Fate of methane in canals draining tropical peatlands.

Perryman, Clarice R; Bowen, Jennifer C; Shahan, Julie; Silviani P A B, Desi; Dayanti, Erin; Andriyani, Yulita; Asyhari, Adibtya; Gangga, Adi et al. · Nat Commun · 2024

basic_science · Level V

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Abstract

Tropical wetlands and freshwaters are major contributors to the growing atmospheric methane (CH<sub>4</sub>) burden. Extensive peatland drainage has lowered CH<sub>4</sub> emissions from peat soils in Southeast Asia, but the canals draining these peatlands may be hotspots of CH<sub>4</sub> emissions. Alternatively, CH<sub>4</sub> oxidation (consumption) by methanotrophic microorganisms may attenuate emissions. Here, we used laboratory experiments and a synoptic survey of the isotopic composition of CH<sub>4</sub> in 34 canals across West Kalimantan, Indonesia to quantify the proportion of CH<sub>4</sub> that is consumed and therefore not emitted to the atmosphere. We find that CH<sub>4</sub> oxidation mitigates 76.4 ± 12.0% of potential canal emissions, reducing emissions by ~70 mg CH<sub>4</sub> m<sup>-2</sup> d<sup>-1</sup>. Methane consumption also significantly impacts the stable isotopic fingerprint of canal CH<sub>4</sub> emissions. As canals drain over 65% of peatlands in Southeast Asia, our results suggest that CH<sub>4</sub> oxidation significantly influences landscape-scale CH<sub>4</sub> emissions from these ecosystems.

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