France

CIVAUX — 2,990 MW Nuclear

Nuclear Verified

CIVAUX is a 2,990 MW nuclear power plant located in France. View location, capacity, and technical details.

Capacity
2,990 MW

Installed

Commissioned
1997

Year online

Owner
Électricité de France (EDF)

Operator

Location
46.46, 0.65

Coordinates

Insights

#23
largest in France
#99
largest Nuclear worldwide
#337
largest worldwide
1997
9 yrs newer than avg
41
operated by Électricité de France…
69
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
2,990 MW
Commissioned
1997
Status
Operational
Owner
Électricité de France (EDF)
Country
France
Coordinates
46.456, 0.655

Estimated Carbon Footprint

Annual CO₂
267,162 t

tonnes / year

Lifetime CO₂
13,358,124 t

over ~50 yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

58,079
cars / year
35,622
homes / year
12,143,749
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 Civaux Nuclear Power Plant, located in the Vienne department of France, stands as a significant contributor to the country’s energy sector with a generation capacity of 2,990 megawatts (MW). As one of the largest nuclear power facilities in France, it plays a pivotal role in the nation’s energy production, helping to meet both domestic demand and France’s commitments to reduce greenhouse gas emissions. France relies heavily on nuclear energy, which supplies approximately 70% of its electricity, making the Civaux plant an integral part of this energy framework.

Civaux primarily utilizes nuclear fission to generate electricity, employing enriched uranium as its fuel. The plant operates on a pressurized water reactor (PWR) design, a popular choice for nuclear power generation due to its efficiency and safety features. In this design, water under high pressure is used as both coolant and neutron moderator, allowing the reactor to operate at elevated temperatures without boiling. The enriched uranium fuel is fabricated into fuel assemblies, which are strategically placed within the reactor core to facilitate a controlled nuclear reaction. The heat generated from fission is used to produce steam, which drives turbines connected to generators, thereby converting thermal energy into electrical energy.

In terms of environmental impact, the Civaux Nuclear Power Plant presents a complex profile. Nuclear energy is often lauded for its low greenhouse gas emissions during operation, making it a favorable option for combating climate change. Civaux contributes to reducing France’s carbon footprint by providing a stable and reliable energy source without the direct emissions associated with fossil fuel combustion. However, the plant also faces challenges related to nuclear waste management, as the byproducts of fission require secure and long-term storage solutions to prevent environmental contamination. Additionally, concerns regarding the potential for nuclear accidents, although statistically infrequent, remain a part of the discourse surrounding nuclear energy.

Regionally, the Civaux power plant holds significant importance for the local economy and energy security. Situated in a region that has seen substantial investments in nuclear technology, Civaux not only provides electricity but also supports local jobs and infrastructure. The plant’s operations contribute to the economic stability of the Vienne department while ensuring a reliable power supply to adjacent regions. This interconnectedness highlights the role of Civaux in the broader context of France’s energy strategy, which emphasizes energy independence and sustainability.

In conclusion, the Civaux Nuclear Power Plant exemplifies the complexities of modern energy production, balancing the benefits of low emissions and energy security with the challenges of waste management and safety. As France continues to navigate its energy transition, Civaux remains a cornerstone of the nation’s nuclear fleet, underscoring the importance of nuclear power in achieving a sustainable energy future.

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