United States

Edwin I. Hatch Nuclear Power Plant — 1,848 MW Nuclear

Nuclear Verified

Edwin I. Hatch Nuclear Power Plant is a 1,848 MW nuclear power plant located in United States of America. View location, capacity, and technical details.

Capacity
1,848 MW

Installed

Commissioned
1975

Year online

Owner
Southern Nuclear

Operator

Location
31.93, -82.34

Coordinates

Insights

#132
largest in United States of America
#223
largest Nuclear worldwide
#955
largest worldwide
1975
13 yrs older than avg
2
operated by Southern Nuclear
16
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
1,848 MW
Commissioned
1975
Status
Operational
Owner
Southern Nuclear
Country
United States
Coordinates
31.934, -82.344
Wikipedia
Link

Carbon Footprint

Annual CO₂
165,122 t

tonnes / year

Lifetime CO₂
8,256,125 t

over ~50 yrs

Intensity
12 g

Est. gCO2/kWh

Annual emissions equivalent to

35,896
cars per year
22,016
homes per year
7,505,568
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 Edwin I. Hatch Nuclear Power Plant, located in Baxley, Georgia, is a significant facility in the United States’ energy sector, with a total generating capacity of 1,848 megawatts (MW). Owned and operated by Southern Nuclear, this power plant plays a critical role in supplying reliable and low-carbon electricity to the regional grid, thereby contributing to the overall energy stability and environmental goals of the country. The facility comprises two pressurized water reactors (PWRs), which are among the most common types of nuclear reactors used for electricity generation worldwide.

Nuclear power, as a fuel source, is characterized by its ability to generate large amounts of energy from a relatively small amount of fuel. The reactors at the Hatch plant utilize uranium fuel, which undergoes a process called nuclear fission. During fission, the nucleus of a uranium atom splits into smaller parts, releasing a significant amount of energy in the form of heat. This heat is then used to produce steam that drives turbines to generate electricity. The efficiency of nuclear power plants, including Hatch, is largely due to their ability to operate at high capacity factors, often exceeding 90%, which means they can produce electricity consistently and reliably throughout the year.

In terms of environmental impact, the Edwin I. Hatch Nuclear Power Plant is noteworthy for its low greenhouse gas emissions. Unlike fossil fuel-based power plants, nuclear facilities emit minimal carbon dioxide during operation, making them an essential component in the transition towards a more sustainable energy future. However, the plant, like all nuclear facilities, must manage radioactive waste generated from the fission process. Southern Nuclear employs rigorous safety protocols and waste management strategies to mitigate the environmental risks associated with nuclear energy production. The long-term storage of spent nuclear fuel remains a significant concern within the industry, and ongoing developments in waste management technologies are critical for the future of nuclear power.

Regionally, the Hatch power plant serves as a vital energy source for Georgia and surrounding states, significantly contributing to the reliability of the local electrical grid. It helps to balance supply and demand, especially during peak usage periods when energy consumption surges. Additionally, the plant supports local economies by providing jobs and contributing to tax revenues. The presence of the Hatch facility also fosters advancements in nuclear technologies and research, further enhancing the region’s position as a hub for energy innovation.

Overall, the Edwin I. Hatch Nuclear Power Plant exemplifies the role of nuclear energy in the United States’ broader energy strategy. As the country seeks to diversify its energy portfolio and reduce carbon emissions, facilities like Hatch are critical for achieving energy independence and sustainability.

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