Japan

Ikata Nuclear Power Plant — 1,456 MW Nuclear

Nuclear Verified

Ikata Nuclear Power Plant is a 1,456 MW nuclear power plant located in Japan. View location, capacity, and technical details.

Capacity
1,456 MW

Installed

Commissioned
2005

Year online

Owner
Shikoku Electric Power

Operator

Location
33.49, 132.31

Coordinates

Insights

#81
largest in %s
#256
largest %s worldwide
#1,333
largest worldwide
2005
%d yrs newer than avg
2
operated by %s
36
plants within 100 km

Technical Details

Fuel Type
Nuclear
Capacity
1,456 MW
Commissioned
2005
Status
Operational
Owner
Shikoku Electric Power
Country
Japan
Coordinates
33.491, 132.311
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
130,097 t

tonnes / year

Lifetime CO₂
6,504,826 t

over ~%d yrs

Intensity
12 g

gCO₂ per kWh

Annual emissions equal to

28,282
cars / year
17,346
homes / year
5,913,478
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 Ikata Nuclear Power Plant, located in the Ehime Prefecture of Japan, is a significant facility in the country’s energy landscape, boasting a total generation capacity of 1,456 megawatts (MW). Owned and operated by Shikoku Electric Power, this nuclear power plant plays a crucial role in providing a stable and reliable source of electricity for the region. As Japan continues to navigate the complexities of energy production and consumption, the Ikata facility stands out as a key player in the transition towards sustainable energy practices while addressing the challenges posed by fossil fuel dependency.

The power plant utilizes nuclear fuel, specifically enriched uranium, to generate electricity through a process called nuclear fission. In this process, uranium atoms are split apart, releasing a substantial amount of energy. The Ikata facility operates using pressurized water reactors (PWR), which are designed to maintain high efficiency and safety standards. The reactor core is submerged in water, which acts as both a coolant and a neutron moderator, enhancing the overall energy output while ensuring the integrity of the reactor is maintained. The technology employed at Ikata is representative of modern nuclear power generation, emphasizing safety and reliability.

In terms of environmental impact, the Ikata Nuclear Power Plant has both positive and negative aspects. On one hand, nuclear power generation produces minimal greenhouse gas emissions during operation, contributing to Japan’s efforts to reduce its carbon footprint and combat climate change. This is particularly important as the country has set ambitious targets for reducing emissions in line with international agreements. On the other hand, the challenges associated with nuclear waste management and the potential risks of accidents pose significant concerns for both local communities and the broader environment. Following the Fukushima Daiichi nuclear disaster in 2011, public perception of nuclear energy in Japan has shifted, leading to increased scrutiny and regulatory measures for plants like Ikata.

Regionally, the Ikata Nuclear Power Plant is vital to the local economy and energy security. It provides a substantial proportion of the electricity consumed in Shikoku, contributing to the stability of the grid in a region that has limited access to other energy resources. The plant also generates employment opportunities and stimulates local businesses through its operations. The integration of nuclear energy into the regional energy mix helps ensure a diverse and resilient energy portfolio, which is essential for meeting the demands of a growing population and industrial sector.

In conclusion, the Ikata Nuclear Power Plant is a pivotal facility in Japan’s energy framework, offering a blend of technological innovation and regional significance. While it helps reduce reliance on fossil fuels and curtails greenhouse gas emissions, the ongoing dialogue surrounding safety, waste management, and public acceptance remains critical as Japan continues to evolve its energy strategy.

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