Ground vegetation carbon stock in Krasnoyarsk suburban territories

Cover Page

Cite item

Full Text

Abstract

The comparative analysis of ground vegetation carbon stock between plots with different forest conditions, located in the experimental area of the Karaulniy district forestry in the Krasnoyarsk suburban zone is given. It was found that the maximum accumulation of carbon stocks of living ground cover is confined to open (non-forested) plots, in the ferny pine forests. Significant carbon sequestration was noted in the lingonberry- green-moss pine forest, as the moss layer makes a significant contribution to the accumulation of carbon in the living ground cover. A close relationship between relative completeness and conversion factors was established for sites with different forest conditions.

About the authors

Sevinch K. Mamedova

Reshetnev Siberian State University of Science and Technology

Author for correspondence.
Email: mamedova_ceva@mail.ru

pg., Junior researcher

Russian Federation, 31, the av. named after the newspaper «Krasnoyarskiy rabochiy», 660037, Krasnoyarsk

Andrey A. Vais

Reshetnev Siberian State University of Science and Technology

Email: vais6365@mail.ru

Dr. Sci. (Agriculture), Professor of the Department of Forest Inventory, Forest Management and Geodesy, leading researcher

Russian Federation, 31, the av. named after the newspaper «Krasnoyarskiy rabochiy», 660037, Krasnoyarsk

Aleksandra I. Mel’nik

Reshetnev Siberian State University of Science and Technology

Email: aleksandruna2013@gmail.com

pg., Junior researcher

Russian Federation, 31, the av. named after the newspaper «Krasnoyarskiy rabochiy», 660037, Krasnoyarsk

Pavel V. Mikhaylov

Reshetnev Siberian State University of Science and Technology

Email: mihaylov.p.v@mail.ru

Cand. Sci. (Agriculture), Associate Professor, Head of the Department of Forestry, Forest Protection and Forest Health, leading researcher

Russian Federation, 31, the av. named after the newspaper «Krasnoyarskiy rabochiy», 660037, Krasnoyarsk

Artem G. Nepovinnykh

Reshetnev Siberian State University of Science and Technology

Email: artixz@yandex.ru

Cand. Sci. (Agriculture), Senior researcher

Russian Federation, 31, the av. named after the newspaper «Krasnoyarskiy rabochiy», 660037, Krasnoyarsk

