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COPPER REMOVAL FROM SYNTHETIC AQUEOUS SOLUTIONS BY HYDROXYAPATITE GRANULES SYNTHESIZED USING MICROWAVE HEATING

Student Ioana Melinte, Student Rodica Elena-Patescu

First published: 2015https://doi.org/10.5593/sgem2015/b51/s20.023View metrics

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Title
COPPER REMOVAL FROM SYNTHETIC AQUEOUS SOLUTIONS BY HYDROXYAPATITE GRANULES SYNTHESIZED USING MICROWAVE HEATING
Authors
Student Ioana Melinte, Student Rodica Elena-Patescu
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 15th International Multidisciplinary Scientific GeoConference SGEM2015, ECOLOGY, ECONOMICS, EDUCATION AND LEGISLATION
Publisher
Stef92 Technology
Year
2015
Pages
177-184
ISSN
1314-2704
ISBN
978-619-7105-39-1
Language
en
Publication type
Conference Paper
References12
  1. Ferraz M.P., Monteiro F.J. and Manuel C.M., Hydroxyapatite nanoparticles: A review of preparation methodologies, Journal of Applied Biomaterials 8, pp 74- 80, 2004.

  2. Deepak K. Pattanayak, Divya P, Sujal Upadhyay, R. C. Prasad, B. T. Rao and T. R. Rama Mohan, Synthesis and Evaluation of Hydroxyapatite Ceramics, Tren ds Biomater. Artif. Organs, 18, (2), January 2005.

  3. Siddhartan A., Seshadri S.K., Sampath Kumar T.S., Influence of microwave power of nanosised hydroxyapatite particles, Scripta Materialia, 55, pp 175-178, 2006.

  4. Melinescu A., Târdei, C., Simonescu C.M., Marinescu V., Miclea, A., Removal of Pb 2+ toxic ions from aqueous solutions on porous hydroxyapatite granules, Romanian Journal of Materials, 43(2), pp 223-226, 2013.

  5. Mobasherpour I., Salahi E., Pazouki M., Comparative of the removal of Pb 2+, Cd2+ and Ni 2+ by nano crystallite hydroxyapatite from aqueous solutions: Adsorption isotherm study, Arabian Journal of Chemistry 5, pp 439–446, 2012.

  6. Liao D, Zheng W, Li X, Yang Q, Yue X, Guo L, Zeng G., Removal of lead(II) from aqueous solutions using carbonate hydroxyapatite extracted from eggshell waste, J Hazard Mater. 177(1-3), pp 126-130, 2010. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

  7. Ferraz M.P., Monteiro F.J. and Manuel C.M., Hydroxyapatite nanoparticles: A review of preparation methodologies, Journal of Applied Biomaterials 8, pp 74- 80, 2004.

  8. Deepak K. Pattanayak, Divya P, Sujal Upadhyay, R. C. Prasad, B. T. Rao and T. R. Rama Mohan, Synthesis and Evaluation of Hydroxyapatite Ceramics, Tren ds Biomater. Artif. Organs, 18, (2), January 2005.

  9. Siddhartan A., Seshadri S.K., Sampath Kumar T.S., Influence of microwave power of nanosised hydroxyapatite particles, Scripta Materialia, 55, pp 175-178, 2006.

  10. Melinescu A., Târdei, C., Simonescu C.M., Marinescu V., Miclea, A., Removal of Pb 2+ toxic ions from aqueous solutions on porous hydroxyapatite granules, Romanian Journal of Materials, 43(2), pp 223-226, 2013.

  11. Mobasherpour I., Salahi E., Pazouki M., Comparative of the removal of Pb 2+, Cd2+ and Ni 2+ by nano crystallite hydroxyapatite from aqueous solutions: Adsorption isotherm study, Arabian Journal of Chemistry 5, pp 439–446, 2012.

  12. Liao D, Zheng W, Li X, Yang Q, Yue X, Guo L, Zeng G., Removal of lead(II) from aqueous solutions using carbonate hydroxyapatite extracted from eggshell waste, J Hazard Mater. 177(1-3), pp 126-130, 2010. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org

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