PDF

2026 Hajdu Rahkama Finnish Carbonatite Tailings REE

Réka Hajdu‑Rahkama, Tuomo Mäkelä

2026enrare earth elementsmine tailingspreconcentrationmagnetic separationgravity separationelectrostatic separation

Abstract

Language:

This study investigates the recovery and concentration of rare earth elements (REE) from mine tailings, addressing the growing demand fueled by the green energy transition and shifting geopolitical landscapes. Focusing on carbonatite-type tailings from a Finnish closed Pb-REE mine, containing mostly light REE (0.23 wt% neodymium and praseodymium), the research aims to characterize the material and evaluate mechanical preconcentration methods through sieving, as well as magnetic, gravity, and electrostatic separation techniques. The results reveal that REE concentrations are strongly influenced by particle size. Smaller particles have higher REE grade; for instance, 0.3 and 0.8 wt% REE at sizes of 250–500 µm and 0.45–0.63 µm, respectively. Furthermore, the complex mineral composition, minerals associations, and presence of gangue minerals make concentration of tailings particularly challenging. For example, the presence of silicon-containing REE minerals hampered efficient silicon separation, causing loss of 58–77% of REE along with silicon during density-based separations. Fe separation was also inefficient, 4 and 20% separation efficiency by low intensity magnetic and electrostatic separations, respectively, because REE minerals including monazite, with weak paramagnetic properties, are hard to separate from iron oxides using low intensity magnetic or electrostatic methods. Overall, mechanical separation methods show that a multi-step process improves REE recovery from low-grade mine tailings, with particle size and mineral properties affecting efficiency. Future work should target multi-cycle approaches and high-intensity magnetic separation for better concentration of fine REE minerals. Understanding mineralogy and optimizing preconcentration from tailings helps promote sustainable resource use and lessen dependence on primary sources.

Download

Cite This Work

@article{3a100b1c-b7b6-4bcb-a775-9f07f215e54a,
  title={2026 Hajdu Rahkama Finnish Carbonatite Tailings REE},
  author={Réka Hajdu‑Rahkama and Tuomo Mäkelä},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2026 Hajdu Rahkama Finnish Carbonatite Tailings REE
AU  - Réka Hajdu‑Rahkama
AU  - Tuomo Mäkelä
PY  - 2026
LA  - en
ER  -

Similar Items

Biometallurgical Recovery of Metals from Waste Electrical and Electronic Equipment: a Review

Sadia Ilyas, Jae-chun Lee

The feasibility of biometallurgical processing for recovering heavy metals, precious metals, and rare earth elements from waste electrical and electro

2014enPDF

Optimization of Integrated Steel Plant R

This paper addresses the challenge of assessing the feasibility of wind power plant projects at sites with insufficient or no local historic wind data

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Electrochemical techniques for a cleaner

Important advances in electrochemical engineering technology over the last three decades have fostered the development of a lternative methods to alle

2026enPDF

Environmental and Human Health Risks Ass

2026enPDF

The Recovery of Precious and Base Metals

Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to

2026enPDF