Risk: Low Hydroelectric Power Plant Operational

Hangudi Hydroelectric Power Plant, China | 5 MW Capacity

China
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Overview

Hangudi is a 5 MW hydroelectric power plant in China, contributing to the country's renewable energy capacity. The facility harnesses hydropower to generate electricity.

Hangudi is a hydroelectric power plant located in China, with a capacity of 5 MW. As a small-scale hydro facility, it plays a role in the local energy mix, supporting China's transition to cleaner energy sources. The plant operates under China's national regulations for hydropower, which include environmental impact assessments and water resource management. While specific technical details are limited, the facility likely uses run-of-river or reservoir-based technology typical for small hydro projects in the region. Hangudi contributes to the regional grid, providing renewable electricity to nearby communities. Its operation aligns with China's goals to increase non-fossil fuel energy and reduce carbon emissions. The plant's small capacity suggests a localized impact, supporting rural electrification or supplementing the grid.

Environmental context

Hydropower plants like Hangudi have a relatively low carbon footprint but can affect local aquatic ecosystems. The facility's small capacity minimizes large-scale environmental disruption, though water flow management may impact downstream habitats. In China, hydropower development is subject to environmental regulations that aim to balance energy production with ecological protection.

Frequently asked questions

Hangudi is located in China, at coordinates 25.6333° N, 99.005° E.

Hangudi has a capacity of 5 megawatts (MW), making it a small-scale hydroelectric facility.

Hangudi is a hydroelectric power plant, generating electricity from flowing water.

Hydroelectric plants in China must comply with national environmental impact assessments, water resource management laws, and renewable energy policies.

As a renewable energy source, Hangudi supports China's targets for increasing non-fossil fuel electricity generation and reducing carbon emissions.
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