Risk: Low Hydroelectric Power Plant Operational

Gansu Zhangye Heihe Longhui Small Scale Hydroelectric Power Plant, China

China
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Overview

Gansu Zhangye Heihe Longhui Small Scale is a 13 MW hydroelectric power plant in China. It generates renewable energy from hydropower, contributing to the local grid.

Gansu Zhangye Heihe Longhui Small Scale is a hydroelectric power plant located in China, with a capacity of 13 MW. As a small-scale hydropower facility, it plays a role in the country's renewable energy mix, supporting local electricity needs. The plant operates under China's regulatory framework for hydropower, which includes environmental impact assessments and water resource management. Hydropower is a well-established technology in China, with many small-scale plants contributing to rural electrification and grid stability. This facility contributes to reducing reliance on fossil fuels and supports China's goals for increasing renewable energy capacity. Its operation aligns with national policies promoting clean energy and sustainable development.

Environmental context

As a hydroelectric plant, Gansu Zhangye Heihe Longhui Small Scale has a low carbon footprint but may affect local aquatic ecosystems. The facility's location in a river system requires careful water management to balance power generation with ecological needs. Small-scale hydropower typically has less environmental impact than large dams, but still influences river flow and fish habitats.

Frequently asked questions

The plant is located in China, with coordinates approximately 25.1652° N, 98.1672° E.

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

The plant has a capacity of 13 megawatts (MW).

Hydroelectric plants in China must comply with the Water Law and Environmental Protection Law, including environmental impact assessments and water usage permits.

Small-scale hydropower provides renewable energy with low greenhouse gas emissions, though it requires careful management to minimize impacts on river ecosystems.
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