China

Datang Qitaihe power station — 1,900 MW Coal

Coal Verified

Datang Qitaihe power station is a 1,900 MW coal power plant located in China. View location, capacity, and technical details.

Capacity
1,900 MW

Installed

Commissioned
2006

Year online

Owner
Datang Heilongjiang Power Generation Co Ltd

Operator

Location
45.76, 131.05

Coordinates

Insights

#205
largest in %s
#351
largest %s worldwide
#919
largest worldwide
2006
%d yrs newer than avg
4
operated by %s
10
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
1,900 MW
Commissioned
2006
Status
Operational
Owner
Datang Heilongjiang Power Generation Co Ltd
Country
China
Coordinates
45.760, 131.054

Estimated Carbon Footprint

Annual CO₂
7.5M t

tonnes / year

Lifetime CO₂
300.3M t

over ~%d yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

1.6M
cars / year
1M
homes / year
341.2M
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 Datang Qitaihe Power Station is a significant coal-fired power generation facility located in Qitaihe, Heilongjiang Province, China. With a total installed capacity of 1,900 megawatts (MW), this power station plays an essential role in the energy sector of China, contributing to the country’s ongoing efforts to meet its growing electricity demand. Commissioned in 2006, the plant is owned and operated by Datang Heilongjiang Power Generation Co Ltd, a subsidiary of the larger Datang International Power Generation Company, which is one of China’s major power producers.

As a coal-fired power station, the Datang Qitaihe utilizes coal as its primary fuel source. Coal remains a dominant energy source in China, primarily due to its abundance and affordability. The power station employs modern technologies to improve the efficiency of coal combustion and to reduce emissions compared to older generation plants. However, it is noteworthy that coal combustion is inherently associated with significant environmental impacts, including the release of greenhouse gases, sulfur dioxide, and particulate matter, which contribute to air pollution and climate change.

In the context of China’s energy landscape, the Datang Qitaihe Power Station contributes to the country’s energy security by providing a stable and reliable electricity supply. The facility supports the electrical grid in northeastern China, where the demand for power is substantial due to industrial activities and population density. The plant’s capacity helps to mitigate energy shortages and supports economic growth in the region. Additionally, it plays a role in balancing the energy supply during peak demand periods, ensuring that the grid remains stable and reliable.

Despite its importance in providing energy, the environmental impact of the Datang Qitaihe Power Station cannot be overlooked. Coal-fired power plants are known for their significant carbon emissions, which are a major contributor to climate change. The Chinese government has been actively working on reducing carbon footprints and increasing the share of renewable energy in the energy mix. As a result, there is ongoing pressure on coal power plants like Datang Qitaihe to adopt cleaner technologies and improve operational efficiencies. In recent years, efforts have been made to implement flue gas desulfurization and other emissions control systems to minimize the environmental footprint of the power station.

Regionally, the Datang Qitaihe Power Station is vital for the local economy, providing jobs and stimulating economic activity in the vicinity. It supports not only direct employment opportunities but also ancillary services and industries that rely on a stable power supply. As China transitions towards a more sustainable energy future, the role of traditional power plants, including Datang Qitaihe, will likely evolve, with increased emphasis on clean energy technologies and reduction of environmental impacts. The future of the Datang Qitaihe Power Station will be determined by the balance between energy demands, environmental regulations, and advancements in alternative energy sources.

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