Abstract:There is no unified standard method for the determination of impurity elements in rhodium compounds. The impurity elements in product standard are usually analyzed by spectrography after reducing the compound into rhodium powder. This method not only requires to reduce compound into rhodium powder, but also consumes powdered standard sample for spectrochemical analysis. The analytical procedures are long and the cost is high. In experiment, the sample was dissolved with hydrochloric acid-nitric acid mixture. Ni 221.647 nm, Fe 259.940 nm, Cu 324.754nm, Al 396.152 nm, Pb 220.353 nm, Pd 340.458 nm, Pt 299.797 nm, Ca 393.366 nm, Mg 279.553 nm, Zn 213.856 nm and Cr 205.552 nm were selected as the analytical lines. The background interference was eliminated by background subtraction. The experiments indicated that there was no matrix effect and interference among testing elements. Consequently, the determination method of 11 impurity elements in rhodium trichloride by inductively coupled plasma atomic emission spectrometry (ICP-AES) was established. The linear correlation coefficient (r) of calibration curves of all elements were greater than 0.999. The limits of quantification were all lower than 0.001% (mass fraction). The proposed method was applied for the determination of nickel, iron, copper, aluminum, lead, palladium, platinum, calcium, magnesium, zinc, and chromium in rhodium trichloride. The relative standard deviations (RSD, n=11) of determination results were between 6.4% and 16.5%. The determination results of 11 impurity elements in rhodium trichloride were consistent with those obtained by national standard method GB/T 1421-2004.
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