top of page
Reactive DLE Lithium Recovery from Complex Brines
OUR SOLUTION
The ALLITIC™ process.
Our patent pending ALLITIC™ process is a non-adsorption, non-solvent extraction, membrane-less DLE technology that selectively recovers lithium from complex brines without expensive proprietary chemistries and complex process systems.
The outcome is a scalable, capital efficient, and low cost process that can recover lithium from the toughest of brines without the complexity and limitations of traditional DLE technologies.
The core technology of the ALLITIC™ process is made possible through a reactive DLE precipitation process based on proven critical mineral and mining process techniques. Lithium recovery is accomplished in minutes producing a solid lithium reaction product that is easily separated from the spent brine using standard process equipment.
For these reasons, the ALLITIC™ process eliminates the complexity of operations found in traditional DLE technologies along with the high capital costs associated with them. The use of traditional mining equipment results in an ALLITIC™ process with high availability that is operator and maintenance friendly.
Gone are the days where your lithium production dependency is based on bespoke and proprietary technologies that rely on adsorption, solvent extraction and membrane separation for lithium recovery. Concerns and project delays about water usage, supply chain risks and freedom to operate are alleviated.
With the ALLITIC™ process, a solution is now available for solving the challenges of lithium recovery from complex brine resources without the need for proprietary materials to achieve success.
At PARANSAS SOLUTIONS, we are not motivated to constrain our lithium production partners with proprietary materials based on sorbents, solvent extractants or specialized membranes. We believe the ALLITIC™ process should be equally shared for all lithium producers and let each determine their success untethered by the multitude of constraints from traditional DLE technologies.
Reactive.
Lithium.
Precipitation.
bottom of page