Articles | Volume 7, issue 11
https://doi.org/10.5194/amt-7-3763-2014
https://doi.org/10.5194/amt-7-3763-2014
Research article
 | 
17 Nov 2014
Research article |  | 17 Nov 2014

A compact PTR-ToF-MS instrument for airborne measurements of volatile organic compounds at high spatiotemporal resolution

M. Müller, T. Mikoviny, S. Feil, S. Haidacher, G. Hanel, E. Hartungen, A. Jordan, L. Märk, P. Mutschlechner, R. Schottkowsky, P. Sulzer, J. H. Crawford, and A. Wisthaler

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Cited articles

Arnold, F. and Hauck, G.: Lower stratosphere trace gas detection using aircraft-borne active chemical ionization mass spectrometry, Nature, 315, 307–309, https://doi.org/10.1038/315307a0, 1985.
Blake, R. S., Whyte, C., Hughes, C. O., Ellis, A. M., and Monks, P. S.: Demonstration of proton-transfer reaction time-of-flight mass spectrometry for real-time analysis of trace volatile organic compounds, Anal. Chem., 76, 3841–3845, https://doi.org/10.1021/ac0498260, 2004.
Crutzen, P. J., Williams, J., Pöschl, U., Hoor, P., Fischer, H., Warneke, C., Holzinger, R., Hansel, A., Lindinger, W., Scheeren, B., and Lelieveld, J.: High spatial and temporal resolution measurements of primary organics and their oxidation products over the tropical forests of Surinam, Atmos. Environ., 34, 1161–1165, https://doi.org/10.1016/S1352-2310(99)00482-3, 2000.
De Gouw, J. and Warneke, C.: Measurements of volatile organic compounds in the earth's atmosphere using proton-transfer-reaction mass spectrometry, Mass Spectrom. Rev., 26, 223–257, https://doi.org/10.1002/mas.20119, 2007.
Ennis, C. J., Reynolds, J. C., Keely, B. J., and Carpenter, L. J.: A hollow cathode proton transfer reaction time of flight mass spectrometer, Int. J. Mass Spectrom., 247, 72–80, https://doi.org/10.1016/j.ijms.2005.09.008, 2005.
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Short summary
This paper describes a new airborne instrument for measuring the trace gas composition of the atmosphere.