Overview
Palokki is a 6.8 MW hydroelectric power plant in Finland, operated by Pohjois-Karjalan Sähkö Oy. It contributes to the country's renewable energy mix.
Palokki is a hydroelectric power plant located in Finland, with a capacity of 6.8 MW. It is owned and operated by Pohjois-Karjalan Sähkö Oy, a Finnish energy company. The plant is operational and plays a role in the regional power grid. Hydroelectric power is a well-established renewable energy source in Finland, supported by the country's abundant water resources and regulatory framework under the EU's Renewable Energy Directive. The plant's relatively small capacity is typical for run-of-river or small-scale hydro projects in the region. The facility contributes to Finland's goal of increasing renewable energy generation and reducing carbon emissions. Its operation supports local energy security and provides clean electricity to the surrounding area, aligning with national energy transition targets.
Environmental context
As a hydroelectric plant, Palokki produces electricity with minimal direct CO2 emissions, supporting Finland's renewable energy goals. The plant's operation may affect local aquatic ecosystems through changes in water flow and habitat connectivity, but small-scale hydro typically has lower environmental impact than large dams. Its location in a forested region of eastern Finland helps maintain local biodiversity.
Frequently asked questions
Palokki is located in Finland, with coordinates approximately 62.4333° N, 28.6000° E. It operates in the region of Pohjois-Karjala.
The Palokki hydroelectric plant has a capacity of 6.8 megawatts (MW), making it a small-scale hydro facility.
The plant is owned by Pohjois-Karjalan Sähkö Oy, a Finnish energy company.
Hydroelectric plants in Finland operate under the EU's Renewable Energy Directive and national water legislation, including the Water Act, which governs environmental permits and water use.
As a renewable hydroelectric plant, Palokki helps Finland meet its target of carbon neutrality by 2035 by generating clean electricity without direct CO2 emissions.