Germany

Philippsburg Nuclear Power Plant — 1,402 MW Nuclear

Nuclear Verified

Philippsburg Nuclear Power Plant is a 1,402 MW nuclear power plant located in Germany. View location, capacity, and technical details.

Capacity
1,402 MW

Installed

Commissioned
1979

Year online

Owner
EnBW

Operator

Location
49.25, 8.44

Coordinates

Insights

#26
largest in %s
#261
largest %s worldwide
#1,398
largest worldwide
1979
%d yrs older than avg
73
operated by %s
133
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
1,402 MW
Commissioned
1979
Status
Operational
Owner
EnBW
Country
Germany
Coordinates
49.253, 8.436
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
125,272 t

tonnes / year

Lifetime CO₂
6,263,575 t

over ~%d yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

27,233
cars / year
16,703
homes / year
5,694,159
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 Philippsburg Nuclear Power Plant, located in the Karlsruhe district of Baden-Württemberg, Germany, is a significant facility in the nation’s energy infrastructure. With a total generation capacity of 1402 megawatts (MW), it plays a vital role in supplying electricity to the German grid. Owned by EnBW, one of Germany’s largest energy providers, the plant has been a key player in meeting the country’s energy demands since its commissioning.

The plant utilizes nuclear fuel, primarily enriched uranium, which undergoes fission to produce heat. This heat is then used to generate steam, which drives turbines to produce electricity. The use of nuclear energy allows for high efficiency in power generation, with a substantial portion of the electricity produced being low in carbon emissions. This aligns with Germany’s goals to reduce greenhouse gas emissions and transition towards more sustainable energy sources, especially as the country phases out coal and other fossil fuels.

From a technical standpoint, the Philippsburg Nuclear Power Plant operates using pressurized water reactor (PWR) technology. This type of reactor is designed to maintain high levels of safety and efficiency. The facility has undergone various upgrades and safety enhancements over the years to comply with stringent regulations and to ensure the safe handling of nuclear materials. The management of spent nuclear fuel and radioactive waste is a critical aspect of its operations, with protocols in place for safe storage and disposal, which is essential for minimizing environmental impact.

In terms of environmental considerations, the Philippsburg plant contributes to a reduction in air pollutants and carbon emissions compared to conventional fossil fuel power plants. However, nuclear energy does present challenges, particularly related to the long-term management of radioactive waste and the potential risks associated with nuclear accidents. Despite this, the plant has maintained a strong safety record, which is essential in garnering public trust in nuclear energy as a viable component of the energy mix.

Regionally, the Philippsburg Nuclear Power Plant holds significant importance in the local economy and energy supply. It provides jobs for many residents and is a critical source of stable electricity for the surrounding communities. As Germany continues to navigate the energy transition, the role of nuclear energy in maintaining grid stability and providing baseload power remains a topic of considerable discussion. The plant’s operation is tied to broader national policies regarding energy security and sustainability, making it a focal point in debates over the future of energy in Germany.

In summary, the Philippsburg Nuclear Power Plant stands as a pivotal facility in Germany’s energy sector, contributing to electricity generation while aligning with environmental goals. Its operational capacity and technological advancements underscore its importance, both regionally and nationally, amidst the ongoing evolution of Germany’s energy landscape.

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