Determination of Chromium(III) and Chromium(VI) by Electrothermal Atomization Atomic-Absorption Spectrometry Following Coprecipitation with Gallium(III) Phosphate
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj/68/10/68_10_2843/_pdf
Reference30 articles.
1. Separation and Concentration of Tin(IV) by Co-precipitation with Gallium Phosphate for Electrothermal Atomization Atomic Absorption Spectrometry
2. Preconcentration of Indium(III) by Coprecipitation with Gallium Phosphate for Electrothermal Atomization Atomic Absorption Spectrometry
3. Chemical speciation of chromium in sea water
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1. Rapid Coprecipitation Technique for the Separation and Preconcentration of Trace Elements;Bunseki kagaku;2016
2. Determination of Total Chromium at Ultratrace Levels in Water and Soil Samples by Coprecipitation Microsample Injection System Flame Atomic Absorption Spectrometry;Journal of AOAC INTERNATIONAL;2014-09-01
3. Thulium hydroxide: A new coprecipitant for speciation of chromium in natural water samples;Journal of Hazardous Materials;2009-03
4. Use of Yttrium Phosphate as a Coprecipitant for Separation/Concentration of Lanthanoids;Analytical Sciences;2008
5. A novel kinetic determination of dissolved chromium species in natural and industrial waste water;Talanta;2006-09-15
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