Italy

Gissi power plant — 840 MW Natural Gas

Natural Gas Verified

Gissi power plant is a 840 MW gas power plant located in Italy. View location, capacity, and technical details.

Capacity
840 MW

Installed

Commissioned
2005

Year online

Owner
A2A

Operator

Location
42.05, 14.56

Coordinates

Insights

#52
largest in Italy
#900
largest Natural Gas worldwide
#2,869
largest worldwide
2005
6 yrs newer than avg
10
operated by A2A
36
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
840 MW
Commissioned
2005
Status
Operational
Owner
A2A
Country
Italy
Coordinates
42.050, 14.564

Carbon Footprint

Annual CO₂
1,622,527 t

tonnes / year

Lifetime CO₂
48,675,816 t

over ~30 yrs

Intensity
490 g

Est. gCO2/kWh

Annual emissions equivalent to

352,723
cars per year
216,337
homes per year
73,751,236
trees to offset

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

Nearby Plants

About this plant

The Gissi power plant, located in Italy, is a significant natural gas-fired power generation facility with a capacity of 840 megawatts (MW). Owned by A2A, a prominent energy company in Italy, Gissi plays a vital role in the country’s energy sector, contributing to the stability and reliability of the national grid. As Italy aims to enhance its energy security and transition towards cleaner energy sources, the Gissi power plant serves as a bridge to this transformation while meeting the demands of a growing economy.

Natural gas, the fuel type utilized by the Gissi power plant, is known for its relatively lower environmental impact compared to other fossil fuels like coal and oil. It is characterized by its high efficiency and lower carbon dioxide emissions when combusted. The combustion of natural gas primarily produces carbon dioxide and water vapor, with significantly fewer pollutants such as sulfur dioxide and particulate matter. This makes natural gas a preferred choice for power generation, especially in countries like Italy that are striving to reduce their greenhouse gas emissions and combat climate change.

The Gissi power plant is equipped with advanced technologies designed to optimize efficiency and minimize environmental impact. The facility employs combined cycle technology, which allows it to utilize the waste heat generated during electricity production to produce additional power. This process increases the overall efficiency of the plant, making it an effective tool in reducing energy waste and improving the sustainability of energy generation. As Italy continues to invest in modernizing its energy infrastructure, facilities like Gissi are essential in providing a reliable power supply while supporting the transition to more sustainable energy sources.

Regionally, the Gissi power plant holds strategic importance as it helps to balance the electricity supply and demand in the Abruzzo region and beyond. The plant’s capacity enables it to respond quickly to fluctuations in energy demand, thereby enhancing grid stability. Moreover, its location allows for efficient energy distribution to various parts of the country, ensuring that both urban and rural areas have access to reliable electricity. This reliability is particularly crucial during peak demand periods, such as hot summers or cold winters, when energy consumption typically rises.

In conclusion, the Gissi power plant is a critical component of Italy’s energy framework, providing substantial capacity through the use of natural gas. As the country navigates its energy transition, Gissi exemplifies how modern energy facilities can operate efficiently while aiming for lower environmental impacts. The plant’s role in supporting the national grid and its commitment to technological advancements underscores its significance not just regionally but in the broader context of Italy’s energy future.

More Natural Gas plants

Spotted an error?

Our data is community-verified. If any detail looks wrong or out of date, suggest a correction below — our team reviews and applies approved changes across all languages.