China

Henglian Wucaiwan power station — 1,320 MW Coal

Coal Verified

Henglian Wucaiwan power station is a 1,320 MW coal power plant located in China. View location, capacity, and technical details.

Capacity
1,320 MW

Installed

Commissioned
2017

Year online

Owner
Xinjiang Henglian Energy Co

Operator

Location
44.79, 89.20

Coordinates

Insights

#285
largest in China
#551
largest Coal worldwide
#1,536
largest worldwide
2017
20 yrs newer than avg
1
operated by Xinjiang Henglian Energy…
12
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
1,320 MW
Commissioned
2017
Status
Operational
Owner
Xinjiang Henglian Energy Co
Country
China
Coordinates
44.790, 89.198

Estimated Carbon Footprint

Annual CO₂
5,215,003 t

tonnes / year

Lifetime CO₂
208,600,128 t

over ~40 yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

1,133,696
cars / year
695,334
homes / year
237,045,600
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 Henglian Wucaiwan Power Station, with a generation capacity of 1,320 megawatts (MW), is a significant coal-fired power facility located in China. Owned by Xinjiang Henglian Energy Co., the power station was commissioned in 2017 and plays a crucial role in the country’s energy landscape, particularly in the Xinjiang Uygur Autonomous Region. This facility is part of China’s broader strategy to bolster its energy production capabilities to meet the increasing demand for electricity, driven by rapid industrialization and urbanization.

As a coal-fired power station, Henglian Wucaiwan primarily utilizes coal as its fuel source, which is a common practice in China’s energy sector. Coal remains one of the most abundant and economical energy resources in the country, contributing significantly to the national electricity supply. The station employs advanced technologies to enhance fuel efficiency and reduce emissions. However, coal combustion is associated with various environmental challenges, including the release of greenhouse gases, particulate matter, and other pollutants. In the context of China’s commitment to reducing carbon emissions and transitioning to cleaner energy sources, the Henglian Wucaiwan Power Station underscores the complexities of balancing energy demands with environmental responsibilities.

The environmental impact of the Henglian Wucaiwan Power Station is a focal point of discussion among policymakers and environmentalists. While the facility generates a substantial amount of electricity to support regional development, it also contributes to air quality degradation and climate change due to carbon dioxide emissions. In recent years, China has been facing increasing pressure to shift towards renewable energy sources, such as wind and solar, as part of its long-term sustainability goals. The reliance on coal power plants like Henglian Wucaiwan poses challenges for the country’s environmental objectives, prompting ongoing efforts to improve emissions control technologies and implement stricter regulations on air quality.

Regionally, the Henglian Wucaiwan Power Station serves as a vital energy resource for Xinjiang, a region characterized by its vast landscapes and sparse population density. The electricity generated by the facility supports local industries and contributes to the overall economic development of the region. This is particularly important in Xinjiang, where energy infrastructure development is essential for facilitating growth in sectors such as mining, agriculture, and manufacturing. Moreover, the power station plays a role in stabilizing the regional electricity grid, ensuring a reliable supply of power to meet the needs of residents and businesses alike.

In conclusion, the Henglian Wucaiwan Power Station exemplifies the dual nature of coal-fired power generation in China. While it meets immediate energy demands and supports regional economic growth, it also highlights the pressing need for sustainable energy solutions and the transition towards a cleaner energy future.

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