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Tese <strong>de</strong> DoutoradoCapítulo VIIICETESB (2001). http://www.cetesb.sp.gov.br/Solo/areas_contaminadas/manual.asp(acessado em Agosto <strong>de</strong> 2008).CETESB (2005). http://www.cetesb.sp.gov.br/Solo/relatorios/tabela_valores_2005.pdf(acessado em Agosto <strong>de</strong> 2008)CETESB (2007). http://www.cetesb.sp.gov.br/Solo/areas_contaminadas/texto_ áreas_cont_nov_07.pdf. (acessado em Agosto <strong>de</strong> 2008).Chakraborty, R., Das, A.K., Cervera, M.L. (1996). Literature study of microwave-assisteddigestion using electrothermal atomic absorption spectrometry. Fresenius Journalof Analytical Chemistry, 355(2), 99-111.CONAMA (2008). http://www.<strong>com</strong>itepardo.<strong>com</strong>.br/legislacao/res39608.pdf (acessadoem Agosto <strong>de</strong> 2008).Davis, A., & Olsen, R.L. (1995). The geochemistry of chromium migration andremediation in the subsurface. Ground water, 33(5), 759-768.De Young, J.H., Lee, M.P., Lipin, B.R. (1984). International strategic minerals inventorysummary report – chromium. U.S.Geological Survey Circurlar 930-B, U.S.Department of the Interior, Washington, DC, 41 pp.Domenico, P.A., & Schwartz, F.W. (1998). Physical and chemical hydrogeology. 2 a ed.New York: Wiley. Cap. 10. pp.215-237Eary, L.E., & Rai, D. (1987). Kinetics of chromium(III) oxidation to chromium(VI) byreaction with manganese dioxi<strong>de</strong>. Environmental Science & Technology, 21(12),1187-1193.Eary, L.E., & Rai, D. (1988). Chromate removal from aqueous waste by reduction withferrous iron. Environmental Science & Technology, 22(7), 972-977.Eckert, J.M., Stewart, J.J., Waite, T.D., Szymczak, R. Williams, K.L. (1990). Reductionof chromium(VI) at sub-µg L -1 levels by fulvic acid. Analytica Chimica Acta, 236(1),357-362.Evanko, C.R., & Dzombak, D.A. (1997). Remediation of metals-contaminatedgroundwater. Groundwater contamination technologies analysis center.Technology evaluation report TE-97-01.Fendorf, S., Wielinga, B.W., Hansel, C.M. (2000). Chromium transformation in naturalenvironments: the role of biological and abiological process in chromium(VI)reduction. International Geology Review, 42(3), 691-701.Fendorf, S.E., & Zasoski, R.J. (1992). Chromium(III) oxidation by δ-MnO 2 , 1.Characterization. Environmental Science & Technology, 26(1), 79-85.Florian, D., Barnes, R.M., Knapp, G. (1998). Comparison of microwave-assisted acidleaching techniques for the <strong>de</strong>termination of heavy metals in sediments, soils, andsludges. Fresenius Journal of Analytical Chemistry, 363(5-6), 558-565.Förstner, U. (1989). Contaminated sediments. Em: Bhattacharji, S., Fridman, G. M.,Neugebauer, H.J. Lecture notes in earth sciences. Springer-Verlag: Berlin. Vol. 21,pp.1-157.- 152 -

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