References

  1. Makhnykina A.V., Prokushkin A.S., Aryasov V.E., Polosukhina D.A., Trusov D.V. Potoki ugleroda v podchinennom yaruse lesa v sosnovykh drevostoyakh Tsentral’noy Sibiri [Carbon pools in co-dominat forest layer in pine stands of Central Siberia]. Nauchnye osnovy ustoychivogo upravleniya lesami: Materialy Vserossiyskoy nauchnoy konferentsii s mezhdunarodnym uchastiem, posvyashchennoy 30-letiyu TsEPL RAN [Scientific background for sustainable forest management: collection of scientific papers]. Moscow, April 25-29 2022, Moscow: Tsentr po problemam ekologii i produktivnosti lesov RAN, 2022, рр. 243-245.
  2. Shvidenko A.Z., Shepashchenko D.G., Nil’son S. Materialy k poznaniyu sovremennoy produktivnosti lesnykh ekosistem Rossii [Materials to the knowledge of modern productivity of forest ecosystems of Russia]. Bazovye problemy perekhoda k ustoychivomu lesnomu khozyaystvu v Rossii: mater. Mezhdunarodnogo seminara [Basic problems of transition to sustainable forestry in Russia: Materials. Intern. Semin.]. Krasnoyarsk, 6-7 December 2007. Krasnoyarsk: IL SO RAN [The Institute of forest V.N. Sukachev Siberian branch RAS], 2007, рр. 7-37.
  3. Polosukhina D.A., Prokushkin A.S., Masyagina O.V. Bioraznoobrazie rasteniy nizhnikh yarusov sosnovykh lesov Sredney Sibiri [Biodiversity of lower layers vegetation in pine forests of Central Siberia]. Rossiyskaya Arktika [Russian Arctic], 2020, no. 2S, рр. 44-50. doi: 10.24411/2658-4255-2020-12115
  4. Trofimova I.L. Nadzemnaya fitomassa i ee godichnaya produktsiya v spelykh sosnyakakh Srednego Urala [Aboveground biomass and its annual production in mature pine stands in Central Urals]. Dis. Cand. Sci. (Agric.). Yekaterinburg, 2015, 249 р.
  5. Tuzhilkina V.V. Struktura fitomassy i zapasy ugleroda v rasteniyakh napochvennogo pokrova elovykh lesov na severo-vostoke evropeyskoy Rossii [Phytomass structure and carbon stocks in above ground vegetation in spruce forests growing in Northeastern European Russia]. Rastitel’nye resursy [Plant Resources], 2012, v. 48, no. 1, pp. 44-50.
  6. Shvidenko A.Z., Shepashchenko D.G. Uglerodnyy byudzhet lesov Rossii [The Carbon Budget of Russian Forests]. Sibirskiy lesnoy zhurnal [Siberian Forest Journal], 2014, no. 1, рр. 69-92.
  7. Pristova T.A., Manov A.V., Zagirova S.V. Otsenka zapasov organicheskogo veshchestva napochvennogo pokrova i podstilki v elovykh i berezovykh fitotsenozakh na Pripolyarnom Urale [Assessment of ground vegetation organic matter pool in forest floor of spruce and birch forests in the Subpolar Urals]. Rastitel’nye resursy [Plant Resources], 2016, v. 52, no. 2, рр. 282-294.
  8. Prokushkin S.G., Abaimov A.P., Prokushkin A.S., Masyagina O.V. Biomassa napochvennogo pokrova i podleska v listvennichnykh lesakh kriolitozony Sredney Sibiri [Ground vegetation and understory biomass in larch forests growing in permafrost zone of Central Siberia]. Sibirskiy ekologicheskiy zhurnal [Siberian ecological journal], 2006, no. 2, рр. 131-139.
  9. Zaprudina M.V. Fitomassa travyano-kustarnichkovogo i mokhovogo yarusov temnokhvoynykh lesov Pechoro-Ilychskogo zapovednika [Phytomass of herb/shrub and moss layers in dark coniferous tall-grasses forests of the Pechora-Ilych Nature Reserve]. Izvestiya Samarskogo NTs RAN [Bulletin of the Samara Federal Research Scientific Center of the Russian Academy of Sciences], 2010, v. 12, no. 1 (3), рр. 876-879.
  10. Grozovskaya I.S., Khanina L.G., Smirnov V.E., Bobrovskiy M.V., Romanov M.S., Glukhova E.M. Biomassa napochvennogo pokrova v elovykh lesakh Kostromskoy oblasti [Biomass of soil cover in spruce forests of Kostroma region]. Lesovedenie [Russian Journal of Forest Science], 2015, no. 1, рр. 63-76.
  11. Ivanov V.A., Ivanova G.A., Kovaleva N.M. Post-fire succession in scots pine forests of southern taiga Central Siberia. IOP Conference Series: Materials Science and Engineering. Reshetnev Readings 2018, 2020, p. 012012.
  12. Hollands C., Shannon V.L., Sawicka K., Vanguelova E.I., Benham S.E., Shaw L.J., Clark J.M. Management impacts on the dissolved organic carbon release from deadwood, ground vegetation and the forest floor in a temperate Oak woodland. Science of The Total Environment, 2022, v. 805, no. 150399. doi: 10.1016/j.scitotenv.2021.150399
