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CGN Lufeng Nuclear Power Unit 1 Conventional Island Main Crane Hoisting Successfully Completed

CGN Lufeng Nuclear Power Unit 1 Conventional Island Main Crane Hoisting Successfully Completed

At 21:00 on August 10, 2026, the auxiliary trolley of Crane A for the conventional island of CGN Lufeng Nuclear Power Unit 1 was successfully positioned, marking the successful completion of the hoisting work for Main Cranes A/B of the conventional island of Unit 1. The entire hoisting process lasted 4 days and was completed in 8 lifts in an orderly sequence. The successful hoisting and positioning of the main cranes for the conventional island of Unit 1 is not only a key milestone in the conventional island installation works, but also lays a solid foundation for the introduction of the steam turbine generator and its auxiliary equipment. Lufeng Nuclear Power will continue to collaborate with all participating construction units, adhere to the value orientation of "Three Focuses," deeply practice the work style of "Meticulous, Prudent, Detailed, and Pragmatic," and support the high-quality construction of Unit 1 with practical efforts, injecting strong momentum into building the Lufeng Nuclear Power Project into a benchmark project that is safe, high-quality, and efficient...

2026-08-12

First Integrated Hoisting of Nuclear Island Steel Liner Module 5 with Attached Electrical and Instrumentation Cable Tray System within CGN

First Integrated Hoisting of Nuclear Island Steel Liner Module 5 with Attached Electrical and Instrumentation Cable Tray System within CGN

At 15:30 on August 10, 2026, with the successful positioning of Steel Liner Module 5 in the reactor building of Unit 3, the attached electrical and instrumentation (E&I) cable tray system was simultaneously placed, marking the successful completion of the first "Five-ization" installation project for Module 5 attached E&I cable trays within China General Nuclear Power Group (CGN). Traditional nuclear power Module 5 construction adopts a serial mode of "structure first, installation second, commissioning last." The E&I construction for Module 5 of Unit 3 at Taipingling Phase II innovatively adopted an integrated scheme of "prefabrication-installation-integral hoisting." E&I construction was advanced to the module assembly stage, changing the traditional on-site dispersed work method. Through prefabrication of steel materials in workshops, delivery to the site for welding and installation, a large amount of high-altitude, cross-operational...

2026-08-12

Huaneng Changjiang Nuclear Power Company Signs Medical Cooperation Agreement with Hainan Western Central Hospital

Huaneng Changjiang Nuclear Power Company Signs Medical Cooperation Agreement with Hainan Western Central Hospital

Recently, Huaneng Hainan Changjiang Nuclear Power Co., Ltd. signed a medical cooperation agreement with Hainan Western Central Hospital, comprehensively strengthening the health and safety defense line for enterprise employees and safeguarding nuclear power production safety. The two parties agreed to leverage the hospital's high-quality medical resources to open a green channel for employees' emergency medical treatment, carry out routine occupational health examinations and health science education, establish a rapid transport and treatment linkage mechanism for sudden injuries or illnesses at the plant site, and efficiently handle various on-site emergency medical situations. After the signing ceremony, relevant personnel from Huaneng Changjiang Nuclear Power Company visited the Emergency Department and Outpatient Building at the Baimajing Binhai Campus, gaining detailed insights into emergency treatment procedures, rescue equipment configuration, and emergency rescue operation models, and engaging in discussions with medical staff on topics such as on-site industrial injury handling and emergency medical response to sudden health events.

2026-08-11

Scientists from a small town in Uttar Pradesh, India, gain international recognition: exploring AI-assisted nuclear reactor control

Scientists from a small town in Uttar Pradesh, India, gain international recognition: exploring AI-assisted nuclear reactor control

Samendra Roy, a scientist and resident of Payagpur in the Bahraich district of Uttar Pradesh, India, along with his team, has recently attracted attention from the international academic community. The research focuses on the potential applications of artificial intelligence in the operation and control of nuclear reactors. The findings have been published in *npj Artificial Intelligence*, a journal under the Nature Publishing Group, marking the team's work's arrival on a prestigious international academic platform. The study primarily explores the role of agent-based physics-informed artificial intelligence in nuclear reactor control. The research team believes that during nuclear reactor operation, control systems often face complex environments and highly challenging decision-making scenarios, and AI technology is expected to play a significant role in the future in areas such as assisting judgment, optimizing control processes, and enhancing operational management capabilities.

2026-08-11

Europe's High Temperatures and Droughts Impact Nuclear Power Operations, Ukrainian Expert Says Climate Adaptation Tied to Energy Independence

Europe's High Temperatures and Droughts Impact Nuclear Power Operations, Ukrainian Expert Says Climate Adaptation Tied to Energy Independence

Recent prolonged high temperatures, droughts, and falling river levels across Europe have put pressure on the operation of some nuclear power plants that rely on river water for cooling. Nuclear facilities in France, Hungary, Romania, and Slovenia have successively experienced power reductions or shutdowns, forcing some countries to ease supply pressure through electricity imports and adjusted consumption arrangements. Katie Huff, a professor of nuclear engineering at the University of Wisconsin-Madison, stated that the impact of climate change on nuclear power operations is mainly reflected in two aspects: first, droughts lower river levels, making it difficult for plants to obtain sufficient cooling water; second, when air and water temperatures are high, nuclear plants face stricter restrictions on discharging warm water into rivers to avoid further affecting the aquatic environment.

2026-08-11

Flammable Gas Analysis Completed for Legacy Transuranic Waste Containers at U.S. Savannah River Site

Flammable Gas Analysis Completed for Legacy Transuranic Waste Containers at U.S. Savannah River Site

AIKEN, South Carolina — The Solid Waste and Deactivation and Decommissioning team at Savannah River Nuclear Solutions (SRNS) recently completed a critical task, performing flammable gas analysis on multiple legacy high-dose-rate transuranic (TRU) waste containers. The results confirmed that these containers meet safety requirements for shipment to an underground waste disposal facility. Following this analysis, the U.S. Department of Energy Office of Environmental Management will resume shipments of remote-handled transuranic waste drums from the Savannah River Site (SRS) to the Waste Isolation Pilot Plant (WIPP) in New Mexico for permanent disposal. Flammable gas sampling is an important safety step prior to the transportation and disposal of transuranic waste. Workers...

2026-08-11

Brookhaven National Laboratory Pilots Training Program for Nuclear Technology and Radiochemistry Talent

Brookhaven National Laboratory Pilots Training Program for Nuclear Technology and Radiochemistry Talent

The U.S. Department of Energy's Brookhaven National Laboratory and Suffolk County Community College (SUNY Suffolk) recently completed a pilot program to train talent in nuclear technology and radiochemistry. Eleven students and recent graduates completed one semester of coursework and three weeks of intensive laboratory training, becoming the first cohort to complete the Nuclear Technology and Radiochemistry Technician Pathway (NTRTP) program. SUNY Suffolk student Arin Morton (left) works under the guidance of mentor Michael Chimes at Brookhaven National Laboratory's Isotope Research and Production Division...

2026-08-11

The "13th Five-Year" Science and Education Infrastructure Cosmic Ray Physics Research and Detection Technology Platform Project Passed Acceptance

The "13th Five-Year" Science and Education Infrastructure Cosmic Ray Physics Research and Detection Technology Platform Project Passed Acceptance

On July 29, 2026, the Finance Bureau of the Chinese Academy of Sciences organized the acceptance meeting for the Cosmic Ray Physics Research and Detection Technology Platform Project (hereinafter referred to as the Research Platform). The meeting was chaired by Wei Zichao, Director of the Investment and Infrastructure Projects Division of the Academy. Tan Zhouliang, Vice President and Member of the Party Leadership Group of the Chengdu Branch of the Chinese Academy of Sciences, and Liu Congzhan, Deputy Director of the Institute of High Energy Physics of the Chinese Academy of Sciences, delivered speeches respectively. Academician Cao Zhen, Project Manager of the Research Platform, gave an overall introduction to the project construction, and Researcher Zhang Shoushan of the project team presented a summary report on the project construction. Subsequently, the acceptance expert group inspected the construction and installation works on site, verified the procurement, installation, and operation of project equipment, and verified the completion of project investment...

2026-08-11

UK PhD Students Travel to Canadian Nuclear Laboratories for Hands-On Nuclear Energy Training

UK PhD Students Travel to Canadian Nuclear Laboratories for Hands-On Nuclear Energy Training

On August 10, 2026, Canadian Nuclear Laboratories (CNL) welcomed its first cohort of PhD students from the United Kingdom. The visit is part of a five-year collaboration with the UK's Skills and Training Alliance for a Nuclear Renaissance Centre for Doctoral Training (SATURN CDT), marking the launch of a new long-term partnership in the international development of nuclear energy talent. SATURN CDT is funded by the UK's Engineering and Physical Sciences Research Council (EPSRC) and led by the University of Manchester, in partnership with seven UK universities. The program aims to provide the next generation of nuclear energy professionals with hands-on training beyond the classroom...

2026-08-11

Spain plans renewable energy innovation center to address industrial transition after Vandellòs nuclear plant closure

Spain plans renewable energy innovation center to address industrial transition after Vandellòs nuclear plant closure

The municipality of Vandellòs i l'Hospitalet de l'Infant in Catalonia, Spain, is promoting the construction of a research, training, and innovation center for renewable energy to address the potential industrial gap left by the future closure of the Vandellòs II nuclear power plant. The project, named the Innovation, Research, and Training Center for Efficiency and Renewable Energy (CIRFER), will be located on municipal land in the Les Tàpies industrial estate, aiming to sustain the technical foundation and employment ecosystem that has long developed around the energy industry in the area. According to the plan, the first phase of the project is expected to launch in 2028, with a budget of 3.9 million...

2026-08-11

Argentine CNEA Expert Appointed Vice Chair of European Working Group on Nuclear Medicine Isotope Supply Security

Argentine CNEA Expert Appointed Vice Chair of European Working Group on Nuclear Medicine Isotope Supply Security

The Argentine National Atomic Energy Commission (CNEA) recently announced that Daniel Sestao, an engineer and the institution's radioisotope production manager, has been appointed Vice Chair of the Supply Security Working Group of the European Association of Nuclear Medicine. CNEA, which operates under the Nuclear Affairs Secretariat of Argentina's Ministry of Economy, views this appointment as recognition of its technical capabilities in nuclear medicine and its role in international collaboration. The Supply Security Working Group is composed of international experts and focuses on the continuity and sustainability of the medical radioisotope supply chain, covering strategic isotopes such as molybdenum-99, technetium-99m, and lutetium-177. These radioisotopes are widely used in the diagnosis and treatment of tumors and complex diseases, forming a critical component of the nuclear medicine system...

2026-08-11

French nuclear power sets record unavailability rate due to high temperatures and drought, one-sixth of capacity constrained

French nuclear power sets record unavailability rate due to high temperatures and drought, one-sixth of capacity constrained

France's nuclear power system is under exceptional strain. Affected by persistent high temperatures and low river water levels, nuclear reactors operated by French utility EDF have recorded unprecedented unavailability. According to an AFP tally based on data published by EDF since 2015, on the afternoon of Sunday, August 9, 2026, the nuclear capacity shortfall caused by drought and extreme heat reached 15.6% of installed capacity, equivalent to roughly one-sixth of France's nuclear power capacity being temporarily unable to supply electricity normally. The cause of this disruption is not simply equipment failure, but is closely linked to the natural environment on which nuclear plant operations depend. Many nuclear plants draw water from rivers for cooling; when river levels are too low or water temperatures too high, the...

2026-08-11

KEPCO KPS Q2 Results Miss Expectations; Nuclear Maintenance Demand Expected to Drive Recovery in H2

KEPCO KPS Q2 Results Miss Expectations; Nuclear Maintenance Demand Expected to Drive Recovery in H2

KEPCO KPS's Q2 results significantly missed market expectations, mainly due to factors such as extended long-term planned preventive maintenance cycles for nuclear power plants and a reduction in external and overseas variable works. Data shows that the company's preliminary Q2 sales stood at KRW 437.9 billion, down 3.5% year-on-year; operating profit was KRW 43.6 billion, down 33.6% year-on-year, approximately 30.1% below market consensus; net profit attributable to controlling shareholders was KRW 38.3 billion, down 24.8% year-on-year. The operating margin fell to 10.0%, down 4.5 percentage points from the same period last year, indicating pressure on both the revenue side and, to some extent, the cost side. The nuclear maintenance business was one of the key factors dragging down Q2 performance. In Q2...

2026-08-11

Automatic Shutdown of Unit 3 at Oi Nuclear Power Plant During Operation; Kansai Electric Power to Investigate Cause from the 12th

Automatic Shutdown of Unit 3 at Oi Nuclear Power Plant During Operation; Kansai Electric Power to Investigate Cause from the 12th

Unit 3 of the Oi Nuclear Power Plant in Fukui Prefecture, Japan, experienced an automatic shutdown during operation in the early hours of the 9th. Operator Kansai Electric Power stated that the fault is related to an internal abnormality in the generator and plans to formally begin a cause investigation from the 12th. Currently, there is no clear timeline for when the unit can resume operation. According to reports, an alarm related to loss of magnetic field occurred inside the generator used for power generation at the time of the incident, after which the generator stopped, and the reactor in operation also automatically shut down. On the 10th, Kansai Electric Power visited the Fukui Prefectural Government to apologize for the fault and report on subsequent response measures. Yuichiro Sakamoto, head of the Fukui Prefecture Disaster Prevention and Safety Division, pointed out that following a steam leak fault at Mihama Nuclear Power Plant Unit 3 in May this year, an unexpected emergency shutdown of a reactor in operation occurring within a short period may undermine public trust in nuclear safety. Local government authorities have demanded that the operator promptly identify the cause and implement measures to prevent similar issues from recurring.

2026-08-11

International Team Measures Niobium-94 Neutron Reactions, Explaining Anomalous Molybdenum-94 Abundance in the Solar System

International Team Measures Niobium-94 Neutron Reactions, Explaining Anomalous Molybdenum-94 Abundance in the Solar System

An international team of physicists has, for the first time, conducted a comprehensive study of the interactions between neutrons and the niobium-94 isotope. The findings have been published in Physical Review Letters. The study suggests that the elevated abundance of molybdenum-94 in the primordial material of the solar system can be explained by a series of neutron-involving nuclear reaction processes inside old stars, without requiring the introduction of previously unknown special formation mechanisms. The research was led by Alberto Mengoni, a researcher at the Italian National Institute for Nuclear Physics. The team conducted experiments using the n_TOF facility at CERN, focusing on tracking the interactions between neutrons and niobium-94 atoms. The n_TOF facility is used to...

2026-08-11