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Articles

Sequential extraction of copper, nickel, zinc, lead and cadmium from Brazilian Oxysols: metal leaching and metal distribution in soil fractions

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References

  • Alloway, B.J., 1995, Heavy Metals in Soils (London: Chapman & Hill).10.1007/978-94-011-1344-1
  • Jalali, M. and Arfania, H., 2011, Distribution and fractionation of cadmium, copper, lead, nickel, and zinc in a calcareous sandy soil receiving municipal solid waste. Environmental Monitoring and Assessment, 173, 241–250.10.1007/s10661-010-1384-9
  • Kalbitz, K. and Wennrich, R., 1998, Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter. Science of the Total Environment, 209, 27–39.10.1016/S0048-9697(97)00302-1
  • Wong, J.W.C., Li, K.L., Zhou, L.X. and Selvam, A., 2007, The sorption of Cd and Zn by different soils in the presence of dissolved organic matter from sludge. Geoderma, 137, 310–317.10.1016/j.geoderma.2006.08.026
  • Gomes, J.P.P. and Pinto, C.G., 2006, Leaching of heavy metals from steelmaking slags. Revista de Metalutgia, 42, 409–416.
  • Awokunmi, E.E., Asaolu, S.S. and Ipinmoroti, K.O., 2010, Effect of leaching on heavy metals concentration of soil in some dumpsites. African Journal of Environmental Science & Technology, 4, 495–499.
  • SadovniKova, L.K. and Zyrin, N.G., 1986, Indices of soil pollution by heavy metals used for soil monitoring. Soviet Soil Science, 17, 58–63.
  • Cheng, Z., Lee, L., Dayan, S., Grinshtein, M. and Shaw, R., 2011, Speciation of heavy metals in garden soils: Evidences from selective and sequential chemical leaching. Journal of Soils and Sediments, 11, 628–638.10.1007/s11368-011-0351-6
  • US Soil Survey Staff, 1992, Keys to Soil Taxonomy, 5th ed., SMSS Technical Monograph No. 10 (Blacksburg, VA: Pocahontas Press).
  • Naidu, R., Sumner, M.E. and Harter, R.D., 1998, Sorption of heavy metals in strongly weathered soils: An overview. Environmental Geochemistry and Health, 20, 5–9.10.1023/A:1006519009465
  • Fontes, M.P.F. and Weed, S.B., 1991, Iron oxides in Selected Brazilian Oxisols: I. Mineralogy. Soil Science Society of America Journal, 55, 1143–1149.10.2136/sssaj1991.03615995005500040040x
  • Fontes, M.P.F. and Weed, S.B., 1996, Phosphate adsorption by clays from Brazilian Oxisols: Relationships with specific surface area and mineralogy. Geoderma, 72, 37–51.10.1016/0016-7061(96)00010-9
  • Kuo, S., Jellum, E.J. and Baker, A.S., 1985, Effects of soil type, liming and sludge application on zinc and cadmium availability to Swiss chars. Soil Science, 139, 122–130.10.1097/00010694-198502000-00005
  • Slavek, J. and Pickering, W.F., 1988, Metal ion interaction with hydrous oxides of aluminum. Water, Air, and Soil Pollution, 39, 201–216.10.1007/BF00250959
  • Schwertmann, U. and Taylor, R.M., 1989, Iron oxides. In: J.B. Dixon and S.B. Weed (Eds.) Minerals in Soil Environment (Madison, WI: Soil Science Society of America), pp. 379–238.
  • Mzaky, J.J. and Calvet, R., 1990, Adsorption behavior of copper and zinc in soils: Influence of pH on adsorption characteristics. Soil Science, 150, 513–522.10.1097/00010694-199008000-00004
  • Spark, K.M., Wells, J.D. and Johnson, B.B., 1995, Characterizing trace metal adsorption on kaolinite. European Journal of Soil Science, 46, 633–640.10.1111/ejs.1995.46.issue-4
  • Ellis, B.G. and Knezek, B.D., 1997, Adsorption reactions of micronutrients in soils. In: R.C. Dinauer (Ed.) Micronutrients in Agriculture (Madison, WI: SSSA), pp. 59–78.
  • EMBRAPA (Empresa Brasileira de Pesquisa Agropecuária), 1979, Manual de Métodos de Análise de Solos [Manual of methods of analysis of soils] (Rio de Janeiro: Serviço Nacional de Levantamento e Conservação de Solos).
  • Vettori, L., 1969, Métodos de Análise do Solo [Methods of soil analysis]. Boletim Técnico, número 7 (Brasília: Ministério da Agricultura).
  • Gaudette, H.E., Flight, W.R., Toner, L. and Folger, D.W., 1974, An inexpensive titration method for the determination of organic carbon in recent sediments. Journal of Sedimentary Research, 44, 249–253.
  • Harada, Y. and Inoko, A., 1980, Relationship between cation-exchange capacity and the degree of maturity of city refuse composts. Soil Science and Plant Nutrition, 26, 353–362.10.1080/00380768.1980.10431220
  • CONAMA (Conselho Nacional do Meio Ambiente), 2009, Resolução nº 420 [Rule of Law No. 420] (Brasília: Ministério do Meio Ambiente).
