Back to Search Start Over

The inorganic carbon system in the coastal upwelling region west of Vancouver Island, Canada

Authors :
Ianson, Debby
Allen, Susan E.
Harris, Shannon L.
Orians, Kristin J.
Varela, Diana E.
Wong, Chi S.
Source :
Deep-Sea Research Part I, Oceanographic Research Papers. Aug2003, Vol. 50 Issue 8, p1023. 20p.
Publication Year :
2003

Abstract

We present inorganic carbon data from the coastal upwelling region west of Vancouver Island, Canada <f>(∼48.5°N, 126°W)</f> directly after an upwelling event and during summer downwelling in July 1998. The inner-shelf buoyancy current, the outer-shelf and the slope regions are contrasted for both wind regimes (up- and downwelling). Results show strong biological drawdown of the partial pressure of carbon dioxide <f>(pCO2)</f> in response to upwelling over the outer-shelf. In contrast, measured <f>pCO2</f> is exceptionally high <f>(pCO2>1000 ppm)</f> in the inner-shelf current, where biological uptake of carbon is consistently large. The biological C:N uptake ratio appears to increase when nitrogen becomes limiting (during downwelling), while the POC:PON ratio is relatively constant (slightly lower than the Redfield ratio) suggesting that excess carbon uptake does not go into the POC pool. As expected, large cells dominate where measured primary productivity is greatest. Sub-surface inorganic carbon (and <f>pCO2</f>) is high over the shelf. We suggest that carbon concentrations may be higher in coastal waters because of remineralization associated with high productivity that is confined to a smaller volume of water by bathymetry. At the coast these sub-surface concentrations are more efficiently mixed into the surface (especially during winter) relative to deeper offshore regions. Thus, despite high primary production, coastal waters may not aid in sequestration of atmospheric carbon. [Copyright &y& Elsevier]

Subjects

Subjects :
*CARBON
*ISLANDS

Details

Language :
English
ISSN :
09670637
Volume :
50
Issue :
8
Database :
Academic Search Index
Journal :
Deep-Sea Research Part I, Oceanographic Research Papers
Publication Type :
Academic Journal
Accession number :
10428065
Full Text :
https://doi.org/10.1016/S0967-0637(03)00114-6