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Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring.

Publication ,  Journal Article
Kimbrough, S; Hays, M; Preston, B; Vallero, DA; Hagler, GSW
Published in: Environmental science & technology
January 2016

Air pollutant concentrations near major highways are usually attributed to a combination of nearby traffic emissions and regional background, and generally presumed to be additive in nature. During a near-road measurement study conducted in Las Vegas, NV, the effects of distant wildfires on regional air quality were indicated over a several day period in the summer of 2009. Area-wide elevated particulate levoglucosan (maximum of 0.83 μg/m(3)) and roadside measurements of ultraviolet light-absorbing particulate matter (UVPM) in comparison to black carbon (Delta-C) were apparent over the three-day period. Back-trajectory modeling and satellite images supported the measurement results and indicated the transport of air pollutants from wildfires burning in southern California. Separating roadside measurements under apparent biomass burning event (Delta-C > 1000 ng m(-3)) and nonevent (Delta-C < 1000 ng m(-3)) periods, and constraining to specific days of week, wind speed range, wind direction from the road and traffic volume range, roadside carbon monoxide, black carbon, total particle number count (20-200 nm), and accumulation mode particle number count (100-200 nm) increased by 65%, 146%, 58%, and 366%, respectively, when biomass smoke was indicated. Meanwhile, ultrafine particles (20-100 nm) decreased by 35%. This episode indicates that the presence of aged wildfire smoke may interact with freshly emitted ultrafine particles, resulting in a decrease of particles in the ultrafine mode.

Duke Scholars

Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

January 2016

Volume

50

Issue

1

Start / End Page

18 / 24

Related Subject Headings

  • Wind
  • Vehicle Emissions
  • Transportation
  • Soot
  • Smoke
  • Particulate Matter
  • Particle Size
  • Nevada
  • Models, Theoretical
  • Humans
 

Citation

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MLA
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Kimbrough, S., Hays, M., Preston, B., Vallero, D. A., & Hagler, G. S. W. (2016). Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring. Environmental Science & Technology, 50(1), 18–24. https://doi.org/10.1021/acs.est.5b05038
Kimbrough, Sue, Michael Hays, Bill Preston, Daniel A. Vallero, and Gayle S. W. Hagler. “Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring.Environmental Science & Technology 50, no. 1 (January 2016): 18–24. https://doi.org/10.1021/acs.est.5b05038.
Kimbrough S, Hays M, Preston B, Vallero DA, Hagler GSW. Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring. Environmental science & technology. 2016 Jan;50(1):18–24.
Kimbrough, Sue, et al. “Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring.Environmental Science & Technology, vol. 50, no. 1, Jan. 2016, pp. 18–24. Epmc, doi:10.1021/acs.est.5b05038.
Kimbrough S, Hays M, Preston B, Vallero DA, Hagler GSW. Episodic Impacts from California Wildfires Identified in Las Vegas Near-Road Air Quality Monitoring. Environmental science & technology. 2016 Jan;50(1):18–24.
Journal cover image

Published In

Environmental science & technology

DOI

EISSN

1520-5851

ISSN

0013-936X

Publication Date

January 2016

Volume

50

Issue

1

Start / End Page

18 / 24

Related Subject Headings

  • Wind
  • Vehicle Emissions
  • Transportation
  • Soot
  • Smoke
  • Particulate Matter
  • Particle Size
  • Nevada
  • Models, Theoretical
  • Humans