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Geochemical Features of Redox-Sensitive Trace Metals in Sediments under Oxygen-Depleted Marine Environments

Authors :
Moei Yano
Kazutaka Yasukawa
Yasuhiro Kato
Minoru Ikehara
Kentaro Nakamura
Source :
Minerals, Volume 10, Issue 11, Minerals, Vol 10, Iss 1021, p 1021 (2020)
Publication Year :
2020
Publisher :
MDPI AG, 2020.

Abstract

Organic- and sulfide-rich sediments have formed in oxygen-depleted environments throughout Earth&rsquo<br />s history. The fact that they are generally enriched in redox-sensitive elements reflects the sedimentary environment at the time of deposition. Although the modern ocean is well oxidized, oxygen depletion occurs in certain areas such as restricted basins and high-productivity zones. We measured bulk chemical compositions (major and trace elements, total organic carbon, and total sulfur) of organic- and sulfide-rich sediments collected from eight areas having oxygen-depleted water to discuss relationships between geochemical features and sedimentary environments. Major elemental compositions generally show mixtures of terrigenous detritus and biogenic carbonate. Some redox-sensitive elements might be controlled by organic matter content, whereas others could be contained in sulfide minerals in sediments. In particular, Mo and U show a characteristic trend<br />areas with higher Mo and U&mdash<br />at least partially owing to a depositional process called the &ldquo<br />particulate shuttle&rdquo<br />&mdash<br />generally correspond to regions influenced by the open ocean. In contrast, areas with lower Mo and U are more restricted marine environments. This suggests that the degree of Mo and U enrichment reflects the geography in terms of proximity to the open ocean, or the degree of the supply of these elements from the open ocean.

Details

ISSN :
2075163X
Volume :
10
Database :
OpenAIRE
Journal :
Minerals
Accession number :
edsair.doi.dedup.....cbac5f5a1a3941baeda47ae5ac6dca41
Full Text :
https://doi.org/10.3390/min10111021