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Nuclear Energy Highlights

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Fusion

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American Fusion Completes First Phase of Texatron Testing at Texas Tech University

American Fusion Completes First Phase of Texatron Testing at Texas Tech University

2026-08-01

American Fusion (American Fusion, OTC: AMFN) announced on July 31 that the first phase of its proprietary Texatron Fusion Engine engineering and testing program has been completed at the Center for Emerging Energy Sciences, Department of Physics and Astronomy, Texas Tech University in Lubbock, Texas. The company stated that the project has achieved initial engineering goals and has advanced to the next phase of the Texatron development and testing program. According to reports, American Fusion's seven-member science and engineering team collaborated with Texas Tech University personnel this week on engineering assessments, subsystem...

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CATL Again Leads New Funding Round for Beta Fusion

CATL Again Leads New Funding Round for Beta Fusion

2026-08-01

On July 31, CATL continued to lead a new funding round for fusion frontier technology company Beta Fusion with an investment of several hundred million yuan. Corporate information query platforms showed that relevant details of Beta Fusion's latest funding round had been updated that day. This marks CATL's renewed commitment to the company following its lead investment of several hundred million yuan in Beta Fusion's seed round in early June this year. Beta Fusion (Beijing) Energy Technology Co., Ltd. was established in late 2025 with a registered capital of 1 million yuan, focusing primarily on the pulsed field-reversed configuration (FRC) magneto-inertial confinement route to explore commercialization pathways for controlled nuclear fusion. The company's founder, Cao Zhiping, is among the early domestic researchers engaged in pulsed FRC route development...

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Hefei Institute of Energy and Xianchu Nuclear Assembly Jointly Establish a Joint Laboratory for Tritium-Related Environmental Control Equipment for Fusion

Hefei Institute of Energy and Xianchu Nuclear Assembly Jointly Establish a Joint Laboratory for Tritium-Related Environmental Control Equipment for Fusion

2026-08-01

On July 23, the Institute of Energy, Hefei Comprehensive National Science Center, and Shijiazhuang Xianchu Nuclear Energy Equipment Co., Ltd., a subsidiary of Xianchu Energy Development Group, held a signing ceremony in Hefei, Anhui Province, for the Joint Laboratory for Tritium-Related Environmental Control Equipment for Fusion. The collaboration will focus on the development of tritium-related environmental control equipment for nuclear fusion devices, advancing key technology breakthroughs and industrial applications. Hu Haomin, Deputy Director of the Institute of Energy, Hefei Comprehensive National Science Center; Chen Kun, Chairman of Xianchu Energy Development Group; Fang Yongsheng, Executive Deputy General Manager of Shijiazhuang Xianchu Nuclear Energy Equipment Co., Ltd.; and Zhao Xinhua, General Manager of China-Ukraine Xianchu Nuclear Energy Technology Co., Ltd., attended the signing ceremony. The Institute of Energy, Hefei Comprehensive...

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Helong-2 Magnet Coil Project Kickoff Meeting Successfully Held at Lanzhou Taiji

Helong-2 Magnet Coil Project Kickoff Meeting Successfully Held at Lanzhou Taiji

2026-07-31

On July 29, 2026, the Helong-2 magnet coil project kickoff meeting was successfully held at Lanzhou Taiji. This project involves core components of ENN's third-generation spherical torus hydrogen-boron fusion device, featuring extremely high technical precision, massive system integration complexity, and stringent engineering development standards. Undertaking this core development task represents ENN Group's high recognition and full trust in Lanzhou Taiji's technical capabilities, manufacturing strength, and quality control competence, laying a solid foundation for further deepening cooperation between the two parties. In the next step, Lanzhou Taiji will coordinate its premium R&D and production resources to focus on tackling core fusion technologies, implementing strict review and meticulous control throughout the entire process from structural design, multi-physics simulation, process trial production, to manufacturing...

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QST completes first gyrotron 170 GHz microwave output test at ITER site

QST completes first gyrotron 170 GHz microwave output test at ITER site

2026-07-31

The National Institutes for Quantum Science and Technology (QST) of Japan announced on July 31 that it has completed the integration and operational testing of the first gyrotron system at the International Thermonuclear Experimental Reactor (ITER) site in southern France, successfully producing 170 GHz microwave output. This system is used for ITER plasma generation and heating, and is one of the key devices for ITER's plan to commence operations in 2034. The core equipment of this test is the gyrotron, a high-power microwave source. Gyrotron operation requires the coordinated work of peripheral equipment such as power supplies, superconducting coils, and cooling systems. QST previously completed performance testing of eight ITER gyrotron systems at the gyrotron test facility of the Naka Fusion Institute in Japan, and transported components including gyrotrons, superconducting coils, and quasi-optical matching units to the ITER site. Over the past three years, QST has advanced system installation, commissioning, and operational preparation at the site.

