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Isotopic disequilibrium in Globigerina bulloides and carbon isotope response to productivity increase in Southern Ocean.


ABSTRACT: Oxygen and carbon isotope ratios in planktonic foraminifera Globigerina bulloides collected from tow samples along a transect from the equatorial Indian ocean to the Southern Ocean (45°E and 80°E and 10°N to 53°S) were analysed and compared with the equilibrium ?(18)O and ?(13)C values of calcite calculated using the temperature and isotopic composition of the water column. The results agree within ~0.25‰ for the region between 10°N and 40°S and 75-200 m water depth which is considered to be the habitat of Globigerina bulloides. Further south (from 40°S to 55°S), however, the measured ?(18)O and ?(13)C values are higher than the expected values by ~2‰ and ~1‰ respectively. These enrichments can be attributed to either a 'vital effect' or a higher calcification rate. An interesting pattern of increase in the ?(13)C(DIC) value of the surface water with latitude is observed between 35°S and~ 60°S, with a peak at~ 42°S. This can be caused by increased organic matter production and associated removal. A simple model accounting for the increase in the ?(13)C(DIC) values is proposed which fits well with the observed chlorophyll abundance as a function of latitude.

SUBMITTER: Prasanna K 

PROVIDER: S-EPMC4763226 | biostudies-literature | 2016 Feb

REPOSITORIES: biostudies-literature

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Isotopic disequilibrium in Globigerina bulloides and carbon isotope response to productivity increase in Southern Ocean.

Prasanna K K   Ghosh Prosenjit P   Bhattacharya S K SK   Mohan K K   Anilkumar N N  

Scientific reports 20160223


Oxygen and carbon isotope ratios in planktonic foraminifera Globigerina bulloides collected from tow samples along a transect from the equatorial Indian ocean to the Southern Ocean (45°E and 80°E and 10°N to 53°S) were analysed and compared with the equilibrium δ(18)O and δ(13)C values of calcite calculated using the temperature and isotopic composition of the water column. The results agree within ~0.25‰ for the region between 10°N and 40°S and 75-200 m water depth which is considered to be the  ...[more]

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