  13. Gogoi A., Ahirwal J., Sahoo U.K. Plant biodiversity and carbon sequestration potential of the planted forest in Brahmaputra flood plains. J. of Environmental Management, 2021, v. 280, no. 111671. doi: 10.1016/j.jenvman.2020.111671
  14. Kosykh N.P., Koronatova N.G., Mironycheva-Tokareva N.P., Vishnyakova E.K., Ivchenko T.G., Kurbatskaya S.S., Peregon A.M. The Bogs in a Forest-Steppe Region of Western Siberia: Plant Biomass and Net Primary Production (NPP). Water, 2023, v. 15, no. 20 (3526).
  15. Chu Y., He W.M., Liu H.D., Liu J., Zhu X.W., Dong M. Phytomass and plant functional diversity in early restoration of the degraded, semi-arid grasslands in northern China. J. of arid environments, 2006, v. 67, no. 4, рр. 678-687.
  16. Shomurodov K.F., Rakhimova N.K., Saitjanova U.S., Zhenyong Z. The Ecological-Phytocenotic Characteristics of Halocnemum strobilaceum (Pall.) Bieb. Grasslands on the Ustyurt Plateau in Karakalpakstan. Arid Ecosystems, 2023, v. 13, no. 4, рр. 507-517.
  17. Sergienko V.G. Vliyanie ozhidaemogo izmeneniya klimata na balans ugleroda i produktivnost’ ekosistem v lesnom sektore Rossiyskoy Federatsii [On the assumed impact of climate change on Russian forests]. Trudy Sankt-Peterburgskogo nauchno-issledovatel’skogo instituta lesnogo khozyaystva [Proceedings of Saint Petersburg Forestry Research Institute], 2018, no. 1, рр. 74-90. doi: 10.21178/2079-6080.2018.1.74
  18. Havas P., Kubin E. Structure, growth and organic matter content in the vegetation cover of an old spruce forest in Northern Finland. Ann. Bot. Fennici, 1983, v. 20, no. 2, рр. 115-149.
  19. Mälkönen E. Annual primary production and nutrient cycle in a birch stand. Helsinki: Communicationes Instituti Forestalis Fenniae, 1977, v. 91, no. 5, рр. 1-35.
  20. Bun’kova N.P., Zalesov S.V., Zalesova E.S., Magasumova A.G., Osipenko R.A. Osnovy fitomonitoringa [Fundamentals of phitomonitoring]. Yekaterinburg: Ural State Forest Engineering University, 2020, 90 р.
  21. Koshurnikova N.N., Panov A.V., Gaek A.O. Produktsiya mokhovogo yarusa v temnokhvoynykh lesakh Ket’-Chulymskogo mezhdurech’ya [Production of the Moss Layer in Dark Coniferous Forests of the Ket-Chulym Interfluve]. Lesovedenie [Contemporary Problems of Ecology], 2008, no. 3, pp. 70-75.
  22. Koshurnikova H.N., Verkhovets S.V. Produktsiya ugleroda fitomassy v yuzhno-taezhnykh temnokhvoynykh lesakh Zapadnoy Sibiri (Ket’-Chulymskiy lesorastitel’nyy okrug) [Production Of Phytomass Carbon In The South Taiga Dark Coniferous Forest Of The Western Siberia (Ket-Chulym Forest District)]. Rastitel’nye resursy [Rastitel’nye resursy], 2011, v. 47, no. 3, pp. 8-21.
  23. Titlyanova A.A., Kudryashova S.Ya., Kosykh N.P., Shibareva S.V. Biologicheskiy krugovorot ugleroda i ego izmenenie pod vliyaniem deyatel’nosti cheloveka na territorii Yuzhnoy Sibiri [Biological carbon cycle and its change under human activities in the Southern Siberia]. Pochvovedenie [Soil Science], 2005, no. 10, pp. 1240-1250.
  24. Nikitin A.N. Nakoplenie ugleroda v biomasse sosnovykh kul’turtsenozov [Carbon accumulation in the biomass of pine plantations]. Trudy Belorusskogo gosudarstvennogo tekhnologicheskogo universiteta. Seriya 1. Lesnoe khozyaystvo [Proceedings of the Belarusian State Technological University. Series 1. Forestry], 2003, no. 11, рр. 95-97.
  25. Prikaz Minprirody Rossii ot 18.08.2014 № 367 «Ob utverzhdenii Perechnya lesorastitel’nykh zon Rossiyskoy Federatsii i Perechnya lesnykh rayonov Rossiyskoy Federatsii» [Order of the Ministry of Natural Resources of Russia dated August 18, 2014 no. 367 On Approval of the List of Forest Site Zones of the Russian Federation and the List of Forest Districts of the Russian Federation]. Available at: https://docs.cntd.ru/document/420224339 (accessed 17.03.2024).
  26. Golub V.B., Nikolaychuk L.F. L.G. Ramenskiy i allometriya rasteniy (istoriya i sovremennoe sostoyanie problemy) [L.G. Ramensky and allometry of plants (history and current state of the problem)]. Raznoobrazie rastitel’nogo mira [Diversity of plant world], 2021, no. 1 (8), рр. 30-50.
