Abstract
AbstractPeatlands in the northern hemisphere are a major carbon storage but face an increased risk of wildfires due to climate change leading to large-scale smoldering fires in boreal and Arctic peatlands. Smoldering fires release organic carbon rich particulate matter, which influences the earth’s radiative balance and can cause adverse health effects for humans. Here we characterize the molecular composition of biomass burning particulate matter generated by laboratory burning experiments of peat by electrospray ionization 21 T Fourier-transform ion cyclotron resonance mass spectrometry, revealing a highly complex mixture of aromatic and aliphatic organic compounds with abundant heteroatoms including oxygen, sulfur and up to five nitrogen atoms. Primary organosulfur species are identified in the emissions of peat-smoldering, in part also containing nitrogen. Differences are observed when comparing structural motifs as well as the chemical composition of boreal and Arctic peat burning emissions, with the latter containing compounds with more nitrogen and sulfur.
Funder
Deutsche Forschungsgemeinschaft
Helmholtz Association
Publisher
Springer Science and Business Media LLC
Reference97 articles.
1. Turetsky, M. R. et al. Global vulnerability of peatlands to fire and carbon loss. Nat. Geosci. 8, 11–14 (2015).
2. Kohlenberg, A. J., Turetsky, M. R., Thompson, D. K., Branfireun, B. A. & Mitchell, C. P. J. Controls on boreal peat combustion and resulting emissions of carbon and mercury. Environ. Res. Lett. 13, 35005 (2018).
3. IPCC. Climate change and land. An IPCC special report on climate change, desertification, land degradation, sustainable land management, food security, and greenhouse gas fluxes in terrestrial ecosystems: summary for policymakers (Intergovernmental Panel on Climate Change, [Geneva], 2019).
4. Moore, P. D. Ecological and hydrological aspects of peat formation. Spec. Publ. 32, 7–15 (1987).
5. Fewster, R. E. et al. Imminent loss of climate space for permafrost peatlands in Europe and Western Siberia. Nat. Clim. Change 12, 373–379 (2022).
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