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Kinetic determination of cobalt and nickel by flow-injection spectrophotometry

✍ Scribed by M.A.Z. Arruda; E.A.G. Zagatto; N. Maniasso


Publisher
Elsevier Science
Year
1993
Tongue
English
Weight
457 KB
Volume
283
Category
Article
ISSN
0003-2670

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✦ Synopsis


Reactor replacement is proposed as means of realizing different sample residence times in flow-injection analysis. As an application, an improved spectrophotometric determination of cobalt and nickel is proposed. The method exploits differences in reaction rates between cobalt and nickel citrate complexes and 4_(2-pyridylaxo)resorcinol (PAR). The influence of pH, reagent concentrations, temperature, ionic strength, flow-rates and masking agent addition were investigated. Selectivity was enhanced by adding EDTA plus pyrophosphate and exploiting kinetic discrimination. The system is very stable and allows the determination of cobalt and nickel up to 5.00 mg 1-r with a sampling frequency of 40 hh'. For tool steel samples characterized by low nickel/cobalt concentration ratios, the system can be simplified, allowing kinetic masking of nickel and single cobalt determination. The reagent consumption is 65.3 pg of PAR per determination, and precise results (R.S.D. < 1%) in agreement with inductively coupled plasma atomic emission spectrometry are obtained at a sampling frequency of 100 h-r.


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