Germany

Kraftwerk Heyden — 875 MW Coal

Coal Verified

Kraftwerk Heyden is a 875 MW coal power plant located in Germany. View location, capacity, and technical details.

Capacity
875 MW

Installed

Commissioned
1951

Year online

Owner
Uniper Kraftwerke GmbH

Operator

Location
52.38, 9.00

Coordinates

Insights

#47
largest in Germany
#996
largest Coal worldwide
#2,774
largest worldwide
1951
46 yrs older than avg
1
operated by Uniper Kraftwerke GmbH
42
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
875 MW
Commissioned
1951
Status
Operational
Owner
Uniper Kraftwerke GmbH
Country
Germany
Coordinates
52.382, 8.996
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
3,456,915 t

tonnes / year

Lifetime CO₂
138,276,600 t

over ~40 yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

751,503
cars / year
460,922
homes / year
157,132,500
trees to offset

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

Nearby Stations

About this plant

Kraftwerk Heyden is a notable coal-fired power plant located in Germany, with a total installed capacity of 875 megawatts (MW). Commissioned in 1951, the plant has been a significant player in the country’s energy sector for more than seven decades. Owned by Uniper Kraftwerke GmbH, Kraftwerk Heyden has contributed to Germany’s energy supply through the combustion of coal, a fuel that has historically played a central role in the country’s electricity generation.

As a coal-fired facility, Kraftwerk Heyden utilizes coal as its primary fuel source. Coal is a fossil fuel that is extracted from the earth and burned to produce steam, which drives turbines to generate electricity. The plant operates on a large scale, utilizing advanced technologies that aim to improve efficiency and reduce emissions compared to older coal-fired plants. Despite these advancements, coal remains one of the most carbon-intensive fuels, leading to significant greenhouse gas emissions, including carbon dioxide (CO2), which contribute to climate change.

In the context of Germany’s energy sector, Kraftwerk Heyden has historically played a crucial role in providing reliable baseload power, especially during periods of high demand. As Germany transitions towards a more sustainable energy model, the reliance on coal is being scrutinized, and many coal plants, including Kraftwerk Heyden, face pressure to reduce emissions or shift to alternative energy sources. The German government has set ambitious targets for reducing carbon emissions, aiming for a significant decrease in coal usage as part of its broader commitment to combat climate change. This transition poses challenges and opportunities for the plant and its operator.

The environmental impact of Kraftwerk Heyden cannot be overlooked. While it offers a stable energy supply, the burning of coal leads to the release of various pollutants into the atmosphere, including sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter, which can harm air quality and public health. Additionally, the carbon emissions associated with coal combustion contribute to global warming and climate change. In response to these concerns, there has been an increasing focus on implementing carbon capture and storage (CCS) technologies and other clean energy initiatives that aim to mitigate the environmental footprint of such power plants.

Regionally, Kraftwerk Heyden holds significance not only as a power generator but also as an economic asset, providing jobs and supporting local industries. The plant’s operations contribute to the regional economy, and its continued presence reflects the ongoing challenges and debates surrounding energy production in Germany. As the country moves towards a greener energy future, Kraftwerk Heyden represents both the legacy of traditional energy sources and the complexities involved in transitioning to renewable energy alternatives. The future of the plant will likely hinge on balancing energy needs with environmental responsibilities as Germany navigates its energy transition.

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