A new, simple and highly sensitive kinetic method for the determination oftrace iron (III) has been developed based on the catalytic effect of iron (III) on colorreaction of p-amino-N, N-dimethylaniline dihydrochlorid...A new, simple and highly sensitive kinetic method for the determination oftrace iron (III) has been developed based on the catalytic effect of iron (III) on colorreaction of p-amino-N, N-dimethylaniline dihydrochloride (p-DMA) oxidated by hydrogenperoxide. The reaction is followed spectrophotometrically by measuring the absorbanceat 510 nm. The detection limit is 4.47×10-11 g/ml, and the calibration curve is linear inthe range of 0-0.10μg Fe(III) /25 ml with a relative standard deviation of ±3.25%. Themethod has been applied to the determination of iron in tap-water, chemical reagents andhuman hair.展开更多
A method is described for the direct determination of iron in high purity sodium fluoride using graphite furnace atomic absorption spectrometry. Interferences caused by the matrix are investigated. It is shown that th...A method is described for the direct determination of iron in high purity sodium fluoride using graphite furnace atomic absorption spectrometry. Interferences caused by the matrix are investigated. It is shown that the ashing temperature can be increased to 1 400°C and matrix interferences eliminated, the sensitivity of iron increased in 1. 27 fold by the addition of nickel nitrate. The method is applied to the determination of iron in sodium fluoride and satisfactory results are obtained.展开更多
文摘A new, simple and highly sensitive kinetic method for the determination oftrace iron (III) has been developed based on the catalytic effect of iron (III) on colorreaction of p-amino-N, N-dimethylaniline dihydrochloride (p-DMA) oxidated by hydrogenperoxide. The reaction is followed spectrophotometrically by measuring the absorbanceat 510 nm. The detection limit is 4.47×10-11 g/ml, and the calibration curve is linear inthe range of 0-0.10μg Fe(III) /25 ml with a relative standard deviation of ±3.25%. Themethod has been applied to the determination of iron in tap-water, chemical reagents andhuman hair.
文摘A method is described for the direct determination of iron in high purity sodium fluoride using graphite furnace atomic absorption spectrometry. Interferences caused by the matrix are investigated. It is shown that the ashing temperature can be increased to 1 400°C and matrix interferences eliminated, the sensitivity of iron increased in 1. 27 fold by the addition of nickel nitrate. The method is applied to the determination of iron in sodium fluoride and satisfactory results are obtained.