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Original Articles

Optimization of PAHs Oxidation from a Concentrate of Soil Attrition Using Potassium Permanganate

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References

  • Abe, Y., Umemura, T., and Tsunoda, K. I. 2001. Decomposition of phenolic endocrine disrupting chemicals by potassium permanganate. Nippon Kagaku Kaishi. 2001(4), 239–242.
  • Aleboyeh, A., Olya, M. E., and Aleboyeh, H. 2009. Oxidative treatment of azo dyes in aqueous solution by potassium permanganate. J. Hazard. Mater. 162(2), 1530–1535
  • Biache, C., Lorgeoux, C., Andriatsihoarana, S., Colombano, S., and Faure, P. 2015. Effect of pre-heating on the chemical oxidation efficiency: Implications for the PAH availability measurement in contaminated soils. J. Hazard. Mater. 286, 55–63.
  • Bisone, S., Mercier, G., and Blais, J. F. 2013. Decontamination of metals and polycyclic aromatic hydrocarbons from slag-polluted soil. Environ. Technol. 34(18), 2633–2648.
  • Brown, G. S., Barton, L. L., and Thomson, B. M. 2003. Permanganate oxidation of sorbed polycyclic aromatic hydrocarbons. Waste Management. 23(8), 737–740.
  • Chen, W., Hou, L., Luo, X., and Zhu, L. 2009. Effects of chemical oxidation on sorption and desorption of PAHs in typical Chinese soils. Environ. Pollut. 157(6), 1894–1903.
  • Coudert, L., Blais, J. F., Mercier, G., Cooper, P., Morris, P., Gastonguay, L., Janin, A., and Zaviska, F. 2012. Optimization of copper removal from ACQ-, CA-, and MCQ-treated wood using an experimental design methodology. J. Environ. Eng. 139(4), 576–587.
  • Dash, S., Patel, S., and Mishra, B. K. 2009. Oxidation by permanganate: Synthetic and mechanistic aspects. Tetrahedron. 65(4), 707–739.
  • Dong, C. H., Xie, X. Q., Wang, X. L., Zhan, Y., and Yao, Y. J. 2009. Application of Box-Behnken design in optimisation for polysaccharides extraction from cultured mycelium of Cordyceps sinensis. Food Bioprod. Process. 87(2), 139–144.
  • De Souza e Silva, P. T., Da Silva, V. L., de Barros Neto, B., and Simonnot, M. O. 2009. Potassium permanganate oxidation of phenanthrene and pyrene in contaminated soils. J. Hazard. Mater. 168(2), 1269–1273.
  • Ferrarese, E., Andreottola, G., and Oprea, I. A. 2008. Remediation of PAH-contaminated sediments by chemical oxidation. J. Hazard. Mater. 152(1), 128–139.
  • Flotron, V., Delteil, C., Padellec, Y., and Camel, V. 2005. Removal of sorbed polycyclic aromatic hydrocarbons from soil, sludge and sediment samples using the Fenton's reagent process. Chemosphere. 59(10), 1427–1437.
  • Forsey, S. P., Thomson, N. R., and Barker, J. F. 2010. Oxidation kinetics of polycyclic aromatic hydrocarbons by permanganate. Chemosphere. 79(6), 628–636.
  • Gan, S., Lau, E. V., and Ng, H. K. 2009. Remediation of soils contaminated with polycyclic aromatic hydrocarbons (PAHs). J. Hazard. Mater. 172(2), 532–549.
  • Joglekar, A. M. and May, A. T. 1987. Product excellence through design of experiments. Cereal Foods World. 32(12), 857–861.
  • Kao, C. M., Huang, K. D., Wang, J. Y., Chen, T. Y., and Chien, H. Y. 2008. Application of potassium permanganate as an oxidant for in situ oxidation of trichloroethylene-contaminated groundwater: A laboratory and kinetics study. J. Hazard. Mater. 153(3), 919–927.
  • Körbahti, B. K., Aktaş, N., and Tanyolaç, A. 2007. Optimization of electrochemical treatment of industrial paint wastewater with response surface methodology. J. Hazard. Mater. 148(1), 83–90.
  • Kumar, A., Prasad, B., and Mishra, I. M. 2008. Optimization of process parameters for acrylonitrile removal by a low-cost adsorbent using Box–Behnken design. J Hazard. Mater. 150(1), 174–182.
  • Lee, B. D. and Hosomi, M. 2001. A hybrid Fenton oxidation–microbial treatment for soil highly contaminated with benz (a) anthracene. Chemosphere. 43(8), 1127–1132.
  • Lemaire, J., Bues, M., Kabeche, T., Hanna, K., and Simonnot, M. O. 2013a. Oxidant selection to treat an aged PAH contaminated soil by in situ chemical oxidation. J. Environ. Chem. Eng. 1(4), 1261–1268.
  • Lemaire, J., Laurent, F., Leyval, C., Schwartz, C., Buès, M., and Simonnot, M. O. 2013b. PAH oxidation in aged and spiked soils investigated by column experiments. Chemosphere. 91(3), 406–414.
