United States

Crystal River — 3,449 MW Natural Gas

Natural Gas Verified

Crystal River is a 3,449 MW gas power plant located in United States of America. View location, capacity, and technical details.

Capacity
3,449 MW

Installed

Commissioned
2003

Year online

Owner
Duke Energy Florida LLC

Operator

Location
28.97, -82.70

Coordinates

Insights

#11
largest in United States of America
#45
largest Natural Gas worldwide
#260
largest worldwide
2003
4 yrs newer than avg
14
operated by Duke Energy Florida…
22
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
3,449 MW
Commissioned
2003
Status
Operational
Owner
Duke Energy Florida LLC
Country
United States
Coordinates
28.966, -82.698

Estimated Carbon Footprint

Annual CO₂
6,662,019 t

tonnes / year

Lifetime CO₂
199,860,583 t

over ~30 yrs

Intensity
490 g

gCO₂ per kWh

Annual emissions equal to

1,448,265
cars / year
888,269
homes / year
302,819,065
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 Crystal River Power Plant, owned by Duke Energy Florida LLC, is a significant natural gas-fired power generation facility located in the United States. With a total generating capacity of 3,449 megawatts (MW), this plant has been operational since its commissioning in 2003 and plays a crucial role in the energy sector of Florida and the broader United States. As one of the modern gas-fired facilities, Crystal River contributes to the reliability and efficiency of the electricity supply in a region that is characterized by high demand, especially during the hot summer months when air conditioning usage peaks.

The power plant primarily utilizes natural gas as its fuel source, a choice that has become increasingly popular in the United States due to the abundance of natural gas reserves and advancements in extraction technologies, such as hydraulic fracturing. Natural gas is known for its lower emissions compared to traditional fossil fuels like coal and oil, making it a more environmentally friendly option for electricity generation. The combustion of natural gas produces significantly reduced levels of greenhouse gases, sulfur dioxide, and particulate matter, which helps to mitigate some of the environmental impacts associated with power generation. The shift towards natural gas facilities like Crystal River reflects broader trends in the energy sector aimed at reducing carbon footprints and transitioning to cleaner energy sources.

In terms of technical specifications, the Crystal River Power Plant is equipped with state-of-the-art gas turbines that enable efficient power generation and quick response times to fluctuations in electricity demand. The facility is designed to operate in a flexible manner, adjusting its output based on the needs of the grid, which is particularly important in a region where renewable energy sources such as solar and wind are becoming increasingly prevalent. This adaptability helps to balance the energy supply and maintain grid stability, especially as intermittent renewable sources contribute to the overall energy mix.

Regionally, the Crystal River Power Plant serves as a vital component of Florida’s energy infrastructure, supporting not only local communities but also contributing to the broader energy landscape of the Southeastern United States. With its significant capacity, the plant enhances energy security and reliability in a state known for its rapid population growth and economic development. The investment in natural gas infrastructure like that at Crystal River is aligned with the national energy strategy to promote cleaner, more sustainable energy sources while ensuring that electricity remains affordable and accessible to consumers.

Overall, the Crystal River Power Plant exemplifies a modern approach to energy generation, balancing the need for reliable electric power with environmental considerations. As the energy landscape continues to evolve, the role of facilities like Crystal River will be crucial in meeting future energy demands while striving for greater sustainability.

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