Shigehiro Kagaya, Zanariah Abdul Malek, Yasuko Araki, Kiyoshi Hasegawa
Index: Anal. Sci. 18(8) , 923-6, (2002)
Full Text: HTML
By applying an internal standardization, we could use a rapid coprecipitation technique using lanthanum phosphate as a coprecipitant for preconcentration of iron(III) and lead in their flame atomic absorption spectrometric determination. Indium as an internal standard was added to the initial sample solution together with lanthanum and phosphoric acid; the coprecipitation of iron(III) and lead was then carried out at pH about 3. After measuring the atomic absorbances of iron, lead, and indium in the final sample solution, we determined the contents of iron(III) and lead in the original sample solution by using the internal standardization with indium. In this method, complete collection of the precipitate was not required after the coprecipitation of iron(III), lead, and indium, because the ratio of the recovery of iron(III) or lead to that of indium was almost constant regardless of the recovery of the precipitate. This method was simple and rapid, and was available for the determination of 2-300 micrograms L-1 of iron(III) and 5-400 micrograms L-1 of lead in some water samples.
| Structure | Name/CAS No. | Molecular Formula | Articles |
|---|---|---|---|
![]() |
lanthanum (iii) phosphate
CAS:14913-14-5 |
LaO4P |
|
Biofunctionalization of fluorescent rare-earth-doped lanthan...
2004-11-12 [Angew. Chem. Int. Ed. Engl. 43(44) , 5954-7, (2004)] |
|
Osteoblast adhesion on novel machinable calcium phosphate/la...
2009-06-01 [J. Biomed. Mater. Res. A 89(3) , 727-33, (2009)] |
|
Determination of cadmium in river water by electrothermal at...
2003-07-01 [Anal. Sci. 19(7) , 1061-4, (2003)] |
|
A method for quantification of nucleotides and nucleotide an...
2007-10-01 [Anal. Biochem. 369(1) , 80-6, (2007)] |
Home | MSDS/SDS Database Search | Journals | Product Classification | Biologically Active Compounds | Selling Leads | About Us | Disclaimer
Copyright © 2024 ChemSrc All Rights Reserved
