United States

Edwin I Hatch — 1,848 MW Nuclear

Nuclear Verified

Edwin I Hatch 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
1977

Year online

Owner
Georgia Power Co

Operator

Location
31.93, -82.34

Coordinates

Insights

#132
largest in United States of America
#223
largest Nuclear worldwide
#955
largest worldwide
1977
11 yrs older than avg
40
operated by Georgia Power Co
16
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
1,848 MW
Commissioned
1977
Status
Operational
Owner
Georgia Power Co
Country
United States
Coordinates
31.934, -82.345

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 is a significant energy facility located in the United States, specifically in Baxley, Georgia. Commissioned in 1977, the plant has a total electrical generating capacity of 1,848 megawatts (MW), making it one of the larger nuclear power plants in the country. Owned and operated by Georgia Power Company, a subsidiary of Southern Company, the plant plays a vital role in supplying electricity to millions of households and businesses across the region. It contributes substantially to Georgia’s energy grid, helping to meet the demands of a growing population and economy while also working towards the state’s energy goals.

The Edwin I Hatch plant utilizes nuclear fuel as its primary energy source, specifically uranium dioxide (UO2) pellets that are housed within fuel rods. The nuclear fission process generates heat, which is used to convert water into steam, driving turbines that produce electricity. The facility employs pressurized water reactor (PWR) technology, which is one of the most common types of nuclear reactors worldwide. The PWR system operates under high pressure to prevent the water from boiling, allowing for efficient heat transfer and power generation. This technology is recognized for its reliability and ability to provide a stable baseload power supply, which is crucial for balancing the intermittent nature of renewable energy sources.

In terms of environmental impact, the Edwin I Hatch Nuclear Power Plant is considered to have a relatively low carbon footprint compared to fossil fuel-based power generation. Nuclear energy produces minimal greenhouse gas emissions during operation, thus contributing to climate change mitigation efforts. However, the plant does generate radioactive waste, which requires careful management and long-term storage solutions to ensure safety and environmental protection. The facility adheres to stringent safety protocols and regulatory requirements set forth by the Nuclear Regulatory Commission (NRC) to minimize risks associated with nuclear power generation.

Regionally, the Hatch plant is significant not only for its capacity to provide reliable electricity but also for its economic contributions. It supports local jobs and stimulates the economy through the demand for services and materials related to plant operations and maintenance. Additionally, the presence of the plant enhances Georgia’s energy independence by diversifying the state’s energy mix, allowing for a reduced reliance on imported fossil fuels. As the energy landscape continues to evolve, the Edwin I Hatch Nuclear Power Plant remains a crucial asset in Georgia’s pursuit of a balanced and sustainable energy future, playing a pivotal role in the broader context of the United States’ energy sector.

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