SYR

Taqba (Al-Thawra) Hydroelectric Power Project Syria — 800 MW Hydroelectric

Hydroelectric Renewable Verified

Taqba (Al-Thawra) Hydroelectric Power Project Syria is a 800 MW hydro power plant located in Syrian Arab Republic. View location, capacity, and technical details.

Capacity
800 MW

Installed

Commissioned
2002

Year online

Owner
General Electricity Company of Syria

Operator

Location
35.87, 38.57

Coordinates

Insights

#2
largest in %s
#469
largest %s worldwide
#3,010
largest worldwide
2002
%d yrs newer than avg
2
operated by %s
2
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
800 MW
Commissioned
2002
Status
Operational
Owner
General Electricity Company of Syria
Country
SYR
Coordinates
35.872, 38.567

Estimated Carbon Footprint

Annual CO₂
67,277 t

tonnes / year

Lifetime CO₂
5,382,144 t

over ~%d yrs

Intensity
24 g

gCO₂ per kWh

Annual emissions equal to

14,625
cars / year
8,970
homes / year
3,058,036
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Stations

About this plant

The Taqba (Al-Thawra) Hydroelectric Power Project is a significant energy facility located in the Syrian Arab Republic. With an installed capacity of 800 megawatts (MW), it plays a crucial role in the country’s energy sector, supplying a substantial portion of Syria’s electricity needs. The power plant, which harnesses the potential energy of flowing water, primarily uses hydroelectric power as its fuel source. This renewable energy approach is vital for Syria, a nation that has faced numerous challenges in its energy infrastructure due to years of conflict and economic difficulty.

The Taqba facility is strategically situated on the Euphrates River, which is the longest river in the Middle East and a critical water source for the region. The hydroelectric process involves the conversion of kinetic energy from flowing water into mechanical energy, which is then converted into electrical energy through turbines. This method of electricity generation is not only renewable but also helps reduce dependence on fossil fuels, thereby contributing to a more sustainable energy strategy for Syria. Given the country’s limited access to oil and natural gas in recent years, the Taqba project has become even more vital in providing a reliable source of power.

In terms of environmental impact, hydroelectric power is generally considered to be cleaner than fossil fuel-based electricity generation. It produces minimal greenhouse gas emissions and helps reduce air pollution. However, large hydroelectric projects can have significant ecological consequences. The construction of dams can disrupt local ecosystems, affect fish populations, and alter water flow patterns, which may have downstream effects on agriculture and communities. In the case of the Taqba plant, efforts have been made to balance energy production with environmental stewardship, though ongoing monitoring is essential to mitigate any adverse effects.

Regionally, the Taqba Hydroelectric Power Project holds strategic significance not only for Syria but also for neighboring countries. The Euphrates River flows through multiple nations, and the management of its water resources is a critical issue for regional cooperation. The ability of Syria to harness hydroelectric power from the Euphrates can influence its relationships with its neighbors, particularly concerning water rights and energy trade. Given the plant’s capacity, it serves not only as a local power source but also has the potential to contribute to energy stability in the broader region.

In summary, the Taqba (Al-Thawra) Hydroelectric Power Project is a pivotal asset within Syria’s energy landscape. Its role as a renewable energy source is increasingly important amid ongoing challenges in the energy sector. While it offers a cleaner alternative to fossil fuels, careful management of its environmental impacts and regional relationships will be vital for ensuring its sustainability and effectiveness in the long term.

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