Daya Bay Nuclear Power Plant is a 1,968 MW nuclear power plant located in China. View location, capacity, and technical details.
Installed
Year online
Operator
Coordinates
Insights
Location
Technical Details
- Fuel Type
- Nuclear
- Capacity
- 1,968 MW
- Commissioned
- 1993
- Status
- Operational
- Owner
- China General Nuclear Power Group
- Country
- China
- Coordinates
- 22.597, 114.543
- Wikipedia
- Link
Carbon Footprint
tonnes / year
over ~50 yrs
Est. gCO2/kWh
Annual emissions equivalent to
Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator
Nearby Plants
Castle Peak Power Station
China · Coal
Castle Peak Power Station
China · Coal
Guangdong Shajiao power complex
China · Coal
Ling Ao
China · Nuclear
Shanwei Honghaiwan power station
China · Coal
Black Point Power Station
China · Natural Gas
About this plant
The Daya Bay Nuclear Power Plant, located in the Daya Bay area of Guangdong province, China, is one of the country’s most significant nuclear facilities, with a total electrical generating capacity of 1968 megawatts (MW). Commissioned in 1993, the plant has played a crucial role in China’s energy sector, contributing to the country’s efforts to diversify its energy sources and reduce reliance on fossil fuels. The facility primarily utilizes nuclear fuel, specifically enriched uranium, to produce electricity through a process of nuclear fission. This process involves splitting the nuclei of uranium atoms, which releases a substantial amount of energy used to heat water, produce steam, and drive turbines for electricity generation. The Daya Bay plant comprises two pressurized water reactors (PWRs), which are known for their safety features and efficiency in power production.
In the context of China’s rapid industrialization and urbanization, the Daya Bay Nuclear Power Plant has been instrumental in meeting the growing energy demand of the region. The plant supplies a significant portion of electricity to Hong Kong and the Guangdong province, thus enhancing regional energy security and stability. The strategic location of the plant, along the South China coast, allows it to effectively serve urban centers and industrial hubs in the vicinity, thereby supporting economic growth and development.
The environmental impact of the Daya Bay Nuclear Power Plant has been a focal point of discussion, particularly in the context of global concerns over climate change and pollution. Nuclear power is recognized for its low greenhouse gas emissions during operation, making it a cleaner alternative to coal and gas-fired power plants. The Daya Bay facility has contributed to the reduction of carbon emissions in the region, aligning with China’s goals to transition towards more sustainable energy practices. However, as with all nuclear facilities, challenges related to radioactive waste management and potential risks associated with nuclear accidents have been subjects of ongoing scrutiny and public concern.
Regionally, the Daya Bay Nuclear Power Plant holds significance not only for its energy output but also for its role in fostering technological advancement and collaboration in nuclear energy. The plant has served as a model for subsequent nuclear projects in China, promoting advancements in reactor design and safety protocols. Moreover, Daya Bay has facilitated international partnerships and knowledge exchange, particularly in the realm of nuclear safety and regulatory practices.
In summary, the Daya Bay Nuclear Power Plant stands as a vital component of China’s energy landscape, contributing to the country’s electricity supply while emphasizing the importance of nuclear power in achieving environmental sustainability and energy security. Its operational efficiency, combined with its environmental advantages, underscores its significance in the broader context of China’s energy transition.
More Nuclear plants
Spotted an error?
Our data is community-verified. If any detail looks wrong or out of date, suggest a correction below — our team reviews and applies approved changes across all languages.