home
Registration Registration REGISTER FOR THE CONFERENCE Apply to Exhibit Apply to Exhibit APPLICATION FOR EXHIBITION Sponsorship Sponsorship SPONSORSHIP APPLICATION

Nuclear Energy Highlights

View more >
Japan to Use Fukushima Decontaminated Soil at Government Office Buildings in Sendai and Saitama

Japan to Use Fukushima Decontaminated Soil at Government Office Buildings in Sendai and Saitama

At a Cabinet meeting held at the Prime Minister's Office on August 25, the Japanese government decided to use decontaminated soil generated from the Tokyo Electric Power Company (TEPCO) Fukushima Daiichi Nuclear Power Station accident for flower beds and other areas at joint government office buildings in Sendai City and Saitama City. This will mark the first use of such recycled soil outside Tokyo. According to the plan, the relevant office buildings will use a total of approximately 2 cubic meters of low-radioactivity "reconstruction recycled soil," with the specific construction schedule still being coordinated. The usage site in Saitama City is located at the government joint office building in the Saitama New Urban Center area, and Sendai City will also implement similar arrangements at its joint government office building. Under Japanese law, soil decontaminated after the Fukushima Daiichi Nuclear Power Station accident must be transported outside Fukushima Prefecture for final disposal by March 2045. The Japanese government hopes that by first using such soil in public facilities, it can promote the final disposal work outside Fukushima Prefecture and enhance public understanding of the safety and necessity of such soil.

2026-08-25

Fusion

View more >
Shanghai's 15th Five-Year Plan Proposes Advancing Third-Generation and Fourth-Generation Nuclear Power Equipment Development

Shanghai's 15th Five-Year Plan Proposes Advancing Third-Generation and Fourth-Generation Nuclear Power Equipment Development

2026-08-25

The Shanghai Municipal People's Government recently issued the "Shanghai 15th Five-Year Plan for Accelerating the Advancement of New Industrialization and Building a Modern Industrial System." The plan proposes that during the 15th Five-Year Plan period, Shanghai will focus on new industrialization and modern industrial system development, promoting new energy, green and low-carbon industries, high-end equipment, advanced materials, and future industries, with multiple sections involving nuclear power equipment and nuclear fusion. In the new energy and green low-carbon sector, the plan specifies breakthroughs in advanced energy equipment, advancing batch and standardized construction of large-scale third-generation nuclear power, improving manufacturing levels of fourth-generation nuclear power main equipment, and tackling key equipment such as advanced small modular reactors and fusion reactors. This means Shanghai...

More >
US Study Shows Inertial Fusion Implosions Can Tolerate Certain Asymmetries

US Study Shows Inertial Fusion Implosions Can Tolerate Certain Asymmetries

2026-08-25

Researchers at the Lawrence Livermore National Laboratory (LLNL) in the US have recently found that implosion designs for inertial fusion energy (IFE) can withstand considerable imperfections before performance degrades sharply. This result aids in the design of fuel targets for future fusion power plants, particularly in assessing the tolerance of target capsules to errors under high-frequency injection and laser-driven conditions. The study's simulation results show the density (top) and temperature (bottom) at the instant just before fusion reactions peak in an asymmetric implosion. The hottest spot coincides with the point of highest fuel density, indicating direct ignition of high-density fuel jets driven by asymmetry. The image was recently selected for the cover of Physics of Plasmas...

More >
U.S. Department of Energy Extends Princeton University Contract to Operate PPPL

U.S. Department of Energy Extends Princeton University Contract to Operate PPPL

2026-08-25

The U.S. Department of Energy (DOE) and Princeton University have extended the contract under which Princeton University manages and operates the Princeton Plasma Physics Laboratory (PPPL). The laboratory is located on Princeton University's Forrestal Campus in Plainsboro, New Jersey. Under the new extension, the contract will be renewed for five years starting April 1, 2027. Princeton University expects to strengthen collaboration with faculty and research teams on campus during the contract period, explore next-generation fusion energy research facilities, and enhance laboratory infrastructure and safety to support ongoing operational needs. Princeton University's office for research affairs...

