Thorium Atomics Begins Pre-Application Engagement with U.S. Nuclear Regulator

Thorium Atomics has initiated pre-application regulatory engagement with the NRC for its Tesseract TGR advanced reactor, marking a key step in its licensing process under the new Part 53 framework.

Houston Metrowire Staff
Energy
Thorium Atomics Begins Pre-Application Engagement with U.S. Nuclear Regulator

Thorium Atomics Inc. announced today that it has commenced pre-application regulatory engagement with the U.S. Nuclear Regulatory Commission (NRC) for its Tesseract TGR advanced reactor, following the company's submission of a notice of intent letter. The NRC has assigned Project No. 99902174 and a project manager to coordinate the pre-application activities.

The company submitted its notice of intent on June 23, 2026, and the NRC responded on July 24, 2026, assigning the project number and designating a project manager in the NRC's Office of Advanced Reactors. The project number provides an administrative and tracking reference for future correspondence, meetings, submissions, and staff reviews. The notice letter is publicly available in the NRC's Agencywide Documents Access and Management System under Accession No. ML26189A392, with a direct link at https://www.nrc.gov/docs/ML2618/ML26189A392.pdf.

It is important to note that the assignment of a project number is an administrative step and does not constitute submission or acceptance of a license application, nor does it represent NRC approval, endorsement, or certification of the Tesseract TGR design.

Thorium Atomics plans to engage with the NRC under 10 CFR Part 53, the agency's risk-informed, performance-based, and technology-inclusive licensing framework for commercial nuclear power plants. Part 53 became available for use on April 29, 2026. The company is preparing a Regulatory Engagement Plan describing the Tesseract technology, its proposed licensing strategy, and the sequence of planned pre-application submissions.

Dr. Jack Vecchiarelli, Chief Scientific and Regulatory Officer of Thorium Atomics, said, "A project number and an assigned project manager give us a defined NRC point of contact and a trackable reference for our future pre-application work. Part 53 is risk-informed and technology-inclusive, making it well suited to a high-temperature gas-cooled reactor. Commencing that engagement while the design is still being developed serves to ensure that regulatory expectations are clearly understood and addressed, thereby informing the design development process and helping to de-risk the future licensing pathway."

Young Hwang, Founder and Chief Executive Officer, added, "This is a clear external marker of where our program stands. It comes alongside our application to Idaho National Laboratory's Nuclear Energy Launch Pad program and our proposed pathway for independent, qualified-code reactor-physics verification at a U.S. national laboratory. We are deliberately building the regulatory, engineering, and technical-validation records in parallel."

The Tesseract TGR is a pebble-bed type of high-temperature gas-cooled reactor, using helium as a coolant and TRISO fuel. It is designed for a thermal output of 250 MWth, delivering approximately 100 MWe of firm electricity or industrial process heat at temperatures up to 750 degrees Celsius. The reactor uses uranium TRISO fuel enriched below 10% U-235 as its initial fissile driver, with a thorium-bearing fertile blanket that captures neutrons to convert thorium-232 into fissile uranium-233 during operation. This architecture aims to diversify the nuclear fuel supply chain and improve lifetime uranium utilization, with current analysis estimating a reduction in mined-uranium requirements by approximately half per unit of energy relative to a comparable Generation II light-water reactor. The design is still in development and has not yet been built, licensed, or independently validated.

Thorium Atomics Inc. is an advanced nuclear reactor developer with offices in Toronto, Ontario, and Knoxville, Tennessee. The company is also maintaining a parallel regulatory pathway with the Canadian Nuclear Safety Commission. Further information is available at thoriumatomics.com.

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