Argentina

Central Hidroeléctrica Alicura — 1,050 MW Hydroelectric

Hydroelectric Renewable Verified

Central Hidroeléctrica Alicura is a 1,050 MW hydro power plant located in Argentina. View location, capacity, and technical details.

Capacity
1,050 MW

Installed

Commissioned
1996

Year online

Owner
AES

Operator

Location
-40.58, -70.75

Coordinates

Insights

#14
largest in %s
#328
largest %s worldwide
#2,307
largest worldwide
1996
%d yrs newer than avg
12
operated by %s
8
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
1,050 MW
Commissioned
1996
Status
Operational
Owner
AES
Country
Argentina
Coordinates
-40.584, -70.747

Estimated Carbon Footprint

Annual CO₂
88,301 t

tonnes / year

Lifetime CO₂
7.1M t

over ~%d yrs

Intensity
24 g

gCO₂ per kWh

Annual emissions equal to

19,196
cars / year
11,773
homes / year
4M
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Stations

About this plant

Central Hidroeléctrica Alicura, located in Argentina, is a significant hydroelectric power plant with a capacity of 1,050 megawatts (MW). Owned by AES, a prominent player in the global energy sector, the Alicura plant plays a crucial role in Argentina’s energy matrix, contributing to the country’s efforts to harness renewable resources and reduce reliance on fossil fuels. The plant is situated on the Limay River in the province of Neuquén, which provides it with a reliable water source necessary for hydroelectric generation.

The hydroelectric power generation process at Alicura involves harnessing the kinetic energy of flowing water to produce electricity. Water from the Limay River is stored in a reservoir created by the dam, allowing for controlled water release that drives turbines to generate electrical power. This method of energy production is considered renewable, as it relies on the natural water cycle and does not deplete resources over time. Additionally, hydroelectric power emits no direct greenhouse gases during operation, making it a cleaner alternative to fossil fuels.

In the context of Argentina’s energy sector, Central Hidroeléctrica Alicura is vital for meeting the growing electricity demands of the country. It contributes significantly to the national grid, enhancing energy security and stability. The plant not only helps to balance supply during peak demand periods but also supports the integration of other renewable energy sources, such as wind and solar, by providing a dependable and adjustable source of power. This flexibility is essential for maintaining a stable energy supply as Argentina increases its commitment to renewable energy development.

While hydroelectric power is generally regarded as a clean energy source, the development and operation of large hydroelectric facilities like Alicura can have environmental impacts. The construction of the dam and reservoir may alter local ecosystems, affect fish populations, and displace communities. However, the plant is equipped with measures aimed at mitigating these impacts, including fish passages and environmental monitoring programs. The overall environmental footprint of hydroelectric projects is often considered lower than that of fossil fuel power plants, particularly in terms of carbon emissions.

Regionally, Central Hidroeléctrica Alicura is significant not only for its power generation capabilities but also for its role in local economic development. The plant provides employment opportunities during both the construction and operational phases, contributing to the local economy of Neuquén. Furthermore, the presence of the hydroelectric facility may promote tourism and recreational activities in the area, such as fishing and water sports, thereby benefiting local businesses.

In summary, Central Hidroeléctrica Alicura stands as a critical component of Argentina’s renewable energy infrastructure. With its substantial capacity, it not only aids in fulfilling energy requirements but also plays a pivotal role in advancing the country’s transition toward sustainable energy solutions while balancing environmental considerations and regional economic benefits.

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