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Armenia Responds to Claims of Metsamor NPP Closure: Operating License Valid Until 2036
In response to Azerbaijani President Ilham Aliyev's claims that the Metsamor Nuclear Power Plant is outdated and could pose a potential threat to the region, Arman Yeghoyan, a lawmaker from Armenia's ruling Civil Contract party, stated that the operating lifetime of a nuclear power plant is not unilaterally determined by the governments of neighboring countries. Yeghoyan noted that every nuclear power plant has an established operating period, and the Metsamor NPP is currently authorized to operate for a maximum term extending to 2036, information that has long been public. He also stated that the Armenian side has announced it is studying options for building a new nuclear power plant...
2026-08-14

Uzbekistan and Japan Discuss Expanding Cooperation in Peaceful Uses of Nuclear Energy
2026-08-14

Rosatom and Lomonosov Moscow State University to Co-Host Seminar on Radioactive Waste Safety Barriers
2026-08-14

Module 5 of Containment Steel Liner Successfully Lifted at Unit 3 of Guangdong Taipingling Nuclear Power Plant
2026-08-14

Liaoning Zhuanghe Nuclear Power Phase I Project Approved, Zhuanghe Goes All Out to Accelerate Project Implementation
2026-08-14

French heatwave to cut nuclear output by about 15% on Friday
2026-08-14

Fermi Signs 222 MW Data Center Lease Agreement with TensorWave
2026-08-14

Blue Energy and GVH Advance 2.5 GW Gas-Plus-Nuclear Project in Texas
2026-08-14

U.S. Poll Shows Majority of Respondents Support Prioritizing Permanent Disposal of High-Level Waste
2026-08-14

Russian researchers have developed a rapid bioassay method based on bioluminescent bacteria that can be used to assess safe dose ranges of ionizing radiation for animals, providing an early screening tool for low-dose radiation applications in livestock farming. The study involved researchers from the Institute of Biophysics of the Siberian Branch of the Russian Academy of Sciences, Siberian Federal University, and Krasnoyarsk State Agrarian University. The research team noted that low-dose ionizing radiation ranging from tens to hundreds of milligrays (mGy) may activate a series of physiological processes in animals, including metabolism, growth, and biomass accumulation; however, if the dose exceeds the safe range, it may cause physiological...
2026-08-14
Researchers from the D.V. Skobeltsyn Institute of Nuclear Physics at Lomonosov Moscow State University, in collaboration with the Faculty of Physics and the Faculty of Chemistry of Lomonosov Moscow State University, as well as the Siberian Federal Scientific Centre of Agro-BioTechnologies of the Russian Academy of Sciences, have found that pre-sowing treatment of wheat seeds with low-energy electron beams and X-rays can help increase crop yields and enhance plant resistance to diseases. The study focused on the wheat variety Novosibirskaya 29 and included laboratory experiments, two consecutive years of field trials, and computer modeling. The results showed that a dose range of 5 to 15 Gy is suitable as a pre-sowing irradiation treatment parameter for wheat seeds. According to Moscow State University...
2026-08-14
Russia plans to launch the new Bion-M 3 spacecraft in 2030 to study the effects of cosmic radiation on living organisms under conditions similar to deep space. Vladimir Sychev, a senior official at the Institute of Biomedical Problems of the Russian Academy of Sciences, presented the plan at a meeting of the Presidium of the Russian Academy of Sciences' Space Council on August 4. Sychev stated that cosmic rays, solar proton events, and their effects on the human body are critical issues that must be understood when planning long-term interplanetary crewed missions. Participants have endorsed the draft scientific research program for the spacecraft's flight testing. According to the plan, Bion-M 3 will be placed into a polar orbit at an altitude of approximately 800 kilometers...
2026-08-14
On August 13, Andrei Puchkov, senior researcher at the Environmental Radioactivity Laboratory of the N.P. Laverov Federal Arctic Integrated Research Center, Ural Branch of the Russian Academy of Sciences, stated that measurements taken during the 2026 Arctic Floating University expedition's landings on Novaya Zemlya and Franz Josef Land showed very low radioactivity levels, with no anomalies detected. Puchkov noted that the expedition measured radon concentrations at all landing sites, with radon flux densities ranging from below 1 millibecquerel per square meter per second to 200 millibecquerels per square meter per second, all recorded values remaining within background levels. He indicated that permafrost acts as a barrier and shield in the region, preventing radioactive gases from reaching the surface; relatively higher radon fluxes in some areas may be associated with geological features such as fault zones and fracture zones.
2026-08-14
On August 13, Russian President Vladimir Putin visited the Koltsovo Science City in Novosibirsk to learn about the operating principles of the Siberian Circular Photon Source (SKIF), a shared-use center. This center is the first facility in a network of modern synchrotron radiation sources being built in Russia, with construction efforts incorporated into the national development program for synchrotron and neutron research and related research infrastructure, covering the period through 2030 and beyond. It was reported that SKIF, with its high-brightness, high-intensity X-ray beams, can serve high-level research in fields such as chemistry, physics, materials science, biology, geology, archaeology, and paleontology. Officials also noted that...
2026-08-14
CGN Dasheng Accelerator Technology Co., Ltd. recently announced that its BV cable X-ray thickness gauge can be used for online inspection of insulation layers during cable production. The system employs X-ray technology to perform real-time measurement of key parameters such as cable outer diameter, inner diameter, wall thickness, eccentricity, and concentricity, replacing the potential detection blind spots inherent in traditional sampling inspection methods. In cable production, insulation layer thickness directly affects product safety and material utilization. Traditional inspection typically relies on sample cutting, manual measurement, and recording, with limited inspection frequency. If issues such as uneven wall thickness or eccentricity occur during production, they are often difficult to detect in a timely manner, which also hinders subsequent quality traceability and process adjustment. According to the company, the equipment...
2026-08-14
On August 11, the national headquarters of China Isotope & Radiation's irradiation application industry — CNNC Irradiation (Guangdong) Technology Co., Ltd. (hereinafter referred to as "CNNC Irradiation") — officially settled in Tianhe District, Guangzhou, and entered the Pearl River New City. This marks an important milestone in the development of China Isotope & Radiation's irradiation application industry. The relocation of the national headquarters for irradiation application to Guangzhou is a key step for China Isotope & Radiation in implementing the central-local cooperation deployment between CNNC and Guangdong Province, and in strategically positioning for the "15th Five-Year Plan." As the nuclear technology application industry platform of CNNC, China Isotope & Radiation possesses a complete industrial chain and core technological advantages in the irradiation application field. It is a leading domestic provider of irradiation facility design, manufacturing, installation, and operation & maintenance services, and has accumulated extensive industrialization experience in high-end medical device sterilization, green irradiation processing of food and traditional Chinese medicinal materials, and material modification.
2026-08-14