Industrial and wildfire aerosol pollution over world heritage Lake Baikal
Аэрозольное загрязнение озера Байкал, объекта Всемирного наследия, промышленными выбросами и лесными пожарами
2021-02-06
SCID: 54.1/3fv53skf
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Absorption Angstrom ExponentLake Baikalblack carbonlidar soundingwildfire aerosol pollution
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Abstract (AI)
Lake Baikal is the biggest reservoir of fresh water with unique flora and fauna; presently it is negatively affected by climate change, water warming, industrial emissions, shipping, touristic activities, and Siberian forest fires. The assessment of air pollution - related Baikal's ecosystem damage is an unsolved problem. Ship, based expedition exploring the Baikal atmospheric aerosol loading, was performed over the lake area in July 2018. We combine the aerosol near - water and vertical distributions over the Lake Baikal basin with meteorological observations and air mass transportation simulations. Lidar sounding of aerosol fields in the troposphere assesses the atmospheric background in the pristine areas and the pollution during fire-affected periods. Aerosol optical properties (scattering and spectral absorption) converted to the particle number size, black carbon (BC) mass, and Absorption Angstrom Exponent (AAE) provide the inside into aerosol characterization. Transport of industrial emissions from Krasnoyarsk and Irkutsk regions, and wildfire plumes from Republic of Yakutia relates the pollution sources to the increased concentrations of fine particle numbers, PM10 and BC mass over Southern and Northern/Central Baikal, respectively. The highest PM10 and BC are associated to the harbor and touristic areas of intensive shipping and residential biomass burning. Deposition estimates applied to aerosol data exhibit the pollution fluxes to water surface over the whole Baikal area. AAE marks the impact of coal combustion, residential biomass burning, and wildfires indicating the high pollution level of the Lake Baikal ecological system .
Key Findings
1
A ship-based expedition in July 2018 characterized aerosol loading over Lake Baikal using near-water and vertical measurements, meteorology, and air-mass transport simulations.
2
Absorption Angstrom Exponent analysis identified coal combustion, residential biomass burning, and wildfires as pollution sources, while deposition estimates indicated pollutant fluxes to the lake surface across Baikal.
3
Industrial emissions from the Krasnoyarsk and Irkutsk regions and wildfire plumes from Yakutia increased fine-particle numbers, PM10, and black carbon over different Baikal regions.
4
Lidar observations distinguished atmospheric aerosol backgrounds in pristine areas from elevated pollution during wildfire-affected periods.
5
The highest PM10 and black carbon concentrations occurred near harbors and tourist areas, associated with intensive shipping and residential biomass burning.
Research Object
Atmospheric aerosols and their deposition over the Lake Baikal basin
Research Subject
The spatial distribution, optical and chemical characterization, pollution sources, transport, and deposition fluxes of industrial- and wildfire-derived aerosols affecting the Lake Baikal ecosystem
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2021-02-06
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