Assessment of losses of carbon stored in the aboveground biomass of pine stands damaged by surface fires in the Polissia and Left-Bank Forest-Steppe
ARTICLE PDF (Українська)

Keywords

pine stands
tree mortality
state dynamics
scorch height соснові деревостани
відпад
динаміка стану
висота нагару на стовбурах дерев

How to Cite

Коваль, І. М., Ворон, В. П., Сидоренко, С. Г., Мельник, Є. Є., Пастернак, В. П., & Будзінський, І. Л. (2024). Assessment of losses of carbon stored in the aboveground biomass of pine stands damaged by surface fires in the Polissia and Left-Bank Forest-Steppe . Forestry and Forest Melioration, (144), 99–109. https://doi.org/10.33220/1026-3365.144.2024.99

Abstract

Introduction

Forest vegetation stores carbon and is the main carbon reservoir on the planet. Fires affect carbon stocks and the carbon cycle. The main causes of fires are anthropogenic factors. The impact of Russia's military aggression against Ukraine resulted in damage to 30% of the country's forest area. The capacity of forestry enterprises to protect forests and control fires has diminished under martial law. Under these conditions, studies on carbon loss in fire-damaged stands are extremely relevant.

The study aimed to reveal the impact of surface fires of intensity on carbon sequestration in the biomass of pine stands in forest and forest-steppe natural zones.

Materials and Methods

The study was conducted in the fire-damaged pine stands growing in Polissia and the Left-Bank Forest-Steppe in Ukraine.

The first object of the research was a middle-aged pure pine stand in the Nemovytsky subunit of Branch “Sarny Forestry” of the State Specialized Forest Enterprise «Forests of Ukraine». The forest site conditions type is moist relatively infertile (B3) on loamy soils (Polissia). The forest was damaged by surface fire in the spring of 2012. The surface fire had medium intensity, as evidenced by the fire scorch height.

The second object of the study was a middle-aged pure pine stand in the Babai subunit of the Branch “Zhovtneve Forestry” of the SFE «Forests of Ukraine», which was damaged by fire in the spring of 2011. The stand grows on sandy turf podzolized soils. The forest site conditions type is fresh relatively infertile one (B2). Three permanent research plots with different levels of fire damage have been laid out.

To estimate the biomass stock before the fire, the ‘Norms for assessment of above-ground biomass components of trees of the main forest-forming species of Ukraine’ were used. Calculations were made considering stem thickness degrees. The volumes of the sequestered carbon were calculated using two main indicators: the absolutely dry stand biomass and the percentage of carbon content (or its volume) in one tonne of the absolutely dry organic matter.

Results

Post-fire carbon losses due to tree mortality depend primarily on the fire intensity, damage type, and fire resistance of the stands (i.e. fire resistance at the level of the trees in the stand). In Polissia, 14 trees died (14%) one year after the fire in 2013 and 42 trees (58%) died three years after the fire in 2015. The loss of stored carbon in aboveground biomass was 6% (4.87 t·ha-1) one year after the fire and 61% (30.4 t·ha-1) three years after the fire. In the Left-Bank Forest-Steppe, the loss of stored carbon in the aboveground biomass of middle-aged pine stands damaged by a fire with a fire scorch height of 0.61 cm was 3% (0.021 t·ha-1) three years after the fire, in 2014. The loss was 8% (6.37 t·ha-1) for the stand with a fire scorch height of 1.76 cm and 30% (29.2 t ha-1) for the most damaged pine stand with an average fire scorch height of 3.76 cm.

Conclusions

Post-fire carbon losses in aboveground biomass due to tree mortality depend primarily on fire intensity and damage type, the length of the post-fire period, and the fire resistance of the stand (fire resistance at the level of the trees in the stand). The preliminary data obtained indicate that in Polissia (in moist relatively infertile forest site type) a higher level of mortality was detected at a lower fire intensity than in Left-Bank Forest-Steppe (in fresh relatively infertile forest site type). Accordingly, the largest losses of stored carbon were found in fire-damaged pine stands under moister conditions in Polissia compared to pine forests in Left Bank Forest-Steppe in dryer forest site conditions.

