United States

LaSalle Generating Station — 2,340 MW Nuclear

Nuclear Verified

LaSalle Generating Station is a 2,340 MW nuclear power plant located in United States of America. View location, capacity, and technical details.

Capacity
2,340 MW

Installed

Commissioned
1984

Year online

Owner
Exelon Nuclear

Operator

Location
41.25, -88.67

Coordinates

Insights

#75
largest in United States of America
#156
largest Nuclear worldwide
#610
largest worldwide
1984
4 yrs older than avg
13
operated by Exelon Nuclear
82
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
2,340 MW
Commissioned
1984
Status
Operational
Owner
Exelon Nuclear
Country
United States
Coordinates
41.246, -88.669

Carbon Footprint

Annual CO₂
209,084 t

tonnes / year

Lifetime CO₂
10,454,184 t

over ~50 yrs

Intensity
12 g

Est. gCO2/kWh

Annual emissions equivalent to

45,453
cars per year
27,878
homes per year
9,503,804
trees to offset

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

Nearby Plants

About this plant

LaSalle Generating Station, located in LaSalle County, Illinois, is a prominent nuclear power plant in the United States, boasting an impressive generating capacity of 2,340 megawatts (MW). Owned and operated by Exelon Nuclear, the facility was commissioned in 1984 and has since played a vital role in the energy sector, contributing significantly to the region’s power supply and the nation’s overall energy mix. As a nuclear facility, LaSalle utilizes uranium fuel to generate electricity through a process of nuclear fission, where the nucleus of an atom splits into smaller parts, releasing a substantial amount of energy in the form of heat. This heat is then used to produce steam, which drives turbines connected to generators, converting thermal energy into electrical energy. Uranium, being a non-renewable resource, is mined and processed into fuel assemblies, which are then utilized in the reactor core, making the plant capable of producing large amounts of energy with relatively low fuel requirements.

The LaSalle Generating Station holds a significant position in the United States’ energy landscape, particularly in the context of reducing greenhouse gas emissions. Nuclear power is recognized for its ability to generate electricity without the direct emission of carbon dioxide (CO2) and other harmful pollutants typically associated with fossil fuel combustion. As concerns about climate change and energy sustainability continue to grow, LaSalle’s contribution to the grid underscores the importance of nuclear energy in achieving a balanced and environmentally responsible energy portfolio. The plant provides a stable and reliable source of baseload power, which is crucial for meeting the continuous energy demands of the surrounding communities and industries.

In terms of environmental impact, while nuclear energy is often lauded for its low emissions, it is not without challenges. The management of nuclear waste, which remains radioactive for thousands of years, poses a significant concern. LaSalle, like other nuclear facilities, adheres to stringent safety protocols and regulatory standards set forth by the Nuclear Regulatory Commission (NRC) to ensure the safe handling and disposal of radioactive materials. The facility is equipped with advanced safety systems designed to prevent accidents and mitigate any potential risks associated with nuclear energy generation.

Regionally, LaSalle Generating Station serves as a critical asset for the local economy, providing jobs and supporting ancillary industries. Its operational presence contributes to the stability of the local electrical grid, which is essential for both residential and commercial consumers. The plant’s significant output helps to minimize reliance on fossil fuels, aligning with broader national goals for energy independence and sustainability. Overall, LaSalle Generating Station exemplifies the ongoing evolution of the energy sector in the United States, highlighting the dual imperatives of meeting energy demands while addressing environmental challenges.

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