MERCURE (EAU)
Le pic d’absorption peut être enregistré ou mesuré. La mesure de l’aire
du pic, possible sur les spectrophotomètres récents, n’est exploitable que
si le débit gazeux appliqué est parfaitement reproductible, ce qui est rendu
difficile par la perte de charge (variable dans le temps) créée par le piège.
BIBLIOGRAPHIE
Ambe, M. and Suwabe, K., 1977. The préparation of standard solutions of mercury
at the ppb level. Anal. Chim. Acta 92, 55-60.
Bewers, J. M. and Windom, H. L., 1982. Comparison of sampling devices for trace
métal déterminations in seawater. Mar. Chem. 11, 71-86.
Carron, J. and Agemian, H., 1977. Préservation of sub-ppb levels of mercury in
distilled and natural fresh waters. Anal. Chim. Acta 92, 61-70.
Courau, P., Laumond, F. and Hardstedt-Romeo, M., 1980. Improvement of the
cold-vapor atomic absorption method for the détermination of mercury in sea water,
p. 607-613, in Analytical techniques in environmental chemistry, J. Albaiges (ed.).
Pergamon Press : Oxford.
Das, H. A. and Van der Sloot, H. A., 1976. Sampling problems and the détermination of mercury in surface waters, seawater and air, p. 669-699, in Accuracy in
trace analysis : sampling, sample handling, analysis, P. D. La Fleur (ed.). NBS Spec.
Publ. 422.
Fitzgerald, W. F., 1975. Mercury analysis in sea water using cold-trap preconcentration and gas phase détection, p. 99-109, in Analytical methods in oceanography,
T. R. P. Gibb (ed.). Amer. Chem. Soc., Advances in chemistry sériés 147.
Grasshoff, K., 1976. Storage for trace métal analysis, p. 29-30, in Methods of seawater analysis, K. Grasshoff (ed.). Verlag Chemie, Weinheim, RFA.
Hatch, W. R. and Ott, W. L., 1968. Détermination of sub-microgram quantities
of mercury by atomic absorption spectrophotometry. Anal. Chem. 40, 2085-2087.
Matsunaga, K., Nishimura, M. and Konishi, S., 1975. Mercury in the Kuroshio
and Oyashio régions and the Japan Sea. Nature (London) 258, 224-225.
Matsunaga, K., Konishi, S. and Nishimura, M., 1979. Possible errors caused
prior to measurement of mercury in natural waters with spécial reference to seawater.
Environ. Sci. Technol. 13, 63-65.
Olafsson, J., 1982. An international intercalibration for mercury in seawater. Mar.
Chem. 11, 129-142.
Poluektov, N. S., Viikun, R. A. and Zelyukova, Y. V., 1964. Zh. Analit. Khim.
19, 937.
Riley, J. P., 1975. Analytical chemistry of sea water : mercury, p. 376-381, in Chemical oceanography, Vol. 3, J. P. Riley and G. Skirrow (eds). Academie Press,
London, New York, San Francisco.
Robertson, D. E., 1976. Analytical chemistry of natural waters, p. 805-836, in
Accuracy in trace analysis : sampling, sample handling, analysis, P. D. La Fleur
(ed.). NBS Spec. Publ. 422.
Sanemasa, L, 1975. The solubility of elemental mercury vapor in water. Bull. Chem.
Soc. Jap. 48, 1795-1798.
Sanemasa, L, Deguchi, T., Urata, K., Tomooka. J. and Nagai, H., 1977. The
effect ol ammonium thiocyanate and sodium chloride on loss and recovery of mercury
trom water during storage. Anal. Chim. Acta 94, 421-427.
Stoeppler, M. and Matthes, W., 1978. Storage behaviour of inorganic mercury
and methylmercury chloride in sea water. Anal. Chim. Acta 98, 389-392.
Williams, P. M., Robertson, K. J., Chew, K. and Weiss. H. V., 1974. Mercury in
the South Polar Seas and in the Northeast Pacific océan. Mar. Chem. 2, 287-299.
241
Précédent

- 248/405

Suivant