3 Figs., 4 Tables, 26 Refs.

https://doi.org/10.33220/1026-3365.144.2024.99
ARTICLE PDF (Українська)

References

Atramentova, L.O. and Utevska, O.M. (2007) Statistical methods in biology. Kharkiv: KhNU named after V. N. Karazin (in Ukrainian).

Bilous, A., Myroniuk, V., Holiaka, D., Bilous S., See, L. and Schepaschenko, D. (2017) ‘Mapping growing stock volume and forest live biomass: a case study of the Polissya region of Ukraine’, Environmental Research Letters, 12, e105001. https://doi.org/10.1088/1748-9326/aa8352

Bond-Lamberty, B., Peckham, S. D., Ahl, D. E., & Gower, S. T. (2007). Fire as the dominant driver of central Canadian boreal forest carbon balance. Nature, 450(7166), 89-92.

Buksha, I.F., Butrym, O.V. and Pasternak, V.P. (2008) Inventory of greenhouse gases in the sector of land use and forestry. Kharkiv: KhNAU. ISBN 978-966-1664-06-6 (in Ukrainian).

Buksha, I.F., Raspopina, S.P. and Pasternak, V.P. (2012) ‘Carbon stock in soil and litter in forest monitoring plots’, Forestry and Forest Melioration, 120, pp. 106–112 (in Ukrainian).

Koval, I.M., Voron, V.P. and Sydorenko, S.G. (2018) ‘Carbon sequestration in the young pine stands damaged by fire within Left-bank forest-steppe’, Forestry and Forest Melioration, 133, pp. 78–84 (in Ukrainian). https://doi.org/10.33220/1026-3365.133.2018.78

Kuzyk, A.D. (2009) ‘Forest typological aspects of fire safety of woods’, Scientific Bulletin of UNFU, 19(14), pp. 210–214 (in Ukrainian).

Kuzyk, A.D. (2019) Ecological and forestry basics of fire safety in the forests of Male Polissia. Lviv: SPOLOM. ISBN 978-966-919-379-7 (in Ukrainian).

Lakyda, P.I. (2011) Standards for evaluation the components of the above-ground phytomass of trees of the main forest-forming species of Ukraine. Kyiv: EKO-inform Publishing House (in Ukrainian).

Lakyda, P., Shvidenko, A., Bilous, A., Myroniuk, V., Matsala, M., Zibtsev, S., Schepaschenko, D., Holiaka, D., Vasylyshyn, R., Lakyda, I., Diachuk, P. and Kraxner, F. (2019) ‘Impact of disturbances on the carbon cycle of forest ecosystems in Ukrainian Polissya’, Forests, 10, 337. https://doi.org/10.3390/f10040337

Matthews, G.R. (1993) The carbon content of trees. Edinburgh: Forestry Communication. ISBN 0855383178, 9780855383176.

Meigs, G.W., Donato, D.C., Campbell, J.L., Martin, J.G. and Law, B.E. (2009) ‘Forest fire impacts on carbon uptake, storage, and emission: The role of burn severity in the Eastern Cascades, Oregon’, Ecosystems, 12(8), pp. 1246–1267. https://www.jstor.org/stable/25622882

Melnyk, V.V. (2019) ‘Assessment of the sanitary condition of the scotch pine plantations in fresh pine forests of Ukrainian Polissia exclusion zone’, Scientific Bulletin of UNFU, 29(3), pp. 39–43 (in Ukrainian). https://doi.org/10.15421/40290308

NGO “Forest Com” (2023) Ways to strengthen the ecosystem services of forests to increase the amount of carbon dioxide absorption and mitigate the climate change effect. Available at: https://forestcom.org.ua/news-post/shlyahi-posilennya-ekosistemnih-poslug-lisiv-dlya-zbilshennya-obsyagiv-poglinannya-vuglekislogo-gazu (Accessed: 18 March 2024).

Pasternak, V.P. and Yarotskiy, V.Yu. (2013) ‘Carbon stock and dynamic assessment in the forests of North-East of Ukraine’, Scientific Bulletin of UNFU, 23(6), pp. 57–62 (in Ukrainian).