  • Li, M., Feng, C., Zhang, Z., Chen, R., Xue, Q., Gao, C., and Sugiura, N. 2010. Optimization of process parameters for electrochemical nitrate removal using Box–Behnken design. Electrochim. Acta 56(1), 265–270.
  • Lundstedt, S., Persson, Y., and Öberg, L. 2006. Transformation of PAHs during ethanol-Fenton treatment of an aged gasworks' soil. Chemosphere 65(8), 1288–1294.
  • Mocellin, J., Mercier, G., Morel, J. L., Blais, J. F., and Simonnot, M.O. 2016. Factors influencing the Zn and Mn extraction from pyrometallurgical sludge in the steel manufacturing industry. J. Environ. Manag. 15, 48–54.
  • Mouton, J., Mercier, G., and Blais, J. F. 2010. Laboratory-scale flotation process for treatment of soils contaminated with both PAH and lead. J. Environ. Eng. 136(10), 1063–1074.
  • Mulligan, C. N., Yong, R. N., and Gibbs, B. F. 2001. Surfactant-enhanced remediation of contaminated soil: A review. Eng. Geo. 60(1), 371–380.
  • Nielsen, G. 2011. Traitement physique de sols contaminés par des HAP et retraitement des concentrés de HAP pour valoriser les sols, M.Sc. Thesis, Université du Québec, Institut national de la recherche scientifique, Quebec (Quebec), Canada, p. 144.
  • O'Mahony, M. M., Dobson, A. D., Barnes, J. D., and Singleton, I. 2006. The use of ozone in the remediation of polycyclic aromatic hydrocarbon contaminated soil. Chemosphere 63(2), 307–314.
  • Petavy, F., Ruban, V., and Conil, P. 2009. Treatment of stormwater sediments: Efficiency of an attrition scrubber-laboratory and pilot-scale studies. Chem. Eng. J. 145(3), 475–482.
  • Ranc, B., Faure, P., Croze, V., and Simonnot, M. O., 2016. Selection of oxidant doses for in situ chemical oxidation of soils contaminated by polycyclic aromatic hydrocarbons (PAHs): A review. J. Hazard. Mater. 312, 280–297.
  • Sakkas, V. A., Islam, M. A., Stalikas, C., and Albanis, T. A. 2010. Review – Photocalytic degradation using design of experiments: A review and exemple of the Congo red degradation. J. Hazard. Mater. 175, 33–44.
  • Simonnot, M. O. and Croze, V. 2012. Traitement des sols et nappes par oxydation chimique in situ. Techniques de l'ingénieur, report n° J3 983, Paris, France, p. 14.
  • Stražišar, J. and Sešelj, A. 1999. Attrition as a process of comminution and separation. Powder Technol. 105(1), 205–209.
  • Taillard, V. 2010. Démonstration à l'échelle pilote d'un procédé d'extraction simultanée des HAP et du plomb, M.Sc. report, Université du Québec, Institut national de la recherche scientifique, Quebec (Quebec), Canada, p. 306.
  • USEPA. 2008. Polycyclic Aromatic Hydrocarbons (PAHs). United States Environmental Protection Agency, 2008, Available at: https://archive.epa.gov/epawaste/hazard/wastemin/web/pdf/pahs.pdf (accessed on 03.05.2016).
  • Usman, M., Faure, P., Ruby, C., and Hanna, K. 2012. Application of magnetite-activated persulfate oxidation for the degradation of PAHs in contaminated soils. Chemosphere. 87(3), 234–240.
  • Wang, W., Liu, G., Shen, J., Chang, H., Li, R., Du, J., Yang, Z., and Xu, Q. 2015. Reducing polycyclic aromatic hydrocarbons content in coal tar pitch by potassium permanganate oxidation and solvent extraction. J. Environ Chem Eng. 3(3), 1513–1521.
  • Wild, S. R. and Jones, K. C. 1995. Polynuclear aromatic hydrocarbons in the United Kingdom environment: A preliminary source inventory and budget. Environ Pollut. 88(1), 91–108.
  • Xu, X. R., Li, H. B., Wang, W. H., and Gu, J. D. 2005. Decolorization of dyes and textile wastewater by potassium permanganate. Chemsphere. 59(6), 893–898.
  • Yetilmezsoy, K., Demirel, S., and Vanderbei, R. J. 2009. Response surface modeling of Pb (II) removal from aqueous solution by Pistacia vera L.: Box–Behnken experimental design. J. Hazard. Mater. 171(1), 551–562.
  • Zaviska, F., Drogui, P., Blais, J. F., Mercier, G., and Lafrance, P. 2011. Experimental design methodology applied to electrochemical oxidation of the herbicide atrazine using Ti/IrO2 and Ti/SnO2 circular anode electrodes. J. Hazard. Mater. 185(2), 1499–1507.

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