82
Views
3
CrossRef citations to date
0
Altmetric
ARTICLES

Adsorption and pre-concentration of Co(II) from aqueous solution using a heteropoly acid prepared sorbent

, &
Pages 166-175 | Received 18 Sep 2017, Accepted 29 Aug 2018, Published online: 10 Feb 2019

References

  • Abdel Moamen, O. A., H. S. Hassan, and E. A. El-Sherif. 2017. Binary oxide composite adsorbent for copper, nickel and zinc cations removal from aqueous solutions, desalin. Desalination and Water Treatment 82:219–33. doi:10.5004/dwt.2017.21015.
  • Abdel Moamen, O. A., H. A. Ibrahim, N. Abdelmonem, and I. M. Ismail. 2016. Thermodynamic analysis for the sorptive removal of cesium and strontium ions onto synthesized magnetic nano zeolite. Microporous Mesoporous Materials 223:187–95. doi:10.1016/j.micromeso.2015.11.009.
  • Babel, S., and T. Krniavan. 2003. Low-cost adsorbents for heavy metals uptake from contaminated water: A review. Journal of Hazardous Materials. 97 (1–3):219–43. doi: 10.1016/S0304-3894(02)00263-7.
  • Baun, D., and T. Christensen. 2004. Speciation of heavy metals in landfill leachate: A review. Waste Management and Research 22 (1):3–23. doi:10.1177/0734242X04042146.
  • Boulinguiez, B.,. P. Cloirec, and D. Wolbert. 2008. Revisiting the determination of Langmuir parameters application to tetrahydrothiophene adsorption onto activated carbon, Langmuir. Langmuir 24 (13):6420–4. doi:10.1021/la800725s.
  • Briand, L. E., G. T. Baronetti, and H. J. Thomas. 2003. The state of the art on wells–dawson heteropoly-compounds. Applied Catalysis A: General 256 (1–2):37–50. doi:10.1016/S0926-860X(03)00387-9.
  • Cavani, F., F. Trifiro, and A. Vaccari. 1991. Hydrotalcite-type anionic clays: Preparation, properties and applications. Catalysis Today 11 (2):173. doi:10.1016/0920-5861(91)80068-K.
  • Choppin, G. R., and A. Morgenstern. 2000. Thermodynamics of solvent extraction. Solvent Extraction and Ion Exchange 18 (6):1029. doi: 10.1080/07366290008934721.
  • Choudary, B. M., M. Lakshmi Kantam, V. Neeraja, K. Koteswara Rao, F. Figueras, and L. Delmotte. 2001. Layered double hydroxide fluoride: a novel solid base catalyst for C–C bond formation. Green Chemistry 3 (5):257–60. doi:10.1039/B107124F.
  • da Silva, R. B., A. F. Lima Neto, L. S. Soares dos Santos, J. R. de Oliveira Lima, M. H. Chaves, J. R. dos Santos, G. M. de Lima, E. M. de Moura, and C. V. R. de Moura. 2008. Catalysts of Cu(II) and Co(II) ions adsorbed in chitosan used in transesterification of soy bean and babassu oils – a new route for biodiesel syntheses. Bioresource Technology 99 (15):6793–8. doi:10.1016/j.biortech.2008.01.047.
  • Fan, H.-T., D.-P. Sui, L.-X. Zhao, Z.-Y. Ren, Z.-Y. Yuan, Q. Zhou, and T. Sun. 2011. Preparation of Cobalt (II) ion imprinted silica gel sorbents by surface imprinting technique and its adsorption properties. Chemical Journal of Chinese Universities 32 (12):2902–7.
  • Fonseca, B., H. Maio, C. Quintelas, A. Teixeira, and T. Tavares. 2009. Retention of Cr(VI) and Pb(II) on a loamy sand soil. Journal of Chemical Engineering 152 (1):212–19. doi:10.1016/j.cej.2009.04.045.
  • Freundlich, H. M. F. 1906. Über die adsorption in lösungen. Zeitschrift für Physikalische Chemie-Leipzig 57:385–470.
  • Gupta, N., A. K. Kushwaha, and M. C. Chattopadhyaya. 2012. Adsorption studies of cationic dyes onto Ashoka (Saraca asoca) leaf powder. Journal of the Taiwan Institute of Chemical Engineers 43 (4):604–13. doi:10.1016/j.jtice.2012.01.008.
  • Hayashi, H., and J. B. Moffat. 1982. The properties of heteropoly acids and the conversion of methanol to hydrocarbons. Journal of Catalysis 77 (2):473–84. doi:10.1016/0021-9517(82)90187-7.
  • He, M., Y. Zhu, Y. Yang, B. Han, and Y. Zhang. 2011. Adsorption of cobalt(II) ions from aqueous solutions by palygorskite. Applied Clay Science 54 (3–4):292–6. doi:10.1016/j.clay.2011.09.013.
  • Khademzadeh Moghaddam, H., and M. Pakizeh. 2015. Experimental study on mercury ions removal from aqueous solution by MnO2/CNTs nanocomposite adsorbent. Journal of Industrial and Engineering Chemistry 21:221–9. doi:10.1016/j.jiec.2014.02.028.
