Stabilising metal(loid)s in soil with iron and aluminium-based products: Microbial, biochemical and plant growth impact.

Four iron and aluminium-based products, including red mud (RM), hematite (FeO), an iron-rich water treatment residual (Fe-WTR) and amorphous Al hydroxide (Al-OH), were evaluated for their effectiveness at stabilising As and heavy metals (i.e. Cd, Cu, Pb, Zn) in a circumneutral contaminated soil [As...

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Detalles Bibliográficos
Publicado en:Journal of Environmental Management Vol. 139; pp. 146 - 154
Autores principales: Garau, Giovanni, Silvetti, Margherita, Castaldi, Paola, Mele, Elena, Deiana, Pietrino, Deiana, Salvatore
Formato: Artículo
Publicado: Academic Press Inc. Jun2014
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Four iron and aluminium-based products, including red mud (RM), hematite (FeO), an iron-rich water treatment residual (Fe-WTR) and amorphous Al hydroxide (Al-OH), were evaluated for their effectiveness at stabilising As and heavy metals (i.e. Cd, Cu, Pb, Zn) in a circumneutral contaminated soil [As (2105 mg kg), Cd (18 mg kg), Cu (264 mg kg), Pb (710 mg kg), Zn (522 mg kg)]. Treatment impacts on soil microbial and biochemical features (i.e. microbial biomass-C, microbial counts, 16S rRNA PCR-TTGE of culturable bacteria, dehydrogenase, urease and β-glucosidase activity, Biolog derived parameters-AWCD and richness) as well as bean (Phaseolus vulgaris) and wheat (Triticum vulgare) growth were also assessed. After 6 months equilibration, all the amendments (application rate 3% w/w) but RM reduced labile As while only Al-OH reduced the concentration of water-soluble heavy metals. Despite the highest bioavailability of contaminants, most of the soil microbial and biochemical features monitored (i.e. microbial biomass-C, total bacterial counts, dehydrogenase activity and AWCD) were significantly higher in the RM-soil. Bean germination was completely inhibited in RM-soil while wheat growth was similar to that of the control. The Al-OH treatment was best overall, promoting microbial abundance, diversity and activity while increasing bean and wheat growth and reducing As accumulated in plant shoots. Results suggest that Al-OH is a suitable candidate for field evaluations while the use of RM in the remediation of circumneutral or subalkaline contaminated soils should be reconsidered.