The influence of mixed layer depth along the course of incoming air masses to the transport of PM10 components at three rural sampling sites in Spain

IF 4.5 2区 地球科学 Q1 METEOROLOGY & ATMOSPHERIC SCIENCES
Konstantinos Dimitriou
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引用次数: 0

Abstract

The main objective of this research, was to incorporate Mixed Layer Depth (MLD) estimations across backward air mass trajectories to the broadly used Trajectory Sector Analysis (TSA) and Concentration Weighted Trajectory (CWT) methods, in order to attain a three-dimensional (3D) identification of aerosol transport pathways and to reveal the role of the Mixed Layer (ML) on the transferring of particulates. The developed 3D-TSA and 3D-CWT tools, were combined with daily concentrations of PM10-bound SO42, NO3, Na+, Mg2+, Ca2+ and K+ measured at three rural sampling sites in Spain during the years 2019–2020. Vertically extended Saharan dust intrusions from North Africa were associated with air masses travelling both inside and outside the ML and were related to increases of PM10-bound SO42 and Ca2+ at all stations, attributed to the reactions of mineral dust with gaseous precursors of SO42 such as SO2. The advection of sea salt particles, marked by high levels of Na+ and Mg2+, was associated with marine air masses from the Mediterranean and Atlantic Ocean, moving mainly within the ML. Enhanced levels of PM10 constituents emitted by anthropogenic sources, such as NO3 (traffic and industrial emissions) and K+ (biomass burning), were clearly related to air masses originating from Iberian Peninsula, Central Europe and North African coastline, whilst in most cases the strongest contributions were transferred by air masses moving above the ML. Therefore, the implemented 3D version of TSA and CWT methods, revealed new information regarding the altitudinal characteristics of air masses affecting PM10 levels in Spain.

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来源期刊
Atmospheric Research
Atmospheric Research 地学-气象与大气科学
CiteScore
9.40
自引率
10.90%
发文量
460
审稿时长
47 days
期刊介绍: The journal publishes scientific papers (research papers, review articles, letters and notes) dealing with the part of the atmosphere where meteorological events occur. Attention is given to all processes extending from the earth surface to the tropopause, but special emphasis continues to be devoted to the physics of clouds, mesoscale meteorology and air pollution, i.e. atmospheric aerosols; microphysical processes; cloud dynamics and thermodynamics; numerical simulation, climatology, climate change and weather modification.
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