BGR

Maritsa Itzok-2 power station — 1,602 MW Coal

Coal Verified

Maritsa Itzok-2 power station is a 1,602 MW coal power plant located in Bulgaria. View location, capacity, and technical details.

Capacity
1,602 MW

Installed

Commissioned
1979

Year online

Owner
TEC Maritsa Iztok 2 EAD

Operator

Location
42.25, 26.13

Coordinates

Insights

#2
largest in Bulgaria
#446
largest Coal worldwide
#1,149
largest worldwide
1979
18 yrs older than avg
1
operated by TEC Maritsa Iztok…
17
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
1,602 MW
Commissioned
1979
Status
Operational
Owner
TEC Maritsa Iztok 2 EAD
Country
BGR
Coordinates
42.254, 26.134

Estimated Carbon Footprint

Annual CO₂
6,329,118 t

tonnes / year

Lifetime CO₂
253,164,701 t

over ~40 yrs

Intensity
820 g

gCO₂ per kWh

Annual emissions equal to

1,375,895
cars / year
843,882
homes / year
287,687,160
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Stations

About this plant

The Maritsa Iztok-2 power station is a significant coal-fired power plant located in Bulgaria, with a total installed capacity of 1602 megawatts (MW). Commissioned in 1979, the facility is owned by TEC Maritsa Iztok 2 EAD and plays a crucial role in the national energy sector. As one of the largest power plants in Bulgaria, Maritsa Iztok-2 contributes significantly to the country’s electricity generation, particularly in an era where energy security and stability are of paramount importance.

The power station primarily utilizes coal as its fuel source, which is abundant in the region. The choice of coal as a fuel type is historically rooted in Bulgaria’s energy production strategies, as coal is a locally available resource that supports energy independence. The plant operates using a variety of coal types, which are processed to optimize combustion efficiency and minimize operational costs. The use of coal also presents challenges related to emissions, necessitating continuous advancements in technology and regulatory compliance to meet environmental standards.

From a technical standpoint, Maritsa Iztok-2 employs several units capable of generating vast amounts of electricity. The design and construction of the plant incorporate various systems aimed at improving efficiency and reducing environmental impacts. Over the years, upgrades and retrofitting efforts have been made to enhance its operational capabilities, including the implementation of flue gas desulfurization systems to mitigate sulfur dioxide emissions, a significant contributor to air pollution. However, the plant still faces scrutiny due to its reliance on fossil fuels and the associated greenhouse gas emissions, prompting discussions on the transition toward more sustainable energy sources.

The environmental impact of the Maritsa Iztok-2 power station is a subject of ongoing debate. While it remains a key source of energy for Bulgaria, the ecological footprint of coal-fired plants is well-documented. Emissions from the plant contribute to local air quality issues and have implications for public health. The Bulgarian government, along with the European Union, has been pushing for stricter environmental regulations, which may affect the plant’s operational future. As Bulgaria strives to meet its commitments to reduce carbon emissions and transition to renewable energy sources, the role of coal plants like Maritsa Iztok-2 is increasingly scrutinized.

Regionally, Maritsa Iztok-2 not only serves Bulgaria but also contributes to the broader energy landscape of Southeast Europe. The plant’s output is vital for meeting domestic energy needs and supports neighboring countries through electricity exports. Its strategic location in the Maritsa Basin, an area rich in lignite coal, enhances its significance as a reliable power source. As Bulgaria navigates the complexities of energy transition, the Maritsa Iztok-2 power station remains a pivotal establishment in the ongoing dialogue about energy production, environmental responsibility, and regional energy cooperation.

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