X-Ray Fluorescence Analysis of $Ta_2O_5, Nb_2O_5, TiO_2, SnO_2$ and $Zr_O2$ in Tin-Slags
Young-Sang Kim, Chong Wook Lee
Abstract
Young-Sang Kim, Chong Wook Lee
Abstract
With the synthetic standards, valuable metals , and ) in the tin slags have been determined by the x-ray fluorescence spectrometry. The powder sample and the standards are homogeneously mixed with anhydrous and in weight ratio of 15 : 42 : 3 respectively. The mixed material is fused at for 30 minutes to be changed into the glass bead. The bead is ground to (-) 325 mesh size and pelletized. The analytical results obtained in this work are consistent with the data obtained by other common methods within allowable error range. The standard deviation for in PTS-H sample is 0.12 % at level of 3.40 % content
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
With the synthetic standards, valuable metals , and ) in the tin slags have been determined by the x-ray fluorescence spectrometry. The powder sample and the standards are homogeneously mixed with anhydrous and in weight ratio of 15 : 42 : 3 respectively. The mixed material is fused at for 30 minutes to be changed into the glass bead. The bead is ground to (-) 325 mesh size and pelletized. The analytical results obtained in this work are consistent with the data obtained by other common methods within allowable error range. The standard deviation for in PTS-H sample is 0.12 % at level of 3.40 % content
Key concepts: Tin, Anhydrous, Analytical Chemistry (journal), Materials science, X-ray fluorescence, Relative standard deviation, Fluorescence, Metallurgy