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Keyword:Fuel Cycle

Experts from 18 Countries Discuss Research Planning for Russia's MBIR Fast Reactor International Research Center: Focusing on Closed Fuel Cycle and Mega-Science Engineering Synergy

Experts from 18 Countries Discuss Research Planning for Russia's MBIR Fast Reactor International Research Center: Focusing on Closed Fuel Cycle and Mega-Science Engineering Synergy

At the Institute of Nuclear Physics of the Academy of Sciences of the Republic of Uzbekistan (INP AS RUz), the third meeting of the Advisory Council of the International Research Center (IRC MBIR), established on the basis of the Multi-purpose Fast Neutron Research Reactor (MBIR), was officially convened. The meeting attracted more than 150...

2026-10-03

US Department of Energy Study Shows: Deep Borehole Disposal Option Can Significantly Reduce Nuclear Fuel Cycle Back-End Waste Disposal Costs

US Department of Energy Study Shows: Deep Borehole Disposal Option Can Significantly Reduce Nuclear Fuel Cycle Back-End Waste Disposal Costs

Results from a three-year US Department of Energy (DOE)-funded project show that Deep Boreholes technology can provide a safe and low-cost permanent disposal pathway for radioactive waste remaining after Nuclear Fuel Recycling. Deep Isolation Nuclear conducted a systematic assessment of multiple recycling waste disposal scenarios, and the results showed that the estimated costs for all tested scenarios were below the project's control target of "0.1 cents per kilowatt-hour of electricity generation." Long-term safety modeling also confirmed that under normal expected conditions, all options meet...

2026-09-24

ORNL Develops Duct Radiation Monitoring System to Enhance Fuel Cycle Facility Safety and Protection

ORNL Develops Duct Radiation Monitoring System to Enhance Fuel Cycle Facility Safety and Protection

Recently, a research team at Oak Ridge National Laboratory (ORNL), led by embedded systems hardware and software engineer Brett Witherspoon, successfully developed a new type of radiation monitoring system. The system can continuously assess the accumulation of radioactive materials inside ventilation ducts at facilities that manufacture nuclear fuel or process nuclear waste. The system can be powered by battery or Ethernet, with a core cylindrical device approximately 12 inches tall. The device is installed inside the duct, and ORNL states that it can provide unprecedented monitoring frequency and accuracy at a lower cost than existing detection systems, thereby effectively protecting people...

2026-09-18

U.S. NANO Nuclear and Enveniam to Advance Microreactor and Nuclear Fuel Cycle Cooperation

U.S. NANO Nuclear and Enveniam to Advance Microreactor and Nuclear Fuel Cycle Cooperation

U.S. advanced nuclear energy company NANO Nuclear Energy Inc. announced on September 4 that it has signed a non-binding memorandum of understanding with Enveniam, LLC, a project integration and engineering technology services provider, to explore cooperation in areas such as nuclear fuel cycle infrastructure, microreactor commercialization, advanced manufacturing, and end-user energy solutions. Under the MOU, the parties will evaluate how to leverage Enveniam's experience in nuclear engineering, project integration, safety analysis, licensing support, project controls, operational readiness, and complex energy infrastructure development to support NANO Nuclear...

2026-09-05

Harbin Engineering University Establishes Research Institute for Spent Fuel Reprocessing and Advanced Materials

Harbin Engineering University Establishes Research Institute for Spent Fuel Reprocessing and Advanced Materials

On August 31, the inauguration ceremony of the Research Institute for Spent Fuel Reprocessing and Advanced Materials at Harbin Engineering University was held at the university's Qihang Activity Center. More than 150 participants attended the meeting, including academicians and experts in the field of nuclear science and technology, representatives from industry and enterprises, peer institutions, and alumni. The newly established institute will address the needs of nuclear energy safety assurance and sustainable development by integrating the university's advantageous disciplinary resources in nuclear science, materials, and chemical engineering, focusing on breakthroughs in spent fuel reprocessing processes, advanced materials development, and related key core technologies, while promoting the coordinated development of basic research, technological breakthroughs, and commercialization of research outcomes. At the meeting, several attending experts noted that spent fuel reprocessing is a critical part of the nuclear f...

