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Effectiveness of linearization of calibration curves in Zeeman graphite furnace atomic absorption spectrometry
Authors:B. V. L''vov   L. K. Polzik   A. V. Novichikhin   A. V. Borodin  A. O. Dyakov
Affiliation:

Department of Analytical Chemistry, St Petersburg Technical University, St Petersburg 195251, Russia

Abstract:A theoretical analysis is made of the effect of analytical line broadening and of non-absorbable radiation in the light source on the shape of concentration curves in Zeeman graphite furnace atomic absorption spectrometry. These results have been used in a systematic study of the effect of spectrometer slit width and hollow-cathode lamp (HCL) current on linearization of calibration graphs for 11 elements: Ag, Au, Bi, Cd, Co, Cu, Fe, Mn, Ni, Pb, and Sb. The effectiveness of linearization throughout the analytical range covered was estimated experimentally on series of 25–30 solutions. Three solutions in each series were used as standards for constructing the calibration graph, the others serving to evaluate the linearization effectiveness. Increasing the slit width and decreasing the HCL current compared to the standard measurement conditions have permitted us to reach a sufficiently high effectiveness of linearization for all the elements studied, with the exception of Ni. The maximum deviation of experimental points from the linear graph under optimum conditions does not exceed 6%. The effect of the Δ parameter used in the computational algorithm on linearization effectiveness is investigated.
Keywords:Graphite furnace atomic absorption spectrometry   Linearization   Zeeman graphite furnace atomic absorption spectrometry
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