233
Views
6
CrossRef citations to date
0
Altmetric
Articles

Copper and lead adsorption as influenced by organic matter in soils from a tropical toposequence with different chemical and mineralogical attributes

ORCID Icon, ORCID Icon & ORCID Icon
Pages 334-344 | Received 19 Feb 2018, Accepted 16 Jul 2018, Published online: 13 Aug 2018

References

  • Antoniadis V, Golia EE. 2015. Sorption of Cu and Zn in low organic matter-soils as influenced by soil properties and by the degree of soil weathering. Chemosphere. 138:364–369.
  • Bell LC, Gillman GP. 1978. Surface changes characteristics and soil solution composition of highly weathered soils. In: Andrew CS, Kamprath EJ, editors. Mineral nutrition of legumes in tropical and subtropical soils: proceedings of a workshop. Brisbane: CSIRO; p. 37–57.
  • Böttcher J. 1997. Use of scaling to quantify variability of heavy metal sorption isotherms. Eur J Soil Sci. 48:379–386.
  • Bradl HB. 2004. Adsorption of heavy metal ions on soils and soils constituents. J Colloid Interface Sci. 277:1–18.
  • Busato JG, Leão TP, Baldotto MA, Canellas LP. 2012. Organic matter quality and dynamics in tropical soils amended with sugar industry residue. Rev Bras Cienc Solo. 36:1179–1188.
  • Costa CDN, Meurer EJ, Bissani CA, Tedesco MJ. 2007. Sequential fractionation of cadmium and lead in soils. Cienc Rural. 37:1323–1328. Portuguese.
  • Dobbss LB, Canellas LP, Alleoni LRF, De Rezende CE, Fontes MPF, Velloso ACX. 2008. Eletrochemistry of Brazilian oxisols after removal of soluble organic matter. Rev Bras Cienc Solo. 32:985–996. Portuguese.
  • Donagema GK, De Campos DVB, Calderano SB, Teixeira WG, Viana JHM. 2011. Manual de métodos de análise de solo [Manual of soil analysis methods]. 2nd ed. Rio de Janeiro: Emprapa Solos.
  • dos Santos HG, Almeida JA, de Oliveira JB, Lumbreras JF, dos Anjos LHC, Coelho MR, Jacomine PKT, Cunha TJF, Oliveira VÁ. 2013. Sistema brasileiro de classificação de solos [Brazilian system of soil classification]. 3rd ed. Brasília: Embrapa. Portuguese.
  • Eusterhues K, Rumpel C, Kleber M, Kögel-Knabner I. 2003. Stabilisation of soil organic matter by interactions with minerals as revealed by mineral dissolution and oxidative degradation. Org Geochem. 34:1591–1600.
  • Fan TT, Wang YJ, Li CB, He JZ, Gao J, Zhou DM, Friedman SP, Sparks DL. 2016. Effect of organic matter on sorption of Zn on soil: elucidation by Wien Effect measurements and EXAFS spectroscopy. Environ Sci Technol. 50:2931–2937.
  • Fawzy MA. 2016. Phycoremediation and adsorption isotherms of cadmium and copper ions by Merismopedia tenuissima and their effect on growth and metabolism. Environ Toxicol Pharmacol. 46:116–121.
  • Costa ACS da. Ferreira JC, Seidel EP, Tormena CA, Pintro JC. 2004. Nitrogen losses by ammonia volatilization of three clayey soils treated with urea. Acta Sci Agron. 26:467–473. Portuguese.
  • Ferreira JM, Da Silva FLH, Alsina OLS, Oliveira LDSC, Cavalcanti EB, Gomes WC. 2007. Equilibrium and kinetic study of Pb2+ biosorption by Saccharomyces cerevisiae. Quim Nova. 30:1188–1193. Portuguese.
  • Foo KY, Hameed BH. 2010. Insights into the modeling of adsorption isotherm systems. Chem Eng J. 156:2–10.
  • Gustafsson JP, Pechová P, Berggren D. 2003. Modeling metal binding to soils: the role of natural organic matter. Environ Sci Technol. 37:2767–2774.
  • Kaiser K, Guggenberger G. 2003. Mineral surfaces and soil organic matter. Eur J Soil Sci. 54:219–236.
  • Kleber M, Eusterhues K, Keiluweit M, Mikutta C, Mikutta R, Nico PS. 2015. Mineral–organic associations: formation, properties, and relevance in soil environments. Adv Agron. 130:1–140.
  • Leifeld J, Kögel-Knabner I. 2001. Organic carbon and nitrogen in fine soil fractions after treatment with hydrogen peroxide. Soil Biol Biochem. 33:2155–2158.
  • Limousin G, Gaudet J-P, Charlet L, Szenknect S, Barthès V, Krimissa M. 2007. Sorption isotherms: A review on physical bases, modeling and measurement. Appl Geochemistry. 22:249–275.
