India

ANUPUR TPP — 1,200 MW Coal

Coal Verified

ANUPUR TPP is a 1,200 MW coal power plant located in India. View location, capacity, and technical details.

Capacity
1,200 MW

Installed

Commissioned
2015

Year online

Owner
Madhya Pradesh Power Generating Company

Operator

Location
23.07, 81.79

Coordinates

Insights

#131
largest in India
#720
largest Coal worldwide
#1,870
largest worldwide
2015
18 yrs newer than avg
15
operated by Madhya Pradesh Power…
15
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
1,200 MW
Commissioned
2015
Status
Operational
Owner
Madhya Pradesh Power Generating Company
Country
India
Coordinates
23.066, 81.787

Estimated Carbon Footprint

Annual CO₂
4,740,912 t

tonnes / year

Lifetime CO₂
189,636,480 t

over ~40 yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

1,030,633
cars / year
632,122
homes / year
215,496,000
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 ANUPUR Thermal Power Plant (TPP), located in India, is a significant coal-fired power station with a total installed capacity of 1200 megawatts (MW). Commissioned in 2015, this facility plays a vital role in bolstering the country’s energy sector, contributing to India’s growing demand for electricity amid rapid industrialization and urbanization. As part of the national strategy to enhance energy security, the ANUPUR TPP serves as a critical asset in the grid, helping to stabilize supply and ensure a reliable flow of electricity to both residential and commercial users.

The plant primarily utilizes coal as its fuel source, which is known for its high energy content and widespread availability in India. Coal remains one of the dominant fuels in the country’s energy mix, accounting for a significant portion of electricity generation. In the case of the ANUPUR TPP, the facility employs advanced combustion technologies to maximize efficiency and minimize emissions. The use of supercritical steam technology allows for higher thermal efficiency, thereby reducing the amount of coal needed per unit of electricity produced. This technology also helps in lowering greenhouse gas emissions relative to traditional subcritical plants.

Despite its advantages in energy production, coal-fired power plants, including ANUPUR TPP, are often scrutinized for their environmental impact. The combustion of coal releases various pollutants, including sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter, which can have detrimental effects on air quality and public health. To mitigate these impacts, the ANUPUR TPP is likely equipped with pollution control technologies such as electrostatic precipitators and flue gas desulfurization units, aimed at reducing emissions and adhering to regulatory standards. Nevertheless, the long-term environmental implications of coal usage remain a significant concern in the context of global warming and climate change.

Regionally, the ANUPUR TPP plays a crucial role in supporting economic development and job creation. By generating a substantial amount of electricity, it provides power to nearby industries, agricultural sectors, and urban centers, thereby fostering growth in the region. The plant not only meets local energy demands but also contributes to the overall stability of the power grid in India, allowing for a more integrated and resilient energy system. As India continues to explore a diverse energy portfolio, the role of coal-fired plants like ANUPUR TPP remains a topic of discussion, balancing the immediate energy needs of the population with the overarching goal of sustainable development.

In summary, the ANUPUR TPP stands as a pivotal component of India’s energy infrastructure, exemplifying the challenges and opportunities faced by coal-based power generation in the modern era. It highlights the ongoing efforts to address energy demands while navigating the complexities of environmental stewardship and sustainability in the pursuit of a greener future.

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