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Temporal dynamics of CO2 fluxes over a non-irrigated vineyard
- 1.0579129 - BC 2024 RIV CH eng J - Journal Article
Badraghi, A. - Novotná, B. - Frouz, Jan - Krištof, K. - Trakovický, M. - Juriga, M. - Chvila, B. - Montagnani, L.
Temporal dynamics of CO2 fluxes over a non-irrigated vineyard.
Land. Roč. 12, č. 10 (2023), č. článku 1925. E-ISSN 2073-445X
Institutional support: RVO:60077344
Keywords : vineyard * eddy covariance * carbon fluxes * environmental factor * carbon sequestration
OECD category: Soil science
Impact factor: 3.9, year: 2022
Method of publishing: Open access
https://www.mdpi.com/2073-445X/12/10/1925
Some knowledge gaps still remain regarding carbon sequestration in non-irrigated agroecosystems, where plants may experience drought stress during summertime. Therefore, by the combination of the eddy covariance (EC) and soil chamber techniques, we determined the role of a non-irrigated grassed vineyard in carbon sequestration in the Slovak Republic. Based on the EC data, the cumulative net uptake of CO2 (NEE) for the whole growing season was weak and was ca. −97 (g C m−2). This value resulted from −796 (g C m−2) carbon uptake from the atmosphere through photosynthesis (GEE) and 699 (g C m−2) carbon released to the atmosphere through respiration (Reco). Carbon emissions through Reco were considerable and accounted for ca. 88% of GEE, which points out the importance of Reco for managing non-irrigated agroecosystems. Data from the soil chamber indicated that ca. 302 (g C m−2) was released by the vineyard through soil respiration (Rsoil) over a growing season, which was constantly lower than Reco and accounted for ca. 44 ± 18% of Reco. This finding implies that the vineyard soil was not a main source of carbon emissions. Rsoil was mainly driven by temperature (exponentially ca. 69-85%). Meanwhile, vapour pressure deficit (VPD) and temperature appeared to be the most important limiting factors for GEE, NEE, and Reco, particularly when they exceeded a certain threshold (e.g., temperature > 17 °C, and VPD > 10 hPa).
Permanent Link: https://hdl.handle.net/11104/0348005
Number of the records: 1