Electrokinetic Removal of As from Soil Washing Residue

In this study, electrokinetic remediation (EKR) was carried out to remove arsenic (As) from soil washing residue. We screened various processing fluids and found that oxalic acid was most effective for As removal because it reductively dissolved Fe and As from the soil. In EKR, however, NaOH was a m...

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Published inWater, air, and soil pollution Vol. 227; no. 7; p. 1
Main Authors Shin, Su-Yeon, Park, Sang-Min, Baek, Kitae
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.07.2016
Springer
Springer Nature B.V
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Abstract In this study, electrokinetic remediation (EKR) was carried out to remove arsenic (As) from soil washing residue. We screened various processing fluids and found that oxalic acid was most effective for As removal because it reductively dissolved Fe and As from the soil. In EKR, however, NaOH was a more effective agent for removing As, implying that the main removal mechanism of As was ion exchange between OH– and oxyanionic As. Oxalic and citric acid, both of which were efficient agents for removing As in the screening tests, did not effectively remove As by EKR, probably due to the relatively high pH and low soil-to-agent ratio. In EKR, As was mainly removed by electromigration toward the anode, even under high amounts of accumulated electro-osmotic flow. Therefore, strategies that increase electromigration have potential for enhancing As removal.
AbstractList In this study, electrokinetic remediation (EKR) was carried out to remove arsenic (As) from soil washing residue. We screened various processing fluids and found that oxalic acid was most effective for As removal because it reductively dissolved Fe and As from the soil. In EKR, however, NaOH was a more effective agent for removing As, implying that the main removal mechanism of As was ion exchange between OH- and oxyanionic As. Oxalic and citric acid, both of which were efficient agents for removing As in the screening tests, did not effectively remove As by EKR, probably due to the relatively high pH and low soil-to-agent ratio. In EKR, As was mainly removed by electromigration toward the anode, even under high amounts of accumulated electro-osmotic flow. Therefore, strategies that increase electromigration have potential for enhancing As removal.
ArticleNumber 223
Audience Academic
Author Park, Sang-Min
Baek, Kitae
Shin, Su-Yeon
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  surname: Shin
  fullname: Shin, Su-Yeon
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  givenname: Sang-Min
  surname: Park
  fullname: Park, Sang-Min
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  givenname: Kitae
  surname: Baek
  fullname: Baek, Kitae
  email: kbaek@jbnu.ac.kr
  organization: Department of Environmental Engineering and Soil Environment Research Center, Chonbuk National University, Department of Bioactive Material Sciences, Chonbuk National University
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Keywords Electromigration
Chelating
Fractionation
Iron
Arsenic
Reductive dissolution
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Snippet In this study, electrokinetic remediation (EKR) was carried out to remove arsenic (As) from soil washing residue. We screened various processing fluids and...
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SubjectTerms Acids
Analysis
Arsenic
Arsenic removal
Atmospheric Protection/Air Quality Control/Air Pollution
Chelating agents
Climate Change/Climate Change Impacts
Earth and Environmental Science
Efficiency
Electrolytes
Environment
Environmental monitoring
Hydrogeology
Hypotheses
Medical screening
Moisture content
Organic acids
Oxalates
Oxalic acid
Permeability
Pollution control
Sodium hydroxide
Soil contaminants
Soil contamination
Soil Science & Conservation
Studies
Water Quality/Water Pollution
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Title Electrokinetic Removal of As from Soil Washing Residue
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