Effect of Residual Carbon on Vanadium and Scandium Leaching from Thermally and SteamThermally Treated Metalliferous Oil Shale
Keywords:
oil shale, residual carbon, decarbonizationAbstract
The leachability of vanadium and scandium was compared for two technologically distinct products derived from metalliferous oil shale of the Kyzylkum region, Uzbekistan: thermal-treatment ash produced without a dedicated decarbonization step and flotation tailings from steam-thermally treated shale after removal of the carbonaceous fraction. Two existing sulfuric-acid leaching datasets were evaluated under closely comparable conditions. At a liquid-to-solid ratio of 3 mL g⁻¹, 75–80 °C, and approximately 60 min, average vanadium recovery was 35.8% from thermal ash and 74.7% from flotation tailings, whereas scandium recovery was 31.5% and 78.8%, respectively. Maximum recoveries within the investigated parameter ranges were 56.7% versus 90.0% for V and 54.8% versus 98.6% for Sc. The thermal ash retained residual organic matter, reflected by a loss on ignition of 11.48%, while the flotation product had undergone targeted decarbonization. The markedly lower recovery from the carbon-bearing ash is therefore consistent with parasitic re-sorption of dissolved metal species by residual carbon, a mechanism previously observed for related material. For the decarbonized tailings, a 4×4 factorial dataset yielded statistically significant effects of both sulfuric-acid concentration and leaching time: R² = 0.864 for V and 0.965 for Sc, with p < 0.05 for both factors. The results identify decarbonization as a quantitatively important process variable and support its direct experimental evaluation as a pretreatment step for improving V and Sc recovery from thermally treated oil-shale residues.
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