Articles | Volume 2, issue 2
https://doi.org/10.5194/amt-2-465-2009
https://doi.org/10.5194/amt-2-465-2009
31 Aug 2009
 | 31 Aug 2009

A flow-tube based laser-induced fluorescence instrument to measure OH reactivity in the troposphere

T. Ingham, A. Goddard, L. K. Whalley, K. L. Furneaux, P. M. Edwards, C. P. Seal, D. E. Self, G. P. Johnson, K. A. Read, J. D. Lee, and D. E. Heard

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Cited articles

Atkinson, R.: Kinetics of the gas-phase reactions of OH radicals with alkanes and cycloalkanes, Atmos. Chem. Phys., 3, 2233–2307, 2003.
Bell, N., Heard, D. E., Pilling, M. J., and Tomlin, A. S.: Atmospheric lifetime as a probe of radical chemistry in the boundary layer, Atmos. Environ., 37, 2193–2205, 2003.
Bloss, W. J., Gravestock, T. J., Heard, D. E., Ingham, T., Johnson, G. P., and Lee, J. D.: Application of a compact all solid-state laser system to the in situ detection of atmospheric OH, HO2, NO and IO by laser-induced fluorescence, J. Environ. Monitor., 5, 21–28, 2003.
Calpini, B., Jeanneret, F., Bourqui, M., Clapier, A., Vajtai, R., van der Bergh, H.: Direct measurement of the total reaction rate of OH in the atmosphere, Analysis, 27, 328–336, 1999.
Carslaw, N., Creasey, D. J., Heard, D. E., Lewis, A. C., McQuaid, J. B., Pilling, M. J., Monks, P. S., Bandy, B. J., and Penkett, S. A.: Modeling OH, HO2, and RO2 radicals in the marine boundary layer 1, Model construction and comparison with field measurements, J. Geophys. Res., 104(D23), 30241–30255, 1999.