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CMI Project 1.1.9 Diversifying lithium supply from brines to hard-rock minerals: mechanochemical extraction of lithium at low temperature (MELLT) from α-Spodumenes Research Highlights

Mechanochemical processing of lithium mudstone for facile water extraction

CMI researchers from Ames National Laboratory and Lawrence Berkeley National Laboratory conducted the activity for this highlight

Image of BM clay and three milled products, BM clay, BM clay+CaO and BM clay+Na2CO3

Diversifying lithium supply from brines to hard-rock minerals: mechanochemical extraction of lithium at low temperature (MELLT) from α-spodumenes

CMI researchers from Ames National Laboratory conducted the activity for this highlight

An infographic showing the MELLT approach for Li-extraction from α-spodumene

Diversifying lithium supply from brines to hard-rock minerals: mechanochemical extraction of lithium at low temperature (MELLT) from α-spodumenes

CMI researchers from Ames National Laboratory conducted the activity for this highlight

Diversifying lithium supply from brines to hard-rock minerals: mechanochemical extraction of lithium at low temperature (MELLT) from α-spodumenes

CMI researchers from Ames National Laboratory conducted the activity for this highlight

image of logo for 2024 R&D 100 Finalist

CMI-trained researcher pursues career at AMMTO (US DOE)

CMI researchers from Ames National Laboratory conducted the activity for this highlight

Ihor Hlova (PI, Project 1.1.9, back) and Tyler Del Rose (front) placing the ball milling chamber into the machine for processing.

Mechanochemical extraction of lithium at low temperature (MELLT) from α-spodumenes

CMI researchers from Ames National Laboratory conducted the activity for this highlight.

Flow diagram showing the industry standard processes and the MELLT approach for Li-extraction from α-spodumene

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