Chapter
May 10, 2013
Chapter 4

Electrochemical Treatment and Recovery of Chelating Agents

Publication: Chelating Agents for Land Decontamination Technologies
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4.7 References

Adhoum N., and Monser, L. (2004). “Decoloration and removal of phenolic compounds from olive mill wastewaters by electrocoagulation.” Chemical Engineering and Processing., 43, 1281–1287.
Adhoum, N., Monser, L., Bellakhal, N., and Belgaied, J. E. (2004). “Treatment of electroplating wastewater containing Cu2+, Zn2+ and Cr(VI) by electrocoagulation.” Journal of Hazardous Materials, 112, 207–213.
Ager, P., and Marshall, W. D. (2001). “The removal of metals and release of EDTA from pulp wash water.” Wood Science and Technology, 21, 413–425.
Allen, H. E. and Chen, P. H. (1993). “Remediation of metal contaminated soil by EDTA incorporating electrochemical recovery of metal and EDTA.” Environmental Progress, 12, 284–293.
Bohn, H. L., McNeal, B. L., and O’Connor, G. A. (1979). Soil Chemistry. Wiley, New York.
Buelt, J. L., and Farnsworth, R. K. (1991). “In situ vitrification of soils containing various metals.” Nuclear Technology, 96, 178–184.
Canizares, P., Lobato, J., Paz, R., Rodrigo, M. A., and Saez, C. (2005). “Electrochemical oxidation of phenolic wastes with boron-doped diamond anodes.” Water Research, 39, 2687–2703.
Chang, F.- C., Lo, S.- L., and Ko, C.- H. (2007). “Recovery of copper and chelating agents from sludge extracting solutions.” Separation and Purification Technology, 53, 49–56.
Chen, G. (2004). “Electrochemical technologies in wastewater treatment.” Separation and Purification Technology, 38, 11–41.
Di Palma, L., Ferrantelli, P., Merli, C., and Bianifiori, F. (2003). “Recovery of EDTA and metal precipitation from soil washing solutions.” Journal of Hazardous Materials, 103, 153–168.
Di Palma, L., Ferrantelli, P., Merli, C., and Petrucci, E. (2003). “Treatment of the solution extracted from metal contaminated soils by reverse osmosis and chemical precipitation.” Annali di Chimica, 93, 1005–1011.
Elliott, H. A., and Brown, G. (1989). “Comparative evaluation of NTA and EDTA for extractive decontamination of Pb-polluted soils.” Water, Air, and Soil Pollution, 45, 361–369.
Finzgar, N., and Lestan, D. (2006). “Advanced oxidation for treatment of aqueous extracts from EDTA extraction of Pb and Zn contaminated soil.” Journal of Environmental Engineering, 132, 1376–1380.
Finzgar, N., and Lestan, D. (2006). “Heap leaching of Pb and Zn contaminated soil using ozone/UV treatment of EDTA extractants.” Chemosphere, 63, 1736–1743.
Finzgar, N., and Lestan, D. (2008). “The two-phase leaching of Pb, Zn and Cd contaminated soil using EDTA and electrochemical treatment of the washing solution.” Chemosphere, 73, 1484–1491.
Guo, G., Zhou, Q., and Ma, L. Q. (2006). “Availability and assessment of fixing additives for the in situ remediation of heavy metal contaminated soils: A review.” Environmental Monitoring and Assessment, 116, 513–528.
Hick, R. E., and Tondorf, S. (1994). “Electrorestoration of metal contaminated soils.” Environmental Science Technology, 28, 2203–2210.
Holt, P. K., Barton, G. W., and Mitchell, C. A. (2005). “The future for electrocoagulation as a localised water treatment technology.” Chemosphere, 59, 355–367.
Hong, A. P. K., Li, C., Banerji, S. K., and Regmi, T. (1999). “Extraction, recovery, and biostability of EDTA for remediation of heavy metal-contaminated soil.” Journal of Soil Contamination, 8, 81–103.
Huang, J. W., Chen, J. J., Berti, W. R., and Cunningham, S. D. (1997). “Phytoremediation of lead- contaminated soils: role of synthetic chelates in lead phytoextraction.” Environmental Science Technology, 31, 800–805.
Jiang, J. Q., Xu, Y., Quill, K., Simon, J., and Shettle, K. (2006). “Mechanisms of boron removal with electrocoagulation.” Environmental Chemistry, 3, 350–354.
Jiraroj, D., Unob, F., and Hagege, A. (2006). “Degradation of Pb–EDTA complex by H2O2/UV process.” Water Research, 40, 107–112.
Johnson, J. W., Jiang, H. W., Hanna, S. B., and James, W. J. (1972). “Anodic oxidation of ethylenediaminetetraacetic acid on Pt in acid sulphate solution.” Journal of the Electrochemical Society, 119, 574–580.
Juang, R.-S., and Wang, S.-W. (2000). “Electrolytic recovery of binary metals and EDTA from strong complexed solutions.” Water Research, 34, 3179–3185.
Juang, R-S., and Wang, S-W. (2000). “Electrolytic recovery of binary metals and EDTA from strong complexed solution.” Water Research, 34, 3179–3185.
Kim, C. S. and Ong, S. K. (1999). “Recycling of lead-contaminated EDTA wastewater.” Journal of Hazardous Materials, 69, 273–286.
