Published 2001 | Version v1
Journal article

OH and HO2 measurements in a forested region of north-western Greece

  • 1. Leeds Univ., School of Chemistry, Leeds (United Kingdom)

Description

Boundary layer concentration of hydroxyl (OH) and hydroperoxyl (HO2) radicals were measured at 1180m elevation in a mountainous, forested region of north-western Greece during the AEROsols formation from Biogenic organic Carbon (AEROBIC) field campaign held in July-August 1997. In situ measurements of OH radicals were made by laser-induced fluorescence (LIF) at low pressure, exciting in the (0, 0) band of the A-X system at 308nm. HO2 radicals were monitored by chemical titration to OH upon the addition of NO, with subsequent detection by LIF. The instrument was calibrated regularly during the field campaign, and demonstrated a sensitivity towards OH and HO2 of 5.2x105 and 2.4x106moleculecm-3, respectively, for a signal integration period of 2.5min and a signal-to-noise ratio of 1. Diurnal cycles of OH and HO2 were measured on 10 days within a small clearing of a forest of Greek Fir (Abies Borisi-Regis). In total 4165 OH data points and 1501 HO2 data points were collected at 30s intervals. Noon-time OH and HO2 concentrations were between 4-12x106 and 0.4-9x108moleculecm-3, respectively. The performance of the instrument is evaluated, and the data are interpreted in terms of correlations with controlling variables. A significant correlation (r2=0.66) is observed between the OH concentration and the rate of photolysis of ozone, J(O1D). However, OH persisted into the early evening when J(O1D) had fallen to very low values, consistent with the modelling study presented in the following paper (Carslaw et al., 2001, OH and HO2 radical chemistry in a forest region of north-western Greece. Atmospheric Environment 35, 4725-4737) that predicts a significant radical source from the ozonolysis of biogenic alkenes. Normalisation of the OH concentrations for variations in J(O1D) revealed a bell-shaped dependence of OH upon NOx (NO+NO2), which peaked at [NOx] ∼1.75ppbv. The diurnal variation of HO2 was found to be less correlated with J(O1D) compared to OH. (Author)

Additional details

Publishing Information

Journal Title
Atmospheric Environment (1994)
Journal Volume
35
Journal Issue
27
Journal Page Range
p. 4713-4724
ISSN
1352-2310
CODEN
AENVEQ

INIS

Country of Publication
United Kingdom
Country of Input or Organization
United Kingdom
INIS RN
33001935
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
AIR POLLUTION; FORESTS; GREECE; HYDROXYL RADICALS; NITROGEN OXIDES; OZONE
Descriptors DEC
CHALCOGENIDES; DEVELOPING COUNTRIES; EUROPE; NITROGEN COMPOUNDS; OXIDES; OXYGEN COMPOUNDS; POLLUTION; RADICALS; WESTERN EUROPE