Sulfate reduction processes in salt marshes affected by phosphogypsum: geochemical influences on contaminant mobility
Author
dc.contributor.author
Pérez López, Rafael
Author
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Carrero, Sergio
Author
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Cruz Hernández, Pablo
Author
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Asta, Maria P.
Author
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Macias, Francisco
Author
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Canovas, Carlos R.
Author
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Guglieri, Clara
Author
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Nieto, José Miguel
Admission date
dc.date.accessioned
2018-07-24T22:16:33Z
Available date
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2018-07-24T22:16:33Z
Publication date
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2018
Cita de ítem
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Journal of Hazardous Materials, 350 (2018): 154–161
es_ES
Identifier
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10.1016/j.jhazmat.2018.02.001
Identifier
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https://repositorio.uchile.cl/handle/2250/150226
Abstract
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Sulfate reduction and its associated contaminant immobilization in marsh soils supporting a phosphogypsum stack was examined by pore-water and solid analysis, selective extractions, microscopy and sulfur K-edge X-ray absorption near-edge structure (XANES) spectroscopy. The negative impact of this stack on estuarine environments is a concerning problem. In the weathering profile, total concentrations of most pollutants increase with depth; instead, dissolved contents in pore-waters increase to middle of the saturated zone but then decrease drastically down to reach the marsh due to sulfide precipitation. Excess of acid-volatile sulfide plus pyritic sulfur over metals bound to the oxidizable fraction indicates that sulfide precipitation is the main mechanism responsible for metal removal in the marsh. Thus, abundant pyrite occurred as framboidal grains, in addition to other minor sulfides of As, Zn and Cu as isolated particles. Moreover, high contents of elemental sulfur were found, which suggest partial sulfide oxidation, but marsh may have capacity to buffer potential release of contaminants. The importance of sulfur species was quantitatively confirmed by XANES, which also supports the accuracy of selective extraction schemes. Accordingly, managing pore-water quality through organic carbon-rich amendments over phosphogypsum stacks could lead to a decrease in contaminant loading of leakages resulting from weathering.
es_ES
Patrocinador
dc.description.sponsorship
Government of Andalusia through the research project FOREVER
P12-RNM-2260
Spanish Ministry of Economic and Competitiveness through the research project CAPOTE
CGL2017-86050-R
Talent consolidation program of the University of Huelva