  • Machado VJ, de Souza CHE. 2012. Phosphorus availability in soils with different textures after application of growing doses of slow release monoammonium phosphate. Biosci J. 28:1–7. Portuguese.
  • Mayer LM, Xing B. 2001. Organic matter–surface area relationships in acid soils. Soil Sci Soc Am J. 65:250–258.
  • Mikutta R, Kleber M, Kaiser K, Jahn R. 2005. Review: organic matter removal from soils using hydrogen peroxide, sodium hypochlorite, and disodium peroxodisulfate. Soil Sci Soc Am J. 69:120–135.
  • Oades JM, Gillman GP, Uehara G, Hue NV, Van Noordwijk M, Robertson GP, Wada K. 1989. Interactions of soil organic matter and variable-charge clays. In: Coleman DC, Oades JM, Uehara G, editors. Dyanmics of soil organic matter in tropical ecosystems. Honolulu: University of Hawaii Press; p. 69–95.
  • Okoro HK, Fatoki OS, Adekola FA, Ximba BJ, Snyman RG. 2012. A review of sequential extraction procedures for heavy metals speciation in soil and sediments. Open Access Sci Rep. 1:1–9.
  • Pérez-Novo C, Pateiro-Moure M, Osorio F, Nóvoa-Muñoz JC, López-Periago E, Arias-Estévez M. 2008. Influence of organic matter removal on competitive and noncompetitive adsorption of copper and zinc in acid soils. J Colloid Interface Sci. 322:33–40.
  • Pierangeli MAP, Guilherme LRG, Curi N, Costa ETS, Lima JM, Marques JJGSM, Figueiredo LFP. 2007. Individual and competitive sorption of heavymetals in oxisols with contrasting mineralogy. Rev Bras Cienc Solo. 31:819–826. Portuguese.
  • Sarwar N, Imran M, Shaheen MR, Ishaq W, Kamran A, Matloob A, Rehim A, Hussain S. 2016. Phytoremediation strategies for soils contaminated with heavy metals: modifications and future perspectives. Chemosphere. 171:710–721.
  • Sauvé S, Hendershot W, Allen HE. 2000. Solid-solution partitioning of metals in contaminated soils: dependence on pH, total metal burden, and organic matter. Environ Sci Technol. 34:1125–1131.
  • Sequi P, Aringhieri R. 1977. Destruction of organic matter by hydrogen peroxide in the presence of pyrophosphate and its effect on soil specific surface area. Soil Sci Soc Am J. 41:340–342.
  • Skoog DA, West DM, Holler FJ, Crouch SR. 2013. Fundamentals of analytical chemistry. 9th ed ed. Belmont: Brooks/Cole.
  • Smilek J, Sedláček P, Kalina M, Klučáková M. 2015. On the role of humic acids’ carboxyl groups in the binding of charged organic compounds. Chemosphere. 138:503–510.
  • Sodré FF, da Costa ACS, Lenzi E. 1999. Copper adsorption by tropical soils with different soil mineralogies. Acta Sci Agron. 21:483–489. Portuguese.
  • Sodré FF, Lenzi E, da Costa ACS. 2001. Applicability of adsorption models to the study of copper behaviour in clayey soils. Quim Nova. 24:324–330. Portuguese.
  • Sposito G. 1980. Derivation of the Freundlich equation for ion exchange reactions in soils. Soil Sci Soc Am J. 44:652–654.
  • Sposito G. 2016. The chemistry of soils. 3rd ed ed. New York: Oxford University Press.
  • Stevenson FJ. 1994. Humus chemistry: genesis, composition, reactions. 2nd ed. New York (NY): John Wiley & Sons.
  • Tagliaferro GV, Pereira PHF, Rodrigues LÁ, da Silva MLCP. 2011. Cadmium, lead and silver adsorption in hydrous niobium oxide prepared by homogeneous solution method. Quim Nova. 34:101–105. Portuguese.
  • Tan IAW, Hameed BH, Ahmad AL. 2007. Equilibrium and kinetic studies on basic dye adsorption by oil palm fibre activated carbon. Chem Eng J. 127:111–119.
  • Theng BKG, Ristori GG, Santi CA, Percival HJ. 1999. An improved method for determining the specific surface areas of topsoils with varied organic matter content, texture and clay mineral composition. Eur J Soil Sci. 50:309–316.
  • Üçgül E, Girgin I. 2002. Chemical exfolition characteristics of Karakoc phlogopite in hydrogen peroxide solution. Turkish J Chem. 26:431–439.
  • Van Olphen H. 1977. An Introduction to clay colloid chemistry. 2nd ed. New York (NY): John Wiley & Sons.
  • Vijayaraghavan K, Padmesh TVN, Palanivelu K, Velan M. 2006. Biosorption of nickel (II) ions onto Sargassum wightii : application of two-parameter and three-parameter isotherm models. J Hazard Mater. 133:304–308.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.