Risk: Low Hydroelectric Power Plant Operational

Salto Bandeirantes Hydroelectric Power Plant, Brazil

Brazil
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Overview

Salto Bandeirantes is a 4.2 MW hydroelectric power plant located in Brazil. It is operational and contributes to the country's renewable energy mix.

Salto Bandeirantes is a hydroelectric power plant located in Brazil, with coordinates approximately 22.985°S, 51.823°W. With a capacity of 4.2 MW, it is a small-scale facility within the Brazilian power generation sector, which relies heavily on hydropower. As a hydroelectric plant, Salto Bandeirantes operates without direct fuel combustion, resulting in minimal emissions of CO2, SOx, and NOx. It falls under Brazil's national regulatory framework for hydropower, which includes environmental licensing and water use permits. The plant's small capacity suggests it may serve local or regional grid needs. The plant's operational status indicates it is actively generating electricity, contributing to Brazil's renewable energy portfolio. Hydropower is a key component of Brazil's energy mix, providing over 60% of the country's electricity. Salto Bandeirantes supports grid stability and local energy supply.

Environmental context

As a hydroelectric plant, Salto Bandeirantes has a low carbon footprint compared to fossil fuel plants. However, hydropower can affect local aquatic ecosystems and water flow regimes. The plant's small capacity minimizes its environmental impact relative to larger dams. Its location in Brazil, a country with abundant water resources, supports sustainable operation.

Frequently asked questions

Salto Bandeirantes is located in Brazil at coordinates 22.985°S, 51.823°W.

Salto Bandeirantes has a capacity of 4.2 MW.

Salto Bandeirantes is a hydroelectric power plant.

Hydroelectric plants in Brazil are regulated by national environmental and water resource laws, including licensing requirements from agencies like IBAMA and ANA.

As a small hydroelectric plant, it adds to Brazil's renewable energy capacity, which is dominated by hydropower, supporting grid stability and local energy needs.
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