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South Korean University Team Files Patent for Fusion Reactor Optimization Design Method

South Korean University Team Files Patent for Fusion Reactor Optimization Design Method

2026-07-31

Professor Hong Bong-geun of the Department of Quantum System Engineering at the College of Engineering, Jeonbuk National University, South Korea, has recently filed a patent for a fusion reactor optimization design method. This method can determine device dimensions and key component structures while enabling customized performance design for fusion reactors based on different applications such as power generation, thermal energy utilization, and transmutation neutron sources. According to reports, this design technology targets the early-stage R&D phase of fusion devices and can be used to rapidly assess the technical and economic feasibility of proposals, thereby reducing trial-and-error, shortening development cycles, and lowering development costs, providing design support for fusion energy commercialization...

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Nuclear Application

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Additively Manufactured CrMoTaTiV Refractory Alloy Demonstrates Excellent Radiation Resistance

A materials study released on July 31 shows that a research team used laser powder directed energy deposition (LP-DED) technology to fabricate a novel Cr₁₀Mo₂₅Ta₂₅Ti₁₅V₂₅ refractory complex concentrated alloy and systematically evaluated its structural stability and mechanical properties under irradiation environments. The study targets the demand for high-temperature, high-irradiation structural materials in next-generation nuclear fission and fusion devices. In the study, samples were subjected to 3.5 MeV Fe²⁺ ion irradiation at the Ion Beam Materials Laboratory of Los Alamos National Laboratory in the United States, at irradiation temperatures of room temperature and 650°C, with local doses reaching approximately 1.8, 6, and 18 dpa. Microstructural analysis...

2026-08-01

Egypt's Ministry of Health Advances Medical Radiation Safety Regulatory Review in Cooperation with IAEA

On July 31, Egypt's Ministry of Health and Population stated that it reaffirmed its critical role in improving Egypt's national radiation safety system during a 12-day Integrated Regulatory Review Service (IRRS) mission conducted by the International Atomic Energy Agency (IAEA). The IRRS mission, involving a team of international experts and reviewers, was conducted at the invitation of the Egyptian Nuclear and Radiological Regulatory Authority (ENRRA). Egyptian authorities stated that this step is part of the country's ongoing efforts to strengthen its national radiation safety framework and enhance its regulatory infrastructure in line with the latest international standards. The Ministry of Health and Population submitted a topical report through the Radiation Protection Executive Office of the General Department of Radiology, detailing its role in regulating and supervising the use of medical radiation...

2026-08-01

India's First Elekta Evo Installed at Manipal Hospital in Bengaluru for Online Adaptive Radiotherapy

Bengaluru, India – Manipal Hospital Yelahanka has become the first healthcare facility in India to install Elekta Evo, Elekta's AI-enhanced adaptive CT linac platform, which will support clinical teams in delivering online adaptive radiotherapy for more personalized and precise cancer treatment. The system was previously showcased at AROICON 2025, India's radiation oncology conference. According to data from the Indian Council of Medical Research, India records an estimated 1.46 million new cancer cases annually, with radiotherapy demand continuing to grow. For patients with complex conditions or those presenting at advanced stages...

2026-08-01

Anambra State, Nigeria Strengthens Cooperation with Nuclear Regulatory Authority to Enhance Safety Management of Medical Radioactive Materials

The Anambra State Government of Nigeria recently stated that it will strengthen cooperation with the Nigerian Nuclear Regulatory Authority (NNRA) to enhance radiation safety across the state and ensure the safe and compliant use of radioactive materials in medical institutions. At a meeting held in Awka, the capital of Anambra State, Dr. Afam Obidike, the State Commissioner for Health, exchanged views on relevant cooperation with a delegation from the NNRA. The delegation was led by Ekene Efenemoku, the NNRA's Southeast Zonal Coordinator. Efenemoku stated that the visit aimed to deepen bilateral cooperation and brief the state government on the NNRA's statutory responsibilities. According to his introduction, the...

2026-08-01

IIT Develops Novel Nanomaterial for Efficient Recovery of Rare Earth and Uranium Resources

Researchers at the Indian Institute of Technology Roorkee have developed an acid-resistant magnetic nanocomposite capable of recovering uranium and rare earth elements from acidic leach solutions. The material consists of core active nanoparticles encapsulated in a protective silica layer, enabling efficient absorption and extraction of these valuable resources in complex acidic aqueous media. By synthesizing the silica shell using biocompatible reagents, the researchers not only enhanced the material's corrosion resistance but also made it safer and more environmentally friendly. This novel nanocomposite demonstrated exceptional performance in laboratory tests, recovering up to 370 grams of uranium and rare earth elements per kilogram of material. It can operate effectively not only under conditions such as natural groundwater...

2026-08-01

U.S. Explores New Methods for Lunar Ice Detection Using Synchrotron X-ray Microtomography and Seismic Models

On July 31, researchers at Lawrence Berkeley National Laboratory, in collaboration with scientists from the University of Maryland and the University of Hawaii, proposed a new method for locating subsurface ice deposits on the Moon using seismic waves. The findings, published in the journal Science Advances, are expected to provide a reference for interpreting detection data and locating water resources in future lunar landing missions. The research focuses on how subsurface lunar materials respond to seismic waves. The team developed computational models to predict the behavior of lunar subsurface media of varying compositions under seismic wave excitation. Experimental results showed differences in seismic response between ice-bearing and dry rocks, indicating that seismological methods have the potential to identify ice layers buried beneath lunar regolith and rock.

2026-08-01