HR: 1340h
AN: A43C-1426 [Abstracts]
TI: Measurements of Intensive Aerosol Optical Properties During TexAQS II
AU: * Atkinson, D B
EM: AtkinsonD@pdx.edu
AF: Chemistry Department
Portland State University, P.O. Box 751, Portland, OR 97207-0751, United States
AU: Radney, J G
EM: JRadney@pdx.edu
AF: Chemistry Department
Portland State University, P.O. Box 751, Portland, OR 97207-0751, United States
AU: Wright, M E
EM: wrightm@pdx.edu
AF: Chemistry Department
Portland State University, P.O. Box 751, Portland, OR 97207-0751, United States
AB:
Time-resolved measurements of the bulk extensive aerosol optical properties - particle extinction coefficient
(bext) and particle scattering coefficient (bscat) - and particle number concentrations were made as
part of the six-week TRAMP experiment during the TexAQS II (2006) study. These measurements were done at a
nominal surface site (the roof of an 18 story building) on the University of Houston campus near downtown
Houston, Texas. Our ground-based tandem cavity ring-down transmissometer/nephelometer instrument
(CRDT/N) provided the aerosol optical property measurements. A commercial Condensation Particle Counter
(TSI 3007) was used to measure the number concentrations during part of the study period. The optical data was
used to construct the intensive aerosol optical properties single scattering albedo ω0 at 532 nm
and the Angstrom exponent for extinction between 532 nm and 1064 nm. Recent validation studies of size-
selected laboratory generated aerosols are presented to illustrate the soundness of this approach using our
instrument. The Angstrom exponent is compared to values from other instruments operating in the area and is
found to be a characteristic of the regional air mass under some conditions. Size distributions measured during
the study were used to create a new empirical adjustment to scattering measured by the Radiance Research
nephelometer, resulting in improved results for particle absorption coefficient and single scattering albedo. The
study average value of ω0(532 nm) = 0.78 is lower than expected from comparable field studies and
even lower values are experienced during the study. Possible causes of this discrepancy are examined and the
utility of using the current version of the CRDT/N instrument to measure the key radiative property ω0 is
assessed. Observed episodes of rapid increases in particle number concentration with little corresponding
growth in the optical properties can presumably be used to signal the occurrence of particle nucleation or growth
via gas-phase condensation. These results may be confirmed by other data taken during the TRAMP experiment.
These results will be discussed in the context of aerosol effects on regional and larger scale climate.
DE: 0305 Aerosols and particles (0345, 4801, 4906)
DE: 0345 Pollution: urban and regional (0305, 0478, 4251)
DE: 0365 Troposphere: composition and chemistry
DE: 0394 Instruments and techniques
DE: 4801 Aerosols (0305, 4906)
SC: Atmospheric Sciences [A]
MN: 2007 Fall Meeting