Overview
Makascı Mühendislik is a 10 MW operational Solar PV facility in Turkey, contributing to the country's growing renewable energy capacity.
Makascı Mühendislik is a solar photovoltaic (PV) power plant located in Turkey, with coordinates 38.5272° N, 31.6121° E. The facility has an installed capacity of 10 megawatts (MW) and is currently operational, adding to Turkey's renewable energy portfolio. The plant utilizes solar PV technology to convert sunlight into electricity. Turkey has been expanding its renewable energy sector under national targets and regulatory frameworks, including feed-in tariffs and licensing exemptions for smaller-scale projects. The 10 MW scale places this facility in the small-to-medium category for utility-scale solar in the region. As a solar PV installation, Makascı Mühendislik generates clean electricity without direct emissions, supporting Turkey's goals for energy diversification and reduced reliance on fossil fuels. The plant's output is fed into the national grid, contributing to local energy supply and grid stability.
Environmental context
Solar PV plants like Makascı Mühendislik have a low environmental footprint during operation, with no air or water emissions. However, land use for solar arrays can impact local ecosystems and agriculture. In Turkey's central region, where this facility is located, solar development must balance with semi-arid landscapes and biodiversity. Proper siting and management minimize visual and land-use impacts.
Frequently asked questions
Makascı Mühendislik is a solar PV plant located in Turkey, at coordinates 38.5272° N, 31.6121° E.
The facility has an installed capacity of 10 megawatts (MW), making it a small-to-medium scale solar installation.
It uses solar photovoltaic (PV) technology to convert sunlight into electricity.
Turkey offers feed-in tariffs and licensing exemptions for renewable energy projects, along with national targets to increase solar capacity under its Renewable Energy Support Scheme (YEKDEM).
Solar PV plants have minimal operational emissions but require land area, which can affect local habitats. Proper siting and management reduce these impacts.