2013•Advanced materials researchOpen access

Determination of Rare-Earth Elements in Titanium Matrix Composites by ICP-AES

Xiao Hui Pang, Song Gao, Shuai Gao, Yan Zhang

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Abstract

A method of determination of Y , La ,Pr , Sm , Ce ,Gd and Nd rare-earth elements in Titanium matrix composite by inductively coupled plasma atomic emission spectrometry (ICP-AES ) was study. The experiment of sample dissolution,selection of analysis lines,the effect of matrix and coexist elements on the determination , instrument parameters of the analysis results were carried out. The recovery rate of this method was found in the ranges 98% to 105%, the RSD were less than 4%. The method is simple, rapid and accurate.

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A method of determination of Y , La ,Pr , Sm , Ce ,Gd and Nd rare-earth elements in Titanium matrix composite by inductively coupled plasma atomic emission spectrometry (ICP-AES ) was study. The experiment of sample dissolution,selection of analysis lines,the effect of matrix and coexist elements on the determination , instrument parameters of the analysis results were carried out. The recovery rate of this method was found in the ranges 98% to 105%, the RSD were less than 4%. The method is simple, rapid and accurate.

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Available abstract

A method of determination of Y , La ,Pr , Sm , Ce ,Gd and Nd rare-earth elements in Titanium matrix composite by inductively coupled plasma atomic emission spectrometry (ICP-AES ) was study. The experiment of sample dissolution,selection of analysis lines,the effect of matrix and coexist elements on the determination , instrument parameters of the analysis results were carried out. The recovery rate of this method was found in the ranges 98% to 105%, the RSD were less than 4%. The method is simple, rapid and accurate.

Key concepts: Inductively coupled plasma atomic emission spectroscopy, Matrix (chemical analysis), Materials science, Titanium, Dissolution, Rare earth, Composite number, Inductively coupled plasma

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