Prokopuk, Yu.S. and Netsvetov, M.V. (2016) ‘Dynamics of depositing carbon in the stubble biomass of Quercus robur L. in the park Theophania’, Scientific Bulletin of UNFU, 26 (3), pp. 158–164 (in Ukrainian). https://doi.org/10.15421/40260326

Sanitary Forest Regulations in Ukraine (2016). Resolution of the Cabinet of Ministers of Ukraine No. 756 dated 26 October 2016. Available at: http://zakon2.rada.gov.ua/laws/show/555-95-п (Accessed: 18 March 2024) (in Ukrainian).

Shpakivska, І.M. and Maryskevych, О.G. (2009) ‘Estimation the reserves of organic carbon in the forest ecosystems of Eastern Beskydy’, Forestry and Forest Melioration, 115, pp. 176–180 (in Ukrainian).

Siahaan, H., Kunarso, A., Sumadi, A., Purwanto, P., Rusolono T., Tiryana, T., Sumantri, H. and Haasler, B. (2020) ‘Carbon loss affected by fires on various forests and land types in South Sumatera’, Indonesian Journal of Forestry Research, 7(1), pp. 15–25.

State Forest Resources Agency of Ukraine (2024) Public report of the Head of the State Forest Resources Agency of Ukraine for 2023. Available at: https://forest.gov.ua/storage/app/sites/8/uploaded-files/%D0%9F%D1%83%D0%B1%D0%BB%D1%96%D1%87%D0%BD%D0%B8%D0%B9%20%D0%B7%D0%B2%D1%96%D1%82%20%D0%93%D0%BE%D0%BB%D0%BE%D0%B2%D0%B8%202023.pdf (Accessed: 2 April 2024).

Siahaan, H., Kunarso, A., Sumadi, A., Purwanto, P., Rusolono, T., Tiryana, T., ... & Haasler, B. (2020). Carbon loss affected by fires on various forests and land types in South Sumatera. Indonesian Journal of Forestry Research, 7(1), 15-25. https://doi:10.20886/ijfr.2020.7.1.15-25

Sydorenko, S., Voron, V., Koval, I., Sydorenko, S., Rumiantsev M. and Hurzhii, R. (2021) ‘Postfire tree mortality and fire resistance patterns in pine forests of Ukraine’, Central European Forestry Journal, 67, pp. 21–29. https://doi.org/10.2478/forj-2020-0029

Tkach, V.P., Vysotska N.Yu., Torosov, A.S., Buksha, I.F., Pasternak, V.P., Los, S.A., Kobets, O.V., Tarnopilska, O.M., Tarnopilskyi, P.B., Kalashnikov, A.O., Zhezhkun, I.M., Koval I.M., Sydorenko, S.H., Sydorenko, S.V., Bondarenko, V.V. and Bondar, O.B. (2023) Economic evaluation of ecosystem services of Ukrainian forests. Kharkiv: URIFFM (in Ukrainian). https://doi.org/10.33220/2023.978-617-8195-57-1

Voron, V.P., Koval I.M., Sydorenko S.G., Melnyk E.E., Bologov O.Yu., Tkach O.M. and Tymoshchuk I.V. (2019) Recommendations on measures to increase the fire resistance of forests and methods predicting their post-fire development. Kharkiv: URIFFM (in Ukrainian).

Voron, V.P., Koval, I.M., Sydorenko, S.G., Melnyk, E.E., Tkach, O.M., Borysenko, V.G., Tymoshchuk, I.V. and Bologov, O.Yu. (2021) Pyrogenic transformation of forests of Ukraine. Kharkiv: Planet-Print. SSBN 978-617+77897-54-4 (in Ukrainian).

Walker, R.B., Coop, J.D., Downing, W.M., Krawchuk, M. A., Malone, S. L., & Meigs, G. W. (2019). How much forest persists through fire? High-resolution mapping of tree cover to characterize the abundance and spatial pattern of fire refugia across mosaics of burn severity. Forests, 10(9), 782. https://doi.org/10.3390/f10090782

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