4.7 Article

Impact of clouds and aerosols on ozone production in Southeast Texas

Journal

ATMOSPHERIC ENVIRONMENT
Volume 44, Issue 33, Pages 4126-4133

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.atmosenv.2009.09.005

Keywords

TexAQS-II; TRAMP; Photolysis rates; Ozone production; Radiative transfer model; Photochemical box model

Funding

  1. Houston Advanced Research Center
  2. Texas Commission on Environmental Quality

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A radiative transfer model and photochemical box model are used to examine the effects of clouds and aerosols on actinic flux and photolysis rates, and the impacts of changes in photolysis rates on ozone production and destruction rates in a polluted urban environment like Houston, Texas. During the TexAQS-II Radical and Aerosol Measurement Project the combined cloud and aerosol effects reduced j(NO2) photolysis frequencies by nominally 17%, while aerosols reduced j(NO2) by 3% on six clear sky days. Reductions in actinic flux due to attenuation by clouds and aerosols correspond to reduced net ozone formation rates with a nearly one-to-one relationship. The overall reduction in the net ozone production rate due to reductions in photolysis rates by clouds and aerosols was approximately 8 ppbv h(-1). (C) 2009 Elsevier Ltd. All rights reserved,

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