Risk: Low Hydroelectric Power Plant Operational

Gansu Wuwei Zamusi Hydroelectric Power Plant, Gansu Province, China

China
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Overview

Gansu Wuwei Zamusi is a 23 MW hydroelectric power plant located in Gansu, China. It harnesses hydropower to contribute to the region's renewable energy generation.

Gansu Wuwei Zamusi is a hydroelectric power plant situated in Gansu Province, China, with a capacity of 23 MW. As a small-scale hydro facility, it plays a role in the local energy mix, supporting China's growing emphasis on renewable energy sources. The plant operates under China's national regulations for hydropower, which include environmental impact assessments and water resource management requirements. Hydroelectric technology is well-established in China, particularly in regions with suitable topography and water flow, such as Gansu. This facility contributes to the regional grid, providing clean electricity and helping to reduce reliance on fossil fuels. Its operation supports local energy security and aligns with China's goals for increasing renewable energy capacity.

Environmental context

Hydroelectric power generation has a relatively low carbon footprint compared to fossil fuel plants, but it can affect local aquatic ecosystems and water flow. The Gansu Wuwei Zamusi plant's location in a riverine environment requires careful management of water resources to balance power generation with ecological health. Proximity to populated areas may influence operational considerations regarding water usage and downstream impacts.

Frequently asked questions

Gansu Wuwei Zamusi is located in Gansu Province, China, at coordinates 37.7047 N, 102.5825 E.

The plant has a capacity of 23 megawatts (MW), classifying it as a small-scale hydroelectric facility.

It 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.

The plant supplies clean electricity to the regional grid, supporting renewable energy targets and reducing carbon emissions.
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