United States

Fort Calhoun Nuclear Generating Station — 502 MW Nuclear

Nuclear Verified

Fort Calhoun Nuclear Generating Station is a 502 MW nuclear power plant located in United States of America. View location, capacity, and technical details.

Capacity
502 MW

Installed

Commissioned
1973

Year online

Owner
Omaha Public Power District

Operator

Location
41.52, -96.08

Coordinates

Insights

#870
largest in United States of America
#392
largest Nuclear worldwide
#4,573
largest worldwide
1973
15 yrs older than avg
8
operated by Omaha Public Power…
40
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
502 MW
Commissioned
1973
Status
Operational
Owner
Omaha Public Power District
Country
United States
Coordinates
41.520, -96.077
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
44,855 t

tonnes / year

Lifetime CO₂
2,242,735 t

over ~50 yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

9,751
cars / year
5,981
homes / year
2,038,850
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Stations

About this plant

The Fort Calhoun Nuclear Generating Station (FCNGS) is a pivotal facility in the United States’ energy sector, located in Fort Calhoun, Nebraska. Operated by the Omaha Public Power District (OPPD), this nuclear power plant has a generation capacity of 502 megawatts (MW), contributing significantly to the local and regional energy supply. Since its commissioning in 1973, FCNGS has played a crucial role in providing a reliable source of electricity, helping to support the growing energy demands of the surrounding communities and industries.

FCNGS utilizes nuclear fuel in the form of uranium dioxide, which is enriched to increase its fissile material content. The nuclear reactor operates on the principle of nuclear fission, where the nuclei of uranium atoms are split to release energy in the form of heat. This heat is then used to convert water into steam, which drives turbines to generate electricity. The use of nuclear fuel allows for high energy output with a relatively small amount of fuel compared to fossil fuels, making it an efficient option for electricity generation. Furthermore, the design of the reactor includes multiple safety systems and redundancies to minimize the risk of accidents, a critical consideration in nuclear energy production.

In terms of environmental impact, the Fort Calhoun Nuclear Generating Station offers several advantages over traditional fossil fuel power plants. It produces minimal greenhouse gas emissions during operation, contributing to a lower carbon footprint. This makes nuclear power an attractive option in efforts to combat climate change and transition to more sustainable energy sources. However, like all nuclear facilities, FCNGS generates radioactive waste, which requires careful long-term management and storage solutions to ensure environmental safety.

Regionally, FCNGS is of significant importance to the state of Nebraska and the broader Midwestern United States. It provides a stable and consistent source of baseload power, which is essential for maintaining grid reliability. The plant can help balance supply and demand, particularly during periods of high energy consumption. Additionally, the facility supports local economies by providing jobs and fostering related industries. The presence of FCNGS also promotes investment in energy infrastructure and research, helping to position Nebraska as a player in the national energy conversation.

In conclusion, the Fort Calhoun Nuclear Generating Station stands as a vital contributor to the United States’ energy landscape. With its nuclear capacity, commitment to safety, and relatively low environmental impact, FCNGS remains an important asset for the Omaha Public Power District and the communities it serves, shaping the future of energy generation in the region.

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