Kobya, M., Can, O. T., and Bayramoglu, M. (2003). “Treatment of textile wastewaters by electrocoagulation using iron and aluminium electrodes,” Journal of Hazardous Materials, 100, 163–178.
Kraft, A., Stadelmann, M., and Blaschke, M. (2003). “Anodic oxidation with doped diamond electrodes: a new advanced oxidation process.” Journal of Hazardous Materials, 103, 247–261.
Luo, C. L., Shen, Z. G, and Li, X. D. (2005). “Enhanced phytoextraction of Cu, Pb, Zn and Cd with EDTA and EDDS.” Chemosphere, 59, 1–11.
Martell, A. E., and Smith, R. M. (2003). NIST Critically Selected Stability Constants of Metal Complexes. Version 7.0. NIST, Gaithersburg.
Maximova, N., and Dahl, O. (2006). “Environmental implication of aggregation phenomena: current understanding.” Current Opinion in Colloid and Interface Science, 11, 246–266.
Mulligan, C. N., Yong, R. N., and Gibbs, B. F. (2001). “Remediation technologies for metal-contaminated soils and groundwater: an evaluation.” Engineering Geology, 60, 193–207.
Oliveira, R. T. S., Salazar-Banda, G. R., Santos, M. C., Calegaro, M. L., Miwa, D. W., Machado, S. A. S., and Avaca, L. A. (2007). “Electrochemical oxidation of benzene on boron-doped diamond electrodes.” Chemosphere, 66, 2152–2158.
Peters, R. W. (1999). “Chelant extraction of heavy metals from contaminated soils.” Journal of Hazardous Materials, 66, 151–210.
Pociecha, M., and Lestan, D. (2009). “EDTA leaching of Cu contaminated soil using electrochemical treatment of the washing solution.” Journal of Hazardous Materials, 165,533–539.
Pociecha, M., and Lestan, D. (2010). “Electrochemical EDTA recycling with sacrificial Al anode for remediation of Pb.” Environmental Pollution.
Pociecha, M., and Lestan, D. (2010). “Using electrocoagulation for metal and chelant separation from washing solution after EDTA leaching of Pb, Zn and Cd contaminated soil.” Journal of Hazardous Materials, 174, 670–678.
Polcaro, A. M., Vacca, A., Mascia, M., and Palmas, S. (2005). “Oxidation at boron doped diamond electrodes: an effective method to mineralise triazines.” Electrochimica Acta, 50, 1841–1847.
Pratap, K., and Lemley, A. Z. (1998). “Fenton electrochemical treatment of aqueous atrazine and metolachlor.” Journal of Agricultural and Food Chemistry, 46, 3285–3291.
Shu, H. Y., and Chang, M. C. (2005). “Pilot scale annular flow photoreactor by UC/H2O2 for the colorization of azo dye wastewater.” Journal of Hazardous Materials, 125, 244–251.
Tandy, S., Bossart, K., Mueller, R., Ritschel, J., Hauser, L., Schulin, R., and Nowack, B. (2004). “Extraction of heavy metals from soils using biodegradable chelating agents.” Environmental Science Technology, 38, 937–944.
Tejowulan, R. S., and Hendershot, W. H. (1998). “Removal of trace metals from contaminated soils using EDTA incorporating resin trapping techniques.” Environmental Pollution, 103, 135–142.
Tezcan Un, U., Ugur, S., Koparal, A. S., and Bakur Ogutveren, U. (2006). “Electrocoagulation of olive mill wastewaters.” Separation and Purification Technology, 52, 136–141.
Treacy, G. M., Rudd, A. L., and Breslin, C. B. (2000). “Electrochemical behavior of aluminium in the presence of EDTA-containing chloride solutions.” Journal of Applied Electrochemistry, 30, 675–683.
Troster, I., Schafer, I., and Fryda, M. (2002). “Recent development in production and application of DiaChem electrodes for wastewater treatment.” New Diamond and Frontier Carbon Technology, 12, 89–97.
Vanthuyne, M., and Maes, A. (2002). “The removal of heavy metals from contaminated soil by a combination of sulfidisation and flotation.” Science of the Total Environment, 290, 69–80.
Vasudevan, S., Lakshmi, J., Jayaraj, J., and Sozhan, G. (2009). “Remediation of phosphate contaminated water by electrocoagulation with aluminium alloy and mild steel anodes.” Journal of Hazardous Materials, 164, 1480–1486.
Voglar, D., and Lestan, D. (2010). “Electrochemical separation and reuse of EDTA after extraction of Cu contaminated soil.” Journal of Hazardous Materials, 180, 152–157.
Xu, Y., and Zhao, D. (2005). “Removal of copper from contaminated soil by use of poly (amidoamine) dendrimers.” Environmental Science Technology, 39, 2369–2375.
Yamaguchi, Y., Yamanaka, Y., Miyamoto, M., Fujishima, A., and Honda, K. (2006). “Hybrid electrochemical treatment for persistent metal complexes at conductive diamond electrodes and clarification of its reaction route.” Journal of the Electrochemical Society, 153, 1123–1132.
Zaied, M., and Bellakhal, N. (2009). “Electrocoagulation treatment of black liquor from paper industry.” Journal of Hazardous Materials, 163, 995–1000.

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Chelating Agents for Land Decontamination Technologies
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