Determination of inorganic mercury in biological tissues by cold vapor atomic absorption spectrometry following tetramethylammonium hydroxide solubilization

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

Guanhong Tao, Scott N. Willie and Ralph E. Sturgeon


Abstract

A rapid and simple method for the quantification of inorganic and total mercury in biological tissues using flow injection cold vapor generation atomic absorption spectrometry is presented. Samples were solubilized using tetramethylammonium hydroxide. The inorganic Hg was released by on-line addition of L-cysteine and then reduced to metallic Hg by SnCl2. The detection limit for inorganic mercury was 0.1 µg l–1 and the precision of determination was better than 2% (RSD) at 20 µg l–1. The proposed method was validated by the analyses of a suite of certified marine biological reference materials, DORM-2 (dogfish muscle), DOLT-2 (dogfish liver) and TORT-2 (lobster hepatopancreas).


References

  1. W. Baeyens, Trends Anal. Chem., 1992, 11, 245 CrossRef CAS.
  2. Analysis of Contaminants in Edible Aquatic Resources, ed. J. W. Kiceniuk and S. Ray, VCH, New York, 1994, pp. 175–204 Search PubMed.
  3. R. Puk and J. H. Weber, Appl. Organomet. Chem., 1994, 8, 293 CrossRef CAS.
  4. A. J. Jackson, L. M. Michael and H. J. Schumacher, Anal. Chem., 1972, 44, 1064 CrossRef CAS.
  5. L. Murthy, E. E. Menden, P. M. Eller and H. G. Pertering, Anal. Biochem., 1973, 53, 365 CrossRef CAS.
  6. P. D. Kaplan and M. Blackstone, Arch. Environ. Health, 1973, 27, 387 Search PubMed.
  7. Y. Zhou, M. K. Wong, L. L. Koh and Y. C. Wee, Talanta, 1996, 41, 1061.
  8. S. B. Gross and E. S. Parkinson, At. Absorpt. Newsl., 1974, 13, 107 Search PubMed.
  9. F. Alt and H. Massmann, Spectrochim. Acta, Part B, 1978, 33, 337 CrossRef.
  10. Y.-X. Tan, W. D. Marshall and J.-S. Blais, Analyst, 1996, 121, 483 RSC.
  11. Y.-X. Tan and W. D. Marshall, Analyst, 1997, 122, 13 RSC.
  12. J. L. M. De Boer and F. L. M. J. Maessen, Spectrochim. Acta, Part B, 1983, 38, 739 CrossRef.
  13. T. Uchida, H. Isoyama, K. Yamada, K. Oguchi and G. Nakagawa, Anal. Chim. Acta, 1992, 256, 277 CrossRef CAS.
  14. M. S. Jimenez and R. E. Sturgeon, J. Anal. At. Spectrom., 1997, 12, 597 RSC.
  15. C.-M. Tseng, A. De Diego, F. M. Martin, D. Amouroux and O. F. X. Donard, J. Anal. At. Spectrom., 1997, 12, 743 RSC.
  16. S. N. Willie, D. C. Gregoire and R. E. Sturgeon, Analyst, 1997, 122, 751 RSC.
  17. G.-H. Tao, S. N. Willie and R. E. Sturgeon, Analyst, 1998, 123, 1215 RSC.
  18. L. Magos and T. W. Clarkson, J. Assoc. Off. Anal. Chem., 1972, 55, 966 Search PubMed.
  19. G. Westöö, Acta Chem. Scand., 1967, 21, 1790 CAS.
  20. C. Vandecasteele and C. B. Block, Modern Methods for Trace Element Determination, Wiley, Chichester, 1993, ch. 5 Search PubMed.
  21. C. E. Oda and J. D. Ingle Jr., Anal. Chem., 1981, 53, 2305 CrossRef CAS.
  22. J. Gutierrez, H. Travieso and M. A. Pubillones, Water Air Soil Pollut., 1993, 68, 315 CAS.
  23. T. Tomiyasu, A. Nagano, H. Sakamoto and N. Yonehara, Anal. Sci., 1996, 12, 477 CrossRef CAS.
Click here to see how this site uses Cookies. View our privacy policy here.