1964•Journal of the Japan Institute of Metals and MaterialsOpen access

Spectrophotometric Determination of Thorium in Iron and Steel with Arsenazo III

Masao Kawahata, Heiichi Mochizuki, Rokuro KAJIYAMA, Koshiro Ichihashi

Open full text 0 citations

Abstract

Quantitative determination of thorium in iron and steel by the spectrophotometric method using arsenazo III has been investigated.Thorium-arsenazo III complex showed maximum absorbance at 665 mμ and the concentration of HCl did not affect the determination at 4∼7 N. The interference by zirconium complex with arsenazo III could be eliminated by adding oxalic acid and was masked most effectively in a 2.5 N HCl medium. The coloration followed Beer’s law over the range of 0∼30 μg thorium at 2.5 N HCl in 50 mL for 30 mm cell. Up to 10 mg Al3+, 20 mg Fe3+, 3 mg Ni2+ and 1 mg Pb2+ didn’t interfere the determination of thorium.The method of determination is as follows:The sample, after decomposition with mixed acid and perchloric acid, can be treated for the separation of iron and other metals by magnetic electrolysis with the use of a mercury cathode. The solution is diluted exactly to 250 mL and an aliquot is taken. After evaporating, dissolve the residue in 10 mL of HCl(1+1) and transfer to a 50 mL volumetric flask. Add 14 mL of saturated oxalic acid in HCl(1+1), 15 mL of 4% oxalic acid solution, ascorbic acid to reduce the iron (III) and 5 mL of 0.05% solution of arsenazo III and dilute to the mark with water. The photometric determination is carried out at 665 mμ in 30 mm cell. The thorium content is found via a calibration curve.By this means, 0.010% thorium in iron and steels could be determined with satisfactory results.

Open-access reader

About this research paper

What this paper is about

Quantitative determination of thorium in iron and steel by the spectrophotometric method using arsenazo III has been investigated.Thorium-arsenazo III complex showed maximum absorbance at 665 mμ and the concentration of HCl did not affect the determination at 4∼7 N. The interference by zirconium complex with arsenazo III could be eliminated by adding oxalic acid and was masked most effectively in a 2.5 N HCl medium. The coloration followed Beer’s law over the range of 0∼30 μg thorium at 2.5 N HCl in 50 mL for 30 mm cell. Up to 10 mg Al3+, 20 mg Fe3+, 3 mg Ni2+ and 1 mg Pb2+ didn’t interfere the determination of thorium.The method of determination is as follows:The sample, after decomposition with mixed acid and perchloric acid, can be treated for the separation of iron and other metals by magnetic electrolysis with the use of a mercury cathode. The solution is diluted exactly to 250 mL and an aliquot is taken. After evaporating, dissolve the residue in 10 mL of HCl(1+1) and transfer to a 50 mL volumetric flask. Add 14 mL of saturated oxalic acid in HCl(1+1), 15 mL of 4% oxalic acid solution, ascorbic acid to reduce the iron (III) and 5 mL of 0.05% solution of arsenazo III and dilute to the mark with water. The photometric determination is carried out at 665 mμ in 30 mm cell. The thorium content is found via a calibration curve.By this means, 0.010% thorium in iron and steels could be determined with satisfactory results.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Quantitative determination of thorium in iron and steel by the spectrophotometric method using arsenazo III has been investigated.Thorium-arsenazo III complex showed maximum absorbance at 665 mμ and the concentration of HCl did not affect the determination at 4∼7 N. The interference by zirconium complex with arsenazo III could be eliminated by adding oxalic acid and was masked most effectively in a 2.5 N HCl medium. The coloration followed Beer’s law over the range of 0∼30 μg thorium at 2.5 N HCl in 50 mL for 30 mm cell. Up to 10 mg Al3+, 20 mg Fe3+, 3 mg Ni2+ and 1 mg Pb2+ didn’t interfere the determination of thorium.The method of determination is as follows:The sample, after decomposition with mixed acid and perchloric acid, can be treated for the separation of iron and other metals by magnetic electrolysis with the use of a mercury cathode. The solution is diluted exactly to 250 mL and an aliquot is taken. After evaporating, dissolve the residue in 10 mL of HCl(1+1) and transfer to a 50 mL volumetric flask. Add 14 mL of saturated oxalic acid in HCl(1+1), 15 mL of 4% oxalic acid solution, ascorbic acid to reduce the iron (III) and 5 mL of 0.05% solution of arsenazo III and dilute to the mark with water. The photometric determination is carried out at 665 mμ in 30 mm cell. The thorium content is found via a calibration curve.By this means, 0.010% thorium in iron and steels could be determined with satisfactory results.

Key concepts: Chemistry, Thorium, Oxalic acid, Perchloric acid, Absorbance, Nuclear chemistry, Ascorbic acid, Zirconium

Related papers

Back to paper searchBrowse research topicsOriginal source
Spectrophotometric Determination of Thorium in Iron and Steel with Arsenazo III — Research Paper | ScholarLens