Video & Transcript Research : 'VTRS'

ND

North Dakota 2026 1st Special Session

Advanced Nuclear Energy Committee Apr 21st, 2026 at 08:25 am

Advanced Nuclear Energy Committee

Transcript Highlights:
  • We did an EIS for VTR in 18 months. Generally, a new reactor would take... VTR in 18 months.
Keywords: 908, all
ND

North Dakota 2025-2026 Regular Session

Advanced Nuclear Energy Committee Apr 21st, 2026

Transcript Highlights:
  • We did an EIS for VTR in 18 months. Generally, a new reactor would take... VTR in 18 months.
Summary: The meeting was an extended briefing from Idaho National Laboratory officials on the lab’s mission, its role in nuclear energy research, and the federal push to accelerate advanced reactor deployment. Speakers described INL’s size and capabilities, including test reactors, fuel and materials facilities, cybersecurity and critical infrastructure work, and partnerships with DOE, the NRC, the Department of Defense, and private companies. They emphasized that the lab is supporting both commercial nuclear development and national security work, while also training a large intern workforce. A major theme was the current federal effort to streamline nuclear regulation and speed up licensing and demonstration. The speakers said recent executive orders and DOE/NRC coordination are reducing redundant requirements, shortening environmental review timelines, and aiming for three new nuclear systems to reach criticality by July 4, 2026. They argued that regulatory uncertainty has been a major driver of nuclear cost and that the administration’s actions, along with DOE’s pilot and demonstration programs, are intended to rebuild the domestic supply chain and industrial base. The discussion also focused on advanced reactor types, including small modular reactors, microreactors, molten salt concepts, and liquid-metal designs. Officials said these technologies are being developed for data centers, military bases, remote communities, industrial heat, hydrogen production, and other nontraditional uses. They highlighted several projects and companies, including Oklo, Aalo, Radiant, X-energy, TerraPower, Kairos, and DOE’s MARVEL and Project Pele efforts, and said some reactors are expected to reach criticality or operation in the next few years. Questions from attendees covered safety, public health impacts, materials and heat management, waste or used fuel handling, costs, and whether nuclear could remain competitive against other energy sources; the speakers responded that advanced reactors are designed with passive safety features, that used fuel should be viewed as a resource, and that cost remains highly design- and supply-chain-dependent.