  • Egreja Filho, F.B., 2000, Extração seqüencial de metais pesados em solos altamente intemperizados: utilização de componentes-modelo e planejamentos com misturas ternárias na otimização do modelo [Sequential extraction of heavy metals in highly weathering soils: Component-model use and planning with ternary mixtures in the optimization of the model], D.Sc. Dissertation (Minas Gerais: Universidade Federal de Viçosa).
  • Dijkstra, J.J., Meeussen, J.C.L. and Comans, R.N.J., 2004, Leaching of heavy metals from contaminated soils: An experimental and modeling study. Environmental Science and Technology, 38, 4390–4395.10.1021/es049885v
  • MacBride, M.B., 1994, Environmental Chemistry of Soils (New York: Oxford Univ. Press).
  • Pérez-Novo, C., Pateiro-Moure, M., Osorio, F., Nóvoa-Muñoz, J.C., López-Periago, E. and Arias-Estévez, M., 2008, Influence of organic matter removal on competitive and noncompetitive adsorption of copper and zinc in acid soils. Journal of Colloid and Interface Science, 322, 33–40.10.1016/j.jcis.2008.03.002
  • Elliott, H.A., Liberati, M.R. and Huang, C.P., 1986, Competitive adsorption of heavy metals by soils. Journal of Environmental Quality, 15, 214–217.10.2134/jeq1986.00472425001500030002x
  • McLaren, R.G., Williams, J.G. and Swift, R.S., 1983, The adsorption of copper by soil samples from Scotland at low equilibrium solution concentrations. Geoderma, 31, 97–106.10.1016/0016-7061(83)90001-0
  • McBride, M.B., 1989, Reactions controlling heavy metal solubility in soil. Advances in Soil Science, 10, 1–56.10.1007/978-1-4613-8847-0
  • Jordão, C.P. and Nickless, G., 1989, Chemical associations of Zn, Cd, Pb and Cu in soil and sediments determined by the sequential extraction technique. Environmental and Technology Letters, 10, 743–752.10.1080/09593338909384793
  • Kowalkowski, T., Tutu, H., Cozmuta, L.M., Sprynskyy, M., Cukrowska, E.M. and Buszewski, B., 2010, Assessment of mobility of heavy metals in two soil types by use of column leaching experiments and chemometric evaluation of elution curves. International Journal of Environmental Analytical Chemistry, 90, 797–811.10.1080/03067310903195003
  • Bradl, H.B., 2004, Adsorption of heavy metal ions on soils and soils constituents. Journal of Colloid and Interface Science, 277, 1–18.10.1016/j.jcis.2004.04.005
  • Covelo, E.F., Vega, F.A. and Andrade, M.L., 2007, Competitive sorption and desorption of heavy metal ions by individual soil components. Journal of Hazardous Materials, 140, 308–315.10.1016/j.jhazmat.2006.09.018
  • McGrath, S.P., Sanders, J.R. and Shalaby, M.H., 1988, The effects of soil organic matter levels on soil solution concentrations and extractabilities of manganese, zinc and copper. Geoderma, 42, 177–188.10.1016/0016-7061(88)90033-X
  • Harrison, R.M., Laxen, D.P.H. and Wilson, S.J., 1981, Chemical associations of lead, cadmium, copper, and zinc in street dusts and roadside soils. Environmental Science and Technology, 15, 1378–1383.10.1021/es00093a013
  • McLaren, R.G. and Crawford, D.V., 1973, Studies on soil copper. Journal of Soil Science, 24, 172–181.10.1111/ejs.1973.24.issue-2
  • Tessier, A., Campbell, P.G.C. and Bisson, M., 1979, Sequential extraction procedure for the speciation of trace metals. Analytical Chemistry, 51, 844–851.10.1021/ac50043a017
  • Bradl, H.B., 2004, Adsorption of heavy metal ions on soils and soils constituents. Journal of Colloid and Interface Science, 277, 1–18.10.1016/j.jcis.2004.04.005
  • McGrath, S.P. and Smith, S., 1990, Chromium and nickel. In: B.J. Alloway (Ed.) Heavy Metals in Soils (New York: John Wiley & Sons), pp. 125–150.
  • Kalbitz, K. and Wennrich, R., 1998, Mobilization of heavy metals and arsenic in polluted wetland soils and its dependence on dissolved organic matter. Science of the Total Environment, 209, 27–39.10.1016/S0048-9697(97)00302-1
  • Neal, N.H. and Sposito, G., 1986, Effects of soluble organic matter and sewage sludge amendments on cadmium sorption by soils at low cadmium concentrations. Soil Science, 142, 164–172.10.1097/00010694-198609000-00006
  • Pinheiro, J.P., Mota, A.M. and Benedetti, M.F., 1999, Lead and calcium binding to fulvic acids: Salt effect and competition. Environmental Science and Technology, 33, 3398–3404.10.1021/es990210f
  • Peryea, F.J., 1999, Gardening on Lead-and Arsenic-contaminated Soils (Washington: Cooperative Extension, College of Agriculture and Home Economics, Washington State University).
  • Strawn, D.G., Scheidegger, A.M. and Sparks, D.L., 1998, Kinetics and mechanisms of Pb(II) sorption and desorption at the aluminum oxide-water interface. Environmental Science and Technology, 32, 2596–2601.10.1021/es980152i

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