Overview
Scheuring is a 12.2 MW hydroelectric power plant in Germany, operated by E.ON Kraftwerke GmbH. It contributes to the country's renewable energy mix.
Scheuring is a hydroelectric power plant located in Germany, operated by E.ON Kraftwerke GmbH. With a capacity of 12.2 MW, it is a small-scale facility within the German power generation sector, which is transitioning towards renewable sources. Hydroelectric plants like Scheuring convert the energy of flowing water into electricity. Germany's regulatory framework for hydropower includes the Renewable Energy Sources Act (EEG), which supports renewable energy deployment. The plant's technology likely involves a turbine driven by water flow, with minimal emissions compared to fossil fuel plants. As a renewable energy facility, Scheuring plays a role in reducing greenhouse gas emissions and supporting Germany's energy transition (Energiewende). Its operation contributes to local grid stability and provides clean electricity to the region, aligning with national climate goals.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems. Scheuring's location on a river may involve alterations to water flow and fish migration. However, modern hydropower operations often incorporate environmental mitigation measures. The plant's small capacity suggests limited ecological impact compared to larger dams.
Frequently asked questions
The Scheuring hydroelectric power plant is located in Germany, with coordinates approximately 48.1802° N, 10.8833° E.
The Scheuring hydroelectric power plant has a capacity of 12.2 megawatts (MW), classifying it as a small-scale hydro facility.
The Scheuring hydroelectric plant is operated by E.ON Kraftwerke GmbH, a major German energy company.
Hydroelectric power plants in Germany are regulated under the Renewable Energy Sources Act (EEG), which provides support for renewable energy, and the Federal Water Act (WHG), which governs water use and environmental protection.
Hydroelectric power generation has low greenhouse gas emissions but can alter river ecosystems, affecting fish migration and sediment transport. Mitigation measures such as fish ladders and environmental flow management are often implemented.