2026-09-01

U.S. Marathon Fusion Demonstrates Hydrogen and Lithium Isotope Enrichment Technology

U.S. Marathon Fusion Demonstrates Hydrogen and Lithium Isotope Enrichment Technology

U.S.-based Marathon Fusion announced on August 27 that it has successfully demonstrated hydrogen and lithium isotope enrichment technology using its proprietary plasma centrifuge. The company stated that this advancement addresses the fuel cycle needs of fusion energy and related isotope supply requirements. In the deuterium-tritium fusion pathway, hydrogen isotope processing is critical to the continuous operation of fusion devices, while lithium isotope enrichment is closely tied to tritium production. The U.S. Department of Energy (DOE) released its "Fusion Science and Technology Roadmap" in June of this year, which identifies tritium processing as one of the core challenges, noting that related progress is essential for achieving sustained deuterium-tritium fusion operation and validating fusion as a large-scale energy form...

2026-08-28

U.S. NRIC Selects 13 Nuclear Energy Launch Pad Projects

U.S. NRIC Selects 13 Nuclear Energy Launch Pad Projects

The U.S. Department of Energy (DOE)'s National Reactor Innovation Center (NRIC) announced on August 24 that 13 new projects have been selected for the Nuclear Energy Launch Pad program. NRIC is based at Idaho National Laboratory (INL). NRIC Director Brad Tomer stated that this round of selections reflects developers' growing commitment to advancing related technologies. The program will provide companies with a priority pathway to DOE authorization, as well as access to expert resources, facility conditions, and targeted regulatory support to adv...

2026-08-26

SPIC Thorium-Based Energy Technology Company Visits College of Nuclear Science and Technology at Harbin Engineering University for Cooperation Exchange

SPIC Thorium-Based Energy Technology Company Visits College of Nuclear Science and Technology at Harbin Engineering University for Cooperation Exchange

On August 20, Tang Chuntao, interim head of the Overall Technology Department and R&D Design Department of SPIC Thorium-Based Energy Technology Co., Ltd., led a delegation to the College of Nuclear Science and Technology at Harbin Engineering University for an exchange meeting. The two sides discussed topics including technical breakthroughs, research collaboration, and talent cultivation related to the National Major Science and Technology Project on thorium molten salt reactors. Dean Tan Sichao and Vice Dean Xia Genglei attended the meeting. Tan Sichao welcomed Tang Chuntao and his delegation. He noted that the College of Nuclear Science and Technology, leveraging the university's distinctive advantages in the "Three Seas and One Nuclear" strategy, has established a multidisciplinary layout in nuclear engineering, nuclear technology, and nuclear chemical engineering with deep academic accumulation. As the sole entity of SPIC Group for the thorium fuel cycle, Thorium-Based Energy Company undertakes the R&D and construction of advanced Generation IV nuclear energy systems. The two sides have complementary strengths and broad prospects for cooperation. He expressed hope that this exchange would serve as an opportunity to deepen joint research, platform co-construction, and talent co-cultivation, jointly serving the nation's high-quality nuclear energy development.

2026-08-24

Japan Explains Plan for Spent Fuel Interim Storage Facility in Kaminoseki Town

Japan Explains Plan for Spent Fuel Interim Storage Facility in Kaminoseki Town

Japan's Agency for Natural Resources and Energy recently held an explanatory meeting with the Kaminoseki Town Assembly regarding the Chugoku Electric Power Company's plan to construct a spent fuel interim storage facility in Kaminoseki Town, Yamaguchi Prefecture. The briefing covered the Japanese government's nuclear fuel cycle policy, facility safety, and related subsidy systems. The meeting was held on the 19th at the Kaminoseki Town Assembly. Previously, the Japanese government had decided to revise guidelines related to nuclear energy policy and included the Kaminoseki Town spent fuel interim storage facility plan within them. At the meeting, the Agency for Natural Resources and Energy stated that interim storage facilities are essential to supporting...

2026-08-23

Rosatom Says Seversk Fast Reactor Project Will Demonstrate Russia's Nuclear Technology Capabilities

Rosatom Says Seversk Fast Reactor Project Will Demonstrate Russia's Nuclear Technology Capabilities

Rosatom Director General Alexey Likhachev said that if the nuclear power project under construction in Seversk, Tomsk Oblast, is put into operation before 2030, it will demonstrate Russia's capabilities in new nuclear technologies

2026-08-21

SHINE Advances Commercial Spent Fuel Recycling Facility Construction

SHINE Advances Commercial Spent Fuel Recycling Facility Construction

U.S. electricity demand is growing at a rate rarely seen in decades, and nuclear energy is considered one of the key options to meet the incremental demand. Meanwhile, the current open nuclear fuel cycle still treats spent fuel primarily as single-use waste, failing to fully utilize most of the energy potential that remains within it. SHINE Technologies is developing spent fuel recycling technologies and plans to build a facility with spent fuel recycling capabilities. The company stated that multiple collaborations funded by the U.S. Department of Energy's Advanced Research Projects Agency-Energy (ARPA-E) CURIE program are advancing the work from validated laboratory-scale chemical processes toward commercial scale...

