Overview
Tadali Sponge Iron is a 33 MW coal power plant in India, operated by the Mukesh Gupta group. It is currently operational and contributes to the regional power supply.
Tadali Sponge Iron is a coal-fired power plant located in India, with a capacity of 33 MW. The facility is owned and operated by the Mukesh Gupta group and is currently in operational status. As a coal-based power plant, it plays a role in meeting local electricity demand. The plant operates under India's environmental regulations, including the Environment Protection Act and emission standards for coal power plants. With a capacity of 33 MW, it falls into the small-scale category for coal power generation in India, where many plants exceed 500 MW. The technology is likely subcritical, typical for smaller units. This facility serves the local grid and supports industrial activities in the region. Its environmental impact is tied to coal combustion, producing CO2, SOx, and NOx. Proximity to populated areas and compliance with emission norms are key considerations for its operational context.
Environmental context
The plant's coal-fired operation results in emissions of CO2, SOx, and NOx, contributing to local air quality concerns. Its location in India, a country with growing energy demand, places it under regulatory oversight for emission standards. The relatively small capacity (33 MW) limits its overall environmental footprint compared to larger plants, but coal combustion remains a significant source of greenhouse gases.
Frequently asked questions
Tadali Sponge Iron is a coal power plant located in India, with coordinates approximately 20.0123° N, 79.1863° E.
The plant has a capacity of 33 megawatts (MW), making it a small-scale coal power facility.
The plant is owned and operated by the Mukesh Gupta group.
Coal power plants in India must comply with the Environment Protection Act and emission standards set by the Central Pollution Control Board, including limits for SOx, NOx, and particulate matter.
Small coal power plants in India often use subcritical technology, which is less efficient than supercritical or ultra-supercritical designs, resulting in higher emissions per megawatt.