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Nuclear Energy Highlights

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Fusion

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Fusion for Energy completes full delivery of ITER cryopump distribution system

Fusion for Energy completes full delivery of ITER cryopump distribution system

2026-08-12

The International Thermonuclear Experimental Reactor (ITER) will operate in an ultra-high vacuum environment. To prevent contamination inside the device, a set of cryopumps supplied by Europe will extract gas particles and alternate operation before and after plasma discharges, maintaining the vacuum vessel pressure at approximately one millionth of Earth's atmospheric pressure. The core of cryopump operation lies in the extremely low-temperature environment. Its internal panels will be cooled to 4 K, approximately minus 269 degrees Celsius, close to absolute zero, to capture gas particles; they are then warmed to release and expel the particles. To precisely control this process, Europe is also supplying ITER with the Front-End Cryopump Distribution System (FECDS), which delivers helium at specific doses and temperatures to the cryopumps...

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Fuse Energy Technologies Corp. Reports FAETON-X Single-Shot D-D Fusion Neutron Yield of 1.27×10¹²

Fuse Energy Technologies Corp. Reports FAETON-X Single-Shot D-D Fusion Neutron Yield of 1.27×10¹²

2026-08-12

Fuse Energy Technologies Corp., headquartered in California, USA, announced on August 11 that its megajoule-class dense plasma focus device FAETON-X measured a peak neutron yield of (1.27±0.27)×10¹² neutrons per shot in a single D-D fusion experiment. The company stated that this is one of the highest single-shot fusion neutron yields publicly recorded by a commercial fusion enterprise, and the first to reach the 10¹² order of magnitude. FAETON-X is a megajoule-class pulsed-power fusion system developed by Fuse, designed as a single-pulse flash neutron source, serving pulsed-power fusion R&D and...

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Korea Fusion Energy Institute Launches Design and Manufacturing of ITER Tritium Storage and Supply Vessels

Korea Fusion Energy Institute Launches Design and Manufacturing of ITER Tritium Storage and Supply Vessels

2026-08-12

The Korea Fusion Energy Institute (KFE) announced on August 12 at its headquarters in Daejeon that it has signed a contract with a consortium comprising Iljin Power and Aizen Core to undertake the design and manufacturing of the tritium storage and supply vessels for the International Thermonuclear Experimental Reactor (ITER). ITER is currently the world's largest fusion experimental device, being jointly constructed by seven parties—Korea, the United States, the European Union, Japan, China, Russia, and India—in Cadarache, southern France. Under the procurement agreement signed between KFE and the ITER Organization in March 2025, Korea...

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Kyoto Fusioneering and Oak Ridge to Build World's First Fusion Blanket Verification Facility UNITY-3

Kyoto Fusioneering and Oak Ridge to Build World's First Fusion Blanket Verification Facility UNITY-3

2026-08-12

Kyoto Fusioneering (KF), a Japanese fusion energy engineering company, announced that it will jointly build a facility named UNITY-3 with the U.S. Oak Ridge National Laboratory (ORNL) to verify the breeding blanket technology required for commercial fusion power plants. The project is described as the world's first facility dedicated to breeding blanket demonstration, and KF will also relocate its U.S. business base to Oak Ridge, Tennessee. The project has received support from the U.S. Department of Energy's relevant roadmap, Tennessee's nuclear energy supply chain investment fund, and the DOE, indicating that the fusion industry is shifting from purely plasma physics breakthroughs toward engineering, system integration, and supply chain development. The breeding blanket is a critical component for deuterium-tritium fusion power...

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Sophelio Launches Fusion Equilibrium Challenge, Opening DIII-D and MAST Experimental Datasets

Sophelio Launches Fusion Equilibrium Challenge, Opening DIII-D and MAST Experimental Datasets

2026-08-12

On August 11, Sophelio launched the Fusion Equilibrium Challenge. The competition has been accepted into the 2026 Conference on Neural Information Processing Systems (NeurIPS) competition track, making it the first fusion energy-related challenge to enter this track. The challenge is co-organized by Sophelio together with the DIII-D National Fusion Facility, the UK Atomic Energy Authority (UKAEA) FAIR-MAST project, and the Institute for Fusion Studies (IFS) at the University of Texas at Austin, with data hosted on the Hugging Face platform. Open to the global machine learning community, the competition re...

