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Keyword:Shine
SHINE Advances Commercial Spent Fuel Recycling Facility Construction
U.S. electricity demand is growing at a rate rarely seen in decades, and nuclear energy is considered one of the key options to meet the incremental demand. Meanwhile, the current open nuclear fuel cycle still treats spent fuel primarily as single-use waste, failing to fully utilize most of the energy potential that remains within it. SHINE Technologies is developing spent fuel recycling technologies and plans to build a facility with spent fuel recycling capabilities. The company stated that multiple collaborations funded by the U.S. Department of Energy's Advanced Research Projects Agency-Energy (ARPA-E) CURIE program are advancing the work from validated laboratory-scale chemical processes toward commercial scale...
2026-08-19
SHINE Joins GE Vernova-Led Project to Modernize Nuclear Fuel Reprocessing Materials Accountability
SHINE Technologies (SHINE) announced on August 18 that it has joined a nuclear fuel reprocessing materials management project led by GE Vernova (GE Vernova), with both parties collaborating on tracking, measurement, and nuclear materials accountability of spent fuel during the reprocessing process. The project is led by GE Vernova's Advanced Research Center and funded by the U.S. Department of Energy's Advanced Research Projects Agency-Energy (ARPA-E), with the goal of introducing artificial intelligence technologies into reprocessing facilities to improve real-time monitoring of spent fuel flow and the efficiency of nuclear materials accounting. As a subcontractor to GE Vernova, SHINE will participate in improving sensor deployment schemes and developing an AI-supported materials tracking system, ensuring that nuclear materials control and accountability requirements are incorporated into the overall design at the early stages of reprocessing facility development.
2026-08-19
SHINE to Advance Spent Fuel Recycling Separation Technology with Argonne National Laboratory and Others
On August 18, fusion energy company SHINE announced that it will collaborate with the U.S. Department of Energy's Argonne National Laboratory and Case Western Reserve University to apply high-throughput chemical separation technology to the nuclear fuel recycling process it is currently developing. The collaboration is carried out under the CURIE program of the U.S. Department of Energy's Advanced Research Projects Agency-Energy (ARPA-E), with additional funding led by Case Western Reserve University, and SHINE participates as a subcontractor. Spent fuel is often referred to as nuclear waste, but it retains approximately 90% of its energy potential while containing multiple reusable byproducts. In recent years, federal programs and private investment in the United States have driven renewed interest in spent fuel recycling. Argonne National Laboratory is developing a new chemical processing device called "Packed Centrifugal Equipment for Radiochemical Separation," abbreviated as PaCERS. The device generates centrifugal force exceeding normal gravity conditions through high-speed rotation to improve chemical separation efficiency, and reduces costs across multiple stages of nuclear fuel recycling through higher throughput and lower solvent usage.
2026-08-19
U.S. Department of Energy Selects SHINE Technologies for Genesis Initiative, AI to Optimize Reprocessing of 95,000 Tons of Spent Nuclear Fuel
The U.S. Department of Energy has selected SHINE Technologies to participate in the Genesis mission, advancing the application of artificial intelligence in the nuclear industry. The core objective of the project is to develop an AI-assisted design system for engineers to plan more efficient spent fuel reprocessing facilities. The United States currently has approximately 95,000 tons of accumulated spent nuclear fuel, which has historically posed long-term storage and disposal challenges. The new approach seeks to recover still-valuable components from this material, reducing waste volume and improving resource utilization. The key to this project lies in transforming traditional engineering design methods. In the past, metrics such as throughput, final product quality, and waste volume in nuclear fuel reprocessing processes were typically evaluated separately...
2026-08-09
SHINE Selected for Two U.S. Department of Energy AI Nuclear Fuel Recycling Projects
SHINE Technologies, a U.S. fusion energy company, has recently been selected for projects under the U.S. Department of Energy's Genesis Mission, participating in two artificial intelligence applications for the nuclear energy sector. Among these, SHINE will lead a nuclear fuel cycle facility optimization project and join the Prometheus project, a collaborative effort between national laboratories and industry. The project led by SHINE, named AI-Guided Fuel Cycle Facility Optimization, is a Phase 1 project with Argonne National Laboratory as the technical partner. The project plans to develop an AI-assisted workflow to help engineers...
2026-08-07