Overview
MHPP Lyaskel is a 4.8 MW hydroelectric power plant in Russia, operated by Nord Hydro JSC. It contributes to the region's renewable energy generation.
MHPP Lyaskel is a hydroelectric power plant located in Russia, with a capacity of 4.8 MW. The facility is owned and operated by Nord Hydro JSC and is currently operational. As a small-scale hydroelectric plant, it plays a role in the local energy mix, providing renewable power to the grid. The plant operates under Russia's regulatory framework for hydropower, which includes compliance with national environmental standards and water resource management regulations. Hydroelectric plants like MHPP Lyaskel typically use run-of-river or reservoir-based technology, converting water flow into electricity with low direct emissions. The environmental significance of MHPP Lyaskel lies in its renewable energy generation, which helps reduce reliance on fossil fuels. Its small capacity means it has a localized impact, supporting community energy needs while minimizing ecological disruption. The plant's operation aligns with broader efforts to increase renewable energy capacity in Russia.
Environmental context
As a hydroelectric plant, MHPP Lyaskel generates electricity with minimal direct CO2, SOx, and NOx emissions compared to fossil fuel plants. Its small capacity (4.8 MW) limits the scale of water flow alteration and potential ecological effects. The plant's location in a water-rich region supports sustainable hydropower generation, though local aquatic ecosystems may experience changes in flow regimes.
Frequently asked questions
MHPP Lyaskel is located in Russia, with coordinates 61.761700 N, 31.002500 E.
MHPP Lyaskel has a capacity of 4.8 megawatts (MW), making it a small-scale hydroelectric power plant.
MHPP Lyaskel is owned and operated by Nord Hydro JSC.
Hydroelectric plants in Russia must comply with national environmental and water resource regulations, including standards for water use and ecological protection.
Hydroelectric power generates electricity with low direct emissions of CO2, SOx, and NOx, contributing to reduced air pollution and greenhouse gas emissions compared to fossil fuel plants.