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CENTRAL LOMA DE LA LATA SA540 MW Gas

Gas

The CENTRAL LOMA DE LA LATA SA power plant, located in Argentina at coordinates -38.5127, -68.6048, is an important gas-fired power generation facility in the region. With a capacity of 540 MW, this plant, operated by PAMPA ENERGIA and commissioned in 1999, plays a crucial role in enhancing the stability and reliability of Argentina's energy grid. Utilizing advanced gas turbine technology, the plant is capable of quickly ramping up generation to meet peak demand, making it an essential asset in the country's energy mix. Given Argentina's diverse energy resources, the CENTRAL LOMA DE LA LATA SA plant complements other forms of generation, contributing to a balanced approach in energy production. The facility's strategic significance is amplified by its position within the national grid, where it helps mitigate fluctuations in electricity supply and supports economic growth in the area. As Argentina continues to navigate its energy landscape, the role of gas-fired plants like CENTRAL LOMA DE LA LATA SA will remain pivotal in ensuring energy security and transitioning towards more sustainable practices.

Capacity
540 MW
Commissioning Year
1999

27 years old

Owner
PAMPA ENERGIA
Location
-38.5127°, -68.6048°

Argentina, South America

Location
Coordinates:: -38.512700, -68.604800
Open in Google Maps
Technical Details
Primary Fuel Type
Gas
Energy Source
Non-Renewable
Country
Argentina
Continent
South America
Data Source
Global Power Plant Database
Overview of CENTRAL LOMA DE LA LATA SA: A Key Gas-Fueled Power Plant in Argentina

CENTRAL LOMA DE LA LATA SA is a significant gas-fired power plant located in Argentina, with a total installed capacity of 540 megawatts (MW). Commissioned in 1999, the plant is owned and operated by PAMPA ENERGIA, one of the leading energy companies in the country. This facility plays a crucial role in Argentina's energy sector, particularly in meeting the growing demand for electricity in a country that has seen fluctuations in power supply and demand dynamics over the years. As a gas-fired power generation facility, CENTRAL LOMA DE LA LATA SA utilizes natural gas as its primary fuel source. Natural gas is considered a cleaner-burning fossil fuel compared to coal and oil, producing lower levels of carbon dioxide and other harmful emissions when combusted. The technology employed at the plant allows for efficient conversion of gas into electricity, contributing to the overall energy output while minimizing the environmental impact associated with traditional fossil fuel sources. In the context of Argentina's energy landscape, the plant serves not only as a significant contributor to the national grid but also as a stabilizing force in times of peak demand. With its strategic location and operational capabilities, CENTRAL LOMA DE LA LATA SA enhances the reliability of electricity supply in the region. The facility's output is vital for various sectors, including residential, commercial, and industrial users, helping to support economic growth and development throughout the country. From an environmental perspective, while natural gas is cleaner than other fossil fuels, the extraction and transportation of gas can still have ecological implications, including greenhouse gas emissions. Nevertheless, the transition to natural gas has been a part of Argentina's broader strategy to reduce its carbon footprint and embrace more sustainable energy practices. Additionally, the plant's operation has implications for energy security, especially in a country where energy imports and exports can significantly influence market prices and availability. As such, CENTRAL LOMA DE LA LATA SA stands out as a critical asset within Argentina's energy infrastructure, supporting both the current electricity needs and future energy policies aimed at fostering a more sustainable energy economy.

ArgentinaEnergy Profile
368
Total Plants
70.2 GW
Total Capacity
HydroGasCoalNuclear
Top Fuels
Gas Power Generation: An Overview of Its Mechanisms, Benefits, and Future Prospects

Gas power generation is a significant component of the global energy landscape, characterized by the use of natural gas to produce electricity. This process typically involves either gas turbines or combined cycle gas plants. In a gas turbine, compressed air is mixed with natural gas and ignited, producing high-temperature exhaust gases that spin a turbine connected to a generator. Combined cycle plants enhance efficiency by utilizing both gas and steam turbines. After the gas turbine generates electricity, the waste heat is used to produce steam, which drives a steam turbine, thereby maximizing energy extraction from the fuel.

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