Organic carbon sorbed to reactive iron minerals released during permafrost collapse

永久冻土 环境化学 碳纤维 碳汇 总有机碳 土壤碳 溶解有机碳 泥炭 土壤水分 溶解 化学 温室气体 环境科学 土壤科学 地质学 气候变化 生态学 材料科学 海洋学 物理化学 复合材料 复合数 生物
作者
Monique Patzner,Merritt Logan,Carsten W. Mueller,Hanna Joß,Sara E. Anthony,Thomas Scholten,James M. Byrne,Thomas Borch,Andreas Kappler,Casey Bryce
标识
DOI:10.5194/egusphere-egu2020-1465
摘要

<p>The release of vast amounts of organic carbon during thawing of high-latitude permafrost is an urgent issue of global concern, yet it is unclear what controls how much carbon will be released and how fast it will be subsequently metabolized and emitted as greenhouse gases. Binding of organic carbon by iron(III) oxyhydroxide minerals can prevent carbon mobilization and degradation. This “rusty carbon sink” has already been suggested to protect organic carbon in soils overlying intact permafrost. However, the extent to which iron-bound carbon will be mobilized during permafrost thaw is entirely unknown. We have followed the dynamic interactions between iron and carbon across a thaw gradient in Abisko (Sweden), where wetlands are expanding rapidly due to permafrost retreat. Using both bulk (selective extractions, EXAFS) and nanoscale analysis (correlative SEM and nanoSIMS), we found that up to 19.4±0.7% of total organic carbon is associated with reactive iron minerals in palsa underlain by intact permafrost. However, during permafrost collapse, the rusty carbon sink is lost due to more reduced conditions which favour microbial Fe(III) mineral dissolution. This leads to high dissolved Fe(II) (2.93±0.42 mM) and organic carbon concentrations (480.06±34.10 mg/L) in the porewater at the transition of desiccating palsa to waterlogged bog. Additionally, by combining FT-ICR-MS and greenhouse gas analysis both in the field and in laboratory microcosm experiments, we are currently determining the fate of the mobilized organic carbon directly after permafrost collapse. Our findings will improve our understanding of the processes controlling organic carbon turnover in thawing permafrost soils and help to better predict future greenhouse gas emissions.</p><p> </p>

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