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Keyword:isotope production
Kazakhstan's Institute of Nuclear Physics Plans to Expand Medical Radioisotope Production and Export
The Institute of Nuclear Physics (INP) of Kazakhstan is progressively expanding the applications of radioisotopes and radiation technologies, with related products already used in cancer diagnosis and treatment, industrial production, and scientific research. Institute Director Sayabek Sakhiyev stated that radioisotope and radiopharmaceutical production is one of the institute's key applied activities, covering the full chain from scientific research and research reactor operation to radiochemical technology development and medical applications. Currently, INP produces three main categories of radiopharmaceuticals: sodium iodide I-131 for thyroid disease treatment, Mo-99/Tc-99m related products for radionuclide diagnostics, and...
2026-08-18
Libya Plans to Restore Tajoura Research Reactor for Medical Isotope Production
The Libyan Atomic Energy Establishment recently proposed a plan to restore and restart the Tajoura nuclear research reactor for the production of medical radioisotopes. The establishment stated that this initiative aims to support the diagnosis and treatment of diseases and tumors, while reducing dependence on imports of relevant isotopes. Radioisotopes are essential materials in nuclear medicine, serving as tracers in medical imaging to help track organ function and detect certain diseases and tumors; some isotopes are also used in radiotherapy targeting specific tissues. According to the Libyan Atomic Energy Establishment, the Tajoura reactor has a rated thermal power of 10 megawatts and holds potential for producing various medical isotopes, including...
2026-08-18
Turkey's TR-2 Research Reactor Receives Operating License
The Turkish Nuclear Regulatory Authority has issued an operating license for the TR-2 research reactor at the Istanbul campus of the Nuclear Energy Institute under the Turkish Energy, Nuclear and Mineral Research Agency (TENMAK). The license was issued pursuant to the Authority's Decision No. 2026-34/3 dated August 6, 2026. Following the review and evaluation of TENMAK's application documents, the Turkish Nuclear Regulatory Authority authorized the agency to carry out the activities required for the transition of the TR-2 research reactor from its current status to the operational phase. TR-2 is located at the Istanbul campus of TENMAK's Nuclear Energy Institute, with an approved thermal power of 5 megawatts. The facility is a research reactor and is not a nuclear facility primarily intended for power generation. According to...
2026-08-17
Oak Ridge National Laboratory marks 80 years of isotope research and production, with applications spanning medicine, industry, and scientific research
On August 2, 1946, the Clinton Laboratories in Oak Ridge, Tennessee, held the first formal ceremony to deliver reactor-produced radioactive isotopes. A shipment of carbon-14 was sent from there to the Barnard Free Skin and Cancer Hospital in St. Louis, Missouri. Over the past 80 years, this event has been regarded as the starting point of Oak Ridge National Laboratory's isotope research and production endeavors, and also marked the beginning of broader civilian applications for reactor-produced radioactive isotopes. After World War II, the U.S. scientific community began exploring peaceful uses of atomic energy, with radioactive isotopes becoming an important direction. As unstable variants of elements, radioactive isotopes release radiation during decay and can be used...
2026-08-15
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
Leshan Accelerates Construction of Medical Isotope Production Base to Promote Domestic Substitution of "Anti-Cancer Nuclear Drugs"
On August 11, at the Leshan special press conference of "Myriad Scenes in Sichuan · Embarking on the '15th Five-Year Plan'", Leshan Mayor Zhao Yingchun stated that Leshan is accelerating the construction of the largest and most comprehensive medical isotope production base in China. Upon completion, the project will help break the foreign monopoly and import dependence on related products, promote the domestic substitution of anti-cancer nuclear drugs, and enable more patients to access domestically produced drugs with lower prices and better efficacy. Zhao Yingchun noted that during the "14th Five-Year Plan" period, Leshan has focused on building the "China Green Silicon Valley", a world-class tourist destination, and a major regional transportation and logistics hub in the province, continuously promoting high-quality development, with its economic output surpassing 250 billion yuan...
2026-08-12
228 Research Reactors Worldwide in Operation, Supporting Medical Isotope Production and Neutron Science Innovation
According to the International Atomic Energy Agency on August 7, research reactors continue to drive innovation in science, medicine, and industry worldwide. Currently, 228 research reactors are in operation across 54 countries, with another 23 under construction or in the planning stage. Unlike nuclear reactors used for power generation, these reactors primarily produce neutrons to support medical, industrial, agricultural, geological, forensic, and nuclear science research. A research reactor pool photographed from above. (Photo: IAEA) In the medical field, research reactors are a vital source of medical radioisotopes. Among them, technetium-99m is widely used for diagnosing cancer and diseases of the heart, brain, and bones; a large number of medical diagnostic and therapeutic procedures worldwide rely on this isotope. Other radioisotopes such as iodine-131 are also used in the treatment of cancer and thyroid diseases. The IAEA states that radioisotopes produced by research reactors serve millions of patients globally and are an essential component of modern nuclear medicine systems.
2026-08-09
Oklo's Groves Isotope Test Reactor Achieves First Criticality
Oklo, a U.S. advanced nuclear technology company, announced on August 6 that its Groves Isotope Test Reactor has achieved a controlled self-sustaining nuclear chain reaction at low power, reaching first criticality. This milestone comes less than a year after the project broke ground. Groves Isotope Test Reactor facility (Image: Groves) The Groves low-power test reactor, located in Lockhart, Texas, is the first reactor to achieve criticality on private land under the U.S. Department of Energy's Reactor Pilot Program. According to Oklo, the facility was built from undeveloped land, completing civil excavation, engineering construction, component fabrication or procurement, fuel configuration, and...
2026-08-07
Ontario Invests Additional $4.6 Million in McMaster Nuclear Reactor to Expand Medical Isotope Production Capacity
The Government of Ontario, Canada, recently announced an additional investment of $4.6 million in the McMaster Nuclear Reactor to expand the production capacity of life-saving medical isotopes, supporting more cancer patients in accessing the critical radioisotopes needed for diagnosis and treatment. From left to right: Josip Zikic, Chief Nuclear Officer at McMaster University; Nolan Quinn, Minister of Colleges and Universities, Research Excellence and Security; Stephen Lecce, Minister of Energy and Mining; Susan Tighe, President and Vice-Chancellor of McMaster University; and Victor Fedeli, Minister of Economic Development, Job Creation and Trade. (Georgia Kirkos/McMaster University) This investment builds on a previous $18 million...
2026-07-30