The Xishui Erlang power station is a significant coal-fired power generation facility located in Guizhou province, China, with coordinates 28.1634° N latitude and 106.3528° E longitude. Commissioned in 2015, this power plant has a robust capacity of 1320 MW, which plays a vital role in meeting the energy needs of the local grid. Operated by the State Power Investment Corporation (SPIC), the Xishui Erlang power station utilizes modern coal technology to enhance its efficiency and reduce emissions compared to older generation methods. The strategic location of the power plant in the heart of Guizhou allows it to support the province's energy demands, which are critical for both residential and industrial consumers. The energy policy framework in China reinforces the reliance on coal as a primary source of energy, particularly in regions like Guizhou, where other renewable resources may not yet be fully developed. The Xishui Erlang power station thus stands as a cornerstone of energy generation in the region, ensuring a stable power supply while contributing to the ongoing discussions about balancing coal use with alternative energy sources in the future.
1.32 GW
11 years old
China, Asia
- 285. largest of 4,431 plants in China
- #1,536 worldwide by installed capacity
- #551 of 2,793 Coal plants worldwide
- 0.08% of the installed capacity of China
11 years in operation
Coal fleet average: 29.2 years
State Power Investment Corporation (SPIC) operates 1 plants totalling 1,320 MW
18 plants within 100 km, 8,465 MW combined
Source: GCPT
Location
Estimates based on Coal emission factor (820 g CO₂/kWh) and capacity factor (55%). Actual emissions may vary based on operating conditions, efficiency, and fuel quality.
Technical Details
- Primary Fuel Type
- Coal
- Energy Source
- Non-Renewable
- Country
China- Continent
- Asia
- Data Source
- Global Power Plant Database
Overview of Xishui Erlang Power Station in China
The Xishui Erlang Power Station, located in China, is a significant coal-fired power facility with a total capacity of 1320 megawatts (MW). Commissioned in 2015 and owned by the State Power Investment Corporation (SPIC), the power station plays a crucial role in the country's energy landscape, contributing to China's growing electricity demands while also reflecting the challenges associated with coal-based energy generation. As one of the many power plants in China, Xishui Erlang is vital for providing stable and reliable electricity to meet the needs of both urban and industrial consumers in the region.
Coal serves as the primary fuel for the Xishui Erlang Power Station, a common choice in China's energy sector due to its abundant domestic reserves. The use of coal as a fuel type comes with its own set of technical considerations, including the need for efficient combustion systems and pollution control technologies. The power station is equipped with modern technologies to enhance efficiency and reduce harmful emissions, such as sulfur dioxide (SO2) and nitrogen oxides (NOx), which are critical for complying with increasingly stringent environmental regulations in China. However, coal remains a significant source of carbon dioxide (CO2), contributing to greenhouse gas emissions and climate change concerns.
The environmental impact of the Xishui Erlang Power Station is a point of contention, reflecting broader issues surrounding coal energy in China. While the facility is designed to operate more cleanly than older coal plants, it still contributes to air pollution and environmental degradation, affecting local ecosystems and public health. The Chinese government is actively working to transition to cleaner energy sources, such as renewables and nuclear power, which poses challenges for coal-powered plants like Xishui Erlang as they navigate regulatory changes and societal pressures to reduce fossil fuel dependence.
Regionally, the Xishui Erlang Power Station holds significance beyond just its generation capacity. It supports economic development by supplying electricity to industries and residential areas, fostering growth in surrounding regions. The reliability of power generation from this facility aids in stabilizing the grid, particularly in areas where demand may fluctuate due to seasonality or industrial activity. As China moves toward a more sustainable energy future, the role of plants like Xishui Erlang will be scrutinized as part of a broader strategy to balance energy needs with environmental stewardship. The facility thus embodies the complexities of energy production in a rapidly developing economy, highlighting the ongoing transition from traditional fossil fuels to renewable energy sources.
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