Russia

Nizhnekamsk hydroelectric power station — 1,205 MW Hydroelectric

Hydroelectric Renewable Verified

Nizhnekamsk hydroelectric power station is a 1,205 MW hydro power plant located in Russia. View location, capacity, and technical details.

Capacity
1,205 MW

Installed

Commissioned
1975

Year online

Owner
JSC "Tatenergo" (JSC "Generation Company")

Operator

Location
55.70, 52.28

Coordinates

Insights

#71
largest in Russia
#240
largest Hydroelectric worldwide
#1,866
largest worldwide
1975
9 yrs older than avg
4
operated by JSC "Tatenergo" (JSC…
4
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
1,205 MW
Commissioned
1975
Status
Operational
Owner
JSC "Tatenergo" (JSC "Generation Company")
Country
Russia
Coordinates
55.700, 52.279

Carbon Footprint

Annual CO₂
101,336 t

tonnes / year

Lifetime CO₂
8,106,854 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

22,029
cars per year
13,511
homes per year
4,606,167
trees to offset

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

Nearby Plants

About this plant

The Nizhnekamsk hydroelectric power station, located in the Republic of Tatarstan, Russia, is a significant contributor to the country’s renewable energy portfolio. With a total capacity of 1205 megawatts (MW), it plays a crucial role in meeting the energy demands of the region and supporting the broader Russian energy sector. Owned by JSC “Tatenergo,” a subsidiary of JSC “Generation Company,” the power station harnesses hydroelectricity, a renewable energy source that utilizes the gravitational force of flowing water to generate electricity.

The Nizhnekamsk hydroelectric power station operates on the principle of hydroelectric power generation, which is considered one of the cleanest energy sources available. By utilizing the kinetic energy of river water, the facility converts this energy into electrical energy without the combustion of fossil fuels, thereby minimizing greenhouse gas emissions and air pollutants. This aligns with global efforts to transition toward more sustainable energy practices and reduce reliance on carbon-intensive fuels. The hydroelectric power produced at Nizhnekamsk significantly contributes to the reduction of the carbon footprint in Tatarstan and beyond.

From a technical perspective, the Nizhnekamsk station employs a series of turbines and generators to effectively convert the energy from the flowing water into electricity. The station is strategically located on the Kama River, which provides a consistent and reliable water flow essential for optimal energy production. This geographic advantage not only enhances the efficiency of the power station but also positions it as a pivotal player in the regional energy landscape.

In terms of environmental impact, the Nizhnekamsk hydroelectric power station benefits from the nature of hydroelectric power itself, which is generally associated with lower ecological disruption compared to traditional fossil fuel power plants. However, like all large hydroelectric projects, it has prompted discussions regarding its influence on local ecosystems, fish populations, and riverine habitats. The management of these environmental concerns is critical for maintaining biodiversity and ensuring that the benefits of hydroelectric energy do not come at the cost of ecological health.

Regionally, the Nizhnekamsk hydroelectric power station serves as a backbone for the local economy, providing not only a stable supply of electricity but also job opportunities and supporting local industries. Its energy output is vital for both residential and industrial consumers in Tatarstan, where the demand for electricity continues to grow. As the Russian government pushes for a more diversified energy mix, facilities like Nizhnekamsk are essential for sustaining energy security and promoting economic development in the region.

In summary, the Nizhnekamsk hydroelectric power station stands as an integral part of Russia’s energy infrastructure, showcasing the potential of hydroelectric power as a clean, renewable energy source. Its capacity, technical efficiency, and regional significance underscore its role in enhancing energy security while contributing to environmental sustainability.

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