The strategic alliance combines Curio's advanced nuclear recycling technology expertise with Deep Isolation's pioneering nuclear waste disposal solutions.
FREMONT, CA: "This collaboration signifies a pivotal moment in nuclear technology history where both advanced recycling and advanced geologic sequestration technology are progressing toward commercialization. By joining forces with Deep Isolation, we're not just addressing a critical need for effective nuclear waste management; we're spearheading an era of innovation and responsibility in the nuclear industry.” says Ed McGinnis, CEO of Curio.
Curio, a pioneer in nuclear technology solutions, and Deep Isolation, a nuclear waste disposal innovator, have signed a Memorandum of Understanding (MOU) to collaborate on developing advanced technologies for the efficient and secure disposal of high-level nuclear waste (HLW).
Stay ahead of the industry with exclusive feature stories on the top companies, expert insights and the latest news delivered straight to your inbox. Subscribe today.
Under the terms of this MOU, Curio and Deep Isolation will work together to share critical information for the use of Deep Isolation's Universal Canister System (UCS) and patented directional drilling solution for deep borehole disposal for the isolation and management of HLW from UNF recycling.
Deep Isolation owns and develops a suite of deep borehole storage and disposal technologies for used nuclear fuel and other nuclear waste.
Curio is the owner and developer of the NuCycle® technology, which aims to produce recycled nuclear fuel and a wide range of isotopes with existing and prospective market demands on a global scale in a way that dramatically reduces the amount of HLW by up to 96 percent or more while ensuring robust safeguards and security by design. The collaborative efforts outlined in this MOU are poised to set new standards for high-level nuclear waste disposal solutions that are efficient, secure, and environmentally conscious.
Deep Isolation has developed a UCS for borehole disposal that can accommodate various fuel types and waste forms as part of an ARPA-E-funded R&D program.