Simultaneous Spectrophotometric Determination of Calcium and Magnesium in Mineral Waters by Means of Multivariate Partial Least-squares Regression

(Note: The full text of this document is currently only available in the PDF Version )

F. Blasco, M. J. Medina-Hernández, S. Sagrado and F. M. Fernández


Abstract

A method for simultaneous spectrophotometric determination of calcium and magnesium in mineral waters using multivariate calibration methods is proposed. The method is based on the development of the reaction between the analytes and Methylthymol Blue at pH 11. Two operational modes were used: static (spectral information) and flow injection (FI) (spectral and kinetic information). The selection of variables was studied. A series of synthetic solutions containing different concentrations of calcium and magnesium were used to check the prediction ability of the partial least-squares models. The method was applied to the analysis of mineral waters and the results were compared with those obtained by complexometry. No significant differences at the 95% confidence level were found. The proposed method is simple, accurate and reproducible, and it could be easily adapted as a portable (static mode) or automatic (FI) method.


References

  1. M. A. H. Franson, Standard Methods for the Examination of Water and Wastewater, American Public Health Association and Water Polution Control Federation, Washington, DC, 18th edn., 1992 Search PubMed.
  2. W. P. Basson and J. F. Van Staden, Fresenius' Z. Anal. Chem., 1980, 302, 370 Search PubMed.
  3. H. Wada, T. Ozawa, G. Nakagawa, Y. Asano and S. Ito, Anal. Chim. Acta, 1988, 211, 213 CrossRef CAS.
  4. R. J. Foster and D. Diamond, Anal. Chem., 1992, 64, 1721 CrossRef.
  5. Y. Yuan, Anal. Chim. Acta, 1988, 212, 291 CrossRef CAS.
  6. F. Cañete, A. Ríos, M. D. Luque de Castro and M. Valcárcel, Analyst, 1987, 112, 262 Search PubMed.
  7. M. Blanco, J. Coello, J. Gené, H. Iturriaga and S. Maspoch, Anal. Chim. Acta, 1989, 224, 23 CrossRef CAS.
  8. E. Gómez, J. M. Estela and V. Cerdá, Anal. Chim. Acta, 1991, 249, 513 CrossRef CAS.
  9. E. Gómez, C. Tomás, A. Cladera, J. M. Estela and V. Cerdá, Analyst, 1995, 120, 1181 RSC.
  10. E. A. Novikov and L. K. Shpigun, Zh. Anal. Khim., 1993, 48, 1326 Search PubMed.
  11. I. Ruisánchez, A. Rius, M. S. Larrechi, M. P. Callao and F. X. Rius, Chemom. Intell. Lab. Syst., 1994, 24, 55 CrossRef CAS.
  12. A. Rius, M. P. Callao and F. X. Rius, Anal. Chim. Acta, 1995, 316, 27 CrossRef CAS.
  13. D. M. Haaland and E. V. Thomas, Anal. Chem., 1988, 60, 1193 CrossRef CAS.
  14. R. Leardi, J. Chemom., 1994, 8, 65 CAS.
  15. L. Xu and I. Schechter, Anal. Chem., 1996, 68, 2392 CrossRef CAS.
  16. A. Garrido Frenich, D. Jouan-Rimbaud, D. L. Massart, S. Kuttatharmmakul, M. Martinez Galera and J. L. Martinez Vidal, Analyst, 1995, 120, 2787 RSC.
  17. R. Cela, Avances en Quimiometria Práctica, Universidad de Santiago de Compostela, Santiago de Compostela, 1994 Search PubMed.
Click here to see how this site uses Cookies. View our privacy policy here.