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Periodically, about one-third of the nuclear fuel in an operating reactor needs to be unloaded and replaced with fresh fuel. How can operators get water back in the pool if there is a leak or a failure? We expect to identify enhancements to the certification and licensing of storage casks, to the integration of inspection and licensing, and to our internal procedures and guidance. This increased amount of spent fuel affects the environmental impacts to be assessed by the NRC staff, such as the need for larger storage capacities. Offsite emergency planning may be eliminated when the fuel has been removed from the reactor and placed in the spent fuel pool, and sufficient time has elapsed, such that there are no longer any postulated accidents that would result in offsite dose consequences large enough to require offsite emergency planning. These facilities are licensed separately from a nuclear power plant and are considered independent even though they may be located on the site of another NRC-licensed facility. All casks also undergo a safety review before they are certified for use by the NRC. Although offsite emergency planning at a decommissioned site may no longer be required, licensees maintain offsite contacts since any emergency declaration requires notification of state and local officials as well as the NRC. Onsite emergency plans will be required for both the spent fuel pool and the Independent Spent Fuel Storage Installations, but offsite plans will not be required. In addition, there are multiple means of restoring water to the spent fuel pools in the unlikely event that any is lost. How are spent fuel pools kept cool? The fuel is cooled by natural airflow around the cask. What is the NRC doing to improve safety of spent fuel storage now? The spent fuel pools associated with all but one operating reactor have liner leakage collection to allow detection of very small leaks. Finally, the racks that support the fuel are designed to keep the fuel in its designed configuration after a seismic event. Licensees also have backup ways to cool the spent fuel pool, using temporary equipment that would be available even after fires, explosions, or other unlikely events that could damage large portions of the facility and prevent operation of normal cooling systems. What keeps fuel cool in dry casks? Sex in the pools

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  1. Dry casks are licensed or certified for 20 years, with possible renewals of up to 40 years. Each cylinder is surrounded by additional steel, concrete, or other material to provide radiation shielding to workers and members of the public.

  2. For site-specific applications, the NRC reviews the safety, environmental, physical security and financial aspects of the licensee and proposed ISFSI and, if we conclude it can operate safely, we issue a license.

  3. NRC inspectors are responsible for verifying that spent fuel pools and related operations are consistent with a plant's license. The pool and its supporting systems are located within structures that protect against natural phenomena and flying debris.

  4. The fuel is unlikely to become uncovered rapidly because of the large water volume in the pool, the robust design of the pool structure, and the limited paths for loss of water from the pool. The NRC staff is currently reviewing its processes to identify near-term ways to improve efficiency and effectiveness in licensing, inspection, and enforcement. The steel cylinder provides containment of the spent fuel.

  5. This increased amount of spent fuel affects the environmental impacts to be assessed by the NRC staff, such as the need for larger storage capacities. Questions and Answers Emergency Planning What emergency plans are required for spent fuel storage facilities at nuclear power plants undergoing decommissioning or sites that have completed decommissioning?

  6. The on-site resident inspectors or region-based inspectors may observe later cask loadings, and the regional offices also perform periodic inspections of routine ISFSI operations. Licensees also review their programs such as security or emergency planning and make any changes needed to incorporate an ISFSI at their site.

  7. The only exceptions are small leakage-detection lines and, at two pressurized water reactor PWR sites, robust fuel transfer tubes that enter the spent fuel pool directly.

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