Mexico

Dulces Nombres combined cycle power station — 1,308 MW Natural Gas

Natural Gas Verified

Dulces Nombres combined cycle power station is a 1,308 MW gas power plant located in Mexico. View location, capacity, and technical details.

Capacity
1,308 MW

Installed

Commissioned
2010

Year online

Owner
Iberdrola

Operator

Location
25.72, -100.10

Coordinates

Insights

#22
largest in Mexico
#445
largest Natural Gas worldwide
#1,633
largest worldwide
2010
11 yrs newer than avg
66
operated by Iberdrola
16
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
1,308 MW
Commissioned
2010
Status
Operational
Owner
Iberdrola
Country
Mexico
Coordinates
25.718, -100.096

Carbon Footprint

Annual CO₂
2,526,507 t

tonnes / year

Lifetime CO₂
75,795,199 t

over ~30 yrs

Intensity
490 g

Est. gCO2/kWh

Annual emissions equivalent to

549,241
cars per year
336,868
homes per year
114,841,211
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 Dulces Nombres combined cycle power station, located in Mexico, stands as a significant contributor to the country’s energy sector, with a capacity of 1308 megawatts (MW). Owned by Iberdrola, a global leader in renewable energy and sustainable solutions, this power plant utilizes natural gas as its primary fuel source, aligning with Mexico’s efforts to enhance energy efficiency and reduce greenhouse gas emissions. The use of combined cycle technology allows the facility to achieve higher efficiency rates compared to traditional power plants, making it an essential asset in the transition toward cleaner energy generation.

Natural gas, which fuels the Dulces Nombres power station, is recognized for its lower carbon emissions compared to coal and oil. The combined cycle system operates by using gas turbines to generate electricity, which produces hot exhaust gases. These gases are then utilized to heat water in a steam generator, producing steam that drives a steam turbine for additional electricity generation. This dual process optimizes fuel usage and minimizes waste, resulting in a more sustainable energy production method. The station’s design and operation reflect modern engineering practices aimed at maximizing output while minimizing environmental impact.

The environmental implications of the Dulces Nombres power station are notable, particularly in the context of Mexico’s commitment to reducing its carbon footprint. By leveraging natural gas, which emits significantly less CO2 than other fossil fuels, the power station contributes to Mexico’s broader environmental goals. Furthermore, the transition from coal-fired power generation to gas-fired plants like Dulces Nombres is part of a national strategy aimed at enhancing air quality and reducing dependence on more polluting energy sources. Nevertheless, it is essential to consider the environmental concerns associated with natural gas extraction and the potential methane emissions throughout its lifecycle.

Regionally, the Dulces Nombres combined cycle power station plays a critical role in supporting the energy demands of Mexico, particularly as the country experiences economic growth and increasing electricity consumption. The facility not only provides a reliable power supply but also enhances the stability of the electrical grid in the region. Its strategic location allows for efficient distribution of electricity to nearby urban centers and industrial areas, facilitating economic development and improving energy access for local communities.

Overall, the Dulces Nombres combined cycle power station symbolizes Mexico’s ongoing transition towards a more sustainable energy future. With its significant capacity, advanced technology, and commitment to reducing environmental impact, it exemplifies the potential of natural gas as a bridge fuel in the quest for a cleaner energy landscape. As Mexico continues to navigate its energy challenges, the role of facilities like Dulces Nombres will be crucial in ensuring a balanced approach to energy generation that meets both economic and environmental objectives.

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