HR: 0800h
AN: H41D-0333 [Abstracts]
TI: Nitrogen and Oxygen Isotopes of Nitrate as Indicators of Nitrogen Utilization in Monterey
Bay
AU: * Wankel, S D
EM: sdwankel@pangea.stanford.edu
AF: Stanford University, 320 Braun Hall, Stanford, CA 94305
United States
AU: * Wankel, S D
EM: sdwankel@pangea.stanford.edu
AF: US Geological Survey, 345 Middlefield Rd., MS 434, Menlo Park, CA 94025
United States
AU: Paytan, A
EM: apaytan@stanford.edu
AF: Stanford University, 320 Braun Hall, Stanford, CA 94305
United States
AB:
As nitrate is utilized by phytoplankton in the euphotic zone, the isotopic compositions of both oxygen and nitrogen in the
residual nitrate become enriched in the heavier isotopes ($^{15}$N and $^{18}$O). Recent evidence from phytoplankton culture
experiments showed that the enrichments in $^{15}$N and $^{18}$O occur intracellularly during the reduction of nitrate to
nitrite. Furthermore, the isotopic composition of the external nitrate pool reflects the balance between intracellular
reduction and efflux of the intracellular nitrate. It has also been shown that while $^{15}$N and $^{18}$O fractionation
factors ($\epsilon$) can vary widely depending on growth conditions, there is nonetheless a strong coupling (1:1) of these
isotope effects during reduction of nitrate by phytoplankton.
In this study, the isotopic composition of nitrate in the upper 200m from three stations in Monterey Bay was measured monthly
over an annual cycle. Preliminary results reveal relatively invariable isotopic compositions ($\delta^{15}$N = +7 to +8
permil; $\delta^{18}$O = 0 to +1 permil) in the deeper portions of the water column, with strong enrichments generally
occurring shallower than 60m ($\delta^{15}$N up to +14 permil; $\delta^{18}$O up to +15 permil).
Initial results also suggest some degree of spatial and temporal variability in the relationship between $\delta^{15}$N and
$\delta^{18}$O. While it is unclear exactly what may be controlling this relationship, results from the full suite of
monthly samples will provide additional insight on nitrogen utilization and its effects on nitrate isotopic composition. We
discuss the results in relation to temperature, salinity, oxygen and nutrient concentrations, primary productivity and
phytoplankton species.
DE: 1803 Anthropogenic effects
DE: 1871 Surface water quality
DE: 1030 Geochemical cycles (0330)
DE: 1040 Isotopic composition/chemistry
DE: 1050 Marine geochemistry (4835, 4850)
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting