Journal
JOURNAL OF ANALYTICAL ATOMIC SPECTROMETRY
Volume 33, Issue 7, Pages 1217-1223Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c8ja00052b
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Funding
- National Natural Science Foundation of China [21427810, 21775105]
- Doctoral Fund of the Ministry of Education of China [20130181120009]
- Fundamental Research Funds for Central Universities [2016SCU04A12]
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A miniaturized UV-LED photochemical reactor is proposed for selenium photochemical vapor generation (Photo-CVG). The miniaturized Photo-CVG reactor with a coin size mainly consists of an ultraviolet light-emitting-diode (UV-LED) and a quartz coil with nano-TiO2 coating on its inner wall. It was coupled with an atomic fluorescence spectrometer (AFS) as a sample introduction device for trace selenium determination. The nano-TiO2 coating process, UV-LED wavelength and correlative experimental parameters as well as potential interference were investigated in detail. Under optimized experimental conditions, limits of detection of 0.21 and 0.28 g L-1 for Se(vi) and Se(iv) were obtained, respectively, with a relative standard deviation (n = 3) of 2.5% and 1.0% at 20 g L-1. The potential application of this UV-LED Photo-CVG AFS was demonstrated by successfully analyzing a certified reference water sample and several mineral water samples.
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