Author:
Ma Xuehong,Feng Huili,Guo Jiahuan,Peng Changhui,Kneeshaw Daniel,Wang Weifeng
Abstract
AbstractThe forest soil methane (CH4) flux exhibits high spatiotemporal variability. Understanding these variations and their driving factors is crucial for accurately assessing the forest CH4 budget. In this study, we monitored the diurnal and seasonal variations in soil CH4 fluxes in two poplar (Populus spp.) plantations (Sihong and Dongtai) with different soil textures using the static chamber-based method. The results showed that the annual average soil CH4 flux in the Sihong and Dongtai poplar plantations was 4.27 ± 1.37 kg CH4-C ha–1 yr–1 and 1.92 ± 1.07 kg CH4-C ha–1 yr–1, respectively. Both plantations exhibited net CH4 emissions during the growing season, with only weak CH4 absorption (–0.01 to –0.007 mg m–2 h–1) during the non-growing season. Notably, there was a significant difference in soil CH4 flux between the clay loam of the Sihong poplar plantation and the sandy loam of the Dongtai poplar plantation. From August to December 2019 and from July to August and November 2020, the soil CH4 flux in the Sihong poplar plantation was significantly higher than in the Dongtai poplar plantation. Moreover, the soil CH4 flux significantly increased with rising soil temperature and soil water content. Diurnally, the soil CH4 flux followed a unimodal variation pattern at different growing stages of poplars, with peaks occurring at noon and in the afternoon. However, the soil CH4 flux did not exhibit a consistent seasonal pattern across different years, likely due to substantial variations in precipitation and soil water content. Overall, our study emphasizes the need for a comprehensive understanding of the spatiotemporal variations in forest soil CH4 flux with different soil textures. This understanding is vital for developing reasonable forest management strategies and reducing uncertainties in the global CH4 budget.
Funder
National Natural Science Foundation of China
China Scholarship Council
Jiangsu Government Scholarship for Overseas Studies
Priority Academic Program Development of Jiangsu Higher Education Institution
National Key R&D Program of China
Publisher
Springer Science and Business Media LLC
Reference58 articles.
1. IPCC. Summary for Policymakers. In: Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Masson-Delmotte V, Zhai P, Pirani A, Connors SL, Péan C, Berger S, Caud N, Chen Y, Goldfarb L, Gomis MI, Huang M, Leitzell K, Lonnoy E, Matthews JBR, Maycock TK, Waterfield T, Yelekçi O, Yu R and Zhou B (eds.)]. (Cambridge University Press, 2021).
2. Dutaur, L. & Verchot, L. V. A global inventory of the soil CH4 sink. Glob. Biogeochem. Cycles 21, GB4013. https://doi.org/10.1029/2006GB002734 (2007).
3. Feng, H. et al. Global estimates of forest soil methane flux identify a temperate and tropical forest methane sink. Geoderma 429, 116239. https://doi.org/10.1016/j.geoderma.2022.116239 (2023).
4. Xia, N. et al. Effects of nitrogen addition on soil methane uptake in global forest biomes. Environ. Pollut. 264, 114751. https://doi.org/10.1016/j.envpol.2020.114751 (2020).
5. Feng, H. et al. A review of the mechanisms and controlling factors of methane dynamics in forest ecosystems. For. Ecol. Manage. 455, 117702. https://doi.org/10.1016/j.foreco.2019.117702 (2020).