Russia

Novosibirsk CHPP-4 — 368 MW Coal

Coal Verified

Novosibirsk CHPP-4 is a 368 MW coal power plant located in Russia. View location, capacity, and technical details.

Capacity
368 MW

Installed

Commissioned
1964

Year online

Owner
Siberian Generating Company

Operator

Location
55.10, 82.99

Coordinates

Insights

#204
largest in Russia
#1,756
largest Coal worldwide
#5,507
largest worldwide
1964
33 yrs older than avg
4
operated by Siberian Generating Company
8
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
368 MW
Commissioned
1964
Status
Operational
Owner
Siberian Generating Company
Country
Russia
Coordinates
55.100, 82.990

Carbon Footprint

Annual CO₂
1,453,880 t

tonnes / year

Lifetime CO₂
58,155,187 t

over ~40 yrs

Intensity
820 g

Est. gCO2/kWh

Annual emissions equivalent to

316,061
cars per year
193,851
homes per year
66,085,440
trees to offset

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

Nearby Plants

About this plant

Novosibirsk CHPP-4 is a significant coal-fired power generation facility located in Russia, contributing a capacity of 368 MW to the regional energy mix. As a Combined Heat and Power (CHP) plant, it not only generates electricity but also provides heating, which is crucial for the cold climate of Siberia. The geographical coordinates of Novosibirsk CHPP-4, 55.1000 latitude and 82.9900 longitude, place it in the heart of Novosibirsk, the largest city in Siberia, which is a key industrial and cultural center. The plant plays a vital role in ensuring a stable energy supply to both residential and commercial sectors in the region. The reliance on coal as a primary fuel source positions Novosibirsk CHPP-4 within the broader context of Russia’s energy policy, where coal remains a significant part of the energy landscape despite global shifts towards cleaner alternatives. As Russia continues to depend on its vast coal reserves, the operational context of CHPP-4 reflects the country’s energy strategy, which balances traditional energy generation with the need for modernization and efficiency improvements. The facility’s technology allows for effective cogeneration, maximizing energy output while providing necessary heating to the local community. As environmental concerns grow, the future of Novosibirsk CHPP-4 may involve adaptations to reduce emissions and enhance sustainability, aligning with the global trend towards more environmentally friendly energy practices.

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