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Long-term annual burning of grassland increases CO2 emissions from soils

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Publication date: 15 November 2016
Source:Geoderma, Volume 282
Author(s): Khatab Abdalla, Pauline Chivenge, Colin Everson, Olivier Mathieu, Mathieu Thevenot, Vincent Chaplot
Grasslands have potential to mitigate against climate change because of their large capacity to store soil organic carbon (SOC). However, the long-term impact of grassland management such as burning, which is still common in many areas of the world, on SOC is still a matter of debate. The objective of this study was to quantify the long-term effects of annual burning on CO2 output from soils and SOC stocks. The study was performed on a 62years old field trial comparing annual burning (AB) to no burning associated with tree encroachment (NB), and to annual mowing (AM) with all treatments laid out in randomized block design with three replicates per treatment. CO2 emissions from soil were continuously measured over two years and were correlated to soil chemical and physical properties. AB and AM produced 30 and 34% greater CO2 emissions from soil than NB (1.80±0.13 vs. 2.34±0.18 and 2.41±0.17gC-CO2 m2 d1 for NB, AB and AM respectively). AB and AM also produced greater CO2 emissions from soil and per gram of soil carbon (1.32±0.1 and 1.35±0.1mgC-CO2 gC1 d1, respectively) than NB (1.05±0.07mgC-CO2 gC1 d1), which corresponded to significant differences of respectively 26% and 29%. Overall, CO2 emissions from soil (per m2) significantly increased with soil water content (r=0.72) followed by SOC stocks (r=0.59), SOC content (r=0.50), soil bulk density (r=0.49), soil temperature (r=0.47), C:N ratio (r=0.46) and mean weight diameter (r=0.38). These findings suggest that long-term annual burning increases CO2 output from soils. Additional greenhouse gases emissions from burning itself and alternative grassland management techniques were finally discussed.


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