Overview
Oloron-Sainte-Marie is a 5.7 MW hydroelectric power plant in France. It generates renewable electricity from hydropower, contributing to the local energy grid.
Oloron-Sainte-Marie is a hydroelectric power plant located in France, with a capacity of 5.7 MW. This facility harnesses the energy of flowing water to generate electricity, supporting the region's renewable energy portfolio. The plant operates under France's regulatory framework, which aligns with the European Union's Industrial Emissions Directive and Best Available Techniques for hydropower. As a small-scale hydroelectric facility, it uses turbine technology to convert water flow into electrical power, with minimal emissions compared to fossil fuel plants. Environmentally, Oloron-Sainte-Marie provides clean energy without direct CO2, SOx, or NOx emissions. Its small capacity means it serves a local role in the grid, reducing reliance on carbon-intensive sources. The plant's operational status ensures continued contribution to France's renewable energy goals.
Environmental context
As a hydroelectric plant, Oloron-Sainte-Marie produces electricity without combustion, resulting in negligible air emissions. Its small capacity of 5.7 MW limits its environmental footprint, though it may affect local aquatic ecosystems through water flow alterations. The facility supports France's transition to low-carbon energy, aligning with EU environmental directives.
Frequently asked questions
The Oloron-Sainte-Marie hydroelectric plant is located in France, at coordinates 43.156000, -0.586900.
The Oloron-Sainte-Marie hydroelectric plant has a capacity of 5.7 megawatts (MW).
Oloron-Sainte-Marie is a hydroelectric power plant, generating electricity from the flow of water.
Hydroelectric plants in France must comply with EU directives, including the Industrial Emissions Directive, and national water management laws. They require permits for water use and environmental impact assessments.
Hydroelectric power produces no direct air emissions, reducing greenhouse gases and air pollutants. It provides renewable, reliable energy, though it can affect local aquatic habitats.