China

Guodian Duyun power station — 1,200 MW Coal

Coal Verified

Guodian Duyun power station is a 1,200 MW coal power plant located in China. View location, capacity, and technical details.

Capacity
1,200 MW

Installed

Commissioned
2012

Year online

Owner
China Guodian Corporation

Operator

Location
26.63, 107.54

Coordinates

Insights

#399
largest in China
#720
largest Coal worldwide
#1,870
largest worldwide
2012
15 yrs newer than avg
11
operated by China Guodian Corporation
11
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
1,200 MW
Commissioned
2012
Status
Operational
Owner
China Guodian Corporation
Country
China
Coordinates
26.630, 107.543

Carbon Footprint

Annual CO₂
4,740,912 t

tonnes / year

Lifetime CO₂
189,636,480 t

over ~40 yrs

Intensity
820 g

Est. gCO2/kWh

Annual emissions equivalent to

1,030,633
cars per year
632,122
homes per year
215,496,000
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 Guodian Duyun Power Station, located in Duyun, Guizhou Province, China, is a coal-fired power facility with a generation capacity of 1200 megawatts (MW). Commissioned in 2012, this power plant is owned by the China Guodian Corporation, one of the largest energy companies in the country. The power station plays a significant role in China’s energy sector, particularly in meeting the growing electricity demands of the southwestern region of the country, which has been experiencing rapid industrialization and urbanization.

As a coal-fired power plant, the Guodian Duyun Power Station relies on coal as its primary fuel source. Coal remains a dominant energy source in China, despite the government’s efforts to diversify its energy portfolio and transition towards renewable energy sources. The choice of coal is largely attributed to its abundant domestic reserves, which provide a stable and cost-effective energy supply. The technical design of the power plant incorporates advanced technologies aimed at improving efficiency and reducing emissions. This includes the use of supercritical steam technology, which allows the plant to generate electricity with higher efficiency by operating at higher pressures and temperatures, consequently reducing the amount of coal required per unit of electricity produced.

However, the use of coal as a fuel source has notable environmental implications. Coal combustion is associated with significant greenhouse gas emissions, including carbon dioxide (CO2), which contributes to climate change. Additionally, coal-fired power plants are known to emit pollutants such as sulfur dioxide (SO2), nitrogen oxides (NOx), and particulate matter, which can adversely affect air quality and public health. In response to these environmental concerns, the Guodian Duyun Power Station is likely subject to stringent emissions regulations and may employ various pollution control technologies, such as flue gas desulfurization and electrostatic precipitators, to mitigate its environmental impact.

Regionally, the Guodian Duyun Power Station is crucial for supporting the energy infrastructure of Guizhou Province, which has historically faced energy supply challenges. The power station not only provides a reliable source of electricity for local industries and communities but also contributes to the overall stability of the grid in a region that is increasingly dependent on energy for economic development. Moreover, by aiding in the electrification of rural areas, the power plant supports the government’s broader objectives of poverty alleviation and improving living standards.

In conclusion, the Guodian Duyun Power Station stands as a significant contributor to China’s energy landscape, balancing the demands of energy production with the challenges posed by environmental sustainability. As the country strives for a greener energy future, the role of coal-fired power plants like Duyun will continue to evolve, reflecting the ongoing transition within China’s energy sector.

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