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South Korea Designates Small Modular Reactors and Nuclear Fusion as Key Future Growth Technologies

South Korea Designates Small Modular Reactors and Nuclear Fusion as Key Future Growth Technologies

2026-08-12

South Korean President Lee Jae-myung will chair a briefing session on the "Seven Seeds for Future Growth Engines" at the presidential office Cheong Wa Dae on the afternoon of August 12, focusing on the development pathways for advanced technologies including Small Modular Reactors (SMRs) and nuclear fusion, as well as related industrial ecosystems and supply chain security measures. According to Cheong Wa Dae, the meeting aims to jointly study advanced technology deployment with the science and industry communities, support artificial intelligence (AI) transformation, and strengthen South Korea's future industrial foundation capabilities. The seven areas designated as priorities include Small Modular Reactors, nuclear fusion, renewable energy, quantum technology, aerospace, advanced biotechnology, and advanced materials and component supply chains....

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Nuclear Application

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China's First Qualification for Radiation Health Testing and Evaluation of BNCT Equipment Approved

Recently, the Beijing Municipal Health Commission, in accordance with the "Administrative Measures for Radiation Health Technical Service Institutions" (Guoweiban ZhiJian Fa [2026] No. 1), organized experts to conduct on-site reviews of two qualification expansion applications submitted by the National Center for Occupational Safety and Health under the National Health Commission. The projects include performance testing and evaluation of Boron Neutron Capture Therapy (BNCT) equipment and thyroid iodine-131 testing. During the review process, the expert panel conducted a comprehensive examination of the center's management system, personnel allocation, instruments and equipment, and technical capabilities related to radiation health testing and evaluation through document review, technical inquiries, on-site practical operations, and simulated demonstrations...

2026-08-12

Australia's OPAL Multipurpose Reactor Marks 20 Years of Operation: Supporting Nuclear Medicine, Industrial Silicon Irradiation, and Neutron Science

The OPAL multipurpose reactor at the Lucas Heights campus of the Australian Nuclear Science and Technology Organisation (ANSTO), located south of Sydney, has marked the 20th anniversary of achieving first criticality. On August 12, 2006, OPAL achieved a self-sustaining controlled nuclear chain reaction, marking the facility's transition from the construction phase to the scientific operations phase. ANSTO stated that over the past 20 years, OPAL has become one of Australia's key nuclear science infrastructures, serving multiple fields including medicine, industry, and scientific research. OPAL is not a power reactor and is not used for electricity generation. According to available information, Australian federal law and relevant state and territory legislation prohibit the construction of nuclear power reactors, fuel fabrication, and waste disposal facilities. Unlike power reactors used for...

2026-08-12

Kazakhstan's National Nuclear Center Advances Material Testing Research for Future Reactors

On August 11, the National Nuclear Center of the Republic of Kazakhstan presented its progress in research on structural materials for advanced reactors. Yerzhan Ernatuly Sapataev, head of the Radiation Materials Science Laboratory at the center's Institute of Atomic Energy, stated that the development of next-generation reactors and fusion technologies has imposed higher requirements on structural materials in terms of high-temperature resistance, radiation tolerance, and corrosion resistance, and that material reliability will directly determine the safety and service life of future nuclear energy systems. Materials inside future reactors typically need to...

2026-08-12

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

Chinese Team Proposes "Toxic Blood Meal" Pre-Treatment Approach to Boost Sterile Insect Technique for Mosquitoes

Chinese researchers have recently proposed a novel sex-sorting approach for the Sterile Insect Technique (SIT) in mosquitoes: adding a specific agent to the blood meal ingested by female mosquitoes, leveraging the biological difference that female mosquitoes feed on blood while males do not, to substantially reduce the number of females before release. The study was published in the June issue of the Journal of Medical Entomology. The Sterile Insect Technique is a pest population control method centered on radiation-induced sterility. Its basic process involves mass-rearing male target insects in the laboratory, sterilizing them through radiation exposure to render them reproductively incapable, and then releasing them into the field, where they mate with wild females to produce non-viable eggs, thereby suppressing target population growth. This technique has been incorporated into integrated pest management systems and is regarded as a relatively environmentally friendly pest control approach.

2026-08-12

Texas to Accelerate Opening of Sterile Fly Facility to Combat New World Screwworm Outbreak

The U.S. Department of Agriculture announced that, in response to the New World screwworm (NWS) outbreak already detected in Texas and New Mexico, the sterile fly facility at Moore Air Base in Edinburg, Texas, will open early next spring, approximately seven months ahead of the original schedule. Construction on the facility began in April of this year, and once completed, it will produce sterile flies to support outbreak control efforts using the Sterile Insect Technique (SIT). Under the plan, the facility will reach full operational capacity by the end of 2028, producing approximately 300 million sterile flies per week. The Sterile Insect Technique works by releasing sterilized flies into the environment to mate with wild screwworms, thereby interrupting the reproductive cycle and reducing the risk of continued parasite spread...

2026-08-12