United States

John Sevier — 997 MW Natural Gas

Natural Gas Verified

John Sevier is a 997 MW gas power plant located in United States of America. View location, capacity, and technical details.

Capacity
997 MW

Installed

Commissioned
2011

Year online

Owner
Tennessee Valley Authority

Operator

Location
36.38, -82.96

Coordinates

Insights

#399
largest in %s
#699
largest %s worldwide
#2,496
largest worldwide
2011
%d yrs newer than avg
60
operated by %s
24
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
997 MW
Commissioned
2011
Status
Operational
Owner
Tennessee Valley Authority
Country
United States
Coordinates
36.377, -82.964

Estimated Carbon Footprint

Annual CO₂
1.9M t

tonnes / year

Lifetime CO₂
57.8M t

over ~%d yrs

Intensity
490 g

gCO₂ per kWh

Annual emissions equal to

418,607
cars / year
256,746
homes / year
87.5M
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 John Sevier Power Plant, located in the United States, is a significant natural gas-fired power generation facility owned by the Tennessee Valley Authority (TVA). Commissioned in 2011, the plant boasts a capacity of approximately 996.9 megawatts (MW), making it one of the prominent contributors to the region’s energy supply. The facility operates primarily on natural gas, a fuel type that has become increasingly important in the United States due to its availability, efficiency, and relatively lower environmental impact compared to traditional coal-fired power plants.

Natural gas is a fossil fuel that consists primarily of methane. It is extracted from underground reservoirs and is often transported via pipelines. Natural gas plants, such as the John Sevier Power Plant, utilize combined-cycle technology, which allows for greater efficiency by capturing and reusing exhaust heat from gas turbines to generate additional electricity through steam turbines. This dual process results in higher overall efficiency rates, often exceeding 60%, compared to conventional power plants.

The role of the John Sevier Power Plant in the country’s energy sector is vital, particularly in the Tennessee Valley region. As part of the TVA’s mission to provide reliable and affordable electricity, the plant plays a crucial role in meeting peaking demand during times of high energy consumption, such as hot summer days when air conditioning use surges. By utilizing natural gas, the plant provides a flexible and responsive energy source that can be ramped up or down quickly, helping to stabilize the grid and complement renewable energy sources like wind and solar.

From an environmental perspective, natural gas is often touted as a cleaner alternative to coal and oil. It produces significantly lower levels of carbon dioxide, nitrogen oxides, and sulfur dioxide when combusted, contributing to reduced air pollution and greenhouse gas emissions. However, the extraction and transportation of natural gas can lead to methane emissions, a potent greenhouse gas. As such, while the John Sevier Power Plant represents a step toward cleaner energy production, it is essential to consider the entire lifecycle of natural gas in discussions about its environmental impact.

Regionally, the John Sevier Power Plant is significant not just for its energy output but also for its role in the local economy. By providing jobs during both the construction phase and ongoing operations, the plant contributes to the economic stability of the surrounding community. Additionally, as part of the TVA’s commitment to environmental stewardship, the facility incorporates measures to minimize its ecological footprint, ensuring that it operates in harmony with the natural surroundings.

In summary, the John Sevier Power Plant stands as a testament to the evolving landscape of the United States’ energy sector. With its considerable capacity, reliance on natural gas, and commitment to balancing economic needs with environmental protection, the plant plays a critical role in the ongoing transition toward a more sustainable and efficient energy future.

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