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Featured researches published by Toshiko Itagaki.


Analytical Sciences | 2017

Application of Internal Standard Method for Several 3d-Transition Metallic Elements in Flame Atomic Absorption Spectrometry Using a Multi-wavelength High-resolution Spectrometer

Yusuke Toya; Toshiko Itagaki; Kazuaki Wagatsuma

We investigated a simultaneous internal standard method in flame atomic absorption spectrometry (FAAS), in order to better the analytical precision of 3d-transition metals contained in steel materials. For this purpose, a new spectrometer system for FAAS, comprising a bright xenon lamp as the primary radiation source and a high-resolution Echelle monochromator, was employed to measure several absorption lines at a wavelength width of ca. 0.3 nm at the same time, which enables the absorbances of an analytical line and also an internal standard line to be estimated. In considering several criteria for selecting an internal standard element and the absorption line, it could be suggested that platinum-group elements: ruthenium, rhodium, or palladium, were suitable for an internal standard element to determine the 3d-transition metal elements, such as titanium, iron, and nickel, by measuring an appropriate pair of these absorption lines simultaneously. Several variances of the absorption signal, such as a variation in aspirated amounts of sample solution and a short-period drift of the primary light source, would be corrected and thus reduced, when the absorbance ratio of the analytical line to the internal standard line was measured. In Ti-Pd, Ni-Rh, and Fe-Ru systems chosen as typical test samples, the repeatability of the signal respnses was investigated with/without the internal standard method, resulting in better precision when the internal standard method was applied in the FAAS with a nitrous oxide-acetylene flame rather than an air-acetylene flame.


Fresenius Journal of Analytical Chemistry | 2000

Determination of trace amounts of gold and silver in high-purity iron and steel by electrothermal atomic absorption spectrometry after reductive coprecipitation

Toshiko Itagaki; Tetsuya Ashino; Kunio Takada


Bunseki Kagaku | 2015

A Simultaneous Internal Standard Method for Improving the Analytical Precision of Flame Atomic Absorption Spectrometry Using High-resolution Continuum-light-source Apparatus

Toshiko Itagaki; Tetsuya Ashino; Kunio Takada; Kazuaki Wagatsuma


Tetsu To Hagane-journal of The Iron and Steel Institute of Japan | 2007

Effect of the Matrix Element on the Determination of Tramp Elements in Iron and Steel by ICP-OES: The Usefulness of the Matrix Removal

Kunio Takada; Tetsuya Ashino; Tsutomu Syoji; Toshiko Itagaki; Kazuaki Wagatsuma


Tetsu To Hagane-journal of The Iron and Steel Institute of Japan | 2003

Comparison of ICP Atomic Emission Intensities on Axial and Radial Views, and Determination of Trace Amounts of As, Sb and Sn in Iron and Steel

Toshiko Itagaki; Kunio Takada; Kazuaki Wagatsuma; Kenji Abiko


Materials Transactions | 2002

Determination of Trace Element Quantities in Ultra High-Purity Iron by Spectrochemical Analysis after Chemical Separation

Kunio Takada; Tetsuya Ashino; Toshiko Itagaki; Yukitoshi Morimoto; Kazuaki Wagatsuma; Kenji Abiko


Bunseki Kagaku | 2009

Influence of Dissolution Acid on Emission Intensity in Inductively Coupled Plasma-Optical Emission Spectrometry with Hydrofluoric Acid-Proof Torch

Mikio Ishikuro; Toshiko Itagaki; Kazuaki Wagatsuma


Materials Transactions | 2002

Chemical Form of Precipitate by Coprecipitation with Palladium for Separation of Trace Elements in High-Purity Metals

Tetsuya Ashino; Kunio Takada; Toshiko Itagaki; Shun Ito; Kazuaki Wagatsuma; Kenji Abiko


Bunseki Kagaku | 2017

Selection of Iron Absorption Lines for Sequential Internal Standard Method for Accurate Determination of Nickel in Steel Samples by Flame Atomic Absorption Spectrometry Using a High-resolution Continuum-light-source Apparatus

Toshiko Itagaki; Tetsuya Ashino; Kazuaki Wagatsuma


Spectrochimica Acta Part B: Atomic Spectroscopy | 2016

Correlation between the Gas Temperature and the Atomization Behavior of Analyte Elements in Flame Atomic Absorption Spectrometry Estimated with a Continuum-light-source Spectrometer System

Yusuke Toya; Toshiko Itagaki; Kazuaki Wagatsuma

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