  • Khan, M. A., E. Gee, J. Choi, M. Kumar, W. Jung, T. C. Timmes, H. Kim, and B. Jeon. 2014. Adsorption of cobalt onto graphite nanocarbon–impregnated alginate beads: equilibrium, kinetics, and thermodynamics studies. Chemical Engineering Communications 201 (3):403–18. doi:10.1080/00986445.2013.773426.
  • Kozai, N., T. Ohnuki, and S. Komarneni. 2002. Selenium oxyanions: Highly selective uptake by a novel anion exchanger. Journal of Materials Research 17 (12):2993–6. doi:10.1557/JMR.2002.0433.
  • Kozhevnikov, J. 2007. Sustainable heterogeneous acid catalysis by heteropoly acids. J. Molecular Catalysis A: Chemistry 262:86–92. doi:10.1016/j.molcata.2006.08.072.
  • Marczenko, Z. 1976. Spectrophotometric determination of elements. New York: John Wiley and Sons, Inc.
  • McGarvey, G. B., and J. B. Moffat. 1991. A study of solution species generated during the formation of 12-heteropoly oxometalate catalysts. Journal of Catalysis 69 (1):137–55. doi:10.1016/0304-5102(91)80110-O.
  • McMonagle, J. B., and J. B. Moffat. 1984. Pore structures of the monovalent salts of the heteropoly compounds, 12-tungstophosphoric and 12-molybdophosphoric acid. Journal of Colloid and Interface Science 101 (2):479–88. doi:10.1016/0021-9797(84)90060-2.
  • Ming-Xia, Z., L. I. Song-Jun, and L. Xuan. 2007. Rationally designing molecularly imprinted polymer toward a high specific adsorbent by using metal as assembled pivot. Journal of Macromolecular Science Part A 44 (11):1187–94. doi:10.1080/10601320701561122.
  • Omorogie, M. O., J. O. Babalola, E. I. Unuabonah, and J. R. Gong. 2016. Clean technology approach for the competitive binding of toxic metal ions onto MnO2 nanobioextractant, clean technol. Clean Technologies and Environmental Policy 18 (1):171–84. doi:10.1007/s10098-015-1004-z.
  • Palomeque, J., F. Figueras, and G. Gelbard. 2006. Epoxidation with hydrotalcite-intercalated organotungstic complexes. Applied Catalysis A: General 300 (2):100–8. doi:10.1016/j.apcata.2005.10.037.
  • Pérez, C. N., C. A. Pérez, C. A. Henriques, and J. L. F. Monteiro. 2004. Hydrotalcites as precursors for Mg,Al-mixed oxides used as catalysts on the aldol condensation of citral with acetone. Applied Catalysis A: General 272 (1–2):229–40. doi:10.1016/j.apcata.2004.05.045.
  • Peric, J., M. Trgo, and N. V. Medvidovic. 2004. Removal of zinc, copper and lead by natural zeolite—a comparison of adsorption isotherms. Water Research 38 (7):1893–9. doi:10.1016/j.watres.2003.12.035.
  • Prabakaran, R., and S. Arivoli. 2013. Removal of Cobalt (II) from aqueous solutions by adsorption on low cost activated carbon. International Journal of Science, Engineering and Technology Research 2:271–83.
  • Ratkowsky, D. A. 1990. Handbook of nonlinear regression models. New York: Marcel Dekker Inc.
  • Sulaymon, A. H., B. A. Abid, and J. A. Al-Najar. 2009. Removal of lead copper chromium and cobalt ions onto granular activated carbon in batch and fixed-bed adsorbers. Chemical Engineering Journal 155 (3):647–53. doi:10.1016/j.cej.2009.08.021.
  • Wang, Y. H., S. H. Lin, and R. S. Juang. 2003. Removal of heavy metal ions from aqueous solutions using various low-cost adsorbents. Journal of Hazardous Materials B 102 (2–3):291. doi:10.1016/S0304-3894(03)00218-8.
  • Wang, J., X. Ma, G. Fang, M. Pan, X. Ye, and S. Wang. 2011. Preparation of iminodiacetic acid functionalized multi-walled carbon nanotubes and its application as sorbent for separation and preconcentration of heavy metal ions. Journal of Hazardous Materials 186 (2–3):1985–92. doi:10.1016/j.jhazmat.2010.12.087.
  • Zhang, L., J. Wei, X. Zhao, F. Li, F. Jiang, M. Zhang, and X. Cheng. 2016. Competitive adsorption of strontium and cobalt onto tin antimonate. Chemical Engineering Journal 285:679–89. doi:10.1016/j.cej.2015.10.013.
  • Zhang, P., T. Yokoyama, O. Itabashi, Y. Wakui, T. M. Suzuki, and K. Inoue. 1999. Recovery of metal values from spent nickel–metal hydride rechargeable batteries. Journal of Power Sources. 77 (2):116–22. doi:10.1016/S0378-7753(98)00182-7.
  • Zhao, Y., F. Li, R. Zhang, D. Evans, and X. Duan. 2002. Preparation of layered double-hydroxide nanomaterials with a uniform crystallite size using a new method involving separate nucleation and aging steps. Chemistry of Materials 14 (10):4286. doi:10.1021/cm020370h.

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.