Moored sediment trap measurements of carbon export in the Subantarctic and Polar Frontal Zones of the Southern Ocean, south of Australia

被引:135
作者
Trull, TW
Bray, SG
Manganini, SJ
Honjo, S
Francois, R
机构
[1] Antarctic Cooperat Res Ctr, Hobart, Tas 7001, Australia
[2] Woods Hole Oceanog Inst, Woods Hole, MA 02543 USA
关键词
D O I
10.1029/2000JC000308
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Sediment trap moorings were deployed from September 21, 1997 through February 21, 1998 at three locations south of Australia along 140degreesE: at similar to47degreesS in the central Subantarctic Zone (SAZ) with traps at 1060, 2050, and 3850 m depth, at similar to51degreesS in the Subantarctic Front with one trap at 3080 m, and at similar to54degreesS in the Polar Frontal Zone (PFZ) with traps at 830 and 1580 m. Particle fluxes were high at all the sites (18-32 g m(-2) yr(-1) total mass and 0.5-1.4 g organic carbon m(-2) yr(-1) at similar to1000 m, assuming minimal flux outside the sampled summer period). These values are similar to other Southern Ocean results and to the median estimated for the global ocean by Lampitt and Antia [1997], and emphasize that the Southern Ocean exports considerable carbon to the deep sea despite its "high-nutrient, low chlorophyll" characteristics. The SAZ site was dominated by carbonate (>50% of total mass) and the PFZ site by biogenic silica (>50% of total mass). Both sites exhibited high export in spring and late summer, with an intervening low flux period in December. For the 153 day collection period, particulate organic carbon export was somewhat higher in all the traps in the SAZ (range 0.57-0.84 gC m(-2)) than in the PFZ (range 0.31-0.53), with an intermediate value observed at the SAF (0.60). The fraction of surface organic carbon export (estimated from seasonal nutrient depletion, Lourey and Trull [2001]) reaching 1000 m was indistinguishable in the SAZ and PFZ, despite different algal communities.
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页码:31489 / 31509
页数:21
相关论文
共 95 条
[71]   Spatial and temporal dynamics in marine aggregate abundance, sinking rate and flux: Monterey Bay, central California [J].
Pilskaln, CH ;
Lehmann, C ;
Paduan, JB ;
Silver, MW .
DEEP-SEA RESEARCH PART II-TOPICAL STUDIES IN OCEANOGRAPHY, 1998, 45 (8-9) :1803-1837
[72]   Controls on the carbon isotopic composition of Southern Ocean phytoplankton [J].
Popp, BN ;
Trull, T ;
Kenig, F ;
Wakeham, SG ;
Rust, TM ;
Tilbrook, B ;
Griffiths, FB ;
Wright, SW ;
Marchant, HJ ;
Bidigare, RR ;
Laws, EA .
GLOBAL BIOGEOCHEMICAL CYCLES, 1999, 13 (04) :827-843
[73]   Particle fluxes, benthic processes and the palaeoenvironmental record in the Northern Weddell Sea [J].
Pudsey, CJ ;
King, P .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 1997, 44 (11) :1841-+
[74]   A late winter hydrographic section from Tasmania to Antarctica [J].
Rintoul, SR ;
Bullister, JL .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 1999, 46 (08) :1417-1454
[75]  
RINTOUL SR, 2001, J GEOPHYS RES, V106, P2795, DOI DOI 10.1029/2000JC900117
[76]  
Sarmiento J., 1998, PHIL T R SOC LONDO A, V325, P3
[77]   Oceanic carbon dioxide uptake in a model of century-scale global warming [J].
Sarmiento, JL ;
LeQuere, C .
SCIENCE, 1996, 274 (5291) :1346-1350
[78]   CARBON BIOGEOCHEMISTRY AND CLIMATE-CHANGE [J].
SARMIENTO, JL ;
BENDER, M .
PHOTOSYNTHESIS RESEARCH, 1994, 39 (03) :209-234
[79]  
Shaffer G. G., 1993, GLOBAL CARBON CYCLE, P431
[80]   Trajectories of sinking particles in the Sargasso Sea: modeling of statistical funnels above deep-ocean sediment traps [J].
Siegel, DA ;
Deuser, WG .
DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, 1997, 44 (9-10) :1519-1541