Vertical 2-μm Heterodyne Differential Absorption Lidar Measurements of Mean CO2 Mixing Ratio in the Troposphere

Author:

Gibert Fabien1,Flamant Pierre H.1,Cuesta Juan1,Bruneau Didier2

Affiliation:

1. Laboratoire de Météorologie Dynamique, École Polytechnique, Institut Pierre-Simon Laplace, Palaiseau, France

2. Service d’Aéronomie, Université Pierre et Marie Curie, Institut Pierre-Simon Laplace, Paris, France

Abstract

Abstract Vertical mean CO2 mixing ratio measurements are reported in the atmospheric boundary layer (ABL) and in the lower free troposphere (FT), using a 2-μm heterodyne differential absorption lidar (HDIAL). The mean CO2 mixing ratio in the ABL is determined using 1) aerosol backscatter signal and a mean derivative of the increasing optical depth as a function of altitude and 2) optical depth measurements from cloud target returns. For a 1-km vertical long path in the ABL, 2% measurement precision with a time resolution of 30 min is demonstrated for the retrieved mean CO2 absorption. Spectroscopic calculations are reported in details using new spectroscopic data in the 2-μm domain and the outputs of the fifth-generation Pennsylvania State University–National Center for Atmospheric Research Mesoscale Model (MM5). Then, using both aerosols in the ABL and midaltitude dense clouds in the free troposphere, preliminary HDIAL measurements of mean CO2 mixing ratio in the free troposphere are also presented. The 2-μm HDIAL vertical measurements are compared to ground-based and airborne in situ CO2 mixing ratio measurements and discussed with the atmospheric synoptic conditions.

Publisher

American Meteorological Society

Subject

Atmospheric Science,Ocean Engineering

Reference45 articles.

1. Measurements of carbon dioxide on very tall towers: Results of the NOAA/CMDL program.;Bakwin;Tellus,1998

2. Strategies for measurement of atmospheric column means of carbon dioxide from aircraft using discrete sampling.;Bakwin;J. Geophys. Res.,2003

3. Braud, H., P.Bousquet, M.Ramonet, R.Sarda, and P.Ciais, 2004: CO/CO2 ratio in urban atmosphere: Example of the agglomeration of Paris, France. Institut Pierre et Simon Laplace Notes des Activités Instrumentales 42, 11 pp.

4. Bruneau, D., O.Le Rille, J.Pelon, and P. H.Flamant, 1997: Development of 2-μm coherent lidar emitter with transform-limited pulse output for wind and water-vapor measurements. Proc. Ninth Coherent Laser Radar Conf., Linköping, Sweden, Swedish Defence Research Establishment (FOA), 54–57.

5. Bruneau, D., S.Delmonte, and J.Pelon, 2000: Wind velocity and backscatter measurements at 2-μm with the heterodyne detection lidar EMIL. Proc. 20th Int. Laser Radar Conf., Vichy, France, École Polytechnique, 97–100.

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