Vol. 30, issue 04, article # 7

Glagolev M. V., Ilyasov D. V., Terentyeva I. E., Sabrekov A. F., Krasnov O. A., Maksyutov Sh. Sh. Methane and carbon dioxide fluxes in the waterlogged forests of Western Siberian southern and middle taiga subzones. // Optika Atmosfery i Okeana. 2017. V. 30. No. 04. P. 301–309. DOI: 10.15372/AOO20170407 [in Russian].
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Abstract:

Field measurements methane and carbon dioxide fluxes have been conducted on two sites of Western Siberia in south and middle taiga on August 16–24, 2015. Static chamber method had been used. Two measurement sites were chose in Bakchar bog, Tomsk Region, for typical local ecosystems (from oligotrophic bog to enclosed forest and periodically flooded forest) and in waterlogged forest near Shapsha settlement, Khanty-Mansi Autonomous Region. Maximum methane fluxes have been measured from the overmoistening territory of burnt birch forest (median is 6.96; lower and upper quartiles are –3.12 and 9.95 mgС × m–2 × h–1, respectively). Minimum of these parameters (among the above objects) was measured in the periodic seasonal waterlogged forest (median, lower and upper quartiles are –0.08, –0.14 and –0.03 mgС × m–2 × h–1, respectively). These data may be used for estimation of regional methane fluxes from waterlogged and periodically flooded forests and for forecast of their influence on the total balance of greenhouse gases in the atmosphere.

Keywords:

waterlogged forest, methane and carbon dioxide fluxes, greenhouse gases

References:

