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Rapid removal of terrigenous dissolved organic carbon over the Eurasian shelves of the Arctic Ocean
被引:79
|作者:
Letscher, Robert T.
[1
]
Hansell, Dennis A.
[1
]
Kadko, David
[1
]
机构:
[1] Univ Miami, Rosenstiel Sch Marine & Atmospher Sci, Miami, FL 33149 USA
基金:
美国国家科学基金会;
关键词:
Arctic Ocean;
DOC;
Radium isotopes;
Terrigenous DOC;
FRESH-WATER;
SEA-ICE;
RIVER-RUNOFF;
BASIN INTERACTION;
LENA RIVER;
MATTER;
NUTRIENTS;
RA-228;
TRANSPORT;
BIOGEOCHEMISTRY;
D O I:
10.1016/j.marchem.2010.10.002
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
The fate of terrigenous dissolved organic carbon (tDOC) delivered to the Arctic Ocean by rivers remains poorly constrained on both spatial and temporal scales. Early reports suggested Arctic tDOC was refractory to degradation, while recent studies have shown tDOC removal to be an active but slow process. Here we present observations of DOC, salinity, delta O-18, and Ra-228/Ra-226 in the Polar Surface Layer (PSL) over the outer East Siberian/Chukchi shelf and the adjacent Makarov and Eurasian basins of the eastern Arctic Ocean. This off-shelf system receives meteoric water, introduced by rivers, after a few years residence on the shelf. Elevated concentrations of DOC (>120 mu M C) were observed in low salinity (similar to 27) water over the Makarov Basin. suggesting inputs of tDOC-enriched river water to the source waters of the Transpolar Drift. The regression of DOC against salinity indicated an apparent tDOC concentration of 315 +/- 7 mu M C in the river water fraction, which is significantly lower than the estimated DOC concentration in the riverine sources to the region (724 +/- 55 mu M C). To obtain the timescale of removal, estimates of shelf residence were coupled with measurements of dissolved Ra-228/Ra-226, an isotopic tracer of time since shelf residence. Shelf residence time coupled with DOC distributions indicates a first order tDOC removal rate constant, lambda = 0.24 +/- 0.07 yr(-1), for the eastern Arctic, 2.5-4 times higher than rates previously observed in the western Arctic. The observed removal of tDOC in the eastern Arctic occurs over the expansive shelf area, highlighting the initial lability of tDOC upon delivery to the Arctic Ocean, and suggests that tDOC is composed of multiple compartments defined by reactivity. The relatively rapid remineralization of tDOC on the shelves may mitigate the strength of the Arctic Ocean atmospheric CO2 sink if a projected increase in labile tDOC flux occurs. (C) 2010 Elsevier B.V. All rights reserved.
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页码:78 / 87
页数:10
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