Substantial hysteresis in emergent temperature sensitivity of global wetland CH<sub>4</sub> emissions.

Chang, Kuang-Yu; Riley, William J; Knox, Sara H; Jackson, Robert B; McNicol, Gavin; Poulter, Benjamin; Aurela, Mika; Baldocchi, Dennis et al. · Nat Commun · 2021

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Abstract

Wetland methane (CH<sub>4</sub>) emissions ([Formula: see text]) are important in global carbon budgets and climate change assessments. Currently, [Formula: see text] projections rely on prescribed static temperature sensitivity that varies among biogeochemical models. Meta-analyses have proposed a consistent [Formula: see text] temperature dependence across spatial scales for use in models; however, site-level studies demonstrate that [Formula: see text] are often controlled by factors beyond temperature. Here, we evaluate the relationship between [Formula: see text] and temperature using observations from the FLUXNET-CH<sub>4</sub> database. Measurements collected across the globe show substantial seasonal hysteresis between [Formula: see text] and temperature, suggesting larger [Formula: see text] sensitivity to temperature later in the frost-free season (about 77% of site-years). Results derived from a machine-learning model and several regression models highlight the importance of representing the large spatial and temporal variability within site-years and ecosystem types. Mechanistic advancements in biogeochemical model parameterization and detailed measurements in factors modulating CH<sub>4</sub> production are thus needed to improve global CH<sub>4</sub> budget assessments.