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Keyword:pressurized water reactor
Deep Fission Details 'One-Mile-Deep PWR' Roadmap at Canaccord Conference, Targeting First Commercial Operation by End of 2027
On August 11, Deep Fission (FISN) unveiled a differentiated nuclear commercialization pathway at Canaccord Genuity's 46th Annual Growth Conference: rather than reinventing nuclear fission technology, the company aims to deploy mature pressurized water reactors in underground boreholes approximately one mile deep. CEO Liz Muller emphasized that the core approach is to change where reactors are deployed, not to adopt an entirely new reactor physics model. Given that PWR technology has been used in commercial nuclear power for decades, the company hopes to shorten the validation cycle by leveraging mature technology and avoid the new fuel, new material, and new design licensing hurdles faced by some advanced nuclear projects. According to the company's plan...
2026-08-12
Hadron Energy Appoints Eric Williams as Executive Vice President of Engineering
Advanced nuclear technology company Hadron Energy announced on August 10 that Eric Williams will join the company as Executive Vice President of Engineering, effective August 31, 2026. Hadron Energy is currently developing the Halo micro modular reactor (MMR) based on pressurized water reactor technology. Hadron Energy went public on Nasdaq in May 2026. The company stated that Eric Williams' addition will strengthen its engineering organization and support the advancement of Halo MMR from design and licensing to commercial deployment. According to company information, Hadron Energy has recently made progress in work related to the U.S. Nuclear Regulatory Commission (NRC), including approval of its quality assurance program description and submission of major design criteria white papers.
2026-08-11
China's First Industry Standard for LOCA BEPU Analysis, Led by CGN Research Institute, Officially Released
Recently, approved by the National Energy Administration, the energy industry standard "Technical Requirements for Best Estimate Plus Uncertainty Analysis of Loss of Coolant Accident in Pressurized Water Reactor Nuclear Power Plants" (NB/T 20751-2026), led by CGN Research Institute, was officially released. The standard was developed under the leadership of the Research Institute, in collaboration with the Nuclear and Radiation Safety Center of the Ministry of Ecology and Environment, China Nuclear Power Research and Design Institute, Shanghai Nuclear Engineering Research and Design Institute, Hualong Nuclear Power Technology Co., Ltd., and China Nuclear Power Engineering Co., Ltd., among other organizations. It will come into effect on December 26, 2026. This standard is China's first BEPU analysis...
2026-08-06