Finland

Imatra — 192 MW Hydroelectric

Hydroelectric Renewable Verified

Imatra is a 192 MW hydro power plant located in Finland. View location, capacity, and technical details.

Capacity
192 MW

Installed

Commissioned
2000

Year online

Owner
Fortum Power & Heat OY

Operator

Location
61.17, 28.77

Coordinates

Insights

#10
largest in %s
#1,501
largest %s worldwide
#7,618
largest worldwide
2000
%d yrs newer than avg
1
operated by %s
12
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
192 MW
Commissioned
2000
Status
Operational
Owner
Fortum Power & Heat OY
Country
Finland
Coordinates
61.167, 28.775

Estimated Carbon Footprint

Annual CO₂
16,146 t

tonnes / year

Lifetime CO₂
1.3M t

over ~%d yrs

Intensity
24 g

gCO₂ per kWh

Annual emissions equal to

3,510
cars / year
2,153
homes / year
733,929
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Stations

About this plant

Imatra, ranking as the 10th largest power generation facility in Finland, boasts a capacity of 192 MW, making it a key player in the nation’s energy landscape. This output represents a notable 1.64% of Finland’s total capacity of 11,690 MW, among 179 power plants. As the largest hydroelectric facility in Finland, its significance is underscored by the country’s reliance on renewable energy sources, particularly hydro and nuclear power, which dominate the energy mix.

Operated by Fortum Power & Heat OY, Imatra utilizes advanced hydroelectric technology to harness the kinetic energy of flowing water, ensuring efficient and sustainable electricity generation. The plant’s location along the Vuoksi River enables it to take full advantage of the natural water flow, contributing to its operational efficiency and capacity factor.

Situated in close proximity to several other plants, including Svetogorskaya HPP (122 MW), Lesogorsky HPP (118 MW), Joutseno (85 MW biomass), Tainionkoski (61.5 MW), and Kaarni (1.2 MW), Imatra is part of a robust energy cluster that enhances regional energy security. This network of facilities signifies a collaborative effort to provide a stable supply of electricity while promoting the use of renewable resources. The interconnectedness of these plants also aids in balancing the grid, especially during periods of high demand.

Finland’s energy profile is characterized by a commitment to sustainability, with a strong emphasis on reducing carbon emissions and increasing the share of renewables in the energy mix. Imatra’s contribution is vital in this context, as it not only supports local energy needs but also aligns with the national goals of transitioning to cleaner energy sources. The plant’s operational efficiency and strategic location further enhance its importance in the Finnish energy ecosystem.

Having been in operation for several years, Imatra has adapted to the evolving energy landscape, responding to regulatory changes and market demands. As Finland aims for carbon neutrality by 2035, the role of hydroelectric facilities like Imatra will be increasingly significant in achieving these ambitious targets.

Looking forward, Imatra stands as a model of sustainable energy production, contributing to both local and national energy goals. Its capacity and efficiency position it to play an essential role in the energy transition, reinforcing Finland’s reputation as a leader in renewable energy adoption in Europe.

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