The Determination of Arsenic, Lead, Nickel, and Zinc in Copper by Atomic Absorption Spectrophotometry

Author:

Gandrud Bruce1,Marshall John C.1

Affiliation:

1. Chemistry Division, Argonne National Laboratory, Argonne, Illinois 60439

Abstract

Atomic absorption spectrophotometry has been critically evaluated as a method for the determination of traces of arsenic, lead, nickel, and zinc in copper. With careful matrix compensation, reliable (±5%–6%) results were obtained down to lower concentration limits of 0.025% for arsenic, 0.002% for lead, 0.003% for nickel, and 0.002% for zinc. Copper was found to interfere strongly with the determination of nickel in dilute nitric acid solutions. The use of the nitrous oxide—acetylene flame was found mandatory for the determination of arsenic. This work suggests at least limited applicability of atomic absorption to the problem of tracing the origin of ancient copper metal by impurity patterns.

Publisher

SAGE Publications

Subject

Spectroscopy,Instrumentation

Reference15 articles.

1. See for example Caley E. R., Analysis of Ancient Metals (The Macmillan Co., New York, 1964); Werner A. E. A., Anal. Chem. 40, 28A (1968).

2. Determination of Trace Amounts of Lead in Steels, Brass and Bronze Alloys by Atomic Absorption Spectrometry.

3. Multiple element atomic absorption analysis

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