Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR
The simulation chamber SAPHIR at Forschungszentrum Jülich has UV permeable teflon walls facilitating atmospheric photochemistry studies under the influence of natural sunlight. Because the internal radiation field is strongly affected by construction elements, we use external, radiometric m...
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2005-01-01
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Series: | Atmospheric Chemistry and Physics |
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doaj-66882795e5be4718a6fdd4ded3997cc72020-11-24T23:09:18ZengCopernicus PublicationsAtmospheric Chemistry and Physics1680-73161680-73242005-01-0152493503Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIRB. BohnF. RohrerT. BrauersA. WahnerThe simulation chamber SAPHIR at Forschungszentrum Jülich has UV permeable teflon walls facilitating atmospheric photochemistry studies under the influence of natural sunlight. Because the internal radiation field is strongly affected by construction elements, we use external, radiometric measurements of spectral actinic flux and a model to calculate mean photolysis frequencies for the chamber volume Bohn04B. In this work we determine NO<sub>2</sub> photolysis frequencies <i>j</i>(NO<sub>2</sub>) within SAPHIR using chemical actinometry by injecting NO<sub>2</sub> and observing the chemical composition during illumination under various external conditions. In addition to a photo-stationary approach, a time-dependent method was developed to analyse the data. These measurements had two purposes. Firstly, to check the model predictions with respect to diurnal and seasonal variations in the presence of direct sunlight and secondly to obtain an absolute calibration factor for the combined radiometry-model approach. We obtain a linear correlation between calculated and actinometric <i>j</i>(NO<sub>2</sub>). A calibration factor of 1.34±0.10 is determined, independent of conditions in good approximation. This factor is in line with expectations and can be rationalised by internal reflections within the chamber. Taking into account the uncertainty of the actinometric <i>j</i>(NO<sub>2</sub>), an accuracy of 13% is estimated for the determination of <i>j</i>(NO<sub>2</sub>) in SAPHIR. In separate dark experiments a rate constant of (1.93±0.12)x10<sup>-14</sup> cm<sup>3</sup> s<sup>-1</sup> was determined for the NO+O<sub>3</sub> reaction at 298K using analytical and numerical methods of data analysis.http://www.atmos-chem-phys.net/5/493/2005/acp-5-493-2005.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
B. Bohn F. Rohrer T. Brauers A. Wahner |
spellingShingle |
B. Bohn F. Rohrer T. Brauers A. Wahner Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR Atmospheric Chemistry and Physics |
author_facet |
B. Bohn F. Rohrer T. Brauers A. Wahner |
author_sort |
B. Bohn |
title |
Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR |
title_short |
Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR |
title_full |
Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR |
title_fullStr |
Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR |
title_full_unstemmed |
Actinometric measurements of NO<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber SAPHIR |
title_sort |
actinometric measurements of no<sub>2</sub> photolysis frequencies in the atmosphere simulation chamber saphir |
publisher |
Copernicus Publications |
series |
Atmospheric Chemistry and Physics |
issn |
1680-7316 1680-7324 |
publishDate |
2005-01-01 |
description |
The simulation chamber SAPHIR at Forschungszentrum Jülich has UV permeable teflon walls facilitating atmospheric photochemistry studies under the influence of natural sunlight. Because the internal radiation field is strongly affected by construction elements, we use external, radiometric measurements of spectral actinic flux and a model to calculate mean photolysis frequencies for the chamber volume Bohn04B. In this work we determine NO<sub>2</sub> photolysis frequencies <i>j</i>(NO<sub>2</sub>) within SAPHIR using chemical actinometry by injecting NO<sub>2</sub> and observing the chemical composition during illumination under various external conditions. In addition to a photo-stationary approach, a time-dependent method was developed to analyse the data. These measurements had two purposes. Firstly, to check the model predictions with respect to diurnal and seasonal variations in the presence of direct sunlight and secondly to obtain an absolute calibration factor for the combined radiometry-model approach. We obtain a linear correlation between calculated and actinometric <i>j</i>(NO<sub>2</sub>). A calibration factor of 1.34±0.10 is determined, independent of conditions in good approximation. This factor is in line with expectations and can be rationalised by internal reflections within the chamber. Taking into account the uncertainty of the actinometric <i>j</i>(NO<sub>2</sub>), an accuracy of 13% is estimated for the determination of <i>j</i>(NO<sub>2</sub>) in SAPHIR. In separate dark experiments a rate constant of (1.93±0.12)x10<sup>-14</sup> cm<sup>3</sup> s<sup>-1</sup> was determined for the NO+O<sub>3</sub> reaction at 298K using analytical and numerical methods of data analysis. |
url |
http://www.atmos-chem-phys.net/5/493/2005/acp-5-493-2005.pdf |
work_keys_str_mv |
AT bbohn actinometricmeasurementsofnosub2subphotolysisfrequenciesintheatmospheresimulationchambersaphir AT frohrer actinometricmeasurementsofnosub2subphotolysisfrequenciesintheatmospheresimulationchambersaphir AT tbrauers actinometricmeasurementsofnosub2subphotolysisfrequenciesintheatmospheresimulationchambersaphir AT awahner actinometricmeasurementsofnosub2subphotolysisfrequenciesintheatmospheresimulationchambersaphir |
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1725610529392689152 |