Overview
Larona is a 165 MW hydroelectric power plant in Indonesia, operated by PT. Inco. It supplies renewable energy to the local grid.
Larona is a hydroelectric power plant located in Indonesia, with a capacity of 165 megawatts. The facility is owned by PT. Inco and is currently operational, contributing to the country's renewable energy mix. As a hydroelectric plant, it harnesses the flow of water to generate electricity without direct fuel combustion. Indonesia's power generation sector is regulated under national standards, including environmental impact assessments for hydropower projects. The plant's capacity places it in the medium-to-large scale for hydroelectric facilities in the region. Hydroelectric plants like Larona typically operate with high efficiency and low operational costs once constructed. The plant plays a role in supporting Indonesia's energy transition by providing clean electricity. Its operation reduces reliance on fossil fuels and helps meet growing demand in the region. The facility's location near water resources ensures a stable power supply for local communities and industries.
Environmental context
Hydroelectric power generation has a low carbon footprint but can affect local aquatic ecosystems. The Larona plant's operation may alter river flows and impact fish migration. Hydro projects in Indonesia often require careful management of sedimentation and water quality. The plant's age and technology are not detailed, but modern hydro facilities incorporate fish ladders and environmental flow releases.
Frequently asked questions
Larona is located in Indonesia, with coordinates approximately 2.82°S and 121.58°E.
The Larona hydroelectric plant has a capacity of 165 megawatts.
The plant is owned by PT. Inco, an Indonesian company.
Hydroelectric plants in Indonesia must comply with national environmental impact assessment regulations and water resource management laws.
Hydroelectric power has low greenhouse gas emissions but can impact aquatic ecosystems through altered water flows and fish migration patterns.