Persistent deep water anoxia in the eastern South Atlantic during the last ice age.
basic_science · Level V
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- Record sourced from PubMed, PMID 34873057.
- Also identified by DOI 10.1073/pnas.2107034118 and PMC identifier 8670495.
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Abstract
During the last glacial interval, marine sediments recorded reduced current ventilation within the ocean interior below water depths of approximately >1,500 m [B. A. Hoogakker et al., <i>Nat. Geosci.</i> 8, 40-43 (2015)]. The degree of the associated oxygen depletion in the different ocean basins, however, is still poorly constrained. Here, we present sedimentary records of redox-sensitive metals from the southwest African margin. These records show evidence of continuous bottom water anoxia in the eastern South Atlantic during the last glaciation that led to enhanced carbon burial over a prolonged period of time. Our geochemical data indicate that upwelling-related productivity and the associated oxygen minimum zone in the eastern South Atlantic shifted far seaward during the last glacial period and only slowly retreated during deglaciation times. While increased productivity during the last ice age may have contributed to oxygen depletion in bottom waters, especially on the upper slope, slow-down of the Late Quaternary deep water circulation pattern [Rutberg et al., <i>Nature</i> 405, 935-938 (2000)] appears to be the ultimate driver of anoxic conditions in deep waters.