Production of rutile nano-rods from Egyptian ilmenite mineral via a two-step physicochemical processes: a comparison study between low-grade and high-grade ilmenite concentrate
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s43153-024-00467-7.pdf
Reference35 articles.
1. Abdelgalil M, El-Barawy K, Ge Y, Xia L (2023) The recovery of TiO2 from ilmenite ore by ammonium sulfate roasting-leaching process. Processes 11(9):2570
2. Ahyuningsih W, Ramelan S, Pramono AH (2014) Titanium dioxide production by hydrochloric acid leaching of roasting ilmenite sand. J Sci Res 4:2250–3153
3. Berkovich SA (1975) Recovery of titanium oxide from ores. US Patent US3903239A
4. Castañeda L, Terrones M (2007) Synthesis and structural characterization of novel flower-like titanium dioxide nanostructures. Phys B 390:143–146
5. Demadis KD, Somara M, Mavredaki E (2012) Additive-driven dissolution enhancement of colloidal silica. 3. fluorine-containing additives. Ind Eng Chem Res 51:2952–2962
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