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Insights into the fate of antimony (Sb) in contaminated soils: Ageing influence on Sb mobility, bioavailability, bioaccessibility and speciation

Academic Article
Publication Date:
2021
Short description:
Insights into the fate of antimony (Sb) in contaminated soils: Ageing influence on Sb mobility, bioavailability, bioaccessibility and speciation / Diquattro, S., Castaldi, P., Ritch, S., Juhasz, A.L., Brunetti, G., Scheckel, K.G., Garau, G., Lombi, E.. - In: SCIENCE OF THE TOTAL ENVIRONMENT. - ISSN 0048-9697. - 770(2021). [10.1016/j.scitotenv.2021.145354]
abstract:
The effect of long-term ageing (up to 700 days) on the mobility, potential bioavailability and bioaccessibility of antimony (Sb) was investigated in two soils (S1: pH 8.2; S2: pH 4.9) spiked with two Sb concentrations (100 and 1000 mg·kg-1). The Sb mobility decreased with ageing as highlighted by sequential extraction, while its residual fraction significantly increased. The concentration of Sb (CDGT), as determined by diffusive gradients in thin films (DGT), showed a reduction in potential contaminant bioavailability during ageing. The DGT analysis also showed that Sb-CDGT after 700 days ageing was significantly higher in S1-1000 compared to S2-1000, suggesting soil pH plays a key role in Sb potential bioavailability. In-vitro tests also revealed that Sb bioaccessibility (and Hazard Quotient) decreased over
time. Linear combination fitting of Sb K-edge XANES derivative spectra showed, as a general trend, an increase in Sb(V) sorption to inorganic oxides with ageing as well as Sb(V) bound to organic matter (e.g. up to 27 and 37% respectively for S2-100). The results indicated that ageing can alleviate Sb ecotoxicity in soil and that the effectiveness of such processes can be increased at acidic pH. However, substantial risks due to Sb mobility, potential bioavailability and bioaccessibility remained in contaminated soils even after 700 days ageing.
Iris type:
1.1 Articolo in rivista
Keywords:
Ageing, Antimony, Potential bioavailability, Bioaccessibility, X-ray absorption near-edge structure (XANES) spectroscopy.
List of contributors:
Diquattro, Stefania; Castaldi, Paola; Ritch, Susie; Juhasz, Albert L.; Brunetti, Gianluca; Scheckel, Kirk G.; Garau, Giovanni; Lombi, Enzo
Authors of the University:
CASTALDI Paola
DIQUATTRO Stefania
GARAU Giovanni
Handle:
https://iris.uniss.it/handle/11388/241301
Published in:
SCIENCE OF THE TOTAL ENVIRONMENT
Journal
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URL

https://www.sciencedirect.com/science/article/am/pii/S0048969721004228
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