Bauxite residue (BR) is a well promising resource for critical metals, especially scandium (Sc), a rare and expensive metal with increasing applications in advanced technology. Greek BR seems to significantly favor a commercially viable recovery of Sc combining optimized leaching and advanced separation techniques. Leaching with mineral acids emerges as the dominant selection compared to other techniques. This study investigates an optimized leaching condition set for Sc recovery, using the most advantageous option of sulfuric acid. The main target is to develop a leaching scale-up process to be established in the premises of Mytilineos S.A. (formerly Aluminium of Greece, the largest Greek alumina and aluminum producer), taking into account...
© 2016 Elsevier Ltd. All rights reserved. Bauxite residue (red mud) that is generated from karst bau...
Bauxite residue (red mud) is a waste residue that results from the production of alumina by the Baye...
Scandium (Sc) has attracted a lot of attention in the last decades because of the unique technologic...
Bauxite residue (BR) is a well promising resource for critical metals and especially scandium (Sc), ...
The exploitation of Bauxite Residue (BR) of Aluminium industry as a resource for production of Rare ...
Bauxite residue is the voluminous by-product of alumina production after Bayer process. Its high alk...
Aiming at the industrial scale development of a Scandium (Sc)-selective leaching process of Bauxite ...
In this study, scandium extraction from Bauxite residue based on sulfuric acid leaching is presented...
As a member of EU H2020 ETN Red Mud Project which aims to recover all constituents of bauxite residu...
Bauxite residue is a high-iron waste of the alumina industry with significant contents of scandium, ...
Bauxite residue (red mud) is a waste product of the alumina refining in the Bayer process and contai...
The research leading to these results has received funding from the European Union (EU) Horizon 2020...
In this study, bauxite residue was directly leached using the Brønsted acidic ionic liquid 1-...
We report the development of a process allowing the selective, sustainable recovery of scandium (Sc)...
Bauxite residue (or red mud) is a waste generated during the Bayer process of alumina production. It...
© 2016 Elsevier Ltd. All rights reserved. Bauxite residue (red mud) that is generated from karst bau...
Bauxite residue (red mud) is a waste residue that results from the production of alumina by the Baye...
Scandium (Sc) has attracted a lot of attention in the last decades because of the unique technologic...
Bauxite residue (BR) is a well promising resource for critical metals and especially scandium (Sc), ...
The exploitation of Bauxite Residue (BR) of Aluminium industry as a resource for production of Rare ...
Bauxite residue is the voluminous by-product of alumina production after Bayer process. Its high alk...
Aiming at the industrial scale development of a Scandium (Sc)-selective leaching process of Bauxite ...
In this study, scandium extraction from Bauxite residue based on sulfuric acid leaching is presented...
As a member of EU H2020 ETN Red Mud Project which aims to recover all constituents of bauxite residu...
Bauxite residue is a high-iron waste of the alumina industry with significant contents of scandium, ...
Bauxite residue (red mud) is a waste product of the alumina refining in the Bayer process and contai...
The research leading to these results has received funding from the European Union (EU) Horizon 2020...
In this study, bauxite residue was directly leached using the Brønsted acidic ionic liquid 1-...
We report the development of a process allowing the selective, sustainable recovery of scandium (Sc)...
Bauxite residue (or red mud) is a waste generated during the Bayer process of alumina production. It...
© 2016 Elsevier Ltd. All rights reserved. Bauxite residue (red mud) that is generated from karst bau...
Bauxite residue (red mud) is a waste residue that results from the production of alumina by the Baye...
Scandium (Sc) has attracted a lot of attention in the last decades because of the unique technologic...