The Al-Mahmoudiya Gas Power Station is a key infrastructure asset in Egypt's power generation grid, located on the continent of Africa. Designated as a fossil fuel electricity generation station, the facility features an installed capacity of 653 MW. Its primary operation relies on harnessing gas energy resources to generate bulk electricity. Operational management and ownership of the facility are handled by the Middle Delta Electricity Production Company, which oversees daily maintenance and grid dispatch integration. The facility was officially connected to the commercial grid in 1983, since which it has maintained regular output, playing a structured role in domestic power supply security. In terms of domestic production capacity within Egypt, Al-Mahmoudiya Gas Power Station occupies the #62 position among all operational gas power plants. Its 653 MW capacity represents a 0.54% share of Egypt's total installed gas generating capacity, which currently stands at 121,657 MW. The largest operational gas installation in Egypt is the Burullus Power Plant with an output of 4,800 MW, making the Al-Mahmoudiya Gas Power Station approximately 7.4 times smaller by comparison. Across all fuel types and electricity generation technologies country-wide, this facility accounts for 0.4721% of Egypt's aggregate generation capacity of 138,304 MW. Based on historical capacity factors characteristic of gas power plants (modeled at 40% for analysis), the facility's expected annual electricity generation is calculated at approximately 2,288,112 MWh. Applying domestic consumption statistics where an average household in Egypt consumes 3 MWh of electricity annually, this level of production is sufficient to meet the energy demands of roughly 762,704 homes. By utilizing traditional thermal power processes, the station delivers reliable dispatchable energy to the grid, supporting grid resilience during periods of low renewable resource availability and satisfying industrial base-load demands. The physical site of the station is located at geographic coordinates 31.1750° latitude and 30.5296° longitude. Analysis of local grid infrastructure shows a density of other assets within a 50-kilometer radius. These nearby facilities include the Burullus Power Plant (gas-fired, 4800 MW), the Burullus Combined Cycle Power Station (gas-fired, 4800 MW), the Abu Kir (gas-fired, 2236 MW), representing a cluster of localized power assets. This geographic placement is vital for reinforcing regional distribution infrastructure and minimizing transmission line losses across this sector of Egypt.
43 years old
Egypt, Africa
Location
Estimates based on Gas emission factor (490 g CO₂/kWh) and capacity factor (45%). Actual emissions may vary based on operating conditions, efficiency, and fuel quality.
Technical Details
- Primary Fuel Type
- Gas
- Energy Source
- Non-Renewable
- Country
Egypt- Continent
- Africa
- Data Source
- Global Power Plant Database
Overview of المحمودية Gas Power Plant in Egypt
محطة كهرباء المحمودية الغازية, located in Egypt, is a significant gas-fired power plant with a total installed capacity of 653 megawatts (MW). Commissioned in 1983, it is owned by the Middle Delta Electricity Production Company and plays a crucial role in bolstering Egypt's energy sector. As a gas-powered facility, المحمودية utilizes natural gas as its primary fuel, which is known for its relatively lower environmental impact compared to other fossil fuels like coal and oil. Natural gas combustion emits fewer greenhouse gases and pollutants, making it a preferable choice for power generation, especially in urbanized and densely populated regions. This aspect is particularly relevant in Egypt, where air quality and environmental sustainability are increasingly critical concerns. The المحمودية plant is integral to Egypt's national grid, contributing to the stability and reliability of electricity supply across the country. Given the nation’s growing demand for energy, driven by population growth and economic development, the plant’s output is vital for meeting both residential and industrial needs. Technically, the plant employs gas turbine technology, which allows for efficient energy conversion and quick ramp-up times, making it capable of responding to fluctuations in electricity demand. This flexibility is particularly important in a country like Egypt, where peak demand can vary significantly throughout the day. Moreover, the plant's operation is aligned with national policies aimed at diversifying Egypt's energy sources and enhancing energy security. The regional significance of المحمودية extends beyond its immediate power generation capabilities. It is part of a broader strategy to increase the share of natural gas in the energy mix, which is seen as essential for transitioning towards a cleaner and more sustainable energy future. This aligns with Egypt's commitment to international climate agreements and its goal to reduce carbon emissions. The plant also supports job creation and economic activity in the region, contributing to local development through employment opportunities and infrastructure improvements. In conclusion, المحمودية gas power plant is a key asset in Egypt's energy landscape, providing essential electricity generation while promoting environmental sustainability and regional economic growth. Its role underscores the importance of natural gas as a transitional fuel in the pursuit of a more sustainable energy future.
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Gas Power Generation: An Overview of Its Mechanisms, Benefits, and Future Prospects
Gas power generation is a significant component of the global energy landscape, characterized by the use of natural gas to produce electricity. This process typically involves either gas turbines or combined cycle gas plants. In a gas turbine, compressed air is mixed with natural gas and ignited, producing high-temperature exhaust gases that spin a turbine connected to a generator. Combined cycle plants enhance efficiency by utilizing both gas and steam turbines. After the gas turbine generates electricity, the waste heat is used to produce steam, which drives a steam turbine, thereby maximizing energy extraction from the fuel.
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