Related Experiment Video
Updated: Aug 11, 2026

Atomically Defined Templates for Epitaxial Growth of Complex Oxide Thin Films
Published on: December 4, 2014
New insights on scandium separation from scandium concentrate with titanium dioxide wastewater
Junhui Xiao1,2,3,4,5, Nanlan Zhong6, Renju Cheng7
1School of Environment and Resource, Southwest University of Science and Technology, Mianyang, 621010, China. xiaojunhui33@163.com.
Abstract:
In this study, a scandium concentrate with Sc2O3 content of 66.24 g/t was obtained from V-Ti magnetite tailings by physical concentration, and the main Sc-bearing minerals were augite and hornblende. A novel process of roasting and leaching was proposed to extract scandium from scandium concentrate with titanium dioxide wastewater. Scandium concentrate was pretreated by roasting, and titanium dioxide wastewater was used to directly leach scandium from the roasted ore. The effects of roasting and leaching parameters such as roasting temperature, roasting time, roasting agents, leaching temperature, leaching time, liquid-to-solid ratio, and leaching agents on scandium separation were thoroughly researched in the experimental procedure. The results show that a scandium leaching efficiency of 85.89% was obtained, and the scandium content of leaching residue decreased to 9.31 g/t under the optimal conditions: a roasting temperature of 1123 K, a roasting time of 120 min, a leaching temperature of 343 K, a leaching time of 120 min, and a m (titanium dioxide wastewater)∶m (roasted ore)∶m (ammonium fluoride) ratio of 8∶1∶0.09. The main findings of the scandium separation mechanism show that Sc-bearing minerals can effectively decompose and release scandium element after roasting, and created favorable conditions for scandium leaching with titanium dioxide wastewater to achieve the purpose of scandium recovery.
More Related Videos
08:44Synthesis and Reaction Chemistry of Nanosize Monosodium Titanate
Published on: February 23, 2016
08:54Vibrational Spectra of a N719-Chromophore/Titania Interface from Empirical-Potential Molecular-Dynamics Simulation, Solvated by a Room Temperature Ionic Liquid
Published on: January 25, 2020
Related Concept Videos
Free Energy and Equilibrium
Recall that Q is the numerical value of the mass action expression...
Balancing Redox Equations
Extraction: Advanced Methods
Volatilization
Microbial Wastewater Treatment
Biological Treatment of Effluent and Waste Water