Analysis of iron ores by ICP-AES

Author:

Karimova T. A.1,Buchbinder G. L.2,Romanov N.3,Kachin S. V.1

Affiliation:

1. Siberian Federal University

2. Intertech Trading Corporation in Siberia

3. Intertech Trading Corporation in Ukraine

Abstract

A method for the analysis of iron ore raw materials (IORM) using inductively coupled plasma atomic- emission spectrometry (ICP-AES) and Concentration Ratio Calibration (CRC) has been developed. However, the general eq. for calibration by concentration ratios used in analysis of metals and alloys was modified with allowance for the IORM characteristics: all the elements, except sulfur, were represented as oxides, iron was represented as FeO and Fe2O3, and the total of 100% included ignition losses (LOI). A variant of solving the equation is proposed, which allowed us to relate the relative concentrations of the components (the ratios of the mass fraction of the determined components to the mass fraction of iron oxide) to the ratio of the line intensities of the certain element and iron line measured on a spectrometer. The equation takes into account the content of FeO and LOI, which are determined by standard methods of analysis. A method for acid decomposition of the samples in autoclaves heated in a HotBlock 200 system is proposed: a sample weight of 0.25 g was decomposed in closed vessels at a temperature of 150 – 180°C in the mixture of HCl, HF and HNO3. The following components were determined in concentrates and pellets: Fe2O3, Fetot, Al2O3, CaO, Cr2O3, K2O, MgO, MnO, Na2O, P2O5, SiO2, TiO2, Co, Cu, Mo, Ni, Pb, S, V, Zn. The correctness of the developed method is confirmed by the analysis of SS of iron ore and iron concentrates, as well as by comparison with the results obtained by standardized methods. The proposed technique provides iron determination in iron ore raw materials with an accuracy no worse than that specified in GOST 23581, all other components are determined in a wider range of contents and with a higher accuracy.

Publisher

TEST-ZL Publishing

Subject

Condensed Matter Physics

Reference14 articles.

1. Grigorenko G. M., Grytskiv Ya. P., Chubov L. N., Grytskiv A. Ya. Analysis of iron ore concentrate by the AES-ICP / Elektromet. Stali Ferrospl. 2011. N 3. P. 43 – 45 [in Russian].

2. State Standard GOST 32517.1–2013. Iron ores, concentrates, agglomerates and pellets. — Moscow: Standartinform, 2014. — 19 p. [in Russian].

3. Bings N. H., Bogaerts A., Broekart J. A. C. Atomic Spectroscopy: A Review / Anal. Chem. 2010. Vol. 82. N 15. P. 4653 – 4681. DOI: 10.1021/ac1010469

4. Chemical analysis in Geology and Geochemistry / G. N. Anoshin, ed. — Novosibirsk: Geo, 2016. — 622 p. [in Russian].

5. Mayorova A. V., Pechishcheva N. V., Vorontsova K. A., Shchepetkin A. A. Assesment of efficiency of internal standardization for iron ores and slags analysis by inductively coupled plasma atomic emission spectroscopy / Butlerov. Soobshch. 2013. Vol. 35. N 9. P. 47 – 54 [in Russian].

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