Overview
Gräfenhainichen I is a 6 MW solar PV facility located in Gräfenhainichen, Germany. The plant is operational and contributes to the country's renewable energy capacity.
Gräfenhainichen I is a solar photovoltaic (PV) power plant located in Gräfenhainichen, Saxony-Anhalt, Germany. With a capacity of 6 MW, it is a small-scale solar installation that feeds renewable electricity into the German grid. The plant is operational and represents part of Germany's extensive solar energy infrastructure. The facility operates under Germany's Renewable Energy Sources Act (EEG), which provides feed-in tariffs and grid access for renewable energy projects. Solar PV is a mature technology in Germany, with over 60 GW of installed capacity nationwide. The 6 MW scale is typical for community or commercial solar parks in the region. Gräfenhainichen I contributes to local energy supply and helps reduce carbon emissions. The plant supports Germany's energy transition (Energiewende) goals, which aim for 80% renewable electricity by 2030. Its location in Saxony-Anhalt benefits from moderate solar irradiance, making solar PV a viable clean energy source.
Environmental context
The facility is situated in a region with moderate solar irradiance, typical for northern Germany. Solar PV installations like Gräfenhainichen I have low environmental impact during operation, with no emissions or water use. Land use is a consideration, but the plant's small footprint minimizes habitat disruption. The site likely occupies previously developed or agricultural land, avoiding sensitive ecosystems.
Frequently asked questions
Gräfenhainichen I is located in Gräfenhainichen, Saxony-Anhalt, Germany.
Gräfenhainichen I has a capacity of 6 MW, making it a small-scale solar PV facility.
The plant uses solar photovoltaic (PV) technology to convert sunlight into electricity.
The plant operates under the German Renewable Energy Sources Act (EEG), which guarantees feed-in tariffs and priority grid access for renewable energy.
Solar PV plants have low operational emissions and water use. Land use is the primary concern, but small-scale installations minimize habitat disruption.