Measurements of OH and HO2 concentrations during the MCMA-2006 field campaign – Part 1: Deployment of the Indiana University laser-induced fluorescence instrument
Item
Title (Dublin Core)
Measurements of OH and HO2 concentrations during the MCMA-2006 field campaign – Part 1: Deployment of the Indiana University laser-induced fluorescence instrument
Description (Dublin Core)
Measurements of tropospheric hydroxyl (OH) and hydroperoxy (HO<sub>2</sub>) radicals were made during the MCMA (Mexico City Metropolitan Area) field campaign as part of the MILAGRO (Megacity Initiative: Local and Global Research Observations) project during March 2006. These radicals were measured using a laser-induced fluorescence instrument developed at Indiana University. This new instrument takes advantage of the Fluorescence Assay by Gas Expansion technique (FAGE) together with direct excitation and detection of OH at 308 nm. HO<sub>2</sub> is indirectly measured as OH by titration with NO inside the fluorescence cell. At this stage of development, IU-FAGE is capable of detecting 3.9×10<sup>5</sup> molecule/cm<sup>3</sup> of both OH and HO<sub>2</sub>, with a signal to noise ratio of 1, an averaged laser power of 10-mW and an averaging time of 5-min. The calibration accuracies (1σ) are ±17% for OH and ±18% for HO<sub>2</sub> using the water-vapor photolysis/O<sub>2</sub> actinometry calibration technique. <br><br> OH and HO<sub>2</sub> concentrations were successfully measured at an urban site in Mexico City, with observed concentrations comparable to those measured in other polluted environments. Enhanced levels of OH and HO<sub>2</sub> radicals were observed on several days between 09:30–11:00 a.m. and suggest an intense photochemistry during morning hours that may be due to elevated sources of HO<sub>x</sub> (OH+HO<sub>2</sub>) and a fast cycling between the radicals under the high NO<sub>x</sub> (NO+NO<sub>2</sub>) conditions of the MCMA.
Creator (Dublin Core)
Dusanter, S.
Vimal, D.
Stevens, P. S.
Volkamer, R.
Molina, L. T.
Date (Dublin Core)
2018-01-15
Type (Dublin Core)
Text
Format (Dublin Core)
application/pdf
Identifier (Dublin Core)
10.5194/acp-9-1665-2009
https://acp.copernicus.org/articles/9/1665/2009/
Source (Dublin Core)
eISSN: 1680-7324
Language (Dublin Core)
eng



