Infrared limb emission measurements of aerosol in the troposphere and stratosphere
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Published:2016-09-07
Issue:9
Volume:9
Page:4399-4423
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ISSN:1867-8548
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Container-title:Atmospheric Measurement Techniques
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language:en
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Short-container-title:Atmos. Meas. Tech.
Author:
Griessbach SabineORCID, Hoffmann LarsORCID, Spang ReinholdORCID, von Hobe MarcORCID, Müller RolfORCID, Riese MartinORCID
Abstract
Abstract. Altitude-resolved aerosol detection in the upper troposphere and lower stratosphere (UTLS) is a challenging task for remote sensing instruments. Infrared limb emission measurements provide vertically resolved global measurements at day- and nighttime in the UTLS. For high-spectral-resolution infrared limb instruments we present here a new method to detect aerosol and separate between ice and non-ice particles. The method is based on an improved aerosol–cloud index that identifies infrared limb emission spectra affected by non-ice aerosol or ice clouds. For the discrimination between non-ice aerosol and ice clouds we employed brightness temperature difference correlations. The discrimination thresholds for this method were derived from radiative transfer simulations (including scattering) and Michelson Interferometer for Passive Atmospheric Sounding (MIPAS)/Envisat measurements obtained in 2011. We demonstrate the value of this approach for observations of volcanic ash and sulfate aerosol originating from the Grímsvötn (Iceland, 64° N), Puyehue–Cordón Caulle (Chile, 40° S), and Nabro (Eritrea, 13° N) eruptions in May and June 2011 by comparing the MIPAS volcanic aerosol detections with Atmospheric Infrared Sounder (AIRS) volcanic ash and SO2 measurements.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference106 articles.
1. Ackerman, S. A.: Remote sensing aerosols using satellite infrared observations, J. Geophys. Res., 102, 17069–17079, https://doi.org/10.1029/96JD03066, 1997. 2. Ackerman, S. A., Smith, W. L., Spinhirne, J. D., and Revercomb, H. E.: The 27-28 October 1986 FIRE IFO cirrus case-study – spectral properties of cirrus clouds in the 8–12 µm window, Mon. Weather Rev., 118, 2377–2388, https://doi.org/10.1175/1520-0493(1990)118<2377:TOFICC>2.0.CO;2, 1990. 3. Aumann, H., Chahine, M., Gautier, C., Goldberg, M., Kalnay, E., McMillin, L., Revercomb, H., Rosenkranz, P., Smith, W., Staelin, D., Strow, L., and Susskind, J.: AIRS/AMSU/HSB on the Aqua mission: Design, science objectives, data products, and processing systems, IEEE Trans. Geosci. Remote Sens., 41, 253–264, https://doi.org/10.1109/TGRS.2002.808356, 2003. 4. Baran, A., Foot, J., and Dibben, P.: Satellite detection of volcanic sulfuric-acid aerosol, Geophys. Res. Lett., 20, 1799–1801, https://doi.org/10.1029/93GL01965, 1993. 5. Bauman, J. J., Russell, P. B., Geller, M. A., and Hamill, P.: A stratospheric aerosol climatology from SAGE II and CLAES measurements: 2. Results and comparisons, 1984-1999, J. Geophys. Res., 108, 4383, https://doi.org/10.1029/2002JD002993, 2003.
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