Russia

Kaliningrad Nuclear Power Plant — 2,340 MW Nuclear

Nuclear Verified

Kaliningrad Nuclear Power Plant is a 2,340 MW nuclear power plant located in Russia. View location, capacity, and technical details.

Capacity
2,340 MW

Installed

Commissioned
2010

Year online

Owner
Rosenergoatom

Operator

Location
54.94, 22.17

Coordinates

Insights

#37
largest in Russia
#156
largest Nuclear worldwide
#610
largest worldwide
2010
22 yrs newer than avg
14
operated by Rosenergoatom
3
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
2,340 MW
Commissioned
2010
Status
Operational
Owner
Rosenergoatom
Country
Russia
Coordinates
54.941, 22.166
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
209,084 t

tonnes / year

Lifetime CO₂
10,454,184 t

over ~50 yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

45,453
cars / year
27,878
homes / year
9,503,804
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Stations

About this plant

The Kaliningrad Nuclear Power Plant, located in the Kaliningrad Oblast of Russia, is a significant facility in the country’s energy sector, with a total capacity of 2,340 megawatts (MW). Commissioned in 2010 and operated by Rosenergoatom, a subsidiary of the state-owned atomic energy corporation Rosatom, the plant plays a crucial role in providing reliable and stable energy supply to the region, which is geographically isolated from the rest of Russia. The plant’s construction and subsequent operation represent a strategic investment in the energy independence of Kaliningrad, enabling it to reduce its reliance on imported energy sources, primarily electricity from neighboring countries such as Lithuania and Poland.

The Kaliningrad Nuclear Power Plant utilizes nuclear fuel to generate electricity. This type of fuel typically consists of enriched uranium, which undergoes a process of nuclear fission within the reactor core. The heat produced during fission is used to convert water into steam, which then drives turbines to generate electricity. The plant is equipped with modern safety features and advanced reactor technology, designed to minimize the risk of accidents and ensure compliance with international safety standards. As a nuclear facility, it contributes to the diversification of the energy mix in Russia, complementing traditional fossil fuel sources like natural gas and coal.

In terms of environmental impact, nuclear power is often regarded as a low-carbon energy source. The operation of the Kaliningrad Nuclear Power Plant produces minimal greenhouse gas emissions compared to fossil fuel-based power generation, which is a significant advantage in the context of global efforts to combat climate change. However, the facility must manage the challenges associated with radioactive waste generated from nuclear fission, which requires stringent safety protocols and long-term waste management solutions to prevent environmental contamination.

Regionally, the Kaliningrad Nuclear Power Plant holds substantial significance. It not only strengthens the local economy by providing jobs and stimulating related industries but also enhances energy security for the Kaliningrad Oblast, which is critical given its unique geopolitical situation. The plant’s existence reduces the vulnerability of the region to energy supply disruptions and price volatility in external energy markets. Additionally, it positions Kaliningrad as a potential player in regional energy trade, with the capacity to export surplus electricity to neighboring countries, thus fostering energy cooperation in the Baltic region.

Overall, the Kaliningrad Nuclear Power Plant is a pivotal asset in Russia’s energy infrastructure, embodying the country’s commitment to nuclear energy as a means of achieving energy security and sustainability while addressing environmental concerns associated with conventional power generation.

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