Investigation of Transport and Transformation of Tropospheric Ozone in Terrestrial Ecosystems of the Coastal Zone of Lake Baikal

Author:

Zayakhanov Alexander S.,Zhamsueva Galina S.,Tcydypov Vadim V.,Balzhanov Tumen S.,Dementeva Ayuna L.,Khodzher Tamara V.

Abstract

Forest ecosystems play an important role in the process of removing trace gases from the atmosphere. The purpose of this work is the experimental study of the flux and rate of the dry deposition of ozone on different types of vegetation in the Baikal region. Based on the eddy covariance method and the flux gradient methods (including the aerodynamic gradient method (AGM), the modified Bowen method (MBR) and modified gradient method (MGM)) and with experimental data, the quantitative estimates of the fluxes and dry deposition velocity of ozone on the underlying surface were obtained for different environments (grasslands, forest). The average values of the dry deposition velocity of ozone (Vd) were equal to 0.37 cm/s at night (0–3 h) and 0.91 cm/s during daytime hours (12–18 h). The ozone flux (F) was 0.24 μg m–2 s–1 at night and 0.72 μg m–2 s–1 in the afternoon. The quantitative estimates of Vd and F on vegetation and in the forest show a higher absorptive capacity of forests compared to soil vegetation.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Reference67 articles.

1. Current Problems of Atmospheric Ozone;Perov,1980

2. Air Pollution and Plant Life;Treshou,1988

3. Ozone in the Troposphere;Belan,2010

4. On the manifestation on Baikal of global climate change in the twentieth century;Shimarev;Dokl. Ran,2002

5. Foehn effects above Khibiny in changes of surface ozone concentration;Demin;Atmos. Ocean. Opt.,2005

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