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Beneficiation processes to maximize lithium recovery generally depend on the source of lithium (such as spodumene-bearing mineral ores, brine deposits, or clay deposits) and involve tailored techniques. For hard rock lithium sources like spodumene, a combination of physical and chemical methods is used, while brines or clays require different approaches. Here’s a breakdown of beneficiation processes:
Spodumene is the most common lithium-bearing mineral extracted from hard rock ores. Beneficiation focuses on upgrading the ore to increase lithium content before further processing.
Comminution:
Dense Media Separation (DMS):
Flotation:
Magnetic Separation:
Calcination:
Leaching and Hydrometallurgy:
Brine deposits in salt flats (e.g., Salar de Atacama) are rich in lithium salts. The beneficiation process is designed to extract lithium efficiently from high-concentration brine waters.
Evaporation Ponds:
Precipitation of Impurities:
Solvent Extraction:
Ion Exchange:
Recovery via Carbonation:
Lithium-bearing clays such as hectorite and jadarite require extraction processes due to their complex mineralogy.
Breakdown of Clay Structure:
Leaching:
Impurity Removal:
Ore Characterization and Process Optimization:
Hybrid Approaches:
Reducing Contaminants:
Automation and Real-Time Monitoring:
Environmental Considerations:
In summary, the specific beneficiation process to maximize lithium recovery depends heavily on resource type and ore quality. Advances in both physical concentration (like flotation and DMS) and chemical extraction (thermal or acid leaching) techniques, as well as selective purification technologies (such as ion exchange or solvent extraction), play critical roles in achieving high lithium recovery rates.
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