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Article

Effect of Soil Aging on Cadmium Bioavailability and Bioaccessibility at a Contaminated Site

by
Gianniantonio Petruzzelli
1,*,
Meri Barbafieri
1,
Elisabetta Franchi
2,
Danilo Fusini
2,
Marco Vocciante
3 and
Francesca Pedron
1
1
Institute of Research on Terrestrial Ecosystem, National Council of Research, Via Moruzzi 1, 56124 Pisa, Italy
2
Eni S.p.A., R&D Environmental & Biological Laboratories, Via Maritano 26, 20097 San Donato Milanese, Italy
3
Department of Chemistry and Industrial Chemistry, University of Genova, Via Dodecaneso 31, 16146 Genova, Italy
*
Author to whom correspondence should be addressed.
Environments 2023, 10(6), 105; https://doi.org/10.3390/environments10060105
Submission received: 19 May 2023 / Revised: 7 June 2023 / Accepted: 17 June 2023 / Published: 20 June 2023

Abstract

The effect of aging on cadmium (Cd) bioavailability and bioaccessibility was investigated in naturally aged field soil within a contaminated site. The results, which are based on a comparison of investigations carried out in 2018 and 2022 on the same soil samples, provide a realistic evaluation of the variation in Cd chemical forms due to long-term aging. The data obtained show a significant reduction (from approximately 30% to 60%) in the mobile and bioavailable forms of cadmium, while the total quantity in soil did not change significantly. The effect of aging on the bioavailable fractions is also reflected in the reduction in the amount of the metal absorbed by plants. On the one hand, this indicates a reduction in the potential contamination of the food chain, while on the other, it highlights the limitations of the use of phytoextraction as a clean-up technology in this specific site. In the case under study, it should also be noted that there was no decrease in cadmium bioaccessibility over time, which remained very high even after four years of cadmium aging in the soil, which was about 60% of the total content in the most contaminated soil samples. This highlights the potential health risks related to the incidental ingestion of Cd-contaminated soil, which could become the main exposure route in the case of the final use of the site as a park or public green area.
Keywords: cadmium; soil contamination; bioavailability; bioaccessibility; soil ageing cadmium; soil contamination; bioavailability; bioaccessibility; soil ageing
Graphical Abstract

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MDPI and ACS Style

Petruzzelli, G.; Barbafieri, M.; Franchi, E.; Fusini, D.; Vocciante, M.; Pedron, F. Effect of Soil Aging on Cadmium Bioavailability and Bioaccessibility at a Contaminated Site. Environments 2023, 10, 105. https://doi.org/10.3390/environments10060105

AMA Style

Petruzzelli G, Barbafieri M, Franchi E, Fusini D, Vocciante M, Pedron F. Effect of Soil Aging on Cadmium Bioavailability and Bioaccessibility at a Contaminated Site. Environments. 2023; 10(6):105. https://doi.org/10.3390/environments10060105

Chicago/Turabian Style

Petruzzelli, Gianniantonio, Meri Barbafieri, Elisabetta Franchi, Danilo Fusini, Marco Vocciante, and Francesca Pedron. 2023. "Effect of Soil Aging on Cadmium Bioavailability and Bioaccessibility at a Contaminated Site" Environments 10, no. 6: 105. https://doi.org/10.3390/environments10060105

APA Style

Petruzzelli, G., Barbafieri, M., Franchi, E., Fusini, D., Vocciante, M., & Pedron, F. (2023). Effect of Soil Aging on Cadmium Bioavailability and Bioaccessibility at a Contaminated Site. Environments, 10(6), 105. https://doi.org/10.3390/environments10060105

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