Malaysia

Sultan Azlan Shah Power Station (Manjung Power Station) — 4,080 MW Coal

Coal Verified

Sultan Azlan Shah Power Station (Manjung Power Station) is a 4,080 MW coal power plant located in Malaysia. View location, capacity, and technical details.

Capacity
4,080 MW

Installed

Commissioned
2015

Year online

Owner
TNB Janamanjung

Operator

Location
4.16, 100.65

Coordinates

Insights

#2
largest in %s
#43
largest %s worldwide
#156
largest worldwide
2015
%d yrs newer than avg
1
operated by %s
13
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
4,080 MW
Commissioned
2015
Status
Operational
Owner
TNB Janamanjung
Country
Malaysia
Coordinates
4.162, 100.647
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
16,119,101 t

tonnes / year

Lifetime CO₂
644,764,032 t

over ~%d yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

3,504,152
cars / year
2,149,213
homes / year
732,686,400
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 Sultan Azlan Shah Power Station, commonly referred to as Manjung Power Station, is a significant coal-fired power generation facility located in Malaysia. With an impressive generation capacity of 4,080 megawatts (MW), it plays a crucial role in supplying electricity to meet the growing energy demands of the country. Owned and operated by TNB Janamanjung, a subsidiary of Tenaga Nasional Berhad (TNB), the power station is a key player in Malaysia’s energy sector, contributing to the stability and reliability of the national grid.

The Manjung Power Station utilizes coal as its primary fuel source, which is a common choice for large-scale power generation due to its abundance and relatively low cost compared to other fossil fuels. The use of coal allows the facility to generate a substantial amount of electricity, catering to both industrial and residential needs across Malaysia. However, coal combustion is associated with several environmental concerns, including greenhouse gas emissions and air pollution, which have prompted ongoing discussions about the balance between energy production and environmental sustainability.

In terms of technical specifications, the Sultan Azlan Shah Power Station operates using state-of-the-art technology in coal combustion and power generation. The facility employs supercritical and ultra-supercritical boiler technology, which enhances efficiency and reduces the amount of coal required to produce electricity. This technology helps to minimize emissions per unit of energy generated, making the plant more competitive in terms of operational efficiency. Additionally, the power station incorporates various emission control systems to mitigate its environmental impact, including flue gas desulfurization and particulate matter capture, which aim to reduce sulfur dioxide and particulate emissions.

The environmental impact of the Sultan Azlan Shah Power Station has been a subject of scrutiny, particularly in the context of Malaysia’s commitment to sustainable development. The reliance on coal as a fuel source raises concerns about carbon emissions, which contribute to climate change. As such, TNB Janamanjung has been exploring ways to enhance the sustainability of its operations, including investments in renewable energy and carbon capture technologies. The transition towards cleaner energy sources aligns with Malaysia’s broader energy policy goals and international climate commitments.

Regionally, the Sultan Azlan Shah Power Station is strategically significant as it not only supports Malaysia’s energy needs but also enhances the stability of the Southeast Asian power grid. The facility plays an integral role in balancing supply and demand in the region, particularly during peak consumption periods. Its operational capacity allows for the provision of reliable power, which is essential for economic growth and development in Malaysia. As the country continues to expand its energy infrastructure, the Manjung Power Station remains a cornerstone of Malaysia’s efforts to provide secure and efficient energy to its populace.

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