2026-08-19

ASP Isotopes Subsidiary Evaluates Metal Hydrofluorination and Fluorination Project in Namibia

ASP Isotopes Subsidiary Evaluates Metal Hydrofluorination and Fluorination Project in Namibia

ASP Isotopes Inc. recently announced that its wholly-owned subsidiary, Quantum Leap Energy LLC, is evaluating metal conversion opportunities in Namibia, with work focusing on technologies and processes required for critical stages of the fission and fusion nuclear fuel cycles. According to the disclosure, the evaluation includes plans to construct a pilot-scale hydrofluorination and fluorination facility in the Walvis Bay area of Namibia. Public environmental and social impact assessments and consultation procedures for the project have already been initiated. The proposed facility will be used to develop, test, and demonstrate metal hydrofluorination and fluorination processes. In accordance with Namibian regulatory requirements, relevant public consultation notices have been published through customary local channels. The company...

2026-08-19

Kazakhstan Advances Nuclear Fuel Cycle from Resource Development to High-Value-Added Manufacturing

Kazakhstan Advances Nuclear Fuel Cycle from Resource Development to High-Value-Added Manufacturing

Kazakhstan is advancing its nuclear fuel cycle industry from natural uranium mining toward deep processing and high-tech product manufacturing. As one of the world's major natural uranium producers, Kazakhstan has in recent years not only maintained its advantage in resource development but also continued to build capacity in uranium conversion, nuclear fuel component manufacturing, scientific research capabilities, and professional workforce training. The nuclear fuel cycle encompasses the entire process of nuclear materials, from uranium ore mining and processing, to fuel use in reactors, and to the management of spent fuel and radioactive waste. Depending on the technical route, relevant stages may include uranium mining and processing, conversion, isotope enrichment, fuel pellet fabrication, fuel assembly production, and spent fuel storage...

2026-08-13

Dong Baotong, Director of the National Nuclear Safety Administration: China's nuclear safety level remains among the top internationally, and during the "15th Five-Year Plan" period, the number of operating nuclear power units in China will rank first in the world

Dong Baotong, Director of the National Nuclear Safety Administration: China's nuclear safety level remains among the top internationally, and during the "15th Five-Year Plan" period, the number of operating nuclear power units in China will rank first in the world

The State Council Information Office held a series of press conferences on August 13 themed "Starting the '15th Five-Year Plan' with a Strong Beginning," introducing the progress of comprehensively advancing the construction of a Beautiful China. Dong Baotong, Vice Minister of Ecology and Environment and Director of the National Nuclear Safety Administration, stated at the conference that ecological environment safety encompasses several key aspects, including ecological security, nuclear safety, and environmental risk prevention and control. The Ministry of Ecology and Environment serves as the lead coordinating body for both the national ecological security work coordination mechanism and the nuclear safety work coordination mechanism. Over the years, together with relevant departments, we have actively responded to various risks and challenges, effectively safeguarding the bottom line of ecological environment safety. Among these, in the area of nuclear safety, we have consolidated the primary responsibility of nuclear facility operators...

2026-08-13

First batch of experimental stations at Russia's Siberian Circular Photon Source expected to be operational by end of 2026

First batch of experimental stations at Russia's Siberian Circular Photon Source expected to be operational by end of 2026

On August 11, Russian President Vladimir Putin stated at a meeting of the Council for Science and Education that the first research stations of the Siberian Circular Photon Source (SKIF) synchrotron are expected to be commissioned by the end of 2026. At the meeting, Putin noted that the Siberian Circular Photon Source is currently one of the world's most powerful particle accelerators, with some parameters being unique, capable of helping researchers conduct in-depth studies of the structure of matter at the atomic and molecular levels. He also stated that Russia needs to accelerate the development of future technologies, concentrate efforts on priority tasks, and make more efficient use of national strategic scientific resources, including research institutions, advanced digital computing resources, and unique biological resources. The Siberian Circular Photon...

2026-08-12

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