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Separation and Preconcentration Method for Palladium, Platinum and Gold from Some Heavy Metals Using Amberlite IRC 718 Chelating Resin


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References

  1. Talanta v.37 Kantipuly, C. J.; Katragadda, S.; Gesser, H. D.
  2. Talanta v.35 Kantipuly, C. J.; Westland, A. D.
  3. Crit. Rev. Anal. Chem. v.17 Myasodova, G. V.; Savvin, S. B.
  4. Talanta v.49 Das, D.; Das, A. K.; Sinha, C.
  5. Talanta v.43 Ahuja, M.; Rai, A. K.; Mathur, P. N.
  6. Chelatbildende Ionenaustauscher Hering, R.
  7. Coord. Chem. Rev. v.59 Sahni, S. K.; Reedijk, J.
  8. CRC Crit. Rev. Analyt. Chem. v.17 Myasoedova, G. V.; Savvin, S. B.
  9. Talanta v.21 Marhol, M.; Cheng, K. L.
  10. Anal. Chim. Acta v.115 Tomoshige, S.; Hirai, M.; Ueshima, H.
  11. Anal. Chem v.49 Moyers, E. M.; Fritz, J. S.
  12. Anal. Chem v.49 Figura, P.; McDuffie, B.
  13. Anal. Chem v.49 Arguello, M. D.; Fritz, J. S.
  14. Anal. Chem v.50 Orf, G. M.; Fritz, J. S.
  15. Anal. Chem. v.48 Moyers, E. M.; Fritz, J. S.
  16. Talanta v.42 Dev, K.; Rao, G. N.
  17. Talanta v.46 Park, C. I.; Cha, K. W.
  18. Journal of Analytical Chemistry v.50 D’yachenko, N. A.; Trofimchuk, A. K.; Sukhan, V. V.

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