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Insights into Heavy Metals Leakage in Chelator-Induced Phytoextraction of Pb- and Tl-Contaminated Soil

Datos Bibliográficos

ID15475464
AutoresXuexia Huang (0000-0001-8429-121X, Guangzhou University), Dinggui Luo (0000-0002-1326-1221, Guangzhou University, autor de correspondencia), Xiangxin Chen (Guangzhou University), Lezhang Wei (Guangzhou University), Yu Liu (0000-0002-0016-2902, Guangzhou University), Qihang Wu (0000-0001-9449-4723, Guangzhou University), Tangfu Xiao (0000-0001-8076-0322, Guangzhou University), Xiaotao Mai (Guangzhou University), Guowei Liu (0000-0002-5461-3844, Guangzhou University), Lirong Liu (0000-0002-9102-6446, Guangzhou University)
Año2019
Volumen16
Número8
Páginas1328-1328
Fecha de publicación2019-04-12
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaInternational Journal of Environmental Research and Public Health (JOURNAL)
Identificadores de la revistaISSN: 1661-7827 • E-ISSN: 1660-4601
EditorialMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph16081328
PMID31013864
OpenAlexW2938947060
IdiomaEN
Referencias citadas46

Chelators including DTPA (diethylene triamine pentaacetic acid) and oxalic acid were selected for inducing phytoextraction of heavy metals (HMs) from Pb-, Tl-, and Pb-Tl- contaminated soil, in which heavy metals leakage was highly remarkable. Results showed that compared with the control group without chelating agent under planting conditions, the extraction efficiency (i.e., uptake coefficient) of Pb, Tl increased by 86%, 43% from Pb-Tl- contaminated soil in the presence of oxalic acid, and there was no significant change in heavy metal leakage under rainfall conditions. It was the best phytoremediation scheme in this work. Under rainfall conditions, the HMs concentration in the leachate showed a linear decreasing trend. Acid rain promoted the leakage of heavy metals, and the average leached amount of Tl increased by 1.47 times under acid rain conditions. However, for Pb, DTPA was the main influencing factor, followed by acid rain

Chelation · Contamination · Heavy metals · Leachate · Metal · Oxalic acid · Phytoremediation · Soil contamination · Soil water · Aluminum toxicity and tolerance in plants and animals · Chemistry · Environmental Science · Geochemistry and Elemental Analysis · Thallium and Germanium Studies · Environmental Chemistry · Inorganic Chemistry · Soil Science

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  • Evaluation of Mobility, Bioavailability and Toxicity of Pb and Cd in Contaminated Soil Using TCLP, BCR and Earthworms

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  • Heavy Metal Accumulation in Common Aquatic Plants in Rivers and Lakes in the Taihu Basin

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