United Kingdom

Hunterston B nuclear power station — 965 MW Nuclear

Nuclear Verified

Hunterston B nuclear power station is a 965 MW nuclear power plant located in United Kingdom. View location, capacity, and technical details.

Capacity
965 MW

Installed

Commissioned
1976

Year online

Owner
EDF Energy

Operator

Location
55.72, -4.89

Coordinates

Insights

#46
largest in %s
#343
largest %s worldwide
#2,556
largest worldwide
1976
%d yrs older than avg
15
operated by %s
137
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
965 MW
Commissioned
1976
Status
Operational
Owner
EDF Energy
Country
United Kingdom
Coordinates
55.722, -4.890
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
86,225 t

tonnes / year

Lifetime CO₂
4.3M t

over ~%d yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

18,744
cars / year
11,497
homes / year
3.9M
trees to offset

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

Nearby Stations

About this plant

Hunterston B nuclear power station, located on the west coast of Scotland, has been a significant player in the United Kingdom’s energy sector since it began operations in 1976. Owned and operated by EDF Energy, this facility boasts a total electrical capacity of 965 megawatts (MW), making it one of the key contributors to the nation’s energy supply. As a nuclear power plant, Hunterston B harnesses the energy released from nuclear fission, primarily using uranium as its fuel source. This method of energy generation is characterized by its ability to produce large amounts of electricity while emitting minimal greenhouse gases during operation, positioning nuclear energy as a pivotal component in the UK’s strategy to reduce carbon emissions and combat climate change.

The technical specifications of Hunterston B reflect the advanced design and operational capabilities of its time. The station utilizes advanced gas-cooled reactor (AGR) technology, a design that allows for efficient heat generation through the fission of uranium-235 nuclei. The reactors are cooled by carbon dioxide and moderated by graphite, enabling high thermal efficiency and reducing the risk of overheating. This technological framework has facilitated a reliable and steady output of electricity, providing a stable base load to the grid, essential for meeting the country’s energy demands.

Regarding environmental impact, while nuclear power significantly reduces carbon emissions compared to fossil fuel-based plants, it is not without its challenges. The production of nuclear energy generates radioactive waste, which requires careful long-term management and disposal strategies to mitigate potential risks to the environment and public health. Hunterston B has implemented stringent safety measures to manage its waste and maintain operational integrity, reflecting the industry’s commitment to environmental stewardship. Additionally, the plant’s presence has spurred discussions about nuclear energy’s role in achieving a sustainable energy future, balancing energy security with environmental responsibilities.

Regionally, Hunterston B contributes to the local economy by providing jobs and supporting various local industries through contracts and services. Its operation has also fostered a greater understanding of nuclear energy among the surrounding communities, promoting educational initiatives related to energy generation and environmental sustainability. As part of the broader energy mix in the UK, Hunterston B plays a crucial role in ensuring energy security, particularly during peak demand periods when renewable sources may not be sufficient to meet the country’s needs.

In summary, Hunterston B nuclear power station stands as a vital asset in the United Kingdom’s energy portfolio. With its substantial capacity, advanced technical capabilities, and commitment to minimizing environmental impact, the plant exemplifies the complexities and challenges of nuclear energy production in the contemporary energy landscape.

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