Comparison of CO<sub>2</sub> Vertical Profiles in the Lower Troposphere between 1.6 µm Differential Absorption Lidar and Aircraft Measurements Over Tsukuba

A 1.6 &#956;m differential absorption Lidar (DIAL) system for measurement of vertical CO<sub>2</sub> mixing ratio profiles has been developed. A comparison of CO<sub>2</sub> vertical profiles measured by the DIAL system and an aircraft in situ sensor in January 2014 over...

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Bibliographic Details
Main Authors: Yasukuni Shibata, Chikao Nagasawa, Makoto Abo, Makoto Inoue, Isamu Morino, Osamu Uchino
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/18/11/4064
Description
Summary:A 1.6 &#956;m differential absorption Lidar (DIAL) system for measurement of vertical CO<sub>2</sub> mixing ratio profiles has been developed. A comparison of CO<sub>2</sub> vertical profiles measured by the DIAL system and an aircraft in situ sensor in January 2014 over the National Institute for Environmental Studies (NIES) in Tsukuba, Japan, is presented. The DIAL measurement was obtained at an altitude range of between 1.56 and 3.60 km with a vertical resolution of 236 m (below 3 km) and 590 m (above 3 km) at an average error of 1.93 ppm. An in situ sensor for cavity ring-down spectroscopy of CO<sub>2</sub> was installed in an aircraft. CO<sub>2</sub> mixing ratio measured by DIAL and the aircraft sensor ranged from 398.73 to 401.36 ppm and from 399.08 to 401.83 ppm, respectively, with an average difference of &#8722;0.94 &#177; 1.91 ppm below 3 km and &#8722;0.70 &#177; 1.98 ppm above 3 km between the two measurements.
ISSN:1424-8220