HR: 11:50h
AN: H52B-06 [Abstracts]
TI: Controls on the Nitrogen and Oxygen Isotopic Composition ($\delta^{15}$N, $\delta^{18}$O,
$\delta^{17}$O) of Atmospheric Nitrate in Princeton, NJ
AU: * Hastings, M G
EM: mhasting@princeton.edu
AF: Princeton University, Department of Geosciences
Guyot Hall, Princeton, NJ 08544
United States
AU: Malcolm, E
EM: emalcolm@vwc.edu
AF: Princeton University, Department of Geosciences
Guyot Hall, Princeton, NJ 08544
United States
AU: Malcolm, E
EM: emalcolm@vwc.edu
AF: Virginia Wesylan College, Ocean and Atmospheric Sciences
1584 Weleyan Drive, Norfolk, VA 23502
United States
AU: Kaiser, J
EM: kaiser@princeton.edu
AF: Princeton University, Department of Geosciences
Guyot Hall, Princeton, NJ 08544
United States
AU: Sigman, D M
EM: sigman@princeton.edu
AF: Princeton University, Department of Geosciences
Guyot Hall, Princeton, NJ 08544
United States
AB:
The oxygen isotopic composition of atmospheric nitrate reflects the oxidative mechanisms that convert NO$_{x}$ to HNO$_{3}$,
while the nitrogen isotopic composition of atmospheric nitrate may reflect different NO$_{x}$ source signatures and/or
fractionations related to NO$_{x}$ chemistry [{\it Michalski et al.}, 2003; {\it Hastings et al.}, 2003; {\it Freyer et al.},
1993]. New analysis techniques are capable of determining the $^{15}$N/$^{14}$N, $^{18}$O/$^{16}$O and $^{17}$O/$^{16}$O
isotope ratios in samples at the nanomolar level [{\it Sigman et al.}, 2001; {\it Casciotti et al.}, 2002; see {\it Kaiser et
al.}, session H38]. This allows for the analysis of short-term variations in the isotopes of HNO$_{3}$ with the potential
to diagnose causal relationships by comparing the isotopic data with other features of atmospheric deposition. The
$^{15}$N/$^{14}$N, $^{18}$O/$^{16}$O and $^{17}$O/$^{16}$O of nitrate were analyzed from precipitation samples collected on
an event-basis in Princeton, NJ between December 2002 and 2003.
The nitrate concentration in Princeton rain ranges from 2.5 to 99.7 $\mu$M (mean=21.1 $\mu$M, n=61), similar to that found in
other urban areas of New Jersey by the National Atmospheric Deposition Program. The isotopes of nitrate fall in the wide
range reported for various environments with the $\delta^{15}$N ranging from -4.0 to 9.5$\permil$ (vs. air), and the
$\delta^{18}$O and $\delta^{17}$O ranging from 57.2 to 90.5$\permil$ and 50.7 to 77.8$\permil$ (vs. VSMOW), respectively. The
correlation between nitrate and sulfate concentration (R$^{2}$=0.66) and the lack of a relationship between these major ions
and the isotopes of nitrate supports the conclusion that below cloud scavenging is not the dominant control on the isotopic
variations observed. Seasonal variations are observed in both the nitrogen and oxygen isotopes of nitrate. Overall the
$\delta^{15}$N is not correlated with either $\delta^{18}$O or $\delta^{17}$O, although both the $\delta^{15}$N and
$\delta^{18}$O average lowest in the summer and highest in the winter. $\delta^{18}$O is highly correlated with
$\delta^{17}$O of nitrate with anomalous enrichment in $^{17}$O relative to $^{18}$O ($\Delta^{17}$O ranges from 19.7 to
30.8$\permil$), as a result of the interaction of NO$_{x}$ and ozone in the atmosphere prior to HNO$_{3}$ deposition.
Comparison of $\delta^{17}$O and $\delta^{18}$O of nitrate show the data falling along a mixing line between the oxygen
isotopic composition of tropospheric ozone and that of hydroxy/peroxy radicals (i.e. water), which has also been observed in
nitrate aerosol samples collected in La Jolla, CA [{\it Michalski et al.,} 2003]. Although there is considerable scatter in
the isotopic time series, a distinctive increase in the oxygen isotope ratios occurs in mid-September and continues through
the end of December 2003. This aspect of the time series will be discussed in the context of changes in atmospheric chemistry
based on seasonal variations in atmospheric transport patterns, meteorology, and NO$_{x}$ and ozone concentrations. In
addition to these parameters, the nitrogen isotopic variations will also be interpreted in the context of changes in source
contributions, e.g. coal burning in the Midwest, based on multiple chemical analyses including trace metals, mercury, and
major ion concentrations.
DE: 1854 Precipitation (3354)
DE: 1040 Isotopic composition/chemistry
DE: 0365 Troposphere--composition and chemistry
DE: 0368 Troposphere--constituent transport and chemistry
SC: Hydrology [H]
MN: 2004 AGU Fall Meeting