American Rare Earths (ASX: ARR | OTCQX: ARRNF | ADR: AMRRY) (“ARR” or the “Company”) has successfully completed another critical stage in its mineral processing program by producing a mixed rare earths oxide (“MREO”) using the updated preliminary PFS mineral processing flowsheet.
Highlights
Rare earth oxides were produced from Halleck Creek ore using the updated preliminary Pre-Feasibility Study (“PFS”) mineral processing flowsheet1
A Mixed Rare Earth Oxalate and Mixed Rare Earth Oxide was created from purified leachate solution using the material from the impurity removal testing2
This is the most significant technical milestone achieved for the Project to date
MREO from Halleck Creek (“the Project”) was produced using the material – a pregnant leach solution (“PLS”) – from the impurity removal testing campaign3. This was achieved through precipitating a mixed rare earth oxalate and then creating MREO powder (see Figure 1). This major technical milestone confirms that rare earths can be extracted into metallic oxides from Halleck Creek ore using the updated preliminary PFS mineral processing flowsheet currently being finalized for the upcoming PFS. Solvent extraction computer simulation is now underway, using the results of these tests.
SGS in Lakefield, Ontario, Canada created the MREO from the Halleck Creek PLS through a two- step process. The first step consists of precipitating the metals in solution using oxalic acid to create a mixed rare earth oxalate. Oxalic acid is highly selective in precipitating rare earth elements (“REE”) from PLS while other elements stay in solution. SGS performed three precipitation tests using variable oxalic acid addition rates. The second step, called calcining, involved SGS heating the combined mixed rare earth oxalates to 1,000oC to oxidize the material into a MREO. A beneficial effect of calcining is that it oxidizes the cerium, converting it from Ce3+ to Ce4+. Ce4+ is not soluble in the reagent which will be used to dissolve REEs from the MREO for solvent extraction.
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