Presenters: J.S. Bradshaw, R.M. Izatt, S.R. Izatt (right) Cobalt and nickel are found together in nature. IBC has highly selective MRT™ products that can separate nickel and cobalt from laterite ores and from each other at high purity with minimal waste generation. July 23, 2022 July 27, 2026 Rare earth elements (REE) have very similar properties and are difficult to separate from each other. MRT™ processes can separate REE as a group from a pregnant leach solution followed by separation of the individual REE. Separation rates are >99% while recovery can be accomplished at 99%+ purity. Dysprosium has been separated in a pilot plant at 99.99% purity. June 17, 2022 July 27, 2026 MRT™ processes have major advantages over solvent extraction and precipitation which are commonly used to make metal separations in recycling. MRT™ separations are made in a clean, efficient way with minimal environmental problems. Separation and recovery rates approach 100% with high purities of 99%+. May 17, 2022 July 27, 2026 Presenters: J.S. Bradshaw, R.M. Izatt, S.R. Izatt (right) High metal selectivity is the key to green chemistry separation systems. Low-selectivity solvent extraction-based systems are wasteful and generate large amounts of waste that must be managed with high capex and opex costs. April 1, 2022 July 27, 2026 Presenter: J. Lifton Critical, technology and minor metals (REE, cobalt, indium, others) are essential to functioning of global high-tech products. The U.S. imports nearly 100% of these metals. Great need exists for technologies capable of economically recovering these metals from primary and secondary sources. March 30, 2022 July 27, 2026 Presenter: J. Lifton To meet future critical technology and minor metal demand, recycling is essential. Recycling metals from spent products requires a different technology than that used in mining the metals. MRT™ is the most promising technology for this task. March 29, 2022 July 27, 2026 Presenter: J. Lifton Highly selective MRT™ processes dramatically reduce the number of separation steps and time required along with marked conservation of labor, space, chemicals, and other operating metrics for recovery of target metals from mine-derived pregnant leach solutions. As metal grades in mining decrease, the importance of economical MRT™ processes increase because of their high individual metal selectivity and reduced capital and operational expenses. March 27, 2022 July 27, 2026 Presenter: J. Lifton Production of lithium from brine takes years using inefficient, slow evaporation processes with low lithium selectivity resulting in poor lithium recovery. MRT™ processes recover 99%+ of the lithium in the brine in one step using highly selective SuperLig® products. March 23, 2022 July 27, 2026 Presenter: J. Lifton The highly selective MRT™ process is superior for removing impurity metals from cobalt electrolyte solutions to produce battery-grade cobalt economically. March 18, 2022 July 27, 2026 Pagination ← 1 2 3 4
Presenters: J.S. Bradshaw, R.M. Izatt, S.R. Izatt (right) Cobalt and nickel are found together in nature. IBC has highly selective MRT™ products that can separate nickel and cobalt from laterite ores and from each other at high purity with minimal waste generation. July 23, 2022 July 27, 2026
Rare earth elements (REE) have very similar properties and are difficult to separate from each other. MRT™ processes can separate REE as a group from a pregnant leach solution followed by separation of the individual REE. Separation rates are >99% while recovery can be accomplished at 99%+ purity. Dysprosium has been separated in a pilot plant at 99.99% purity. June 17, 2022 July 27, 2026
MRT™ processes have major advantages over solvent extraction and precipitation which are commonly used to make metal separations in recycling. MRT™ separations are made in a clean, efficient way with minimal environmental problems. Separation and recovery rates approach 100% with high purities of 99%+. May 17, 2022 July 27, 2026
Presenters: J.S. Bradshaw, R.M. Izatt, S.R. Izatt (right) High metal selectivity is the key to green chemistry separation systems. Low-selectivity solvent extraction-based systems are wasteful and generate large amounts of waste that must be managed with high capex and opex costs. April 1, 2022 July 27, 2026
Presenter: J. Lifton Critical, technology and minor metals (REE, cobalt, indium, others) are essential to functioning of global high-tech products. The U.S. imports nearly 100% of these metals. Great need exists for technologies capable of economically recovering these metals from primary and secondary sources. March 30, 2022 July 27, 2026
Presenter: J. Lifton To meet future critical technology and minor metal demand, recycling is essential. Recycling metals from spent products requires a different technology than that used in mining the metals. MRT™ is the most promising technology for this task. March 29, 2022 July 27, 2026
Presenter: J. Lifton Highly selective MRT™ processes dramatically reduce the number of separation steps and time required along with marked conservation of labor, space, chemicals, and other operating metrics for recovery of target metals from mine-derived pregnant leach solutions. As metal grades in mining decrease, the importance of economical MRT™ processes increase because of their high individual metal selectivity and reduced capital and operational expenses. March 27, 2022 July 27, 2026
Presenter: J. Lifton Production of lithium from brine takes years using inefficient, slow evaporation processes with low lithium selectivity resulting in poor lithium recovery. MRT™ processes recover 99%+ of the lithium in the brine in one step using highly selective SuperLig® products. March 23, 2022 July 27, 2026
Presenter: J. Lifton The highly selective MRT™ process is superior for removing impurity metals from cobalt electrolyte solutions to produce battery-grade cobalt economically. March 18, 2022 July 27, 2026