A simple and sensitive continuous hydride generation system for the determination of arsenic and selenium by atomic absorption and atomic fluorescence spectrometry
Author:
Publisher
Elsevier BV
Subject
Spectroscopy,Environmental Chemistry,Biochemistry,Analytical Chemistry
Reference30 articles.
1. Generation of covalent hydrides in atomic-absorption spectroscopy. A review
2. Sub Microgram Determination of Arsenic, Selenium, Antimony and Bismuth By Atomic Absorption Utilizing Sodium Borohydride Reduction
3. Arsine generation and determination of trace amounts of arsenic by atomic absorption spectrometry
4. The atomic absorption spectrometric determination of arsenic, bismuth, lead, antimony, selenium and tin with a flame-heated silica t-tube after hydride generation
5. Evaluation of a method for determination of total antimony, arsenic and tin in foodstuffs using measurement by atomic-absorption spectrophotometry with atomisation in a silica tube using the hydride generation technique
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1. Atomic fluorescence spectrometry for ultrasensitive determination of bismuth based on hydride generation – the role of excitation source, interference filter and flame atomizers;Journal of Analytical Atomic Spectrometry;2020
2. Flame-in-gas-shield and miniature diffusion flame hydride atomizers for atomic fluorescence spectrometry: optimization and comparison;Spectrochimica Acta Part B: Atomic Spectroscopy;2015-07
3. Simultaneous detection of selenium by atomic fluorescence and sulfur by molecular emission by flow-injection hydride generation with on-line reduction for the determination of selenate, sulfate and sulfite;Analytica Chimica Acta;2009-10
4. Determination of arsenic(III) and total inorganic arsenic in water samples using variable tetrahydroborate(III) and acid concentrations by continuous-flow hydride-generation atomic absorption spectrometry;International Journal of Environmental Analytical Chemistry;2008-04-10
5. Atomization of volatile compounds for atomic absorption and atomic fluorescence spectrometry: On the way towards the ideal atomizer;Spectrochimica Acta Part B: Atomic Spectroscopy;2007-09
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