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1.
Talanta ; 44(4): 673-83, 1997 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-18966789

RESUMO

The application of the ratio spectra derivative and partial least-squares methods to the simultaneous determination of atrazine and its degradation product desethylatrazin-2-hydroxy is presented. When the different methods are applied to the determination of these products in ground waters, PLS method gives the best results due to the presence of interfering substances with overlapping spectra.

3.
Talanta ; 36(8): 831-6, 1989 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-18964815

RESUMO

The complexation equilibria between niobium(V) and 4-(1'H-1',2',4'-triazolyl-3'-azo)-2-methylresorcinol has been studied by spectrophotometric methods and graphical and numerical calculation methods. The 1:2 Nb:R complex species formed at pH 6.2 ( = 2.16 x 10(4) l.mole(-1).cm(-1) at 490 nm) allows the determination of 0.15-2.50 ppm Nb. A 1:1 Nb:R complex species can be extracted into n-butanol from 0.1-1.5M hydrochloric acid ( = 1.28 x 10(4) l.mole(-1) .cm(-1) at 510 nm) and Beer's law is obeyed over the range 0.77-4.64 ppm Nb. Interferences and their elimination have been studied and the methods applied to the determination of niobium in pyrochlore-bearing ores.

4.
Talanta ; 33(10): 779-83, 1986 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-18964200

RESUMO

A kinetic fluorimetric method for the determination of silver is described, based on its catalytic effect on the oxidation of pyrocatechol-1-aldehyde 2-pyridylhydrazone by peroxodisulphate. In aqueous solution silver concentrations of 0.2-0.8 mug ml can be determined, and 10-80 ng ml in the presence of 1,10-phenanthroline as activator. The fluorescent species obtained (lambda(ex) 357 nm, lambda(em) 445 nm) results from oxidation of the reagent. The kinetic parameters and the interferences are reported, and the method is applied to the determination of silver in developed panchromatic plates.

5.
Talanta ; 18(12): 1237-41, 1971 Dec.
Artigo em Francês | MEDLINE | ID: mdl-18961010

RESUMO

A method for the quantitative determination of cationic and non-ionic surfactants which is based on their inhibiting effect on certain electrochemical reactions has been developed. This technique enables one to determine, with a precision of 2-3%, these substances at concentrations of the order of 10(-6)M.

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