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Simulating Temperature in a Soil Incubation Experiment
Published on: October 28, 2022
Thermal sensitivity and rising greenhouse gas emissions in riparian zone soils: Implications for ecosystem carbon
Shuxun Cheng1, Amit Kumar2, Guoxin Lan3
1School of Environment and Natural Resources, Zhejiang University of Science and Technology, Hangzhou, Zhejiang, 310023, China; College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, Zhejiang, 310058, China.
Abstract:
Riparian zones, critical interfaces between aquatic and terrestrial ecosystems, play a significant role in global carbon dynamics and greenhouse gas (GHG) emissions. This study investigates the thermal sensitivity (Q10) of soil organic carbon decomposition and its implications for GHG emissions in the riparian soils of the Three Gorges Reservoir, China. Through a 42-day incubation experiment at four temperatures (15 °C, 22 °C, 29 °C, and 36 °C), we quantified the Q10 values for methane (CH4) and carbon dioxide (CO2) emissions, revealing spatial heterogeneity and a positive correlation with temperature. The Q10 for CH4 (2.5) was significantly higher than for CO2 (1.4), indicating a stronger temperature sensitivity of CH4 emissions. Structural equation modeling identified soil pH and mean annual temperature as key drivers of Q10 variations. Projections based on Shared Socioeconomic Pathways from the IPCC-AR6 suggest that by 2100, CH4, CO2, and CO2-equivalent emissions from riparian zones could increase by 4.9-44.3 %, 4.3-17.4 %, and 4.0-20.0 %, respectively. These findings underscore the importance of riparian zones in climate feedback loops and highlight the need for targeted management strategies to mitigate GHG emissions in these vulnerable ecosystems.
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