More >
Rock Fusion Completes Key Processes for Stellarator 3D Non-Planar Superconducting Prototype Coil

Rock Fusion Completes Key Processes for Stellarator 3D Non-Planar Superconducting Prototype Coil

2026-08-25

Recently, the stellarator high-strength stainless steel armored 3D non-planar superconducting prototype coil developed by Rock Fusion (Shanghai) Technology Co., Ltd. has completed two key processes: 3D precision winding and ground insulation wrapping. The overall 3D geometric error of the coil is consistently controlled at the millimeter level, indicating that the company has preliminarily established key manufacturing processes including material adaptation, 3D precision forming, and insulation wrapping for high-field steady-state stellarator superconducting magnets. The stellarator is an important device for steady-state controlled nuclear fusion research, and 3D superconducting coils are used to generate the complex magnetic fields required to confine plasma. Unlike conventional planar coils, stellarator coils typically feature non-planar spatial structures with continuously varying curvature...

More >
American Fusion's Fusion Platform Patent Applications Reach 100

American Fusion's Fusion Platform Patent Applications Reach 100

2026-08-25

American Fusion announced on August 24 that the total number of patent applications it has filed around its Texatron Fusion Engine platform has reached 100, including 17 newly filed U.S. patent applications. The company stated that these applications primarily cover the structural design, fuel injection, electromagnetic configuration, and system architecture of the Texatron platform. According to the company's disclosure, the 17 newly filed applications were submitted between August 16 and 22, 2026, covering aluminum fusion confinement structures, clamshell and monobloc housings, hollow annular inner cavities, rifled inner wall geometries, electromagnetic field structures, helium-3 and deuterium...

More >
Expansion Project Advances at Centrus Energy's Uranium Enrichment Facility in Piketon, Ohio

Expansion Project Advances at Centrus Energy's Uranium Enrichment Facility in Piketon, Ohio

2026-08-25

Centrus Energy said on August 24 that Ohio Governor Mike DeWine, Lieutenant Governor Jim Tressel, JobsOhio CEO J.P. Nauseef, along with state, federal, and local stakeholders, visited the company's uranium enrichment facility in Piketon, Ohio, to discuss the development of the U.S. domestic nuclear fuel supply chain and Ohio's role in it. In September 2025, Centrus Energy announced a multi-billion-dollar expansion of the Piketon uranium enrichment plant. Currently, the expansion...

More >

Nuclear Application

View more >

South Korean team develops biodegradable microgel for localized radiation therapy

Pusan National University announced on August 25 that a research team led by Professor Yang Seung-yun from the Department of Biomaterials Science, in collaboration with Professor Kim Hoon-soo from the Department of Dermatology and Professor Kim Geun-young from the Department of Nuclear Medicine at Pusan National University Hospital, as well as SNBIA Co., Ltd., has developed a precision localized radiation therapy technology based on biodegradable radioactive isotope materials for the treatment of refractory keloids that tend to recur after surgery. Conceptual diagram of precision treatment technology for refractory keloids. Provided by Pusan National University. Keloids are caused by abnormal proliferation of fibroblasts and excessive accumulation of collagen after skin injury. Existing treatment methods include surgery, steroid injections, laser therapy, etc., but...

2026-08-25

Novartis Files Localized Production Application in China for Lutetium [177Lu] Vipivotide Tetraxetan

On August 24, information on the website of the Center for Drug Evaluation (CDE) of China's National Medical Products Administration showed that Novartis' nuclear medicine product Lutetium [177Lu] Vipivotide Tetraxetan had a localized production application submitted in China. On the same day, two indications for the drug were proposed for priority review, and the relevant review matters may correspond to this localized production application. Lutetium [177Lu] Vipivotide Tetraxetan, namely 177Lu-PSMA-617, is a radioligand therapy (RLT) drug acquired by Novartis following its acquisition of Endocyte. The drug consists of a small-molecule compound targeting prostate-specific membrane antigen (PSMA) conjugated to the therapeutic radionuclide Lutetium-177. Upon entering the bloodstream, the drug binds to prostate cancer cells expressing PSMA, and...

