ORCID
- Hayley R. Manners: 0000-0001-8545-4463
Abstract
Preservation of organic carbon (OC) in marine sediments exerts a major control on the cycling of carbon in the Earth system. In these marine environments, OC preservation may be enhanced by diagenetic reactions in locations where deposition of fragmental volcanic material called tephra occurs. While the mechanisms by which this process occurs are well understood, site-specific studies of this process are limited. Here, we report a study of sediments from the Bering Sea (IODP Site U1339D) to investigate the effects of marine tephra deposition on carbon cycling during the Pleistocene and Holocene. Our results suggest that tephra layers are loci of OC burial with distinct δ13C values, and that this process is primarily linked to bonding of OC with reactive metals, accounting for ∼80% of all OC within tephra layers. In addition, distribution of reactive metals from the tephra into non-volcanic sediments above and below the tephra layers enhances OC preservation in these sediments, with ∼33% of OC bound to reactive phases. Importantly, OC-Fe coupling is evident in sediments >700,000 years old. Thus, these interactions may help explain the observed preservation of OC in ancient marine sediments.
DOI Link
Publication Date
2021-01-01
Publication Title
Global Biogeochemical Cycles: an international journal of global change
Volume
35
Issue
11
ISSN
0886-6236
Acceptance Date
2021-10-19
Deposit Date
2021-10-19
Embargo Period
2021-11-10
Funding
NERC. Grant Numbers: NE/K00543X/1, NE/R004978/1
Keywords
tephra, carbon burial, reactive Fe, organic carbon, carbon preservation, volcanism
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.
Recommended Citation
Longman, J., Gernon, T., Palmer, M., & Manners, H. (2021) 'Tephra deposition and bonding with reactive oxides enhances burial of organic carbon in the Bering Sea', Global Biogeochemical Cycles: an international journal of global change, 35(11). Available at: 10.1029/2021GB007140
