Overview
Buchanan (MI) is a 4.4 MW hydroelectric power plant operated by Indiana Michigan Power Co in the United States. It contributes to renewable energy generation in the region.
Buchanan (MI) is a hydroelectric power plant located in the United States, operated by Indiana Michigan Power Co. With a capacity of 4.4 MW, it is a small-scale facility within the hydroelectric sector, contributing to the local grid with renewable energy. The plant operates under the regulatory framework of the US EPA Clean Air Act, though hydroelectric facilities typically have minimal air emissions. The technology involves converting the kinetic energy of flowing water into electricity, a mature and reliable renewable energy source. As a hydroelectric plant, Buchanan (MI) provides clean energy to the surrounding area, reducing reliance on fossil fuels. Its small capacity suggests it serves a local community or industrial user, supporting grid stability and environmental sustainability.
Environmental context
Hydroelectric power generation has a low carbon footprint compared to fossil fuel plants, but can impact local aquatic ecosystems through altered water flow and fish migration. Buchanan (MI) is located in a region with moderate rainfall and river systems, supporting its operation. The plant's small capacity minimizes large-scale environmental disruption, though ongoing monitoring of water quality and aquatic life is typical for such facilities.
Frequently asked questions
Buchanan (MI) is located in the United States, with coordinates 41.8396 N, -86.3511 W.
The Buchanan (MI) hydroelectric plant has a capacity of 4.4 megawatts (MW).
The plant is operated by Indiana Michigan Power Co.
Hydroelectric plants in the US are subject to Federal Energy Regulatory Commission (FERC) licensing and environmental regulations under the Clean Water Act and National Environmental Policy Act.
Hydroelectric power is renewable with low emissions, but can affect aquatic habitats, water flow, and fish migration. Mitigation measures like fish ladders are often implemented.