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U.S. HFIR Research Reactor Boosts Validation of New Nuclear Fuels

U.S. HFIR Research Reactor Boosts Validation of New Nuclear Fuels

The High Flux Isotope Reactor (HFIR) at the U.S. Department of Energy's (DOE) Oak Ridge National Laboratory (ORNL) is becoming a key facility in the U.S. research, development, and qualification system for new nuclear fuels. A research paper published on August 25 noted that amid growing demand for new commercial nuclear power and advanced reactor construction in the United States, research reactor resources available for new fuel testing are becoming strained, and HFIR is expected to help alleviate the shortage of related testing capabilities. Image credit: Gunes Ozcan/Oak Ridge National Laboratory, U.S. Department of Energy. HFIR is one of the world's highest-flux steady-state research reactors and has long been used for nuclear fuel and materials irradiation testing. The paper recognizes...

2026-08-26

Japan's JT-60SA Experimental Team Advances Preparations for Next Operation Phase

Japan's JT-60SA Experimental Team Advances Preparations for Next Operation Phase

Preparations for the next phase of JT-60SA experimental activities are underway. The technical team is carrying out integrated commissioning as planned, while the experimental team is simultaneously refining related tools and software to enhance scientific output capabilities for the next operation phase. During a training course organized by QST, EUROfusion participants are learning how to configure discharge settings using the Human-Machine Interface (HMI) in preparation for the next JT-60SA campaign. Image credit: QST. The Third JT-60SA Experimental Team Workshop was held from July 27 to 31, 2026, at the Naka Institute of the National Institutes for Quantum Science and Technology (QST) in Japan. Approximately 50 experts attended, including 20 representatives from Europe...

2026-08-26

UK's InHealth Deploys Europe's First Mobile Biograph Trinion PET/CT System

UK's InHealth Deploys Europe's First Mobile Biograph Trinion PET/CT System

InHealth, a UK independent diagnostic service provider, has recently completed the first patient scan using Europe's first mobile Biograph Trinion PET/CT system. The system, supplied by Siemens Healthineers, is now in clinical use at Wrexham Maelor Hospital in northeast Wales to support cancer-related molecular imaging examinations. PET/CT is an important imaging technology in oncology diagnosis and treatment, applicable to the diagnosis, staging, treatment planning, and therapy response monitoring of various cancer types. Deploying the Biograph Trinion PET/CT system on a mobile platform means that advanced molecular imaging services can be delivered into clinical settings with greater flexibility, helping to improve patient access to...

2026-08-26

U.S. Research Reveals Diamond Melting Mechanism at High Pressure, Potentially Enhancing Inertial Confinement Fusion Performance

U.S. Research Reveals Diamond Melting Mechanism at High Pressure, Potentially Enhancing Inertial Confinement Fusion Performance

A research team at Lawrence Livermore National Laboratory (LLNL) in the U.S. recently published a study in Nature Physics reporting that the latest dynamic compression experiments have, for the first time, directly recorded atomic structural changes during diamond melting under extreme high pressure. The experiments showed that under high-pressure conditions, solid diamond can float in liquid metallic carbon, similar to ice floating on water. Diamond is not only a high-hardness carbon material but is also used as the fuel target capsule shell in inertial confinement fusion experiments. When intense lasers drive the capsule implosion, the compression and melting behavior of the diamond shell can affect whether the fusion fuel reaches the required high-temperature, high-pressure state. Meanwhile, the planetary science community has long focused on the high-pressure behavior of carbon in the deep interiors of ice giant planets...

2026-08-26

Bitumen Solidification Facility at Unit 2 of Japan's Ikata Nuclear Power Plant Returns to Normal

Bitumen Solidification Facility at Unit 2 of Japan's Ikata Nuclear Power Plant Returns to Normal

Shikoku Electric Power Co. reported on August 25, 2026, that the bitumen solidification facility at Unit 2 of Japan's Ikata Nuclear Power Plant, currently in a decommissioned state, had returned to normal operation at 10:45 a.m. that day. The gasket at the joint of the mixer top cover, where the earlier abnormality had been detected, had been replaced, and trial operation results showed no abnormalities. The incident occurred on April 28. On that day, when operators started the bitumen solidification facility in the controlled area of the reactor auxiliary building, they observed a steam-like phenomenon near the mixer thermometer, which subsequently disappeared on its own. Maintenance personnel later inspected and confirmed at 3:05 p.m. that the steam-like gas originated from inside the mixer and had escaped through the joint of the mixer top cover; at 5:06 p.m., the bitumen solidification facility was shut down.

