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In the future, the average annual power generation will reach 1.9 billion kilowatt-hours, and the first large-scale new energy landscape base project in the Yangtze River Delta will be connected to the grid smoothly.

2025-04-06 Update From: SLTechnology News&Howtos shulou NAV: SLTechnology News&Howtos > IT Information >

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Shulou(Shulou.com)11/24 Report--

CTOnews.com, December 22, according to CCTV news, on December 21, the first batch of units of the first large-scale new energy scenery base project in the Yangtze River Delta-- the three Gorges Energy 1.2 million kilowatt scenery Storage Base Project in the south of Fuyang, Anhui Province (referred to as "Fuyang Base Project") were successfully connected to the grid.

The Fuyang base project adopts the new energy base development mode of the organic combination of wind power, photovoltaic, energy storage and subsidence area management, which mainly includes 650000 kilowatt photovoltaic power station and 550000 kilowatt wind farm, as well as a 300MW / 600MW energy storage power station. This time, the grid-connected is the 250000 kilowatt floating photovoltaic power station in the first phase of the Fuyang base project.

Data from the three Gorges Group show that after all the Fuyang base projects are completed and connected to the grid, the average annual power generation will reach 1.9 billion kilowatt hours, saving about 600000 tons of standard coal and reducing carbon dioxide emissions by about 1.57 million tons.

CTOnews.com learned that the planned land for photovoltaic power stations included in the Fuyang landscape storage base project are all idle water surfaces in coal mining subsidence areas. Based on the principle of "using light to raise water, clean water to raise green, and water and light to complement each other", the over-rapid reproduction of algae is restrained through rational layout, and fishery culture is developed on the basis of conventional power generation income combined with the "fishing-light complementary" model, so as to realize the transformation of water environment. Build a shallow lake water ecosystem with the ability of self-regulation.

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