Cadmium isotope variations in the Southern Ocean

被引:71
|
作者
Xue, Zichen [1 ]
Rehkaemper, Mark [1 ]
Horner, Tristan J. [2 ,3 ]
Abouchami, Wafa [4 ,5 ]
Middag, Rob [6 ,7 ]
van de Flierdt, Tina [1 ]
de Baar, Hein J. W. [6 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Dept Earth Sci & Engn, London SW7 2AZ, England
[2] Univ Oxford, Dept Earth Sci, Oxford OX1 3AN, England
[3] Woods Hole Oceanog Inst, Dept Marine Chem & Geochem, Woods Hole, MA 02543 USA
[4] WWU Munster, Inst Mineral, D-48149 Munster, Germany
[5] Max Planck Inst Chem, D-55020 Mainz, Germany
[6] Royal Netherlands Inst Sea Res, NL-1790 AB Den Burg, Netherlands
[7] Univ Otago, Dept Chem, Dunedin 9054, New Zealand
关键词
stable isotopes; isotope fractionation; marine geochemistry; chemical oceanography; HNLC; cadmium; ANTARCTIC INTERMEDIATE WATER; IRON LIMITATION; PHYTOPLANKTON GROWTH; PHOSPHORUS RATIO; CARBON-DIOXIDE; DRAKE PASSAGE; ZINC; CIRCULATION; MANGANESE; SEAWATER;
D O I
10.1016/j.epsl.2013.09.014
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Cadmium concentrations and isotope compositions were determined for 47 seawater samples from the high nutrient low chlorophyll (HNLC) zone of the Atlantic sector of the Southern Ocean. The samples include 13 surface waters from a transect of the Weddell Gyre and 3 depth profiles from the Weddell Sea and Drake Passage. The Southern Ocean mixed layer samples from this study and Abouchami et al. (2011) define a clear but broad 'HNLC trend' in a plot of epsilon Cd-114/110 versus [Cd], which is primarily a consequence of isotopic fractionation associated with biological uptake (epsilon Cd-114/110 is the deviation of the Cd-114/Cd-110 ratio of a sample from NIST SRM 3108 Cd in parts per 10,000). The trend is especially apparent in comparison to the large range of values shown by a global set of seawater Cd data for shallow depths. The Southern Ocean samples are also distinguished by their relatively high Cd concentrations (typically 0.2 to 0.6 nmol/kg) and moderately fractionated epsilon Cd-114/110 (generally between +4 and +8) that reflect the limited biological productivity of this region. Detailed assessment reveals fine structure within the 'HNLC trend', which may record differences in the biological fractionation factor, different scenarios of closed and open system isotope fractionation, and/or distinct source water compositions. Southern Ocean seawater from depths >= 1000 m has an average epsilon Cd-114/110 of +2.5 +/- 0.2 (2se, n = 16), and together with previous results this establishes a relatively constant epsilon Cd-114/110 value of +3.0 +/- 0.3 (2se, n = 27) for global deep waters. Significant isotopic variability was observed at intermediate depths in the Southern Ocean. Seawater from 200 m to 400 m in Weddell Sea has high Cd concentrations and epsilon Cd-114/110 as low as +1, presumably due to remineralization of Cd from biomass that records incomplete nutrient utilization. Antarctic Intermediate Water, which was sampled at 150 to 750 m depth in the, Drake Passage, features a distinct Cd isotope signature of epsilon Cd-114/110 approximate to +4, which reflects biological isotope fractionation at the surface and subsequent mixing into the ocean interior. Taken together, our results demonstrate that coupled Cd isotope and concentration data provide valuable insights into the distribution and biological cycling of Cd in the water column. The highly systematic nature of Cd isotope signatures may furthermore prove to be of utility for future research in marine geochemistry and paleoceanography. (C) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:161 / 172
页数:12
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