Published March 1995 | Version v1
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High sensitivity detection of selenium by laser excited atomic fluorescence spectrometry using electrothermal atomization

  • 1. Technische Univ. Berlin. (Germany). Ins. fuer Strahlungs-und Kernphysik

Description

The high sensitivity detection of the trace element selenium is reported. The analytical method applied is Laser Excited Atomic Fluorescence Spectrometry using Electrothermal Atomization within a graphite furnace atomizer. For the production of tunable laser radiation in the VUV spectral region a laser system was developed which consists of two dye lasers pumped by a Nd:YAG laser. The laser radiations are subsequently frequency doubled and sum frequency mixed by nonlinear optical KDP or BBO crystals, respectively. The system works with a repetition rate of 20 Hz and provides output energies of up to 100 μJ in the VUV at a pulse duration of 5 ns. The analytical investigations were focused on the detection of selenium in aqueous solutions and samples of human whole blood. From measurements on aqueous standards detection limits of 1.5 ng/l for selenium were obtained, with corresponding absolute detected masses of only 15 fg. The linear dynamic range spanned six orders of magnitude and good precision was achieved. In case of human whole blood samples the recovery was found to be within the range of 96% to 104%. The determination of the selenium content yielded medians of [119.5 ± 17.3] μg/l for 200 frozen blood samples taken in 1988 and [109.1 ± 15.6] μg/l for 103 fresh blood samples. (author)

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Part of:
Innovative laser technologies in nuclear energy. Proceedings of the 6th international symposium on advanced nuclear energy research

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Publishing Information

Imprint Title
Innovative laser technologies in nuclear energy. Proceedings of the 6th international symposium on advanced nuclear energy research
Imprint Pagination
724 p.
Journal Page Range
p. 444-453.
Report number
JAERI-Conf--95-005(v.2)

Conference

Title
6. international symposium on advanced nuclear energy research.
Dates
23-25 Mar 1994.
Place
Mito (Japan).

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