Overview
DADRI GT is an operational gas power plant in India with a capacity of 829.78 MW. It contributes to the country's power generation mix using natural gas as primary fuel.
DADRI GT is a gas-fired power plant located in India, operating with a capacity of 829.78 MW. The facility plays a role in the country's energy infrastructure, leveraging natural gas as a cleaner alternative to coal-based generation. The plant operates under India's regulatory framework for power generation, including emission standards set by the Central Pollution Control Board (CPCB) and the Ministry of Environment, Forest and Climate Change. Gas power plants like DADRI GT typically use combined cycle technology for higher efficiency, though specific technology details are not confirmed. As a gas-based facility, DADRI GT has a lower carbon footprint compared to coal plants, supporting grid stability and peak load management. Its operational status ensures continued contribution to regional power supply, aligning with India's goals for energy diversification and reduced emissions.
Environmental context
Gas power plants emit lower levels of CO2, SOx, and NOx compared to coal-fired units, making them a transitional fuel in India's energy mix. The plant's location in a populated region necessitates adherence to ambient air quality standards. Proximity to urban areas may influence local air quality, though modern gas turbines with efficient combustion can mitigate impacts.
Frequently asked questions
DADRI GT is located in India, with coordinates approximately 28.5932° N, 77.6101° E.
DADRI GT is a gas power plant, using natural gas as its primary fuel to generate electricity.
DADRI GT has a capacity of 829.78 megawatts (MW).
Gas power plants in India must comply with emission standards set by the Central Pollution Control Board (CPCB) under the Environment Protection Act, as well as state-level regulations.
As a gas-based plant, DADRI GT provides flexible generation that can support peak demand and grid stability, complementing renewable energy sources.