HPP Portile de Fier I is a 1,161 MW hydro power plant located in Romania. View location, capacity, and technical details.
Installed
Year online
Operator
Coordinates
Insights
Location
Technical Details
- Fuel Type
- Hydroelectric
- Capacity
- 1,161 MW
- Commissioned
- 1972
- Status
- Operational
- Owner
- Hydroelectric Power Plant Portile de Fier
- Country
- Romania
- Coordinates
- 44.673, 22.532
Estimated Carbon Footprint
tonnes / year
over ~80 yrs
gCO₂ per kWh
Annual emissions equal to
Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator
Nearby Stations
About this plant
HPP Portile de Fier I, located on the Danube River in Romania, is a significant hydroelectric power plant with a total installed capacity of 1161 megawatts (MW). Commissioned in 1972, it plays a crucial role in the nation’s energy sector, contributing to both electricity generation and regional development. This facility is part of a broader system of hydropower plants along the Danube, which includes its counterpart, Portile de Fier II, and is instrumental in managing water flow and generating renewable energy.
As a hydroelectric power plant, HPP Portile de Fier I utilizes the kinetic energy of flowing water to produce electricity. The facility operates by harnessing the gravitational force of water as it flows through turbines, converting this energy into electrical power. The use of water as a fuel source is particularly advantageous due to its sustainability and low environmental impact compared to fossil fuels. Hydro energy is renewable, providing a reliable source of power that does not deplete natural resources or contribute to greenhouse gas emissions during operation. The plant’s design includes large reservoirs and dams that regulate water flow, allowing for consistent electricity generation even during periods of low river flow.
The environmental impact of HPP Portile de Fier I is multifaceted. While hydroelectric power is generally cleaner than fossil fuel alternatives, the creation of large reservoirs can disrupt local ecosystems, affect aquatic habitats, and alter sediment flow. The damming of the Danube has led to changes in fish migration patterns and may impact biodiversity in the surrounding areas. However, regulatory measures and environmental management practices are in place to mitigate these effects and promote ecological balance. The plant also contributes to flood control and irrigation, further enhancing its significance in regional environmental management.
Regionally, HPP Portile de Fier I is of great importance, not only for its role in energy production but also for its economic contributions. The facility supports local economies by providing jobs and stimulating development in nearby communities. It is a crucial part of Romania’s strategy to increase the share of renewable energy in its energy mix, aligning with European Union directives aimed at reducing carbon emissions and promoting sustainable energy practices. The plant enhances energy security for Romania, providing a stable and dependable power source that reduces reliance on imported fuels.
In summary, HPP Portile de Fier I is an essential component of Romania’s energy infrastructure, with a significant capacity for hydroelectric power generation. Its operational efficiency, combined with its role in environmental management and regional development, underscores its importance in the transition toward a more sustainable energy future.
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