Iron Speciation in Urban Atmospheric Aerosols: Comparison between Thermodynamic Modeling and Direct Measurements

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American Chemical Society (ACS)
Yusuf Hamied Department of Chemistry
https://doi.org/10.1021/acsearthspacechem.4c00359

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Metals are important components of atmospheric aerosols for both health and atmospheric reactivity. Coordination chemis-try, leading to the formation of metal-ligand complexes, can alter metal solubility and their redox activity in solution, how-ever, such processes have been so far predominantly studied via thermodynamic modelling approaches alone. Such approach-es have indicated iron-oxalate complexes as the major species of interest in urban environments. In this study, aerosol sam-ples collected in the urban environment of Padua (Italy) are used to compare the speciation picture of iron obtained by ther-modynamic modelling with that measured experimentally using X-ray absorption spectroscopy (XAS). The results showed broadly consistent speciation pictures between the two approaches, however with some quantitative differences probably due to a discrepancy between bulk and single particle chemical composition of the aerosol samples. The XAS results showed the presence of iron-oxalate complexes in the samples, with both Fe(III) and Fe(II), and also suggest that most of the Fe may be mixed with organic matter on an atomic level. The thermodynamic modelling results indicated malonate as an additional important ligand besides oxalate and potential candidate for explaining the mixed iron-organic nature of the aerosol samples.
This work was funded by the Supporting TAlent in ReSearch@University of Padova STARS-StG MOCAA awarded by the University of Padova to CG and a BP Next Generation fellowship awarded by the Yusuf Hamied Department of Chemistry at the University of Cambridge to CG.

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