Egypt

Burullus Combined Cycle Power Station — 4,800 MW Natural Gas

Natural Gas Verified

Burullus Combined Cycle Power Station is a 4,800 MW gas power plant located in Egypt. View location, capacity, and technical details.

Capacity
4,800 MW

Installed

Commissioned
2017

Year online

Owner
Egyptian Electricity Holding Company (EEHC)

Operator

Location
31.53, 30.81

Coordinates

Insights

#1
largest in %s
#20
largest %s worldwide
#94
largest worldwide
2017
%d yrs newer than avg
4
operated by %s
23
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
4,800 MW
Commissioned
2017
Status
Operational
Owner
Egyptian Electricity Holding Company (EEHC)
Country
Egypt
Coordinates
31.530, 30.807

Estimated Carbon Footprint

Annual CO₂
9.3M t

tonnes / year

Lifetime CO₂
278.1M t

over ~%d yrs

Intensity
490 g

gCO₂ per kWh

Annual emissions equal to

2M
cars / year
1.2M
homes / year
421.4M
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 Al-Borolos Combined Cycle Power Plant, located in Egypt, is a significant contributor to the country’s energy sector, boasting a capacity of 4800 megawatts (MW). Commissioned in 2017, this power plant is owned and operated by the Egyptian Electricity Holding Company (EEHC), which plays a crucial role in managing and supplying electricity across Egypt. The plant primarily uses natural gas as its fuel source, which is a cleaner alternative to other fossil fuels, thereby contributing to a more sustainable energy mix in the nation.

Natural gas, as a fuel type, is known for its efficiency and lower carbon emissions compared to coal and oil. The combined cycle technology employed at the Al-Borolos plant involves two main processes: gas turbines and steam turbines. Initially, natural gas is burned in gas turbines to generate electricity. The hot exhaust gases from this process are then utilized to produce steam, which drives steam turbines to generate additional electricity. This dual process enhances the overall efficiency of the plant, allowing it to produce more energy from the same amount of fuel, which is particularly important given the rising energy demand in Egypt.

The environmental impact of the Al-Borolos power plant is relatively favorable when compared to traditional coal-fired power plants. The use of natural gas significantly reduces greenhouse gas emissions, contributing to Egypt’s efforts to mitigate climate change. However, it is important to note that while natural gas is cleaner, it is still a fossil fuel and its extraction and transportation can have environmental implications, including methane leaks. Therefore, ongoing investments in renewable energy sources and energy efficiency are essential for Egypt to achieve a more sustainable energy future.

Regionally, the Al-Borolos power plant plays a vital role in stabilizing the energy supply in Egypt, especially as the country aims to become a regional energy hub. With a growing population and increasing industrial activities, reliable electricity generation is crucial for economic development. The plant not only supports domestic energy needs but also positions Egypt as a potential exporter of electricity to neighboring countries. This aligns with the government’s vision to enhance energy security and promote economic growth through infrastructural investments in the energy sector.

In conclusion, the Al-Borolos Combined Cycle Power Plant stands as a pivotal element in Egypt’s energy infrastructure, contributing significantly to the country’s electricity generation capacity while promoting the use of cleaner fuel. Its advanced technology and strategic importance underscore its role in both meeting national energy demands and supporting regional energy cooperation.

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