  1. Karol' I.P. Ocenki harakteristik otnositel'nogo vklada parnikovyh gazov v global'noe poteplenie klimata // Meteorol. i gidrol. 1996. N 11. P. 5–12.
  2. Terentieva I.E., Glagolev M.V., Lapshina E.D., Sabrekov A.F., Maksyutov Sh.Sh. Mapping of West Siberian taiga wetland complexes using Landsat imagery: Implications for methane emissions // Biogeosciences. 2016. V. 13, N 16. P. 4615–4626.
  3. Sabrekov A.F., Glagolev M.V., Klepcova I.E., Machida T., Maksjutov Sh.Sh. Jemissija metana iz bolotnyh kompleksov tajgi Zapadnoj Sibiri // Pochvovedenie. 2014. N 1. P. 58–70; Sabrekov A.F., Glagolev M.V., Kleptsova I.E., Machida T., Maksyutov Sh.Sh. Methane Emission from Mires of the West Siberian Taiga // Eurasian Soil Sci. 2013. V. 46, N 12. P. 1182–1193.
  4. Glagolev M.V., Shnyrev N.A. Letne-osennjaja jemissija CH4 estestvennymi bolotami Tomskoj oblasti i vozmozhnosti ee prostranstvenno-vremennoj jekstrapoljacii // Vestn. MGU. Pochvovedenie. 2008. N 2. P. 24–36.
  5. Glagolev M.V. Jemissija CH4 bolotnymi pochvami Zapadnoj Sibiri: ot pochvennogo profilja do regiona: Dis. … kand. biol. nauk. M.: MGU, 2010.
  6. Glagolev M.V., Filippov I.V. Otvet A.V. Smaginu: III. O metanotrofnom fil'tre i konvektivnoj razgruzke v atmosferu // Dinamika okruzhajushhej sredy i global'nye izmenenija klimata. 2015. V. 6, N 1(11). P. 42–54.
  7. Kurganova I.N., Kudejarov V.N. Vozmozhen li znachitel'nyj polozhitel'nyj disbalans krugovorota ugleroda (stok) na territorii Rossii? // Dinamika okruzhajushhej sredy i global'nye izmenenija klimata. 2015. V. 6, N 1(11). P. 32–35.
  8. Bohn T.J., Melton J.R., Ito A., Kleinen T., Spahni R., Stocker B.D., Zhang B., Zhu X., Schroeder R., Glagolev M.V., Maksyutov Sh., Brovkin V., Chen G., Denisov S.N., Eliseev A.V., Gallego-Sala A., McDonald K.C., Rawlins M.A., Riley W.J., Subin Z.M., Tian H., Zhuang Q., Kaplan J.O. WETCHIMP-WSL: Intercomparison of wetland methane emissions models over West Siberia // Biogeosciences. 2015. V. 12, N 11. P. 3321–3349.
  9. Glagolev M., Kleptsova I., Filippov I., Maksyutov Sh., Machida T. Regional methane emission from West Siberia mire landscapes // Environ. Res. Lett. 2011. V. 6, N 4. P. 045214.
  10. Glagolev M.V., Sabrekov A.F. Otvet A.V. Smaginu: II. Uglerodnyj balans Rossii // Dinamika okruzhajushhej sredy i global'nye izmenenija klimata. 2014. V. 5, N 2. P. 50–70.
  11. Bartlett K.B., Harriss R.C. Review and assessment of methane emissions from wetlands // Chemosphere. 1993. V. 26, N 1–4. P. 261–320.
  12. Boeckx P., van Cleemput O. Flux estimates from soil methanogenesis and methanotrophy: Landfills, rice paddies, natural wetlands and aerobic soils // Environ. Monit. Assess. 1996. V. 42. P. 189–207.
  13. Glagolev M.V., Klepcova I.E. Jemissija metana v lesotundre: k sozdaniju «standartnoj modeli» (Aa2) dlja Zapadnoj Sibiri // Vestn. Tom. gos. ped. un-ta. 2009. N 3. P. 77–81.
  14. Devol A.H., Richey J.E., Forsberg B.R., Martinelli L.A. Seasonal dynamics in methane emissions from the Amazon River floodplain to the troposphere // J. Geophys. Res. D. 1990. V. 95, N 10. P. 16417–16426.
  15. Tathy J.P., Cros B., Delmas R.A., Marenco A., Servant J., Labat M. Methane emission from flooded forest in Central Africa // J. Geophys. Res. D. 1992. V. 97, N 16. P. 6159–6168.
  16. Silver W.L., Lugo A.E., Keller M. Soil oxygen availability and biogeochemistry along rainfall and topographic gradients in upland wet tropical forest soils // Biogeochemistry. 1999. V. 44, N 3. P. 301–328.
  17. Ambus P., Christensen S. Spatial and seasonal nitrous oxide and methane fluxes in Danish forest-, grassland-, and agroecosystems // J. Environ. Qual. 1995. V. 24, N 5. P. 993–1001.
