyev N.V. The Tunguska Meteorite problem today // Planet. Space Sci. 1998. V. 46, N 2/3. P. 129–150.
  2. Parfenova E.I. Ekologicheskie faktory rosta poslekatastrofnogo lesa v rajone Tungusskogo sobytiya // 100 let padeniyu Tungusskogo meteorita (estafeta pokolenij): mater. vseros. nauch.-prakt. konf. Krasnoyarsk, 26–30 june 2008. Krasnoyarsk: IPK SFU, 2008. P. 1–5.
  3. Johnstona С.О., Stern E.C. A model for thermal radiation from the Tunguska airburst // Icarus. 2019. V. 327. P. 48–59. DOI: 10.1016/j.icarus.2019.01.028.
  4. Vasil'ev N.B., L'vov Yu.A., Plekhanov G.F., Logunova L.N., Mul'diyarov E.Ya., Bibikova V.V., Volkov A.E., Kuz'min S.L., Lapshina E.D., Papanotidi A.I., Sergieva Z.M., Sidorov K.S., Travinskij I.V., Shoftel' B.I., Shcherbina S.S. Gosudarstvennyj prirodnyj zapovednik «Tungusskij» (ocherk osnovnyh dannyh) // Tungusskij zapovednik. Biotsenozy severnoj tajgi i vliyanie na nih ekstremal'nyh prirodnyh faktorov. Trudy gos. prirod. zapovednika «Tungusskij». Tomsk: Izd-vo Tom. gos. un-ta, 2003. Iss. 1. P. 33–89.
  5. Hytteborn H., Maslov A.A., Nazimova D.I., Rysin L.P. Boreal Forests of Eurasia // Coniferous forests. Amsterdam: Elsevier, 2005. V. 6. P. 23–99.
  6. Zhao R., Hӧlscher D. The concentration and efflux of tree stem CO2 and the role of xylem sap flow // Front. Biol. China. 2009. V. 4, N 1. P. 47–54.
  7. Barba J., Poyatos R., Var R. Automated measurements of greenhouse gases fluxes from tree stems and soils: Magnitudes, patterns and drivers // Sci. Rep. 2019. V. 9, N 4005. P. 1–13. DOI: 10.1038/s41598-019-39663-8.
  8. Suvorova G.G., Popova E.V. Fotosinteticheskaya produktivnost' hvojnyh drevostoev Irkutskoj oblasti. Novosibirsk: Geo, 2015. [Elektronnyj resurs]. URL: http: // www.sifibr.irk.ru / images / publications / suvorova_monogr.pdf.
  9. Timohina A.V., Prokushkin A.S., Panov A.V., Kolosov R.A., Sidenko N.V., Lavrich J., Hajmann M. Mezhgodovaya izmenchivost' kontsentratsii dioksida ugleroda v atmosfere nad tsentral'noj chast'yu Sibiri (po dannym mezhdunarodnoj observatorii ZOTTO za 2009–2015 years) // Meteorol. i gidrol. 2018. N 5. P. 20–29.
  10. Arshinov M.Yu., Belan B.D., Davydov D.K., Krekov G.M., Fofonov A.V., Babchenko S.I., Inoue G., Machida T., Maksutov Sh., Sasakava M., Shimoyama K. Dinamika vertikal'nogo raspredeleniya parnikovyh gazov v atmosfere // Optika atmosf. i okeana. 2012. V. 25, N 12. P. 1051–1061.
  11. Ageev B.G., Gruzdev A.N., Sapozhnikova V.A. Cyclic variation of residual (CO2 + H2O) and total pressure in conifer stem and woody root tree rings // Zh. Sibirskogo Federalnogo Univ. Biologia. 2018. V. 11, N 3. P. 206–217. DOI: 10.17516/1997-1389-0066.
  12. Ageev B.G., Sapozhnikova V.A., Gruzdev A.N., Golovatskaya  E.A., Dyukarev E.A., Savchuk D.A. Sravnenie harakteristik ostatochnyh gazov v godichnyh kol'tsah derev'ev sosny // Optika atmosf. i okeana. 2019. V. 32, N 2. P. 105–112; Ageev B.G., Sapozhnikova V.A., Gruzdev A.N., Golovatskaya E.A., Dukarev E.A., Savchuk D.A. Comparison of Residual Gas Characteristics in Annual Rings of Scots Pine Trees. // Atmos. Ocean. Opt. 2019. V. 32, N 3. P. 275–283.
  13. Abramov N.G., Arkaev E.A., Russkih A.G. Issledovanie pozhara 1908 year v rajone padeniya Tungusskogo meteorita // Tungusskij zapovednik. Biotsenozy severnoj tajgi i vliyanie na nih ekstremal'nyh prirodnyh faktorov. Trudy gos. prirod. zapovednika «Tungusskij». Tomsk: Izd-vo Tom. gos. un-ta, 2003. Iss. 1. P. 275–278.
  14. Plekhanov G.F., Mul'diyarov E.Ya., Sal'nikova G.A., Grishin Yu.A. Osobennosti vyvala i pozhara v tsentral'noj zone tungusskoj katastrofy // Chteniya pamyati Yu.A. L'vova. Tomsk: NIIBB pri TGU, 1995. P. 178–182.
  15. Krasavchikov V.O., Yashkov D.V. O prostranstvennom raspredelenii sledov katastrofnogo pozhara 1908 year // 100 let padeniyu Tungusskogo meteorita (estafeta pokolenij): materialy vseros. nauch.-prakt. konf. Krasnoyarsk, 26–30 june 2008. Krasnoyarsk: IPK SFU, 2008. P. 1–11.
  16. Panyushkina I.P., Arbatskaya M.K. Dendrohronologicheskij podhod k issledovaniyu gorimosti lesov Evenkii // Sibir. ekolog. zhurn. 1999. N 2. P. 167–173.
  17. Sapunov V.B., Polovaya O.V. Ekologicheskie aspekty Tungusskogo fenomena 1908 year // Uchenye zapiski Ros. gos. gidrometeorol. un-ta. 2009. N 10. P. 86–100.
  18. Nesvetajlo V.D. K voprosu ob uskorennom priroste derev'ev rajona padeniya Tungusskogo meteorita // Sledy kosmicheskih vozdejstvij na Zemlyu. Novosibirsk: Nauka, 1990. P. 165–171.
  19. Nikolaeva S.A., Savchuk D.A. Metody dendroindikatsii ekzogennyh gravitatsionnyh protsessov: obzor // Izv. RAN. Ser. geograf. 2020. V. 84, N 3. P. 441–450. DOI: 10.31857/S2587556620030097.
  20. Kasatkina E.A., Shumilov O.I. Eshche odna zagadka Tungusskoj katastrofy? // Pis'ma v ZhETF. 2007. V. 85, N 4. P. 255–259.
  21. Zlobin A.E. Rezul'taty raschetno-eksperimental'nogo i polevogo issledovaniya Tungusskoj kosmicheskoj katastrofy (k 110-letiyu sobytiya 1908 year) // Sovremennye nauchnye issledovaniya i innovatsii. 2018. N 6. URL: http://web. snauka.ru/issues/2018/06/ 87130.
  22. Khrennikov D.E., Titov A.K., Ershov A.E., Pariev V.I., Karpov S.V. On the possibility of through passage of asteroid bodies across the Earth’s atmosphere // Mon. Not. R. Astron. Soc. 2020. V. 493. P. 1344–1351. DOI: 10.1093/mnras/staa329.