Published

Trace metals Ross Sea Phantastic 01 Version 21

Loes Gerringa (Royal Netherlands Institute for Sea Research) Royal Netherlands Institute for Sea Research https://doi.org/10.25850/nioz/7b.b.r

The dissolved trace metals Zn, Cd, Co, Cu, Fe, Mn, Ni, Ti, La, Y and Pb were analysed via ICPMS in samples from the Ross Sea obtained during a cruise between 20 December 2013 and 5 January 2014. The dissolved concentrations of Zn, Cd, Co, Cu, Fe, Mn, Ni and Ti were significantly lower in the Antarctic surface Water (AASW) compared to the other deeper water masses, indicating biological uptake and possibly scavenging. For La and Y, the concentrations in AASW were higher than in Winter Water (WW). This can be explained by a spring source from ice melt followed by loss during summer and autumn, probably due to passive adsorption. Dissolved Pb (DPb) was low (16 pM) and no distinction between water masses was possible. Akin to the macro-nutrients nitrate and silicate, the modified Circumpolar Deep Water (mCDW) shows elevated DCd compared to the shelf water masses. Sea ice melt and ice sheet melt released DZn, DFe, DMn, DNi, DY, DLa, and probably DPb into the Ross Sea. However, only DFe, DMn, DY and DLa are transported into the Antarctic Circumpolar Current (ACC) with the outflowing High Salinity Shelf Water (HSSW). The bottom nepheloid layer (BNL) released DFe, as well as DMn and DCu, into the HSSW whereas lateral transport from land formed a source of DMn and DFe. One station in the Ross Sea polynya was resampled after two weeks, during which time the thickness of the BNL increased, with accompanying increases in DFe and DMn near the seafloor. In the surface layer nutrients (including micro-nutrients) were depleted further. The uptake slopes/stoichiometric ratios of DZn, DCd and DCo versus phosphate indicated that the distribution of these metals is related to uptake as well as the composition of the phytoplankton community. Estimated stoichiometric ratios of Zn and Co relative to P were higher at a station dominated by Phaeocystis antarctica than at diatom-dominated stations, implying a higher utilisation of these metals by P. antarctica.

Data and Resources

Additional Info

Field Value
Subject Earth and Environmental Sciences
DAS Code 7b.b.r
Source https://doi.org/10.25850/nioz/7b.b.r
Version 21
Creator(s)
Gerringa, Loes (Royal Netherlands Institute for Sea Research)
ORCID
Contact the corresponding author

Alderkamp, Anne-Carlijn (Stanford University)

Arrigo, Kevin (Stanford University)

van Dijken, Gert (Stanford University)

Laan, Patrick (Royal Netherlands Institute for Sea Research)

Middag, Rob (Royal Netherlands Institute for Sea Research)
Depositor loes gerringa (loes.gerringa@nioz.nl)
Publication Date 2020-09-17T10:01:06.0085617
Deposit Date 2019-10-17
Dataset Persistent Identifier DOI:10.25850/nioz/7b.b.r
Alternate identifier
Related identifier
Contributor Royal Netherlands Institute for Sea Research (NIOZ)
Distributor Research Data Management(NIOZ Royal Netherlands Institute for Sea Research)
Distribution Date 2019-10-17
Production Date 2020-09-17
Dates
Collected
2013-12-20 until 2014-01-04
Funding References
National Science Foundation Office of Polar Programs (ANT-1063592)
Phantastic
Geographic Coverage
Ross Sea
North Bound: -70
South Bound: -77.37
West Bound: -161.6
East Bound: 168.5