China

Huainan Tianji power station — 2,580 MW Coal

Coal Verified

Huainan Tianji power station is a 2,580 MW coal power plant located in China. View location, capacity, and technical details.

Capacity
2,580 MW

Installed

Commissioned
2010

Year online

Owner
Huaihu Coal Electricity Co Ltd

Operator

Location
32.75, 116.81

Coordinates

Insights

#97
largest in China
#164
largest Coal worldwide
#461
largest worldwide
2010
13 yrs newer than avg
1
operated by Huaihu Coal Electricity…
40
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
2,580 MW
Commissioned
2010
Status
Operational
Owner
Huaihu Coal Electricity Co Ltd
Country
China
Coordinates
32.746, 116.813

Carbon Footprint

Annual CO₂
10,192,961 t

tonnes / year

Lifetime CO₂
407,718,432 t

over ~40 yrs

Intensity
820 g

Est. gCO2/kWh

Annual emissions equivalent to

2,215,861
cars per year
1,359,061
homes per year
463,316,400
trees to offset

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

Nearby Plants

About this plant

The Huainan Tianji Power Station, located in the Anhui province of China, is a significant coal-fired power facility with a total capacity of 2,580 megawatts (MW). Commissioned in 2010 and owned by Huaihu Coal Electricity Co Ltd, the power station plays a crucial role in meeting the energy demands of the region and contributes to the broader energy infrastructure of China. As one of the largest coal power plants in the country, its output is vital for supporting economic growth and industrial activities in the surrounding areas.

The power station primarily utilizes coal as its fuel source, a common choice for energy production in China, which is one of the world’s largest consumers of coal. The use of coal in power generation allows for a relatively high energy output; however, it also presents challenges in terms of environmental sustainability and air quality. The combustion of coal releases a variety of pollutants, including sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter, which can have adverse effects on public health and contribute to environmental degradation. In response to these concerns, the Chinese government has been implementing stricter regulations and technologies aimed at reducing emissions from coal-fired power plants, including the Huainan Tianji Power Station.

The significance of the Huainan Tianji Power Station extends beyond its immediate energy output. It is strategically located in a coal-rich region, which facilitates easy access to fuel and supports the local coal mining industry. This proximity not only lowers transportation costs but also enhances the plant’s operational efficiency. The facility is part of a larger network of power generation units that help stabilize the electricity supply in eastern China, particularly during peak demand periods. As the country continues to face challenges related to energy security and environmental sustainability, the role of coal-fired power plants like Huainan Tianji remains a point of contention.

Despite the challenges associated with coal as a fuel source, the Huainan Tianji Power Station contributes significantly to the energy mix of China, which is undergoing a transformative shift toward renewable energy sources. The plant’s output supports industries and households, thus facilitating economic development in nearby urban areas. However, the environmental implications of coal usage remain a critical concern, prompting ongoing discussions about transitioning to cleaner energy solutions.

In summary, the Huainan Tianji Power Station stands as a prominent coal-fired power facility that significantly impacts the energy landscape of China. Its capacity and strategic location underscore its importance in meeting the energy needs of the region while also highlighting the environmental challenges that accompany coal-based energy production. As China navigates its path toward a more sustainable energy future, the evolution of power plants like Huainan Tianji will be pivotal in this ongoing transition.

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