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Processes Influencing Seasonal Hypoxia in the Northern California Current System

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Journal J Geophys Res
Date 2010 May 14
PMID 20463844
Citations 15
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Abstract

This paper delineates the role of physical and biological processes contributing to hypoxia, dissolved oxygen (DO) < 1.4 mL/L, over the continental shelf of Washington State in the northern portion of the California Current System (CCS). In the historical record (1950-1986) during the summer upwelling season, hypoxia is more prevalent and severe off Washington than further south off northern Oregon. Recent data (2003-2005) show that hypoxia over the Washington shelf occurred at levels previously observed in the historical data. 2006 was an exception, with hypoxia covering ~5000 km(2) of the Washington continental shelf and DO concentrations below 0.5 mL/L at the inner shelf, lower than any known previous observations at that location. In the four years studied, upwelling of low DO water and changes in source water contribute to interannual variability, but cannot account for seasonal decreases below hypoxic concentrations. Deficits of DO along salinity surfaces, indicating biochemical consumption of DO, vary significantly between surveys, accounting for additional decreases of 0.5-2.5 mL/L by late summer. DO consumption is associated with denitrification, an indicator of biochemical sediment processes. Mass balances of DO and nitrate show that biochemical processes in the water column and sediments each contribute ~50% to the total consumption of DO in near-bottom water. At shorter than seasonal time scales on the inner shelf, along-shelf advection of hypoxic patches and cross-shelf advection of seasonal gradients are both shown to be important, changing DO concentrations by 1.5 mL/L or more over five days.

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References
1.
Ware D, Thomson R . Bottom-up ecosystem trophic dynamics determine fish production in the Northeast Pacific. Science. 2005; 308(5726):1280-4. DOI: 10.1126/science.1109049. View

2.
Barber R, Chavez F . Biological consequences of el nino. Science. 1983; 222(4629):1203-10. DOI: 10.1126/science.222.4629.1203. View

3.
Chan F, Barth J, Lubchenco J, Kirincich A, Weeks H, Peterson W . Emergence of anoxia in the California current large marine ecosystem. Science. 2008; 319(5865):920. DOI: 10.1126/science.1149016. View

4.
Lohan M, Bruland K . Elevated Fe(II) and dissolved Fe in hypoxic shelf waters off Oregon and Washington: an enhanced source of iron to coastal upwelling regimes. Environ Sci Technol. 2008; 42(17):6462-8. DOI: 10.1021/es800144j. View

5.
Grantham B, Chan F, Nielsen K, Fox D, Barth J, Huyer A . Upwelling-driven nearshore hypoxia signals ecosystem and oceanographic changes in the northeast Pacific. Nature. 2004; 429(6993):749-54. DOI: 10.1038/nature02605. View