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Distribution of anthropogenic CO2 in the Pacific Ocean SCIE SCOPUS

Title
Distribution of anthropogenic CO2 in the Pacific Ocean
Authors
Sabine, CLFeely, RAKey, RMBullister, JLMillero, FJLee, KPeng, THTilbrook, BOno, TWong, CS
Date Issued
2002-10
Publisher
AMER GEOPHYSICAL UNION
Abstract
[1] This work presents an estimate of anthropogenic CO2 in the Pacific Ocean based on measurements from the WOCE/JGOFS/OACES global CO2 survey. These estimates used a modified version of the DeltaC* technique. Modifications include a revised preformed alkalinity term, a correction for denitrification, and an evaluation of the disequilibrium terms using an optimum multiparameter analysis. The total anthropogenic CO2 inventory over an area from 120degreesE to 70degreesW and 70degreesS to 65degreesN (excluding the South China Sea, the Yellow Sea, the Japan/East Sea, and the Sea of Okhotsk) was 44.5 +/- 5 Pg C in 1994. Approximately 28 Pg C was located in the Southern Hemisphere and 16.5 Pg C was located north of the equator. The deepest penetration of anthropogenic CO2 is found at about 50 S. The shallowest penetration is found just north of the equator. Very shallow anthropogenic CO2 penetration is also generally observed in the high-latitude Southern Ocean. One exception to this is found in the far southwestern Pacific where there is evidence of anthropogenic CO2 in the northward moving bottom waters. In the North Pacific a strong zonal gradient is observed in the anthropogenic CO2 penetration depth with the deepest penetration in the western Pacific. The Pacific has the largest total inventory in all of the southern latitudes despite the fact that it generally has the lowest average inventory when normalized to a unit area. The lack of deep and bottom water formation in the North Pacific means that the North Pacific inventories are smaller than the North Atlantic.
Keywords
Pacific Ocean; anthropogenic CO2; carbon cycle; total CO2; delta C*; optimum multiparameter analysis; DISSOLVED INORGANIC CARBON; WESTERN NORTH PACIFIC; INDIAN-OCEAN; ATLANTIC-OCEAN; SURFACE OCEAN; BOTTOM WATER; RED-SEA; INCREASE; DIOXIDE; CIRCULATION
URI
https://oasis.postech.ac.kr/handle/2014.oak/29090
DOI
10.1029/2001GB001639
ISSN
0886-6236
Article Type
Article
Citation
GLOBAL BIOGEOCHEMICAL CYCLES, vol. 16, no. 4, page. 1 - 17, 2002-10
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이기택LEE, KITACK
Div of Environmental Science & Enginrg
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