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      Leachability of nitrided ilmenite in hydrochloric acid

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          Abstract

          Titanium nitride in upgraded nitrided ilmenite (bulk of iron removed) can selectively be chlorinated to produce titanium tetrachloride. Except for iron, most other components present during this low temperature (ca. 200°C) chlorination reaction will not react with chlorine. It is therefore necessary to remove as much iron as possible from the nitrided ilmenite. Hydrochloric acid leaching is a possible process route to remove metallic iron from nitrided ilmenite without excessive dissolution of species like titanium nitride and calcium oxide. Calcium oxide dissolution results in unrecoverable acid consumption. The leachability of nitrided ilmenite in hydrochloric acid was evaluated by determining the dissolution of species like aluminium, calcium, titanium and magnesium in a batch leach reactor for 60 minutes at 90°C under reflux conditions. The hydrochloric acid concentration (11%, 18% and 25%), initial acid-to-iron mole ratio (2:1, 2.5:1 and 3.3:1), and solid-to-liquid mass ratio (1:8.33 to 1:2.13) were varied. The results indicate that a hydrochloric acid concentration of 25 wt% supplied in a 2:1 acid-to-iron mole ratio would produce the most favourable upgraded nitrided ilmenite product. The dissolution of iron in this solution reached 97 per cent after only 60 minutes. The total dissolution of calcium and titanium species was 0.01 and 0.11 wt% respectively. Hydrochloric acid can therefore be used as lixiviant to remove metallic iron from nitrided ilmenite.

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          Kinetics of ilmenite dissolution in hydrochloric acid

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            Hydrometallurgical criteria for TiO2 leaching from Rosetta ilmenite by hydrochloric acid

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              Ilmenite smelting: The basics

              While some of the practical details of ilmenite smelting are not well documented, there is a substantial body of literature on the principles of ilmenite smelting, and the behaviour of solidified titania slag. This information is summarized, focusing on the basic reactions, departure from equilibrium, the behaviour of impurities, and reactions of solidified slag. The emphasis is on the South African operations.
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                Author and article information

                Contributors
                Role: ND
                Role: ND
                Role: ND
                Journal
                jsaimm
                Journal of the Southern African Institute of Mining and Metallurgy
                J. S. Afr. Inst. Min. Metall.
                The Southern African Institute of Mining and Metallurgy (Johannesburg, Gauteng, South Africa )
                2225-6253
                2411-9717
                2011
                : 111
                : 3
                : 137-140
                Affiliations
                [01] orgnameCSIR orgdiv1Materials Science and Manufacturing
                [02] orgnameUniversity of Pretoria orgdiv1Department of Chemical Engineering
                Article
                S2225-62532011001500004
                8b55bea9-b4ed-423e-93ca-81b50edb43eb

                This work is licensed under a Creative Commons Attribution 4.0 International License.

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                Figures: 0, Tables: 0, Equations: 0, References: 10, Pages: 4
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                SciELO South Africa


                Titanium nitride,upgraded nitrided ilmenite,hydrochloric acid leaching,metallic iron dissolution

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