2026-08-26

Tescan Launches MIRA XR Ultra-High-Resolution Scanning Electron Microscope for Materials Characterization and Failure Analysis Applications

Tescan Launches MIRA XR Ultra-High-Resolution Scanning Electron Microscope for Materials Characterization and Failure Analysis Applications

Tescan recently launched the MIRA XR ultra-high-resolution scanning electron microscope system, targeting materials characterization needs in fields such as battery technology, metallurgy, and advanced materials science. Positioned between the Tescan MIRA and Tescan CLARA, the system aims to deliver higher resolution, enhanced surface sensitivity, and a more streamlined workflow, serving applications including R&D laboratories, industrial quality control, and failure analysis. According to reports, the MIRA XR employs BrightBeam™ technology and a single high-efficiency axial detector to improve surface signal acquisition under field-free imaging conditions, making it suitable for beam-sensitive materials and magnetic samples while reducing the need for sample preparation steps such as surface coating. The system also features an aperture-free column design that minimizes manual aperture selection and adjustment steps, allowing operators to focus more on sample observation and data analysis.

2026-08-26

Why Swedish Nuclear Power Plants Are Less Affected by European Heatwaves

Why Swedish Nuclear Power Plants Are Less Affected by European Heatwaves

This summer, persistent high temperatures across much of Europe forced some nuclear power plants to reduce output or even temporarily shut down due to rising cooling water temperatures and falling river levels. In comparison, Sweden's Vattenfall-operated nuclear plants at Forsmark and Ringhals were less affected, mainly because both facilities are located in coastal areas and use seawater for cooling. Many nuclear plants in continental Europe rely on river water as their cooling source. During heatwaves, river levels and water temperatures can change rapidly, easily impacting cooling efficiency. Anna Collin, Communications Officer at Ringhals, stated that Swedish nuclear plants use seawater cooling, which differs in operating conditions from many...

2026-08-26

IsoEnergy Signs Agreement with Kineepik Métis Local to Advance Uranium Exploration in Saskatchewan, Canada

IsoEnergy Signs Agreement with Kineepik Métis Local to Advance Uranium Exploration in Saskatchewan, Canada

On August 24, 2026, IsoEnergy Ltd. announced that it has signed an exploration agreement with Kineepik Métis Local Inc. to support its responsible uranium exploration activities in Saskatchewan, Canada. Under the agreement, the two parties will establish mechanisms for ongoing communication, information sharing, and collaboration around IsoEnergy's exploration activities in the relevant region. The agreement also provides that Kineepik community members and local businesses may participate in exploration-related work through business partnerships, employment opportunities, and training programs. Kineepik Métis Local Inc. represents Métis rights holders residing within the Kineepik use and occupancy area, including...

2026-08-26

U.S. Develops Hybrid Process Combining Electroforming and 3D Printing for Critical Component Manufacturing in Advanced Nuclear Reactors

U.S. Develops Hybrid Process Combining Electroforming and 3D Printing for Critical Component Manufacturing in Advanced Nuclear Reactors

On August 24, local time, the U.S. Department of Energy's Oak Ridge National Laboratory (ORNL) announced that its scientists are collaborating with AJ Tuck Company (AJ Tuck) to develop a hybrid manufacturing process that combines 3D printing and electroforming to produce complex, leak-tight hot isostatic pressing canisters for powder metallurgy hot isostatic pressing processes. The process targets the manufacturing of critical metal components for advanced nuclear reactors and other energy and defense applications, with the goal of shortening production workflows and reducing reliance on traditional large-scale forging and casting supply chains. A hot isostatic pressing canister is a type of sealed container used to compact metal powders into high-performance metal components under high temperature and high pressure. Traditional hot...

2026-08-26

Electron Beam Processing Can Reduce Poultry Pathogens, Study Shows Turkey Meat Quality Remains Well Preserved

Electron Beam Processing Can Reduce Poultry Pathogens, Study Shows Turkey Meat Quality Remains Well Preserved

A study on electron beam treatment of poultry meat products shows that electron beam irradiation has the potential to reduce the risk of foodborne pathogens in poultry while preserving meat quality as much as possible. The paper, titled "Effects of Electron Beam (eBeam) Treatment on the Texture and Sensory Attributes of Chicken and Turkey Meat Batters," was published in the journal Poultry Science. Electron beam is a non-thermal processing technology that uses high-energy electrons to cause irreversible damage to pathogen DNA or RNA, making it difficult for bacteria to replicate. Like X-rays and gamma rays, electron beam has been approved by the U.S. Food and Drug Administration for cold pasteurization that does not rely on heating. The research team used the electron beam irradiation facility at Texas A&M University...

