Calcium Isotope Effects in Atomic Absorption

Author:

Nash C. P.1,Rock P. A.1,Silberman D.1,Fisher G. L.1

Affiliation:

1. Department of Chemistry (C.P.N., P.A.R.) and Radiobiology Laboratory (D.S., G.L.F.), University of California, Davis, California 95616

Abstract

Measurements are reported for the absorption of the 422.7 nm line of a natural-abundance calcium hollow cathode lamp by solutions of 40Ca, 44Ca, and 48Ca at 0.5 to 3.0 ppm levels in 0.06 M HCl (aqueous) when aspirated into air-acetylene and nitrous oxide-acetylene flames. In the case of the air-acetylene flame the relative absorptions per mole of calcium in solution were 1.00, 1.11, and 1.08 for the 40, 44, and 48 isotopes, respectively. With the nitrous oxide-acetylene flame similar experiments gave ratios of 1.00, 1.08, and 1.06 in the same order. These results may be rationalized with a model that considers the simultaneous effects of isotope shifting, Lorentz broadening and shifting, and Doppler broadening of the calcium resonance line in the flame. With the air-acetylene flame, solutions that also contained 5000 ppm of Sr as SrCl2 gave relative absorbances for the 40, 44, and 48 calcium isotopes of 1.00, 1.04, and 1.10. Flame-atomic-distribution studies lead to the conclusion that in the presence of 5000 ppm of Sr, calcium kinetic isotope effects are also important.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

Reference24 articles.

1. Ramirez-Munoz J., Atomic Absorption Spectroscopy (Elsevier, New York, 1968), pp. 307–308.

2. Davidson N., Statistical Mechanics (McGraw-Hill, New York, 1962), p. 143.

3. American Institute of Physics Handbook, Gray D. E., Ed. (McGraw-Hill, New York, 1972), 3rd ed., p. 7–173.

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