Allal Al Fassi is a 240 MW hydro power plant located in Morocco. View location, capacity, and technical details.
Installed
Year online
Operator
Coordinates
Insights
Location
Technical Details
- Fuel Type
- Hydroelectric
- Capacity
- 240 MW
- Commissioned
- 1994
- Status
- Operational
- Owner
- Office National de l\'Electricite (ONE)
- Country
- Morocco
- Coordinates
- 33.931, -4.678
- Wikipedia
- Link
Carbon Footprint
tonnes / year
over ~80 yrs
Est. gCO2/kWh
Annual emissions equivalent to
Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator
Nearby Plants
About this plant
Allal Al Fassi, with a capacity of 240 MW, ranks as the tenth largest power generation facility in Morocco, holding the distinction of being the second largest hydroelectric plant in the country. Commissioned in 1994, it contributes 2.76% to Morocco’s total power capacity of 8,698 MW, a figure that highlights the importance of hydroelectricity in the nation’s energy mix, particularly given that coal remains the dominant fuel source. The plant utilizes advanced hydroelectric technology, converting the energy from flowing water into electricity, which is a clean and renewable resource. Geographically, Allal Al Fassi is not isolated; it is located within proximity of the IDRISS 1er hydro facility, which generates 40.6 MW. This clustering of hydro plants underscores Morocco’s commitment to diversifying its energy portfolio and enhancing energy security through renewable sources. The energy profile of Morocco features a total of 45 power generation facilities, with 18 designated for hydroelectric generation, demonstrating the growing significance of this sector in the country’s energy strategy. The operator of Allal Al Fassi, the Office National de l’Electricite (ONE), plays a pivotal role in managing and expanding Morocco’s energy infrastructure. Moving forward, Allal Al Fassi is expected to contribute significantly to Morocco’s efforts in reducing greenhouse gas emissions and promoting sustainable energy practices, making it a key player in the transition towards a greener energy future.
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