Overview
Ratnagiri Gas is a 1967 MW gas-fired power plant in Maharashtra, India. It is an operational facility contributing to the region's power generation capacity.
Ratnagiri Gas is a gas-fired power plant located in Maharashtra, India, with a capacity of 1967 MW. This operational facility is one of the larger gas-based power plants in the country, supporting grid stability and meeting regional electricity demand. The plant operates on natural gas, a cleaner fossil fuel compared to coal, with lower CO2 and SOx emissions. In India, gas power plants are subject to national emission standards under the Environment Protection Act and are increasingly important for balancing renewable energy integration. The technology typically involves combined cycle gas turbines (CCGT) for higher efficiency. As a significant gas-based power generator, Ratnagiri Gas plays a key role in India's energy mix, providing flexible and relatively low-emission power. Its location in Maharashtra supports industrial and urban demand, contributing to the state's economic growth while aligning with national goals for cleaner energy transition.
Environmental context
The plant uses natural gas, which emits less CO2 and SOx than coal, but still contributes to greenhouse gas emissions. Its location near populated areas may raise local air quality concerns, though gas plants generally have lower particulate emissions. The facility's age and technology (likely CCGT) influence its efficiency and environmental footprint.
Frequently asked questions
Ratnagiri Gas is located in Maharashtra, India, at coordinates 17.5587 N, 73.1670 E.
The plant has a capacity of 1967 megawatts (MW), making it a large gas-fired power station.
It uses natural gas as its primary fuel, which is a cleaner-burning fossil fuel compared to coal.
Gas power plants in India must comply with emission standards under the Environment Protection Act, including limits for SOx, NOx, and particulate matter. They also follow guidelines for water use and waste management.
As a gas-fired plant, it provides flexible power generation that can quickly ramp up or down, supporting grid stability and complementing intermittent renewable sources like solar and wind.