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  5. Natural Hexavalent Chromium in the Pollino Massif Groundwater (Southern Apennines, Italy): Occurrence, Geochemistry and Preliminary Remediation Tests by Means of Innovative Adsorbent Nanomaterials
 
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Natural Hexavalent Chromium in the Pollino Massif Groundwater (Southern Apennines, Italy): Occurrence, Geochemistry and Preliminary Remediation Tests by Means of Innovative Adsorbent Nanomaterials

Author(s)
Paternoster, Michele  
Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Palermo, Palermo, Italia  
Rizzo, Giovanna  
Department of Sciences, University of Basilicata  
Sinisi, Rosa  
Department of Sciences, University of Basilicata  
Vilardi, Giorgio  
Department of Chemical Engineering Materials Environment, University of Roma Sapienza,  
Di Palma, Luca  
Department of Chemical Engineering Materials Environment, University of Roma Sapienza,  
Mongelli, Giovanni  
Department of Sciences, University of Basilicata  
Language
English
Obiettivo Specifico
6A. Geochimica per l'ambiente e geologia medica
Status
Published
JCR Journal
JCR Journal
Peer review journal
Yes
Journal
Bulletin of environmental contamination and toxicology  
Issue/vol(year)
/106 (2021)
ISSN
0944-1344
Electronic ISSN
0007-4861
Publisher
Springer
Pages (printed)
421–427
Date Issued
2021
DOI
10.1007/s00128-020-02898-7
URI
https://www.earth-prints.org/handle/2122/14366
Subjects

Groundwater; hexavale...

Abstract
In this study Cr(tot), Cr(VI), major and trace elements were determined in groundwater of northern sector of the Pollino Massif (southern Italy). The investigated area is characterized by ophiolitic rocks consisting of metabasites, shales and calcschists and fractured serpentinites. Two main hydro-facies were observed, reflecting low temperature water-rock interaction. The Mg-HCO3 hydrofacies is due to the weathering of serpentinites, Ca-HCO3 groundwaters are linked to the interaction with calcschist and metabasites. High Cr(VI) concentrations were detected, exceeding the maximum admissible concentrations by Italian regulation, due to the release of Cr(III) from ophiolitic rocks into water and its oxidation to the hexavalent state. Remediation tests were carried out using two synthetized nanomaterials, Fe(0) and magnetite, characterized by a mean size lower than 50 nm. The experiments were conducted at fixed nanoparticles/Cr(VI) molar ratio and according to previous studies. In addition, the kinetic data were interpreted with a suitable mathematical model.
Type
article
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2020 Paternoster et al. Bulletin Of Environmental contamination.pdf

Size

1.21 MB

Format

Adobe PDF

Checksum (MD5)

e89f997e1d1aa46cbc592fe9129efa5d

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