HR: 1330h
AN: A52A-0768 [PDF]
TI: Measurements and Interpretation of Surface Mixing Ratios of CH$_{4}$ and CO and $\delta$$^{13}$C and
$\delta$D of CH$_{4}$ in Air from Pacific Ocean Transects Between Auckland, New Zealand and Los
Angeles, California
AU: Ajie, H O
EM: hoajie@uci.edu
AF: University of California, Irvine, Earth System Science Dept., Irvine, CA 92697-3100 United States
AU: * Tyler, S C
EM: styler@uci.edu
AF: University of California, Irvine, Earth System Science Dept., Irvine, CA 92697-3100 United States
AU: Gotoh, A A
EM: aagotoh@uci.edu
AF: University of California, Irvine, Earth System Science Dept., Irvine, CA 92697-3100 United States
AU: McMillan, A M
EM: mcmillan@essgrad.ps.uci.edu
AF: University of California, Irvine, Earth System Science Dept., Irvine, CA 92697-3100 United States
AU: Rice, A L
EM: arice@ocean.washington.edu
AF: University of Washington, Dept. of Oceanography, Seattle, WA 98195-5351 United States
AU: Lowe, D C
EM: d.lowe@niwa.cri.nz
AF: National Institute of Water and Atmospheric Research, 301 Evans Bay Parade, Wellington, 00000
New Zealand
AB:
We report on measurements of atmospheric CH$_{4}$ and CO mixing ratios and $\delta$$^{13}$C of CH$_{4}$ from air samples
collected every 2.5 to 5$\deg$ latitude along a transect over the Pacific Ocean using container ships of P$\&$O Nedlloyd
(formerly Blue Star) shipping line. Data presented here begins in June 1996 and extends to January 2002. Scientists from
the National Institute of Water and Atmospheric Research in New Zealand and from University of California, Irvine alternate
sampling trips so that a transect between Auckland, New Zealand (35$\deg$S) and Los Angeles, California (35$\deg$N) can be
sampled over a period of $\sim$15 days approximately every four months. Data sets from the two laboratories are
intercalibrated through a sample exchange program. The data provide detail on the spatial and seasonal variation of CH$_{4}$
and CO mixing ratios and stable isotope ratios of CH$_{4}$ over the Pacific equatorial region, including the Intertropical
Convergence Zone (ITCZ) and both northern and southern temperate zones to about 30$\deg$ latitude, including the South
Pacific Convergence Zone (SPCZ). Data from 18 transect samplings so far clearly show that $\delta$$^{13}$C in the mid
latitudes of both hemispheres are $\sim$6 months out of phase. In June, a minimum in $\delta$$^{13}$C CH$_{4}$ in the
southern hemisphere (SH) coincides approximately with the maximum in the northern hemisphere (NH) seasonal cycle. Because
the NH is less enriched in $^{13}$C than the SH this situation results in a remarkably flat gradient between 30$\deg$N and
30$\deg$S. In November the opposite situation occurs with the SH mid latitude maximum coinciding with the minimum in the NH
cycle, leading to a relatively large gradient of $\sim$0.5$\permil$ between the hemispheres. We discuss how CH$_{4}$ and CO
mixing ratios are related to the changing positions and strengths of the ITCZ and SPCZ and how this data can be used in
multi-dimensional models of atmospheric chemistry and transport to better define CH$_{4}$ sources and sinks both temporally
and spatially.
DE: 0300 ATMOSPHERIC COMPOSITION AND STRUCTURE
DE: 0365 Troposphere--composition and chemistry
DE: 1040 Isotopic composition/chemistry
DE: 1610 Atmosphere (0315, 0325)
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting