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Harbin Electric Power Equipment Company Nuclear Power MES System Has Been Fully Switched into Operation

Harbin Electric Power Equipment Company Nuclear Power MES System Has Been Fully Switched into Operation

Recently, the nuclear power MES system of Harbin Electric Power Equipment Company has been fully switched into operation, achieving that work plan maintenance, tracking, and all other operations are based on MES. This is a key achievement of the company's independent research and development of information systems realizing a zero breakthrough. The full name of the nuclear power MES system is Nuclear Power Manufacturing Execution System. It is the smart brain or neural center in the nuclear power production workshop, specifically responsible for accurately and transparently implementing upper-level production plans into the actions of each process in the workshop. The full switch of the nuclear power MES system is an important measure for building a world-class nuclear main pump research and development base. Harbin Electric Power Equipment Company conducted an in-depth analysis of pain points such as insufficient cross-link plan coordination, constraints from material completeness, and weak refined process control...

2026-10-10

Urenco Officially Commissions Uranium Oxide Storage Facility at Gronau, Germany: Deepening Long-Term Safe Management of Depleted Uranium By-Products

Urenco Officially Commissions Uranium Oxide Storage Facility at Gronau, Germany: Deepening Long-Term Safe Management of Depleted Uranium By-Products

Global nuclear fuel enrichment services giant Urenco recently announced the official commissioning of a specialized uranium oxide storage facility located at its Gronau enrichment plant site in North Rhine-Westphalia, Germany. The formal commissioning of this facility marks the completion of a key piece in Urenco's layout for the full lifecycle harmless disposal of depleted uranium tails and strategic resource reserves. The construction permit for this storage facility originated from the expansion approval issued by the North Rhine-Westphalia nuclear regulatory authority to the Gronau enrichment plant in 2005, which authorized the plant's annual enrichment capacity ceiling to reach 4.5 million separative work units (SWU). As a precondition for environmental and nuclear safety regulatory approval, the state government explicitly...

2026-10-08

Princeton Plasma Physics Laboratory Hosts International Workshop: Deepening Cross-Disciplinary Applications of Plasma in Semiconductor Manufacturing and Controlled Nuclear Fusion

Princeton Plasma Physics Laboratory Hosts International Workshop: Deepening Cross-Disciplinary Applications of Plasma in Semiconductor Manufacturing and Controlled Nuclear Fusion

On the occasion of its 75th anniversary, the Princeton Plasma Physics Laboratory (PPPL), under the U.S. Department of Energy (DOE), hosted the second Adopting Sustainable Partnerships for Innovative Research Ecosystem (ASPIRE) international workshop in the fall of 2026. The workshop was organized by the laboratory's Applied Materials and Sustainability Sciences Directorate and brought together scholars from the University of Osaka in Japan and the Ulsan National Institute of Science and Technology (UNIST) in South Korea, as well as researchers from PPPL, to focus on...

2026-10-08

World Nuclear Industry Status Report: The Global "Nuclear Renaissance" Is in Fact "Single-Engine Driven by China," with Regions Outside China in "Substantial Stagnation"

World Nuclear Industry Status Report: The Global "Nuclear Renaissance" Is in Fact "Single-Engine Driven by China," with Regions Outside China in "Substantial Stagnation"

Recently, the latest edition of the World Nuclear Industry Status Report (WNISR), led by independent energy analyst Mycle Schneider, pointed out in its analysis: the so-called global nuclear renaissance is in essence a localized expansion driven by a single engine—China; if China's strong engineering momentum is stripped away, nuclear power in the rest of the world is in a state of structural substantial stagnation and slight contraction. The report notes: as the global nuclear industry remains mired in delays and cost overruns, a wave of retirements of aging units, and the paper-only commercialization of small reactors, China has become the unquestionable absolute driving force of the global nuclear power industry...

2026-10-07

Jefferson Lab Signs CRADA to Advance Commercialization of Subsurface Tritium Continuous Monitor: Overcoming the Challenge of Online Monitoring of Low-Energy Beta Particles in Groundwater at Nuclear Power and Fusion Facilities

Jefferson Lab Signs CRADA to Advance Commercialization of Subsurface Tritium Continuous Monitor: Overcoming the Challenge of Online Monitoring of Low-Energy Beta Particles in Groundwater at Nuclear Power and Fusion Facilities

The U.S. Department of Energy (DOE) Thomas Jefferson National Accelerator Facility (Jefferson Lab) announced that it has formally signed a Cooperative Research and Development Agreement (CRADA) with startup company Canary Instruments to jointly advance the commercialization of its independently developed Subsurface Continuous Radioisotope Environmental Monitor (SCREM). This technology is specifically designed for nuclear power plants, nuclear fuel facilities, and future...

2026-10-07

Europe Completes Delivery of Final ITER Vacuum Vessel Sector, Marking Conclusion of 16 Years of Manufacturing

Europe Completes Delivery of Final ITER Vacuum Vessel Sector, Marking Conclusion of 16 Years of Manufacturing

Recently, Fusion for Energy (F4E), in collaboration with Ansaldo Nucleare, Westinghouse, and Walter Tosto, has completed the manufacturing of Europe's final vacuum vessel sector for the International Thermonuclear Experimental Reactor (ITER) and delivered it to the ITER project site at Cadarache in southeastern France. It is understood that the ITER vacuum vessel has an internal volume of 1,400 cubic meters and is composed of nine wedge-shaped steel sectors, each over 14 meters tall and weighing up to 440 tonnes. Once assembled, the vacuum vessel will have an outer diameter of 19.4 meters, a height of 11.4 meters, and weigh approximately 520...

2026-10-06

Poskom Angular Pinch Magnet Pulsed Power Supply Delivered, X-ray High-Voltage Power Supply Manufacturer Officially Enters Fusion Equipment Sector

Poskom Angular Pinch Magnet Pulsed Power Supply Delivered, X-ray High-Voltage Power Supply Manufacturer Officially Enters Fusion Equipment Sector

Recently, the angular pinch magnet pulsed power supply (TP power supply) independently developed by Poskom has completed delivery, marking that this X-ray high-voltage power supply manufacturer has officially entered the controlled nuclear fusion track. This power supply primarily serves experiments including angular pinch, field-reversed configuration (FRC), magnetized plasma generation, and magnetic confinement compression. It is key specialized power equipment for magnetic confinement controlled nuclear fusion and high-energy-density physics research, featuring hardcore capabilities such as nanosecond-level multi-stage multi-channel pulse timing coordination, waveform fidelity under ultra-high current and strong electromagnetic interference, and precise regulation of mutual inductance coupling multi-waveform attenuation, capable of matching the demanding operating conditions of frontier fusion experiments. Poskom was founded in 2015, focusing on specialized high-voltage power supplies, pulsed...

2026-10-03

The Chinese Academy of Sciences launches the "Scientific Frontier Extreme Breakthrough Program": the first batch deploys major tasks such as "new element synthesis," relying on large scientific facility clusters to push the limits of nuclear physics and materials science

The Chinese Academy of Sciences launches the "Scientific Frontier Extreme Breakthrough Program": the first batch deploys major tasks such as "new element synthesis," relying on large scientific facility clusters to push the limits of nuclear physics and materials science

On September 29, the Chinese Academy of Sciences held a press conference in Beijing, announcing the official launch of the Scientific Frontier Extreme Breakthrough Program and unveiling the first batch of launched projects. The program is based on the advantages of national major science and technology infrastructure clusters and a comprehensive disciplinary institutional framework, launching a systematic scientific expedition in the directions of the extremely macroscopic, extremely microscopic, extreme conditions, and extreme comprehensive interdisciplinarity (the "four extremes"). Zhou Qi, Vice President of the Chinese Academy of Sciences, stated that the program aims to break the traditional single-point breakthrough model through the open and combined use of major science and technology infrastructure and the deep empowerment of artificial intelligence (AI for Science), building a systematic research paradigm for tackling key problems in the context of great power competition. In the released layout of the "four extremes" breakthrough tasks, the first...

2026-09-30

Major Scientific Facility Enables Breakthrough in New Energy Materials: IHEP Leverages Beijing Synchrotron Radiation Facility to Reveal High-Efficiency Crystallization Mechanism of Perovskite, Sub-module Photoelectric Conversion Efficiency Reaches 22.9%

Major Scientific Facility Enables Breakthrough in New Energy Materials: IHEP Leverages Beijing Synchrotron Radiation Facility to Reveal High-Efficiency Crystallization Mechanism of Perovskite, Sub-module Photoelectric Conversion Efficiency Reaches 22.9%

Recently, the research team at the Multidisciplinary Research Center of the Institute of High Energy Physics (IHEP), Chinese Academy of Sciences, has made important progress in the study of the microscopic mechanisms of perovskite solar cell materials. The research team innovatively introduced Prussian Blue (PB) nanoframes with a high degree of lattice matching to perovskite, and leveraged a national major scientific and technological infrastructure——the Beijing Synchrotron Radiation Facility (BSRF)——to conduct multi-dimensional in-situ synchrotron radiation characterization. From the two perspectives of transient crystallization kinetics evolution and microscopic local coordination structure, they systematically elucidated for the first time the physicochemical mechanism by which Prussian Blue regulates perovskite nucleation and crystallization and suppresses ion migration. Large-area perovskite photovoltaic modules fabricated via wet...

2026-09-30

Argonne National Laboratory Achieves Latest Research Progress in Advanced Reactor Passive Safety, Revealing Flow Characteristics of Reactor Cavity Cooling System Using NSTF Facility

Argonne National Laboratory Achieves Latest Research Progress in Advanced Reactor Passive Safety, Revealing Flow Characteristics of Reactor Cavity Cooling System Using NSTF Facility

A research team at Argonne National Laboratory, under the U.S. Department of Energy (DOE), has achieved the latest research progress on passive shutdown decay heat removal mechanisms for next-generation advanced nuclear reactors. Under unplanned reactor shutdown or sudden emergency accident conditions, nuclear fuel continues to release decay heat. Ensuring continuous and reliable heat removal under complete power loss and without manual intervention is a core issue in the inherent safety design of Generation IV advanced reactors. The Argonne research team recently focused on the transient thermal-hydraulic response characteristics of key passive heat removal systems under realistic dynamic decay heat curves. This...

2026-09-30

Rosatom Manufactures Innovative Equipment for Akkuyu NPP Unit 2 in Turkey

Rosatom Manufactures Innovative Equipment for Akkuyu NPP Unit 2 in Turkey

According to reports, Atommash, the machine-building plant of Rosatom in the Rostov Region, has completed the manufacture of a full set of high-tech equipment for the turbine building of Akkuyu NPP Unit 2. This is the first time Atommash has produced a Separator-Steam Superheater (SPP), which is used to ensure the operation of the turbine unit. Rostov Region Governor Yury Slyusar and Igor Kotov, head of Rosatom's machine-building division, attended the equipment completion ceremony. Kotov said, on the occasion of the plant's 50th anniversary...

2026-09-29

ITER Tritium Plant Completes Final Design, Fully Transitions to Equipment Manufacturing, Installation, and Commissioning

ITER Tritium Plant Completes Final Design, Fully Transitions to Equipment Manufacturing, Installation, and Commissioning

At the Saint-Paul-lès-Durance site in France, the International Thermonuclear Experimental Reactor (ITER) Organization officially convened the Third Tritium Plant Summit. More than 70 core experts from the ITER Organization, Fusion for Energy (F4E), Japan's Domestic Agency (QST), Korea's Domestic Agency (KFE), and the US Domestic Agency (US ITER), as well as global engineering contractors and equipment manufacturers, gathered together. This summit released a decisive...

2026-09-28

Rosatom has developed the first batch of nuclear fuel assemblies for the MBIR multi-purpose fast reactor, successfully passing factory acceptance testing

Rosatom has developed the first batch of nuclear fuel assemblies for the MBIR multi-purpose fast reactor, successfully passing factory acceptance testing

At the site of the Fuel Technology Division of the State Scientific Center — Research Institute of Atomic Reactors (NIIAR, Dimitrovgrad), under the Scientific Division of Rosatom, the first batch of 3 pilot nuclear fuel assemblies (Fuel assemblies / ТВС) for the multi-purpose sodium-cooled fast neutron research reactor (MBIR) successfully completed comprehensive factory acceptance tests. The professional acceptance committee conducted a thorough review of the maturity and completeness of the fuel production process line for this batch as well as all technical performance parameters of the trial-manufactured assemblies, and completed high-precision geometric dimension and quality re-verification measurements item by item. This acceptance review brought together the expertise of multiple core research and manufacturing institutions in the Russian nuclear industry, including the Dollezhal Research and Development Institute of Power Engineering (NIKIET), the Institute of Physics and Power Engineering (IPPE), and the Machine-Building Plant Joint Stock Company (MSZ, Elemash).

2026-09-27

IAEA Releases White Paper on the Facilitation of the Safe and Secure Transport of Radioactive Material

IAEA Releases White Paper on the Facilitation of the Safe and Secure Transport of Radioactive Material

During a side event of the 70th General Conference of the International Atomic Energy Agency (IAEA) held in Vienna, Austria, the IAEA Denial of Shipment Working Group officially released and distributed to Member States the White Paper on the Facilitation of the Safe and Secure Transport of Radioactive Material. The white paper puts forward a series of systematic policy recommendations aimed at effectively alleviating the long-standing predicament of denial of shipment or serious delay of shipment in the cross-border transport of radioactive material that has long plagued nuclear power plants, hospitals, industrial non-destructive testing facilities, and scientific research institutions worldwide...

2026-09-27

Afrikantov Experimental Design Bureau of Mechanical Engineering Completes Manufacture and Delivery of MBIR Fast Reactor Primary Coolant Circulation Pumps

Afrikantov Experimental Design Bureau of Mechanical Engineering Completes Manufacture and Delivery of MBIR Fast Reactor Primary Coolant Circulation Pumps

The machine-building division of Rosatom State Atomic Energy Corporation (Госкорпорация «Росатом» / Rosatom), Afrikantov Experimental Design Bureau of Mechanical Engineering (АО «ОКБМ Африкантов» / OKBM Afrikantov), has completed the manufacture and delivery of the primary coolant circulation pumps (Главные циркуляционные насосы, ГЦН) for the multi-purpose fast neutron research reactor (МБИР / MBIR). As core equipment of the reactor facility, these circulation pumps will be responsible for driving the coolant to circulate within the reactor core...

2026-09-24

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