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Chemodynamics of heavy metals in long-term contaminated soils:Metal speciation in soil solution
引用本文:Kwon-Rae Kim,Gary Owens. Chemodynamics of heavy metals in long-term contaminated soils:Metal speciation in soil solution[J]. 环境科学学报(英文版), 2009, 21(11): 1532-1540. DOI: 10.1016/S1001-0742(08)62451-1
作者姓名:Kwon-Rae Kim  Gary Owens
作者单位:[1]Centre for Environmental Risk Assessment and Remediation, University of South Australia, Mawson Lakes, SA 5095, Australia [2]Climate Change & Agroecology Division, Department of Agricultural Environment, National Academy of Agricultural Science, RDA, 150 Suin-ro, Kwonsun-gu, Suwon 441-707, Republic of Korea
摘    要:The concentration and speciation of heavy metals in soil solution isolated from long-term contaminated soils were investigated. Thesoil solution was extracted at 70% maximum water holding capacity (MWHC) after equilibration for 24 h. The free metal concentrations(Cd2+, Cu2+, Pb2+, and Zn2+) in soil solution were determined using the Donnan membrane technique (DMT). Initially the DMT wasvalidated using artificial solutions where the percentage of free metal ions were significantly correlated with the percentages predictedusing MINTEQA2. However, there was a significant difference between the absolute free ion concentrations predicted by MINTEQA2and the values determined by the DMT. This was due to the significant metal adsorption onto the cation exchange membrane used inthe DMT with 20%, 28%, 44%, and 8% mass loss of the initial total concentration of Cd, Cu, Pb, and Zn in solution, respectively.This could result in a significant error in the determination of free metal ions when using DMT if no allowance for membrane cationadsorption was made. Relative to the total soluble metal concentrations the amounts of free Cd2+ (3%–52%) and Zn2+ (11%–72%) insoil solutions were generally higher than those of Cu2+ (0.2%–30%) and Pb2+ (0.6%–10%). Among the key soil solution properties,dissolved heavy metal concentrations were the most significant factor governing free metal ion concentrations. Soil solution pH showedonly a weak relationship with free metal ion partitioning coefficients (Kp) and dissolved organic carbon did not show any significantinfluence on Kp.

关 键 词:污染土壤  重金属  形态
收稿时间:2009-01-16
修稿时间:2009-03-11

Chemodynamics of heavy metals in long-term contaminated soils:Metal speciation in soil solution
Kwon-Rae Kim and Gary Owens. Chemodynamics of heavy metals in long-term contaminated soils:Metal speciation in soil solution[J]. Journal of environmental sciences (China), 2009, 21(11): 1532-1540. DOI: 10.1016/S1001-0742(08)62451-1
Authors:Kwon-Rae Kim and Gary Owens
Affiliation:1. Centre for Environmental Risk Assessment and Remediation,University of South Australia,Mawson Lakes,SA 5095,Australia;Climate Change & Agroecology Division,Department of Agricultural Environment,National Academy of Agricultural Science,RDA,150 Suin-ro,Kwonsun-gu,Suwon 441-707,Republic of Korea
2. Centre for Environmental Risk Assessment and Remediation,University of South Australia,Mawson Lakes,SA 5095,Australia
Abstract:The concentration and speciation of heavy metals in soil solution isolated from long-term contaminated soils were investigated.The soil solution was extracted at 70% maximum water holding capacity (MWHC) after equilibration for 24 h.The free metal concentrations (Cd~(2+),Cu~(2+),Pb~(2+),and Zn~(2+)) in soil solution were determined using the Donnan membrane technique (DMT).Initially the DMT was validated using artificial solutions where the percentage of free metal ions were significantly correlated with the percentages predicted using MINTEQA2.However,there was a significant difference between the absolute free ion concentrations predicted by MINTEQA2 and the values determined by the DMT.This was due to significant metal adsorption onto the cation exchange membrane used in the DMT with 20%,28%,44%,and 8% mass loss of the initial total concentration of Cd,Cu,Pb,and Zn in solution,respectively.This could result in a significant error in the determination of free metal ions when using DMT if no allowance for membrane cation adsorption was made.Relative to the total soluble metal concentrations the amounts of free Cd~(2+) (3%-52%) and Zn~(2+) (11%-72%) in soil solutions were generally higher than those of Cu~(2+) (0.2%-30%) and Pb~(2+) (0.6%-10%).Among the key soil solution properties,dissolved heavy metal concentrations were the most significant factor governing free metal ion concentrations.Soil solution pH showed only a weak relationship with free metal ion partitioning coefficients (K_p) and DOC did not show any significant influence on K_p.
Keywords:Donnan membrane technique  free metal ion  heavy metals  partitioning coefficient  solubility  speciation
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