  18. Aronson E.L., Vann D.R., Helliker B.R. Methane flux response to nitrogen amendment in an upland pine forest soil and riparian zone // J. Geophys. Res. 2012. V. 117. P. G03012.
  19. Berezina E.V., Elanskij N.F., Moiseenko K.B., Safronov A.N., Skorohod A.I., Lavrova O.V., Belikov I.B., Shumskij R.A. Ocenka biogennyh jemissij CH4, CO2 i suhogo osazhdenija O3 po izmerenijam 222RN v jekspedicijah TROICA // Izv. RAN. Fiz. atmosf. i okeana. 2014. V. 50, N 6. P. 663–674.
  20. Glagolev M.V. Annotirovannyj spisok literaturnyh istochnikov po rezul'tatam izmerenij potokov CH4 i CO2 iz bolot Rossii // Dinamika okruzhajushhej sredy i global'nye izmenenija klimata. 2010. V. 1, N 2. P. 5–57.
  21. Glagolev M.V., Shnyrev N.A. Dinamika letne-osennej jemissii CH4 estestvennymi bolotami (na primere juga Tomskoj oblasti) // Vestn. MGU. Pochvovedenie. 2007. N 1. P. 8–14.
  22. Krasnov O.A., Maksyutov Sh., Glagolev M.V., Kataev M.Ju., Inoue G., Nadeev A.I., Shelevoj V.D. Avtomatizirovannyj kompleks «FLUX-NIES» dlja izmerenija potokov metana i dioksida ugleroda // Optika atmosf. i okeana. 2013. V. 26, N 12. P. 1090–1097.
  23. Krasnov O.A., Maksyutov Sh.Sh., Davydov D.K., Fofonov A.V., Glagolev M.V., Inoue G. Monitoring jemissii metana i dvuokisi ugleroda iz pochvy v atmosferu i parametry pochvy. Bakcharskoe boloto Tomskoj oblasti (2014 year.) // Optika atmosf. i okeana. 2015. V. 28, N 7. P. 644–654.
  24. Koronatova N.G., Miljaeva E.V. Produktivnost' bolotnyh sosnjakov juzhnoj tajgi Zapadnoj Sibiri // Interjekspo Geo-Sibir'. 2011. V. 4. P. 269–273.
  25. Nozhevnikova A., Glagolev M., Nekrasova V., Einola J., Sormunen K., Rintala J. The analysis of methods for measurement of methane oxidation in landfills // Water Sci. Technol. 2003. V. 48, N 4. P. 45–52.
  26. Sabrekov A.F., Runkle B.R.K., Glagolev M.V., Kleptsova I.E., Maksyutov Sh.Sh. Seasonal variability as a source of uncertainty in the West Siberian regional CH4 flux upscaling // Environ. Res. Lett. 2014. V. 9, N 4. P. 045008.
  27. Dospehov B.A., Vasil'ev I.P., Tulikov A.M. Praktikum po zemledeliju. M.: Agropromizdat, 1987. 383 p.
  28. Glagolev M.V., Sabrekov A.F., Kazancev V.S. Fizikohimija i biologija torfa. Metody izmerenija gazoobmena na granice pochva–atmosfera. Tomsk: Izd-vo TGPU, 2010. 104 p.
  29. Sullivan B.W., Kolb T.E., Hart S.C., Kaye J.P., Dore S., Montes-Helu M. Thinning reduces soil carbon dioxide but not methane flux from southwestern USA ponderosa pine forests // For. Ecol. Manage. 2008. V. 255, N 12. P. 4047–4055.
  30. Castro M.S., Steudler P.A., Melillo J.M., Aber J.D., Bowden R.D. Factors controlling atmospheric methane consumption by temperate forest soils // Global Biogeochem. Cycles. 1995. V. 9, N 1. P. 1–10.
  31. Gulledge J., Schimel J.P. Controls on soil carbon dioxide and methane fluxes in a variety of taiga forest stands in interior Alaska // Ecosystems. 2000. V. 3, N 3. P. 269–282.
  32. Gluhova T.V., Kovalev A.G., Smagina M.V., Vomperskij S.Je. Ocenka nekotoryh bioticheskih komponentov uglerodnogo cikla bolot i lesov // Bolota i zabolochennye lesa v svete zadach ustojchivogo prirodopol'zovaniem: Mater. konf. M.: GEOS, 1999. P. 182–185.
  33. Glagolev M.V., Smagin A.V. Prilozhenija MATLAB dlja chislennyh zadach biologii, jekologii i pochvovedenija. M.: MGU, 2005. 200 p.
  34. Groffman P.M., Hardy J.P., Driscoll C.T., Fahey T.J. Snow depth, soil freezing, and fluxes of carbon dioxide, nitrous oxide and methane in a northern hardwood forest // Global Change Biology. 2006. V. 12, N 9. P. 1748–1760.
  35. Hu R., Kusa K., Hatano R. Soil respiration and methane flux in adjacent forest, grassland, and cornfield soils in Hokkaido, Japan // Soil Sci. Plant Nutr. 2001. V. 47, N 3. P. 621–627.