Carbon Fate, Iron Dissolution, and Molecular Characterization of Dissolved Organic Matter in Thawed Yedoma Permafrost under Varying Redox Conditions

被引:4
|
作者
Carneiro Barreto, Matheus Sampaio [1 ]
Wani, Rucha P. [1 ,2 ]
Goranov, Aleksandar I. [3 ]
Sowers, Tyler D. [1 ,4 ]
Fischel, Matthew [1 ,5 ]
Douglas, Thomas Alexander [6 ]
Hatcher, Patrick G. [3 ]
Sparks, Donald L. [1 ,7 ]
机构
[1] Univ Delaware, Dept Plant & Soil Sci, Newark, DE 19716 USA
[2] Univ Southern Calif, Spatial Sci Inst, Dept Earth Sci, Los Angeles, CA 90089 USA
[3] Old Dominion Univ, Dept Chem & Biochem, Norfolk, VA 23529 USA
[4] US EPA, Ctr Environm Measurement & Modeling, Off Res & Dev, Durham, NC 27711 USA
[5] USDA ARS, Sustainable Agr Syst Lab, Beltsville, MD 20705 USA
[6] US Army Cold Reg Res & Engn Lab, Fairbanks, AK 99703 USA
[7] Texas A&M Univ, Hagler Inst Fellow, College Stn, TX 77840 USA
基金
美国国家科学基金会;
关键词
climate change; permafrost-thaw; redox; dissolved organic matter; FT-ICR MS; WATER REPELLENCY; LIPID EXTRACTION; CLIMATE-CHANGE; SOIL; STABILIZATION; MECHANISMS; FRACTIONATION; PRESERVATION; DEGRADATION; NITROGEN;
D O I
10.1021/acs.est.3c08219
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Permafrost soils store similar to 50% of terrestrial C, with Yedoma permafrost containing similar to 25% of the total C. Permafrost is undergoing degradation due to thawing, with potentially hazardous effects on landscape stability and water resources. Complicating ongoing efforts to project the ultimate fate of deep permafrost C is the poorly constrained role of the redox environment, Fe-minerals, and its redox-active phases, which may modulate organic C-abundance, composition, and reactivity through complexation and catalytic processes. We characterized C fate, Fe fractions, and dissolved organic matter (DOM) isolates from permafrost-thaw under varying redox conditions. Under anoxic incubation conditions, 33% of the initial C was lost as gaseous species within 21 days, while under oxic conditions, 58% of C was lost. Under anoxic incubation, 42% of the total initial C was preserved in a dissolved fraction. Lignin-like compounds dominated permafrost-thaw, followed by lipid- and protein-like compounds. However, under anoxic incubation conditions, there was accumulation of lipid-like compounds and reduction in the nominal oxidation state of C over time, regardless of the compound classes. DOM dynamics may be affected by microbial activity and abiotic processes mediated by Fe-minerals related to selective DOM fractionation and/or its oxidation. Chemodiversity DOM signatures could serve as valuable proxies to track redox conditions with permafrost-thaw.
引用
收藏
页码:4155 / 4166
页数:12
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