Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Distribution and Phytoavailability of Potentially Toxic Metals in Different Fe/Mg Mine Tailings

Bibliographic Data

ID15480790
AuthorsXuyin Yuan (0000-0001-5303-7120, Hohai University, corresponding author), Yimin Wang (0000-0002-7757-2213, Hohai University), Dou-Dou Tang (Hohai University), Xiaohui Zhang (0000-0001-7779-3000), Lei Zhang (0000-0003-4889-6486), Haiyan Zhang (0000-0001-7508-7831)
Year2018
Volume15
Issue11
Pages2475-2475
Publication date2018-11-06
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph15112475
PMID30404179
OpenAlexW2899619901
LanguageEN
References cited1

The environmental risk of potentially toxic metals in tailing soils is of universal concern. We conducted a 3-month pot experiment to research the distribution and variations of potentially toxic metals (PTMs), and the translocation and accumulation capability of these metals (Cr, Ni, Mn, Cu, Zu) in natural plants for three Fe/Mg tailing soils (serpentine-type, olivine-type and magnetite-type) with growth of a grass plant- Imperata cylindrica . We used comparative analysis, regression analysis and correlation analysis to process relevant experimental data. Results showed the rhizosphere tailing soils decreased from 3.70% to 16.8%, compared to the bulk soils, after growth of Imperata cylindrica , and the acid soluble fraction of Mn, Cu and Zn increased significantly. Cu and Zn were more bioavailable than other PTMs, especially for serpentine-type tailing soils. Linear regression analysis indicated that non-residual fractions showed different effects on metal concentrations of Imperata cylindrica . The non-residual metal fractions of serpentine-type and olivine-type tailing soils showed better correlations with metal concentrations in grass plants than those of magnetite-type tailing soils. We found that the chemical compositions of tailing soils showed remarkable effects on Ni and Mn compared with other elements, especially Mg and Al. Overall, the grass plant can alter the metal distribution, enhance metal bioavailability and promote land use of Fe/Mg tailing soils

Agronomy · Bioavailability · Biology · Imperata · Magnetite · Metal · Metallurgy · Rhizosphere · Soil water · Tailings · Chemistry · Clay minerals and soil interactions · Environmental Science · Heavy metals in environment · Materials Science · Mine drainage and remediation techniques · Environmental Chemistry · Geology · Soil Science

  • A review of soil heavy metal pollution from mines in China

    Open Access•Zhiyuan Li, Zongwei Ma et al.•The Science of The Total…•2014

Citation velocityhistorical
Highly citedNo

Tools

Open DOISci-HubOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae