Gas Power Plant Operational

Dankov TPP - 10 MW Gas Power Plant in Russia

Russia
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Overview

Dankov TPP is a 10 MW gas-fired power plant in Russia, operated by PJSC Quadra - Power Generation. The facility provides electricity to the local grid.

Dankov TPP is a gas-fired power plant located in Russia, with a capacity of 10 MW. It is owned and operated by PJSC Quadra - Power Generation, a major energy company in the region. The plant plays a role in supplying electricity to the local area. The facility uses natural gas as its primary fuel, a relatively cleaner fossil fuel compared to coal. With a capacity of 10 MW, it is considered a small-scale power generation unit. In Russia, gas-fired plants are common due to abundant domestic gas reserves, and they typically operate under national environmental regulations. Dankov TPP contributes to the regional energy mix, supporting local communities and industries. Its operation aligns with Russia's energy strategy, which emphasizes natural gas as a key fuel source. The plant's environmental impact is mitigated by the use of gas, which produces lower emissions than coal or oil.

Environmental context

The plant's use of natural gas results in lower CO2, SOx, and NOx emissions compared to coal-fired plants. Its small capacity (10 MW) limits its overall environmental footprint. However, proximity to populated areas could raise local air quality concerns. The plant operates under Russian environmental regulations, which set emission limits for power generation facilities.

Frequently asked questions

Dankov TPP is located in Russia, with coordinates approximately 53.2561 N, 39.1642 E.

Dankov TPP has a capacity of 10 MW, making it a small-scale gas-fired power plant.

Dankov TPP is owned and operated by PJSC Quadra - Power Generation, a Russian energy company.

Dankov TPP uses natural gas as its primary fuel, which produces lower emissions compared to coal.

Gas power plants in Russia must comply with national environmental standards, including emission limits for pollutants like SOx, NOx, and CO2.
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