Business
IperionX & Energy Fuels Progress Leading U.S. Rare Earth Collaboration
CHARLOTTE, N.C. / Mar 08, 2022 / Business Wire / IperionX Limited (“IperionX” or “Company”) (ASX: IPX) is pleased to announce that Energy Fuels, Inc. (“Energy F

About this update from Energy Fuels Inc.
[{"type":"text","content":"CHARLOTTE, N.C. / Mar 08, 2022 / Business Wire / IperionX Limited (“IperionX” or “Company”) (ASX: IPX) is pleased to announce that Energy Fuels, Inc. (“Energy Fuels”) (NYSE: UUUU) (TSX: EFR) has undertaken laboratory evaluation of rare earth mineral concentrates from IperionX’s Titan Project in west Tennessee. IperionX and Energy Fuels previously signed a memorandum of understanding for the supply of natural monazite sands from IperionX’s Titan Project in Tennessee to Energy Fuels’ White Mesa Mill in Utah (refer ASX announcement dated April 22, 2021). Energy Fuels and IperionX are continuing to evaluate expanding their collaboration to establish a fully integrated permanent rare earth magnet supply chain in the U.S. Energy Fuels’ evaluation indicates that IperionX’s rare earth minerals are suitable as a high quality feedstock to produce a high purity mixed rare earth carbonate at Energy Fuels’ White Mesa Mill in Utah. Energy Fuels is currently producing a mixed rare earth carbonate at commercial scale at its mill. This commercial product is the most advanced rare earth material being produced in the U.S. today at scale. Energy Fuels also intends to construct solvent extraction (SX) rare earth separation infrastructure at its mill in the coming years, allowing the facility to produce separated rare earth oxides from high quality feedstocks like the rare earth concentrate expected to be produced from IperionX’s Titan Project. Energy Fuels has also made moves into the rare earth metal and alloy business. Rare earth elements are used in many applications including battery alloys, catalysts, ceramics and metal alloys. However, it is the increasing demand for rare earths used in high strength permanent magnets found in power dense electric motors used in electric vehicles and wind turbines that makes up the majority of global consumption. In particular, the heavy rare earths dysprosium and terbium are essential for the production of NdFeB magnets used in clean energy, military and high technology solutions. Establishing a U.S. heavy rare earth to magnet supply will be highly strategic and valuable to the country’s leading defense, EV and clean energy sectors. Test work to date1 indicates that IperionX’s rare earth minerals contain a large amount of the light rare earths neodymium and praseodymium, as well as a significant distribution...