World Power Plants

Moforsen Hydroelectric Power Station138 MW Hidrelétrica

HydroRenovávelVerificado: 02/2026

Moforsen Hydroelectric Power Station stands out as the 60th largest power generation facility in Sweden, holding a significant position in the nation's energy landscape. With a capacity of 138 MW, it contributes a notable 0.31% to Sweden's total power generation capacity of 44,575 MW, which is primarily dominated by nuclear energy. This hydroelectric powerhouse, commissioned in 1968, is operated by Uniper and is a crucial element in Sweden's commitment to renewable energy, particularly hydropower, which accounts for a substantial share of the country's energy mix. The Moforsen facility utilizes advanced hydroelectric technology to convert the kinetic energy of flowing water into electricity, showcasing the efficiency and sustainability of hydropower. This method of energy generation is particularly beneficial in Sweden, where abundant freshwater resources are available. The plant's capacity ranks it as the 39th largest among 216 hydro plants in Sweden, emphasizing its importance within the hydro sector. Geographically, Moforsen is situated in a hydro-rich area of Sweden, surrounded by several notable nearby plants, including Kilforsem (296 MW), Lasele (165 MW), Forsmo (158 MW), Holleforsen (151 MW), and Stadsforsen (142 MW). This cluster of hydro facilities not only highlights the region's reliance on hydropower but also enhances grid stability and resilience, allowing for a balanced energy supply. The collective output of these plants significantly contributes to the regional and national grid, reinforcing the importance of hydropower in Sweden's energy strategy. At a national level, Sweden's energy profile is characterized by a diverse mix, with a strong emphasis on renewable sources. The country's 305 power generation facilities collectively provide a robust and sustainable energy framework, with hydropower playing a pivotal role alongside nuclear and wind energy. Moforsen’s contribution, though modest in percentage terms, is vital for maintaining the stability of the grid and supporting the transition towards a cleaner energy future. Operated by Uniper, Moforsen has been part of Sweden's energy landscape since its commissioning in 1968, reflecting a long-standing commitment to renewable energy generation. Looking ahead, the facility's role in promoting sustainable energy practices will continue to be critical, especially as Sweden aims to further reduce its carbon footprint and enhance energy efficiency. The environmental impact of Moforsen, along with its nearby counterparts, underscores the importance of hydropower as a clean and renewable energy source in combating climate change.

Capacidade
138 MW
Ano de Comissionamento
1968

58 anos de idade

Proprietário
Uniper
Localização
63.3683°, 16.9883°

Suécia, Europe

Localização

Coordenadas:: 63.368333, 16.988333
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Carbon Footprint

Zero Direct Emissions

Moforsen Hydroelectric Power Station is a hydro power plant producing approximately 484 GWh of clean electricity per year with zero direct CO₂ emissions during operation.

Lifecycle emissions: ~24 g CO₂/kWh (manufacturing, transport, decommissioning)

Detalhes Técnicos

Tipo de Combustível Principal
Hydro
Fonte de Energia
Renovável
País
Suécia
Continente
Europe
Fonte de Dados
Banco de Dados Global de Usinas de Energia

SuéciaPerfil de Energia

305
Total de Usinas
44.6 GW
Capacidade Total
NuclearHydroGasBiomass
Principais Combustíveis

A Energia Hidroelétrica: Geração de Potência e Setor Energético

A energia hidroelétrica é uma das fontes de energia renovável mais utilizadas no mundo, representando uma parte significativa da produção global de eletricidade. Este tipo de energia é gerada através do aproveitamento do movimento da água, normalmente em grandes rios, onde a força da correnteza é utilizada para mover turbinas que, por sua vez, acionam geradores elétricos. A energia hidroelétrica é frequentemente considerada uma forma limpa e sustentável de geração de eletricidade, uma vez que não emite gases de efeito estufa durante a sua operação.

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