1
|
Izzo F, Di Renzo V, Langella A, D'Antonio M, Tranfa P, Widory D, Salzano L, Germinario C, Grifa C, Varricchio E, Mercurio M. Investigating strontium isotope linkage between biominerals (uroliths), drinking water and environmental matrices. ENVIRONMENTAL POLLUTION (BARKING, ESSEX : 1987) 2024; 344:123316. [PMID: 38185358 DOI: 10.1016/j.envpol.2024.123316] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 09/11/2023] [Revised: 12/12/2023] [Accepted: 01/04/2024] [Indexed: 01/09/2024]
Abstract
This study presents the mineralogy and strontium isotope ratio (87Sr/86Sr) of 21 pathological biominerals (bladder and kidney stones) collected from patients admitted between 2018 and 2020 at the Department of Urology of the San Pio Hospital (Benevento, southern Italy). Urinary stones belong to the calcium oxalate, purine or calcium phosphate mineralogy types. Their corresponding 87Sr/86Sr range from 0.707607 for an uricite sample to 0.709970 for a weddellite one, and seem to be partly discriminated based on the mineralogy. The comparison with the isotope characteristics of 38 representative Italian bottled and tap drinking waters show a general overlap in 87Sr/86Sr with the biominerals. However, on a smaller geographic area (Campania Region), we observe small 87Sr/86Sr differences between the biominerals and local waters. This may be explained by external Sr inputs for example from agriculture practices, inhaled aerosols (i.e., particulate matter), animal manure and sewage, non-regional foods. Nevertheless, biominerals of patients that stated to drink and eat local water/wines and foods every day exhibited a narrower 87Sr/86Sr range roughly matching the typical isotope ratios of local geological materials and waters, as well as those of archaeological biominerals from the same area. Finally, we conclude that the strontium isotope signature of urinary stones may reflect that of the environmental matrices surrounding patients, but future investigations are recommended to ultimately establish the potential for pathological biominerals as reliable biomonitoring proxies, taking into the account the contribution of the external sources of Sr.
Collapse
Affiliation(s)
- F Izzo
- Department of Earth Sciences, Environment and Resources, University of Naples Federico II, via Cintia, Naples, 80126, Italy
| | - V Di Renzo
- Department of Earth Sciences, Environment and Resources, University of Naples Federico II, via Cintia, Naples, 80126, Italy
| | - A Langella
- Department of Earth Sciences, Environment and Resources, University of Naples Federico II, via Cintia, Naples, 80126, Italy.
| | - M D'Antonio
- Department of Earth Sciences, Environment and Resources, University of Naples Federico II, via Cintia, Naples, 80126, Italy
| | - P Tranfa
- Department of Earth Sciences, Environment and Resources, University of Naples Federico II, via Cintia, Naples, 80126, Italy
| | - D Widory
- Geotop/Université du Québec a Montréal (UQAM), 201 Ave Président Kennedy, Montréal, QC, H2X 3Y7, Canada
| | - L Salzano
- UOC Urology, San Pio Hospital, Via dell'Angelo, 82100, Benevento, Italy
| | - C Germinario
- Department of Science and Technology, University of Sannio, via de Sanctis snc, Benevento, 82100, Italy
| | - C Grifa
- Department of Science and Technology, University of Sannio, via de Sanctis snc, Benevento, 82100, Italy
| | - E Varricchio
- Department of Science and Technology, University of Sannio, via de Sanctis snc, Benevento, 82100, Italy
| | - M Mercurio
- Department of Science and Technology, University of Sannio, via de Sanctis snc, Benevento, 82100, Italy
| |
Collapse
|
2
|
Cuoco E, Viaroli S, Paolucci V, Mazza R, Tedesco D. Fe and As geochemical self-removal dynamics in mineral waters: evidence from the Ferrarelle groundwater system (Riardo Plain, Southern Italy). ENVIRONMENTAL GEOCHEMISTRY AND HEALTH 2022; 44:2065-2082. [PMID: 33835360 PMCID: PMC9177463 DOI: 10.1007/s10653-021-00891-5] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Grants] [Track Full Text] [Figures] [Subscribe] [Scholar Register] [Received: 09/24/2020] [Accepted: 03/14/2021] [Indexed: 06/12/2023]
Abstract
A theoretical pattern for Fe and As co-precipitation was tested directly in a groundwater natural system. Several monitoring wells were sampled to identify the different endmembers that govern the hydrodynamics of the Ferrarelle Groundwater System in the Riardo Plain (Southern Italy). In agreement with recent investigations, we found a mix of a deep and a shallow component in different proportions, resulting in a specific chemical composition of groundwater in each well depending on the percentages of each component. The shallow component was characterized by EC ~ 430 µS/cm, Eh ~ 300 mV, Fe ~ 0.06 µmol/L and As ~ 0.01-0.12 µmol/L, while the deep component was characterized by EC ~ 3400 µS/cm, Eh ~ 170 mV, Fe ~ 140 µmol/L and As ~ 0.59 µmol/L. A general attenuation of As and Fe concentration that was not due to a simple dilution effect was observed in the mixing process. The oxidation of Fe(II) to Fe(III) produces solid precipitates which adsorb As from solution and then co-precipitate. The reactions pattern of Fe(II) oxidation and As adsorption gave a linear function between [As] and [Fe], where the angular coefficient depends on the [O2]/[H+] ratio. Chemical data obtained from our samples showed a very good agreement with this theoretical relationship. The investigated geochemical dynamics represented a natural process of attenuation of Fe and As, two undesirable elements that usually affect groundwater quality in volcanic aquifers in central-southern Italy, which are exploited to supply drinking water.
Collapse
Affiliation(s)
- Emilio Cuoco
- Istituto Nazionale Di Geofisica E Vulcanologia, Osservatorio Vesuviano, Via Diocleziano 328, 80124, Napoli, Italy
- Dipartimento Di Scienze E Tecnologie Ambientali, Biologiche E Farmaceutiche, Università Della Campania "L. Vanvitelli", Via Vivaldi 43, 81100, Caserta, Italy
| | - Stefano Viaroli
- Dipartimento Di Scienze, Università degli Studi Roma Tre, Largo S. Leonardo Murialdo 1, 00146, Roma, Italy.
| | | | - Roberto Mazza
- Dipartimento Di Scienze, Università degli Studi Roma Tre, Largo S. Leonardo Murialdo 1, 00146, Roma, Italy
| | - Dario Tedesco
- Istituto Nazionale Di Geofisica E Vulcanologia, Osservatorio Vesuviano, Via Diocleziano 328, 80124, Napoli, Italy
- Dipartimento Di Scienze E Tecnologie Ambientali, Biologiche E Farmaceutiche, Università Della Campania "L. Vanvitelli", Via Vivaldi 43, 81100, Caserta, Italy
| |
Collapse
|
3
|
Tedesco D. Special issue MinWat2020, third international multidisciplinary conference on mineral and thermal waters. ENVIRONMENTAL GEOCHEMISTRY AND HEALTH 2022; 44:1921-1923. [PMID: 35384571 DOI: 10.1007/s10653-022-01264-2] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Indexed: 06/14/2023]
Affiliation(s)
- Dario Tedesco
- Dipartimento di Scienze e Tecnologie Ambientali, Biologiche e Farmaceutiche, Università della Campania "L. Vanvitelli", Via Vivaldi 43, 81100, Caserta, Italy.
- Osservatorio Vesuviano, Istituto Nazionale di Geofisica e Vulcanologia, Via Diocleziano 328, 80124, Napoli, Italy.
| |
Collapse
|