Journal of Agricultural Chemistry and Environment

Journal of Agricultural Chemistry and Environment

ISSN Print: 2325-7458
ISSN Online: 2325-744X
www.scirp.org/journal/jacen
E-mail: jacen@scirp.org
"Application of Electrocoagulation and Electrolysis on the Precipitation of Heavy Metals and Particulate Solids in Washwater from the Soil Washing"
written by Ho Y. Shim, Kyo S. Lee, Dong S. Lee, Dae S. Jeon, Mi S. Park, Ji S. Shin, Yun K. Lee, Ji W. Goo, Soo B. Kim, Doug Y. Chung,
published by Journal of Agricultural Chemistry and Environment, Vol.3 No.4, 2014
has been cited by the following article(s):
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[3] Effect of Time and Voltage on Pollutant Remover in Gold Treatment Wastewater With Electrocoagulation Batch Reactor
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[10] New Technologies for Electrochemical Applications
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[11] Impregnation of polyethylene membranes with 1-butyl-3-methylimidazolium dicyanamide ionic liquid for enhanced removal of Cd2+, Ni2+, and Zn2+ from aqueous …
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[12] Kinetics, Isotherm and Thermodynamic Properties of the Basement Complex of Clay Deposit in Ire-Ekiti Southwestern Nigeria for Heavy Metals Removal.
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[13] The Influence of Co Concentration on the Properties of Conventionally Electrodeposited Ni–Co–Al2O3–SiC Nanocomposite Coatings
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[14] Water Pollution and Its Treatment by Various Methods: A Review
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[15] Conventional and Current Methods of Toxic Metals Removal from Water Using gC 3 N 4-Based Materials
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[16] Materials Involved in Electrocoagulation Process for Industrial Effluents
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[17] The Influence of Co Concentration on the Properties of Conventionally Electrodeposited Ni–Co–Al 2 O 3–SiC Nanocomposite Coatings
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[18] Clay Soil Modification Techniques for the Adsorption of Heavy Metals in Aqueous Medium: A Review
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[19] Adsorption and Conventional Technologies for Environmental Remediation and Decontamination of Heavy Metals: An Overview
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[20] Development of bioremediation methods for soil and water contaminated with heavy metals in Kabwe mine
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[21] PERFORMANCE OF TREATING A REAL KRAFT PULP AND PAPER MILL WASTEWATER BY PHOTOCATALYTIC USING CU-TIO2 FOILS/SUNLIGHT
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[22] On the Physical Chemical and Bioremediation Methods for the Removal of Certain Heavy Metals
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[23] Detection and removal of heavy metal ions: a review
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[24] Bioaccumulation of lead, chromium, and nickel by bacteria from three different genera isolated from industrial effluent
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[25] Effect of pretreatment on sugarcane bagasse for removal of zinc (II) ions from aqueous solution
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[26] Thermophilic Fungi: Basic Concepts and Biotechnological Applications
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[27] Calcium Alginate Thin Films Derived from Sargassum natans for the Selective Adsorption of Cd2+, Cu2+, and Pb2+ Ions
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[28] Estimation of nanofiltration membrane transport parameters for cobalt ions removal from aqueous solutions
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[29] Recent trends in biosorption of heavy metals by Actinobacteria
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[30] Anionic Surfactant Removal Using Electrochemical Process: Effect of Electrode Materials and Energy Consumption
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[31] Functional Microporous Carbons for Energy and Environmental Applications
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[32] Adsorption of amoxicillin onto Activate d Carbon from aqueous solution
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[33] Future Perspectives and Conclusions
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[34] SAWDUST IN THE TREATMENT OF HEAVY METALS-CONTAMINATED WASTEWATE.
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[35] The innovative use of electrocoagulation-microwave techniques for the removal of pollutants from water
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[36] Adsorption of amoxicillin onto Activated Carbon from aqueous solution
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[37] Enhancing filterability of activated sludge from landfill leachate treatment plant by applying electrical field ineffective on bacterial life
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[38] Equilibrium, Kinetic and Thermodynamic Studies on Biosorption of Ni (II) and Cu (II) by using Nyctanthes arbor-tristis leaf Powder
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[39] KINETIC AND THERMODYNAMIC STUDIES ON THE ADSORPTION OF HEAVY METALS IN AQUEOUS SOLUTION USING SURFACTANTS
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[40] Wastewater treatment using mineral-based materials
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[41] Reliability and stability of immobilization remediation of Cd polluted soils using sepiolite under pot and field trials
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[42] Novel thiosalicylate-based ionic liquids for heavy metal extractions
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[43] Wastewater treatment using mineral-based materials.
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[44] Adsorption of Cd2+ ions on plant mediated SnO2 nanoparticles
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[45] Methods of Removing Heavy Metals from Industrial Wastewater
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[46] Chromium Removal from Chromium Rich Tannery Wastewater using Eucalyptus camaldulensis Dehnh. Bark Powder as an Adsorbent; the Case of Modjo Tannery …
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