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  Comparison of OH reactivity measurements in the atmospheric simulation chamber SAPHIR

Fuchs, H., Novelli, A., Rolletter, M., Hofzumahaus, A., Pfannerstill, E. Y., Keßel, S., Edtbauer, A., Williams, J., Michoud, V., Dusanter, S., Locoge, N., Zannoni, N., Gros, V., Truong, F., Sarda-Esteve, R., Cryer, D. R., Brumby, C. A., Whalley, L. K., Stone, D., Seakins, P. W., Heard, D. E., Schoemaecker, C., Blocquet, M., Coudert, S., Batut, S., Fittschen, C., Thames, A. B., Brune, W. H., Ernest, C. T., Harder, H., Muller, J. B. A., Elste, T., Kubistin, D., Andres, S., Bohn, B., Hohaus, T., Holland, F., Li, X., Rohrer, F., Kiendler-Scharr, A., Tillmann, R., Wegener, R., Yu, Z., Zou, Q., & Wahner, A. (2017). Comparison of OH reactivity measurements in the atmospheric simulation chamber SAPHIR. Atmospheric Measurement Techniques, 10(10), 4023-4053. doi:10.5194/amt-10-4023-2017.

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資料種別: 学術論文

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 作成者:
Fuchs, Hendrik1, 著者
Novelli, Anna1, 著者
Rolletter, Michael1, 著者
Hofzumahaus, Andreas1, 著者
Pfannerstill, Eva Y.2, 著者           
Keßel, Stephan2, 著者           
Edtbauer, Achim2, 著者           
Williams, Jonathan2, 著者           
Michoud, Vincent1, 著者
Dusanter, Sebastien1, 著者
Locoge, Nadine1, 著者
Zannoni, Nora1, 著者
Gros, Valerie1, 著者
Truong, Francois1, 著者
Sarda-Esteve, Roland1, 著者
Cryer, Danny R.1, 著者
Brumby, Charlotte A.1, 著者
Whalley, Lisa K.1, 著者
Stone, Daniel1, 著者
Seakins, Paul W.1, 著者
Heard, Dwayne E.1, 著者Schoemaecker, Coralie1, 著者Blocquet, Marion1, 著者Coudert, Sebastien1, 著者Batut, Sebastien1, 著者Fittschen, Christa1, 著者Thames, Alexander B.1, 著者Brune, William H.1, 著者Ernest, Cheryl T.2, 著者           Harder, H.2, 著者           Muller, Jennifer B. A.1, 著者Elste, Thomas1, 著者Kubistin, Dagmar1, 著者Andres, Stefanie1, 著者Bohn, Birger1, 著者Hohaus, Thorsten1, 著者Holland, Frank1, 著者Li, Xin1, 著者Rohrer, Franz1, 著者Kiendler-Scharr, Astrid1, 著者Tillmann, Ralf1, 著者Wegener, Robert1, 著者Yu, Zhujun1, 著者Zou, Qi1, 著者Wahner, Andreas1, 著者 全て表示
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1external, ou_persistent22              
2Atmospheric Chemistry, Max Planck Institute for Chemistry, Max Planck Society, ou_1826285              

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 要旨: Hydroxyl (OH) radical reactivity (kOH) has been measured for 18 years with different measurement techniques. In order to compare the performances of instruments deployed in the field, two campaigns were conducted performing experiments in the atmospheric simulation chamber SAPHIR at Forschungszentrum Jülich in October 2015 and April 2016. Chemical conditions were chosen either to be representative of the atmosphere or to test potential limitations of instruments. All types of instruments that are currently used for atmospheric measurements were used in one of the two campaigns. The results of these campaigns demonstrate that OH reactivity can be accurately measured for a wide range of atmospherically relevant chemical conditions (e.g. water vapour, nitrogen oxides, various organic compounds) by all instruments. The precision of the measurements (limit of detection  < 1 s−1 at a time resolution of 30 s to a few minutes) is higher for instruments directly detecting hydroxyl radicals, whereas the indirect comparative reactivity method (CRM) has a higher limit of detection of 2 s−1 at a time resolution of 10 to 15 min. The performances of the instruments were systematically tested by stepwise increasing, for example, the concentrations of carbon monoxide (CO), water vapour or nitric oxide (NO). In further experiments, mixtures of organic reactants were injected into the chamber to simulate urban and forested environments. Overall, the results show that the instruments are capable of measuring OH reactivity in the presence of CO, alkanes, alkenes and aromatic compounds. The transmission efficiency in Teflon inlet lines could have introduced systematic errors in measurements for low-volatile organic compounds in some instruments. CRM instruments exhibited a larger scatter in the data compared to the other instruments. The largest differences to reference measurements or to calculated reactivity were observed by CRM instruments in the presence of terpenes and oxygenated organic compounds (mixing ratio of OH reactants were up to 10 ppbv). In some of these experiments, only a small fraction of the reactivity is detected. The accuracy of CRM measurements is most likely limited by the corrections that need to be applied to account for known effects of, for example, deviations from pseudo first-order conditions, nitrogen oxides or water vapour on the measurement. Methods used to derive these corrections vary among the different CRM instruments. Measurements taken with a flow-tube instrument combined with the direct detection of OH by chemical ionisation mass spectrometry (CIMS) show limitations in cases of high reactivity and high NO concentrations but were accurate for low reactivity (< 15 s−1) and low NO (< 5 ppbv) conditions.

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言語: eng - English
 日付: 2017
 出版の状態: 出版
 ページ: -
 出版情報: -
 目次: -
 査読: -
 識別子(DOI, ISBNなど): ISI: 000413853400004
DOI: 10.5194/amt-10-4023-2017
 学位: -

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出版物 1

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出版物名: Atmospheric Measurement Techniques
  省略形 : AMT
種別: 学術雑誌
 著者・編者:
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出版社, 出版地: Göttingen : European Geosciences Union, Copernicus
ページ: - 巻号: 10 (10) 通巻号: - 開始・終了ページ: 4023 - 4053 識別子(ISBN, ISSN, DOIなど): その他: 1867-1381
CoNE: https://pure.mpg.de/cone/journals/resource/1867-1381