Overview
Xirokambi is a 6 MW solar PV facility located in Greece. The plant contributes to the country's renewable energy capacity under the EU Renewable Energy Directive III framework.
Xirokambi is a solar photovoltaic (PV) power plant located in Greece, with a capacity of 6 MW. The facility is operational and contributes to the country's growing renewable energy portfolio. Solar PV plants of this scale are common in Greece, leveraging the region's high solar irradiance. The plant operates under Greece's national renewable energy framework, which aligns with the EU Renewable Energy Directive III (2023/2413), targeting 42.5% renewable energy by 2030. Greece has implemented feed-in tariffs and grid connection policies to support solar PV development, making projects like Xirokambi viable. Xirokambi's electricity is fed into the Greek grid, supporting local energy needs and reducing reliance on fossil fuels. The facility's location in the Peloponnese region benefits from ample sunlight, maximizing energy generation. Solar PV plants like Xirokambi play a key role in Greece's energy transition and climate goals.
Environmental context
Solar PV plants like Xirokambi have a low environmental footprint during operation, with no emissions or water use. However, land use for solar arrays can impact local ecosystems. In Greece, solar installations are often sited on agricultural or marginal lands, balancing energy production with environmental conservation. The high solar resource in the region makes solar PV a sustainable choice.
Frequently asked questions
The Xirokambi solar PV plant is located in Greece, near the coordinates 36.9545 N, 22.4902 E, in the Peloponnese region.
The Xirokambi solar plant has a capacity of 6 megawatts (MW), making it a small to medium-scale solar PV facility.
The Xirokambi plant uses solar photovoltaic (PV) technology to convert sunlight into electricity.
Greece aims to achieve 42.5% renewable energy by 2030 under the EU Renewable Energy Directive III. Plants like Xirokambi contribute to this goal by adding solar capacity to the national grid.
Solar PV plants produce electricity without greenhouse gas emissions during operation, reducing reliance on fossil fuels. They also have low water consumption compared to conventional power plants.