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复垦沉积池土壤中镍、铅、锌的吸附
作者姓名:V. ASENSIO  R. FORJ&#;N  F. A. VEGA  E. F. COVELO
摘    要:

关 键 词:metals  mine  soil  retaining  capacity  tree  vegetation  waste  amendment

Nickel, lead and zinc sorption in a reclaimed settling pond soil
V. ASENSIO,R. FORJ&#;N,F. A. VEGA,E. F. COVELO.Nickel, lead and zinc sorption in a reclaimed settling pond soil[J].Pedosphere,2016,26(1):39-48.
Authors:V ASENSIO  R FORJ&#;N  F A VEGA and E F COVELO
Institution:1. Department of Plant Biology and Soil Science, Faculty of Biology, University of Vigo, As Lagoas-Marcosende, 36310 Vigo, Pontevedra Spain ;Department of Plant Nutrition, University of S ao Paulo-Center of Nuclear Energy in Agriculture USP-CENA, 13400-970 Piracicaba-SP Brazil;2. Department of Plant Biology and Soil Science, Faculty of Biology, University of Vigo, As Lagoas-Marcosende, 36310 Vigo, Pontevedra Spain
Abstract:The wastes used to amend soils sometimes have high concentrations of metals such as nickel (Ni), lead (Pb) and zinc (Zn). To determine the capacity of soils to retain these metals, the sorption capacities of different mine soils with and without reclamation treatments (tree vegetation and waste amendment) for Ni, Pb and Zn in individual and competitive situations were evaluated using the batch sorption technique. The untreated settling pond soil had low capacity for Ni, Pb and Zn retention. The site amended with wastes (sewage sludges and paper mill residues) increased the sorption capacity most, probably because of the higher concentrations of soil components with high retention capacity such as carbon and clay fraction. No significant competition was observed between metals in the competitive sorption experiment, indicating that the maximum of sorption was not achieved by adding 0.5 mmol L-1 of metal. We can conclude that, despite the possible additions of Ni, Pb and Zn from wastes to degraded soils, sewage sludges and paper mill residues have a high sorption capacity that would prevent the metals from being in a mobile form.
Keywords:metals  mine soil  retaining capacity  tree vegetation  waste amendment
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