2026-08-25

Angolan Public Health and Medical Training Delegation Visits the Affiliated Hospital of Southwest Medical University, Focusing on Nuclear Medicine Diagnosis and Treatment Technologies

Recently, the "Angola Public Health and Medical Training Program," organized by the International Exchange Center of the Sichuan Provincial Health Commission, was held at the Affiliated Hospital of Southwest Medical University. An 18-member delegation comprising Angolan health administrators and medical personnel visited the hospital for exchange, with a focus on learning about the development and clinical application of nuclear medicine, urology, and other related disciplines. Jiang Yong, member of the Standing Committee of the Party Committee, Vice President of Southwest Medical University, and President of the Affiliated Hospital, welcomed the Angolan delegation and introduced the hospital's basic information. He stated that under the guidance of the Sichuan Provincial Health Commission, the hospital will leverage its disciplinary advantages as a university-affiliated hospital and a Sichuan Provincial Medical Center to carry out practical cooperation with Angola in talent cultivation, technical exchange, and hospital management.

2026-08-25

US Advanced Light Source Upgrade Advances, Soft X-ray Brightness to Increase at Least 100-Fold

Lawrence Berkeley National Laboratory in the US is advancing the Advanced Light Source (ALS) synchrotron upgrade project, planning to enhance soft X-ray experimental capabilities through next-generation light source technology, providing higher-precision data support for quantum materials, microelectronics, energy technologies, biological structure research, and AI-assisted scientific research. The project team is working toward the 2029 target. Since the Advanced Light Source began operation in 1993, it has long served research across soft X-ray, ultraviolet, infrared, and hard X-ray wavelength ranges. Researchers worldwide have used the facility's focused beams to observe molecular and material structures at the atomic scale, with results cited in over 18,000 papers...

2026-08-25

Russia and Algeria Advance Cooperation in Peaceful Uses of Nuclear Energy

August 22 news, Russian Ambassador to Algeria Alexey Solomatin said in an interview that Russia and Algeria are advancing cooperation in the field of peaceful uses of nuclear energy, with direct working contacts established between the relevant agencies of the two countries. Solomatin stated that cooperation between the two countries in this field is expanding. The basis for bilateral cooperation is the Intergovernmental Agreement on Cooperation in the Peaceful Uses of Nuclear Energy signed in 2014. In addition, Russia and Algeria signed the Roadmap for Cooperation in the Peaceful Uses of Nuclear Energy during the 2024 International Atomic Energy Expo (Atomexpo), outlining the main directions of bilateral cooperation. He noted that the practical implementation of the agreements will begin in 2...

2026-08-25

Russian Far Eastern Federal University Develops Ultrafast Ceramic Scintillators for Rapid Ionizing Radiation Detection

On August 21, 2026, scientists at the Russian Far Eastern Federal University, with support from the Russian Science Foundation, are developing ceramic materials for ultrafast detection of ionizing radiation. The results could be used in the future for medical diagnostics, baggage and cargo security screening, radiation monitoring, and scientific equipment requiring fast, precise radiation detection. The project, titled "Ultrafast Ceramic Scintillators for Ionizing Radiation Detection," is led by Anastasia Vonovskikh, a researcher at the Research and Education Center for Advanced Ceramic Materials, Department of Industrial Safety, Polytechnic Institute, Far Eastern Federal University. Scintillators are a class of materials that emit light when exposed to ionizing radiation. Detectors record these light signals to determine radiation intensity and energy. Currently, most related equipment uses single-crystal scintillators, but their production typically requires significant energy and resource inputs. The Far Eastern Federal University team proposes special ceramic materials as an alternative, aiming to improve detection speed and efficiency, making them more suitable for detecting trace amounts of radiation.

2026-08-25