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Keyword:isotope separation
Full-Process Commissioning of Major Marine Isotope Separation Pilot Facility
Shanghai Jiao Tong University's Changxing Ocean Laboratory is dedicated to building a quasi-industrial research platform for high-end marine equipment. The Marine Isotope Separation Applied Research Center, focusing on the industrial context of isotope production, separation, and application, and supported by the ministerial-level Isotope Separation Science and Technology Center, conducts research and development of key isotope separation technologies and engineering equipment for Generation III reactors, Generation IV reactors, and fusion reactors, establishing an innovative platform integrating R&D, testing, validation, data, and technical services. Major research facility: Recently, the construction of the hundred-ton-per-year light water hydrogen isotope separation pilot platform has achieved phased results, with the system facility undergoing full-process commissioning. The platform adopts a self-developed water distillation coupled with cryogenic hydrogen isotope separation process, achieving large-scale efficient separation and enrichment of hydrogen isotopes from light water. The platform's outcomes hold broad engineering application value in fields such as pressurized water reactor wastewater treatment, deuterium-tritium isotope separation, fusion tritium plant operation, and heavy water/heavy hydrogen production. At 18:00 on August 4, 2026, at the Marine Isotope Separation Applied Research Center of Changxing Ocean Laboratory, the hundred-ton-per-year light water hydrogen isotope separation pilot facility was commissioned through its full process! The commissioning and operation of this pilot facility was undertaken by the Marine Isotope Separation Applied Research Center, with all departments coordinating collaboratively, making meticulous arrangements, and dedicating full efforts. During the operation, the team successively overcame multiple challenges including tight schedules, heavy workloads, and persistent high temperatures. This achievement not only fully validated the stability and reliability of the process platform but also demonstrated the researchers' responsibility and commitment in rising to challenges and persevering diligently. In the next phase, the project technical team will continue to deepen process optimization based on existing achievements, focus on advancing continuous and stable facility operation, accelerate engineering application, and provide strong support for breakthroughs in key core technologies in China's hydrogen isotope separation field.
2026-08-13
Urenco Isotopes Collaborates on EMIS Test Facility to Strengthen Europe's Enriched Lanthanide Isotope Supply Chain
On July 28, 2026, Urenco Isotopes announced a collaboration with RI Research Instruments to advance the construction of a dedicated Electromagnetic Isotope Separation (EMIS) test facility, aiming to strengthen the future European supply chain for enriched lanthanide elements and meet the growing demand for high-purity stable isotopes in scientific research and potential medical isotope applications. Lanthanides are rare earth metals, and their isotopes may be used in the future for cancer diagnosis and treatment. Currently, reliable sources of high-purity lanthanide stable isotopes remain limited, with the supply chain concentrated among a few producers, and Europe's local supply capacity is relatively insufficient. Under the collaboration arrangement, RI Research Instruments...
2026-07-29