Millennial scale persistence of organic carbon bound to iron in Arctic marine sediments

被引:0
作者
Johan C. Faust
Allyson Tessin
Ben J. Fisher
Mark Zindorf
Sonia Papadaki
Katharine R. Hendry
Katherine A. Doyle
Christian März
机构
[1] The University of Leeds,School of Earth and Environment
[2] Kent State University,Department of Geology
[3] Ifremer - Centre de Bretagne,Laboratoire Environnement Profond
[4] University of Bristol,School of Earth Sciences
来源
Nature Communications | / 12卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Burial of organic material in marine sediments represents a dominant natural mechanism of long-term carbon sequestration globally, but critical aspects of this carbon sink remain unresolved. Investigation of surface sediments led to the proposition that on average 10-20% of sedimentary organic carbon is stabilised and physically protected against microbial degradation through binding to reactive metal (e.g. iron and manganese) oxides. Here we examine the long-term efficiency of this rusty carbon sink by analysing the chemical composition of sediments and pore waters from four locations in the Barents Sea. Our findings show that the carbon-iron coupling persists below the uppermost, oxygenated sediment layer over thousands of years. We further propose that authigenic coprecipitation is not the dominant factor of the carbon-iron bounding in these Arctic shelf sediments and that a substantial fraction of the organic carbon is already bound to reactive iron prior deposition on the seafloor.
引用
收藏
相关论文
共 50 条
[41]   Organic carbon remineralization rate in global marine sediments: A review [J].
Chen, Zhiyan ;
Nie, Tianyi ;
Zhao, Xin ;
Li, Jiwei ;
Yang, Bin ;
Cui, Dongyang ;
Li, Xinxin .
REGIONAL STUDIES IN MARINE SCIENCE, 2022, 49
[42]   Climate change and organic carbon deposition in Eocene marine sediments [J].
Lyle, AMO ;
Lyle, MW .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2005, 69 (10) :A442-A442
[43]   Organic carbon content of sediments as an indicator of stress in the marine benthos [J].
Hyland, J ;
Balthis, L ;
Karakassis, I ;
Magni, P ;
Petrov, A ;
Shine, J ;
Vestergaard, O ;
Warwick, R .
MARINE ECOLOGY PROGRESS SERIES, 2005, 295 :91-103
[45]   Stability of Reactive Iron-Bound Organic Carbon During Sulfidization of Iron Oxides: Insights From Methane-Seep Sediments [J].
Hu, Yu ;
Li, Kai ;
Faust, Johan C. ;
Peckmann, Joern ;
Zhang, Dong ;
Chen, Linying ;
Liang, Qianyong ;
Chen, Duofu ;
Feng, Dong .
GEOPHYSICAL RESEARCH LETTERS, 2025, 52 (08)
[46]   Iron reducing bacterial enrichments from arctic marine sediments at Tempelfjorden, Svalbard, Norway [J].
Roh, Yul ;
Rhee, Sung-Keun ;
Park, Byungno ;
Yoo, Kyu-Cheol ;
Lee, Jae Il ;
Forwick, Matthias ;
Yoon, Ho Il .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2008, 72 (12) :A803-A803
[47]   Two dimensional mapping of iron release in marine sediments at submillimetre scale [J].
de Chanvalon, A. Thibault ;
Metzger, E. ;
Mouret, A. ;
Knoery, J. ;
Geslin, E. ;
Meysman, F. J. R. .
MARINE CHEMISTRY, 2017, 191 :34-49
[48]   Benthic Organic Matter Transformation Drives pH and Carbonate Chemistry in Arctic Marine Sediments [J].
Freitas, F. S. ;
Arndt, S. ;
Hendry, K. R. ;
Faust, J. C. ;
Tessin, A. C. ;
Marz, C. .
GLOBAL BIOGEOCHEMICAL CYCLES, 2022, 36 (07)
[49]   Persistent organic pollutants (POPs) in marine sediments of the Arctic fjord Kongsfjorden, Svalbard Islands [J].
Pescatore, Tanita ;
Rauseo, Jasmin ;
Spataro, Francesca ;
Calace, Nicoletta ;
Patrolecco, Luisa .
MARINE POLLUTION BULLETIN, 2025, 211
[50]   ISOTOPIC COMPOSITION OF ORGANIC CARBON FROM MARINE PLANKTON AND ITS RELATIONSHIP TO MARINE SEDIMENTS [J].
SACKETT, WM ;
ECKELMAN.WR ;
BENDER, ML ;
BE, AWH .
ERDOL UND KOHLE ERDGAS PETROCHEMIE, 1966, 19 (08) :562-&