India

METTUR TPS EXT — 600 MW Coal

Coal Verified

METTUR TPS EXT is a 600 MW coal power plant located in India. View location, capacity, and technical details.

Capacity
600 MW

Installed

Commissioned
2012

Year online

Owner
Tamil Nadu Generation and Distribution Corporation

Operator

Location
11.77, 77.81

Coordinates

Insights

#256
largest in %s
#1,357
largest %s worldwide
#3,989
largest worldwide
2012
%d yrs newer than avg
18
operated by %s
31
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
600 MW
Commissioned
2012
Status
Operational
Owner
Tamil Nadu Generation and Distribution Corporation
Country
India
Coordinates
11.770, 77.814

Estimated Carbon Footprint

Annual CO₂
2.4M t

tonnes / year

Lifetime CO₂
94.8M t

over ~%d yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

515,317
cars / year
316,061
homes / year
107.7M
trees to offset

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

Nearby Stations

About this plant

The Mettur Thermal Power Station Extension (Mettur TPS EXT) is a significant coal-fired power plant located in the southern Indian state of Tamil Nadu. Commissioned in 2012, this facility boasts a generation capacity of 600 megawatts (MW), contributing to the region’s energy supply and supporting the broader energy needs of India. As part of the Tamil Nadu Generation and Distribution Corporation (TANGEDCO), Mettur TPS EXT plays a crucial role in meeting the growing electricity demands of both urban and rural areas in the state, ensuring energy security and stability in the region.

The primary fuel used at Mettur TPS EXT is coal, which is a prevalent energy source for thermal power generation in India. Coal is favored for its relatively low cost and abundant availability within the country. The power plant employs a combination of advanced combustion technologies to optimize efficiency and reduce emissions. The combustion process involves burning pulverized coal, which allows for better control over the efficiency of energy conversion and helps minimize the environmental impact associated with coal usage. Despite advancements in technology, coal-fired power plants are still associated with significant greenhouse gas emissions, particularly carbon dioxide (CO2), along with other pollutants such as sulfur dioxide (SO2) and particulate matter, which can adversely affect air quality and public health.

In terms of environmental impact, Mettur TPS EXT, like other coal-based power plants, faces challenges related to emissions and waste management. While the facility adheres to regulations set by the Indian government and environmental authorities to mitigate its impact, the reliance on coal remains a contentious issue in the context of climate change and sustainability. Efforts to implement cleaner technologies, such as flue gas desulfurization and electrostatic precipitators, are vital to reducing the environmental footprint of the plant and ensuring compliance with increasingly stringent environmental standards.

Regionally, Mettur TPS EXT holds significant importance as it supports the electricity grid of Tamil Nadu, which is one of the most industrialized states in India. The demand for electricity in Tamil Nadu is driven by its diverse economy, which includes agriculture, manufacturing, and services. The power generated at Mettur contributes to various sectors, including residential, commercial, and industrial users, thereby facilitating economic growth and development in the region. Furthermore, the plant’s location in Mettur, a strategic area with proximity to coal supply chains and transportation infrastructure, enhances its operational efficiency and reliability.

In conclusion, Mettur TPS EXT stands as a critical component of India’s energy infrastructure, reflecting the dual challenges of meeting energy demands while addressing environmental concerns associated with coal-based power generation. As the country moves toward a more sustainable energy future, the role of such power plants will continue to be evaluated in light of renewable energy integration and climate goals.

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