Canada

Sir Adam Beck II Generating Station — 1,499 MW Hydroelectric

Hydroelectric Renewable Verified

Sir Adam Beck II Generating Station is a 1,499 MW hydro power plant located in Canada. View location, capacity, and technical details.

Capacity
1,499 MW

Installed

Commissioned
1958

Year online

Owner
Ontario Power Generation

Operator

Location
43.15, -79.04

Coordinates

Insights

#25
largest in Canada
#170
largest Hydroelectric worldwide
#1,280
largest worldwide
1958
26 yrs older than avg
45
operated by Ontario Power Generation
93
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
1,499 MW
Commissioned
1958
Status
Operational
Owner
Ontario Power Generation
Country
Canada
Coordinates
43.146, -79.044
Wikipedia
Link

Carbon Footprint

Annual CO₂
126,060 t

tonnes / year

Lifetime CO₂
10,084,792 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

27,404
cars per year
16,808
homes per year
5,729,996
trees to offset

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

Nearby Plants

About this plant

The Sir Adam Beck II Generating Station, located near Niagara Falls in Ontario, Canada, is a significant player in the country’s energy sector, boasting an impressive capacity of 1499 megawatts (MW). Owned by Ontario Power Generation, this hydroelectric facility harnesses the immense power of water flowing from the Niagara River, converting it into electricity that serves millions of residents and businesses across the province. As one of the largest hydroelectric stations in Canada, it plays a crucial role in providing a stable and reliable source of renewable energy, contributing to Ontario’s commitment to sustainability and reducing greenhouse gas emissions.

The fuel type utilized by the Sir Adam Beck II Generating Station is hydro, which relies on the kinetic energy of flowing water. This form of energy generation is considered one of the cleanest, as it does not involve the combustion of fossil fuels, thereby minimizing air pollutants and carbon emissions. The facility operates by directing water from the Niagara River through turbines, which spin to generate electricity. The process not only produces power but also provides water management benefits, including flood control and irrigation support in surrounding areas. As a renewable energy source, hydroelectric power is sustainable, replenishing naturally through the water cycle, making it an enduring solution for energy needs.

The environmental impact of the Sir Adam Beck II Generating Station is largely positive, particularly in comparison to conventional fossil fuel power plants. By generating electricity without emitting harmful pollutants, it significantly contributes to reducing air quality issues associated with coal and natural gas facilities. However, like all large-scale hydroelectric projects, it is not without environmental concerns. The construction and operation of the dam can disrupt local ecosystems and fish migration patterns. Mitigation efforts, including fish ladders and habitat restoration projects, are essential to address these challenges and maintain biodiversity in the region.

Regionally, the Sir Adam Beck II Generating Station holds immense significance, not only as a primary source of electricity for Ontario but also as a symbol of the province’s commitment to renewable energy. Its strategic location near Niagara Falls allows it to utilize one of the most powerful water sources in North America, making it a vital asset for energy generation. The facility also supports local economies by providing jobs and fostering related industries, such as manufacturing and technology development in renewable energy. Furthermore, the presence of the station has encouraged tourism in the area, drawing visitors to experience the natural beauty of Niagara Falls alongside the engineering marvel of the hydroelectric plant. Overall, the Sir Adam Beck II Generating Station exemplifies the potential of hydroelectric power in contributing to a sustainable energy future while balancing environmental and regional interests.

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