Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect

Zobrist B, Marcolli C, Koop T, Luo BP, Murphy DM, Lohmann U, Zardini AA, Krieger UK, Corti T, Cziczo DJ, Fueglistaler S, et al. (2006)
ATMOSPHERIC CHEMISTRY AND PHYSICS 6(10): 3115-3129.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Zobrist, B.; Marcolli, C.; Koop, ThomasUniBi ; Luo, B. P.; Murphy, D. M.; Lohmann, U.; Zardini, A. A.; Krieger, U. K.; Corti, T.; Cziczo, D. J.; Fueglistaler, S.; Hudson, P. K.
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Abstract / Bemerkung
Heterogeneous ice freezing points of aqueous solutions containing various immersed solid dicarboxylic acids (oxalic, adipic, succinic, phthalic and fumaric) have been measured with a differential scanning calorimeter. The results show that only the dihydrate of oxalic acid (OAD) acts as a heterogeneous ice nucleus, with an increase in freezing temperature between 2 and 5 K depending on solution composition. In several field campaigns, oxalic acid enriched particles have been detected in the upper troposphere with single particle aerosol mass spectrometry. Simulations with a microphysical box model indicate that the presence of OAD may reduce the ice particle number density in cirrus clouds by up to ~50% when compared to exclusively homogeneous cirrus formation without OAD. Using the ECHAM4 climate model we estimate the global net radiative effect caused by this heterogeneous freezing to result in a cooling as high as −0.3 Wm−2.
Erscheinungsjahr
2006
Zeitschriftentitel
ATMOSPHERIC CHEMISTRY AND PHYSICS
Band
6
Ausgabe
10
Seite(n)
3115-3129
ISSN
1680-7316
eISSN
1680-7324
Page URI
https://pub.uni-bielefeld.de/record/1598502

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Zobrist B, Marcolli C, Koop T, et al. Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect. ATMOSPHERIC CHEMISTRY AND PHYSICS. 2006;6(10):3115-3129.
Zobrist, B., Marcolli, C., Koop, T., Luo, B. P., Murphy, D. M., Lohmann, U., Zardini, A. A., et al. (2006). Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect. ATMOSPHERIC CHEMISTRY AND PHYSICS, 6(10), 3115-3129. https://doi.org/10.5194/acp-6-3115-2006
Zobrist, B., Marcolli, C., Koop, Thomas, Luo, B. P., Murphy, D. M., Lohmann, U., Zardini, A. A., et al. 2006. “Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect”. ATMOSPHERIC CHEMISTRY AND PHYSICS 6 (10): 3115-3129.
Zobrist, B., Marcolli, C., Koop, T., Luo, B. P., Murphy, D. M., Lohmann, U., Zardini, A. A., Krieger, U. K., Corti, T., Cziczo, D. J., et al. (2006). Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect. ATMOSPHERIC CHEMISTRY AND PHYSICS 6, 3115-3129.
Zobrist, B., et al., 2006. Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect. ATMOSPHERIC CHEMISTRY AND PHYSICS, 6(10), p 3115-3129.
B. Zobrist, et al., “Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect”, ATMOSPHERIC CHEMISTRY AND PHYSICS, vol. 6, 2006, pp. 3115-3129.
Zobrist, B., Marcolli, C., Koop, T., Luo, B.P., Murphy, D.M., Lohmann, U., Zardini, A.A., Krieger, U.K., Corti, T., Cziczo, D.J., Fueglistaler, S., Hudson, P.K., Thomson, D.S., Peter, T.: Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect. ATMOSPHERIC CHEMISTRY AND PHYSICS. 6, 3115-3129 (2006).
Zobrist, B., Marcolli, C., Koop, Thomas, Luo, B. P., Murphy, D. M., Lohmann, U., Zardini, A. A., Krieger, U. K., Corti, T., Cziczo, D. J., Fueglistaler, S., Hudson, P. K., Thomson, D. S., and Peter, T. “Oxalic acid as a heterogeneous ice nucleus in the upper troposphere and its indirect aerosol effect”. ATMOSPHERIC CHEMISTRY AND PHYSICS 6.10 (2006): 3115-3129.
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2019-09-06T08:48:02Z
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