Shantou Longtian "Fishery-PV Complementary" Power Generation Project
Product Introduction:

Fishery-Solar Complementary Project

Chaonan District, Shantou City, Guangdong Province

Project Installed Capacity: 400 MWp

Annual Power Generation: 452,000 MWh

Annual Carbon Emissions Offset: 428,000 tons

Grid-Connection Completion Date: June 2025


Agri-Solar Complementary is an innovative integrated model that combines photovoltaic power generation with agricultural production. Under this model, photovoltaic panels are erected at a specific height above farmland or agricultural facilities, allowing for moderate sunlight penetration to ensure the normal growth of underlying crops, vegetables, fruit trees, or medicinal herbs.

While efficiently utilizing land resources and generating clean electricity, this model simultaneously ensures the orderly conduct of agricultural production, thereby achieving a dual benefit of both energy output and agricultural revenue. This approach not only enhances land utilization efficiency but also helps mitigate the impact of extreme weather on crops through the shading provided by the photovoltaic panels, fostering the synergistic development of green agriculture and sustainable energy.


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7th Floor, Building E, Longjing Science and Technology Park, No. 335 Bulong Road, Bantian Subdistrict, Longgang District, Shenzhen, Guangdong Province

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Product Overview

Product Introduction

Fishery-Solar Complementary Project

Chaonan District, Shantou City, Guangdong Province

Project Installed Capacity: 400 MWp

Annual Power Generation: 452,000 MWh

Annual Carbon Emissions Offset: 428,000 tons

Grid-Connection Completion Date: June 2025


Agri-Solar Complementary is an innovative integrated model that combines photovoltaic power generation with agricultural production. Under this model, photovoltaic panels are erected at a specific height above farmland or agricultural facilities, allowing for moderate sunlight penetration to ensure the normal growth of underlying crops, vegetables, fruit trees, or medicinal herbs.

While efficiently utilizing land resources and generating clean electricity, this model simultaneously ensures the orderly conduct of agricultural production, thereby achieving a dual benefit of both energy output and agricultural revenue. This approach not only enhances land utilization efficiency but also helps mitigate the impact of extreme weather on crops through the shading provided by the photovoltaic panels, fostering the synergistic development of green agriculture and sustainable energy.


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