  27. Pristova T.A., Fedorkov A.L. Fitomassa rasteniy napochvennogo pokrova v eksperimental’nykh kul’turakh sosny skruchennoy v Krasnozatonskom lesnichestve respubliki Komi [Ground vegetation phytomass in experimental cultures of lodgepole pine in Krasnozaton forestry of the Komi Republic]. Biodiagnostika sostoyaniya prirodnykh i prirodno- tekhnogennykh sistem: Materialy KhVI Vserossiyskoy nauchno-prakticheskoy konferentsii c mezhdunarodnym uchastiem [Biodiagnostics of the state of natural and natural-technogenic systems: Proceedings of the All-Russian scientific and practical conference with international participation]. Kirov, 3-5 December 2018. Kirov: Vyatskiy gosudarstvennyy universitet, 2018, v. 2, pp. 81-84.
  28. Beglyanova M.I., Vasil’eva E.M., Kashina L.I. Opredelitel’ rasteniy yuga Krasnoyarskogo kraya [Plant Identifier for the south of Krasnoyarsk Krai]. Novosibirsk: Science. Siberian branch, 1979, 670 p.
  29. Stakanov V.D., Alekseev V.A., Korotkov I.A., Klimushin B.L. Metodika opredeleniya zapasov fitomassy i ugleroda lesnykh soobshchestv [Methods for assessing phytomass and carbon pools in forest communities]. Uglerod v ekosistemakh lesov i bolot Rossii [Carbon in forest and swamp ecosystems in Russia]. Krasnoyarsk: Sukachev Institute of Forest SB RAS, 1994, рр. 48-69.
  30. Sostavlenie uglerodnogo balansa lesov Respubliki Belarus’ na osnovanii znacheniy koeffitsientov vybrosov/poglosh- cheniya dioksida ugleroda ot nadzemnoy fitomassy, podgotovka prognoza uvelicheniya pogloshcheniya vybrosov parnikovykh gazov lesami do 2030 i do 2050 godov, podgotovka perechnya meropriyatiy po uvelicheniyu poglosh- cheniya parnikovykh gazov v lesnom khozyaystve: otchet [Compilation of the carbon balance of forests in the Republic of Belarus based on the values of the emission / absorption factors of carbon dioxide from the aboveground phytomass, preparation of a forecast for the increase in absorption of greenhouse gas emissions by forests until 2030 and until 2050, preparation of a list of measures to increase the absorption of greenhouse gases in forestry], 2017, 65 p. Available at: http://minpriroda.gov.by/uploads/files/Pogloschenieparnikovyx-gazov.pdf (accessed 10.03.2024).
  31. Artem’eva I.N. Prostranstvennoe raspredelenie, fitomassa i godichnaya produktsiya nizhnikh yarusov rastitel’nosti v severotaezhnykh sosnyakakh lishaynikovykh KhMAO-Yugry [Spatial distribution, phytomass and annual production of the lower vegetation layers in the northern taiga lichen pine forests of Khanty-Mansiysk Autonomous Okrug-Yugra]. Dis. Cand. Sci. (Agric.). Yekaterinburg, 2022, 188 р.
  32. Lebedev A.V. Landshaftnaya taksatsiya i inventarizatsiya nasazhdeniy [Landscape-based forest inventory]. Moscow: Russian State Agricultural University, 2022, 148 p.
  33. Trefilova O.V., Vedrova E.F., Kuz’michev V.V. Godichnyy tsikl ugleroda v zelenomoshnykh sosnyakakh Eniseyskoy ravniny [The Annual Carbon Cycle in Green-Moss Pine Forests of the Yenisey Plain]. Lesovedenie [Russian Journal of Forest Science], 2011, no. 1, pp. 3-12.
  34. Atkina L.I., Bugakova T.M. Massa mokhovogo yarusa i ego mikrobiologicheskaya aktivnost’ v sosnovykh lesakh Nizhnego Priangar’ya [Moss layer biomass and its microbiological activity in the pine forests of the Lower Angara region]. Lesa Urala i khozyaystvo v nikh [Ural forests and their management], 2002, no. 22, рр. 46-51.
  35. Pristova T.A., Zagirova S.V., Manov A.V. Produktsiya organicheskogo veshchestva i akkumulyatsiya ugleroda v napochvennom pokrove elovykh i berezovykh fitotsenozov v predgor’yakh Pripolyarnogo Urala [Organic matter production and carbon stock in the ground vegetation of spruce and birch forests in the foothills of the Subpolar Urals]. Teoreticheskaya i prikladnaya ekologiya [Theoretical and Applied Ecology], 2018, no. 2, pp. 53-61.
  36. Efremov S.P., Efremova T.T., Bloyten V. Biologicheskaya produktivnost’ i uglerodnyy pul fitomassy lesnykh bolot Zapadnoy Sibiri [Biological productivity and carbon pool of forest swamps in Western Siberia]. Sibirskiy ekologicheskiy zhurnal [Siberian ecological journal], 2005, v. 12, no. 1, рр. 29-44.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2025 Mamedova S.K., Vais A.A., Mel’nik A.I., Mikhaylov P.V., Nepovinnykh A.G.

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

СМИ зарегистрировано Федеральной службой по надзору в сфере связи, информационных технологий и массовых коммуникаций (Роскомнадзор).
Регистрационный номер и дата принятия решения о регистрации СМИ: серия ПИ № ФС 77 - 68118 от  21.12.2016.