2026-08-26

IAEA Director General Unveils Upcoming New Initiative on Maritime Nuclear Energy

IAEA Director General Unveils Upcoming New Initiative on Maritime Nuclear Energy

Rafael Grossi, Director General of the International Atomic Energy Agency (IAEA), recently stated that the Agency is preparing to launch a new initiative to promote the application of civilian nuclear technology in maritime settings. The initiative, named Atomic Technology Licensing for Maritime Applications (ATLAS), will be officially unveiled at an IAEA ministerial event scheduled for August 26-27 in Washington, D.C., United States. The initiative aims to support the deployment of maritime civilian nuclear applications such as nuclear-powered ships and floating nuclear power plants, while facilitating alignment in licensing and regulatory efforts. Grossi stated that the ATLAS initiative could support global trade and help provide energy to remote communities and industrial users...

2026-08-26

Japan's Helical Fusion Publishes Research Results on High-Temperature Superconducting Magnets

Japan's Helical Fusion Publishes Research Results on High-Temperature Superconducting Magnets

Helical Fusion recently announced that its joint research on high-temperature superconducting magnets with the National Institute for Fusion Science (NIFS) has passed peer review and been published in the Journal of Physics: Conference Series. The results, previously disclosed in a preliminary report, primarily validate the performance of high-temperature superconducting conductors for fusion reactor applications under strong magnetic fields and high currents. This study tested the UROCOIC high-temperature superconducting conductor independently developed by Helical Fusion. The research team fabricated the conductor into a double-pancake coil sample and used existing test equipment to simulate, as closely as possible, the magnetic field and current environment expected in future fusion reactors.

2026-08-26

Fujifilm Launches New X-ray Bone Densitometer for Early Osteoporosis Screening

Fujifilm Launches New X-ray Bone Densitometer for Early Osteoporosis Screening

Fujifilm Corporation announced on August 26 that it has begun selling a new X-ray bone densitometry device designed to measure bone density in areas such as the lumbar spine and femur, supporting early detection of osteoporosis and fracture risk assessment. According to the company, the X-ray bone densitometer measures bone density using X-rays and is an important diagnostic tool for osteoporosis. The newly launched model is Fujifilm's first new device of this kind since 2018 and will be sold through its subsidiary Fujifilm Medical, with a price of approximately 20 million yen, varying depending on system configuration. The new device incorporates artificial intelligence technology, enhancing automated analysis functions. In the analysis of scanned images...

2026-08-26

South Korea launches next-generation nuclear energy research talent training program

South Korea launches next-generation nuclear energy research talent training program

South Korea's talent training program for postdoctoral researchers in the nuclear energy field has officially been launched, which will be based on university laboratories to promote future nuclear technology research, industry-academia-research cooperation, and employment linkage. On August 25, during the 2026 Climate and Energy Job Fair, the Ministry of Climate, Energy and Environment, the Korea Institute of Energy Technology Evaluation and Planning (KETEP), and the Korea Radiation Promotion Association held the next-generation energy leader training program in the nuclear energy field...

2026-08-26

Korea's Gil Medical Center Expands Application of Markerless Surface-Guided Radiation Therapy

Korea's Gil Medical Center Expands Application of Markerless Surface-Guided Radiation Therapy

Gachon University Gil Medical Center in South Korea announced on August 26 that it is expanding the clinical application of markerless surface-guided radiation therapy (SGRT) to enhance the precision and comfort of radiation therapy for cancer patients. According to the hospital, the proportion of markerless SGRT in its radiation therapy procedures has increased from 28% in the first half of 2025 to 37% in the first half of 2026. This change indicates that this treatment-assistive technology, which reduces the burden of skin marking on patients, is gaining broader clinical adoption. Markerless SGRT is an advanced technique used for patient positioning and monitoring during radiation therapy. Unlike conventional methods, patients do not need to retain target line markings on their skin; the treatment system can assist in confirming patient positioning through surface guidance, enabling radiation to be delivered more accurately to the target area.

2026-08-26