The first UK measurements of nitryl chloride using a chemical ionization mass spectrometer in central London in the summer of 2012, and an investigation of the role of Cl atom oxidation
posted on 2019-09-30, 11:39authored byTJ Bannan, AM Booth, A Bacak, JBA Muller, KE Leather, M Le Breton, B Jones, D Young, H Coe, J Allan, S Visser, JG Slowik, M Furger, ASH Prevot, J Lee, RE Dunmore, JR Hopkins, JF Hamilton, AC Lewis, LK Whalley, T Sharp, D Stone, DE Heard, ZL Fleming, R Leigh, DE Shallcross, CJ Percival
The first nitryl chloride (ClNO2) measurements in the UK were made during the summer 2012 ClearfLo campaign with a chemical ionization mass spectrometer, utilizing an I− ionization scheme. Concentrations of ClNO2 exceeded detectable limits (11 ppt) every night with a maximum concentration of 724 ppt. A diurnal profile of ClNO2 peaking between 4 and 5 A.M., decreasing directly after sunrise, was observed. Concentrations of ClNO2 above the detection limit are generally observed between 8 P.M. and 11 A.M. Different ratios of the production of ClNO2:N2O5 were observed throughout with both positive and negative correlations between the two species being reported. The photolysis of ClNO2 and a box model utilizing the Master Chemical Mechanism modified to include chlorine chemistry was used to calculate Cl atom concentrations. Simultaneous measurements of hydroxyl radicals (OH) using low pressure laser‐induced fluorescence and ozone enabled the relative importance of the oxidation of three groups of measured VOCs (alkanes, alkenes, and alkynes) by OH radicals, Cl atoms, and O3 to be compared. For the day with the maximum calculated Cl atom concentration, Cl atoms in the early morning were the dominant oxidant for alkanes and, over the entire day, contributed 15%, 3%, and 26% toward the oxidation of alkanes, alkenes, and alkynes, respectively.
Funding
This work was supported by NERC (NE/H003193/1), the Swiss National Science Foundation (SNFS grants 200021_132467/1 and 200020_150056/1), and the UK Met Office's NAME model.
History
Citation
Journal of Geophysical Research: Atmospheres, 2015, 120 (11), pp. 5638-5657 (20)
Author affiliation
/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Physics and Astronomy