Japan

Akō Power Plant — 1,200 MW Natural Gas

Natural Gas Verified

Akō Power Plant is a 1,200 MW gas power plant located in Japan. View location, capacity, and technical details.

Capacity
1,200 MW

Installed

Commissioned
2010

Year online

Owner
Kansai Electric Power Company

Operator

Location
34.74, 134.38

Coordinates

Insights

#99
largest in Japan
#527
largest Natural Gas worldwide
#1,870
largest worldwide
2010
11 yrs newer than avg
11
operated by Kansai Electric Power…
61
plants within 100 km

Technical Details

Fuel Type
Natural Gas
Capacity
1,200 MW
Commissioned
2010
Status
Operational
Owner
Kansai Electric Power Company
Country
Japan
Coordinates
34.742, 134.379

Estimated Carbon Footprint

Annual CO₂
2,317,896 t

tonnes / year

Lifetime CO₂
69,536,880 t

over ~30 yrs

Intensity
490 g

gCO₂ per kWh

Annual emissions equal to

503,890
cars / year
309,053
homes / year
105,358,909
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 Akō Power Plant, operated by Kansai Electric Power Company, is a significant natural gas-fired power generation facility located in Japan, with a total capacity of 1200 megawatts (MW). Commissioned as part of Japan’s efforts to diversify its energy portfolio and increase the efficiency of power generation, the Akō Power Plant plays a crucial role in ensuring a stable and reliable electricity supply in the Kansai region and beyond.

As a gas-fired power plant, Akō utilizes natural gas as its primary fuel source, which is considered to be one of the cleaner fossil fuels available. Natural gas combustion emits significantly lower amounts of carbon dioxide (CO2), sulfur dioxide (SO2), and particulate matter compared to coal or oil. This makes the Akō Power Plant a more environmentally friendly option within the context of Japan’s energy sector, especially in light of the country’s commitments to reduce greenhouse gas emissions and transition toward more sustainable energy sources. The facility employs advanced technologies to enhance its operational efficiency and minimize emissions further, contributing to the nation’s goals for cleaner energy production.

The Akō Power Plant is strategically important for Japan’s energy infrastructure. Given the country’s limited domestic energy resources, Japan relies heavily on imported fossil fuels, including natural gas, to meet its energy demands. The plant not only helps to stabilize the electricity supply but also plays a vital role in the regional grid, supporting both residential and industrial consumers. It serves as a balancing force in the energy mix, particularly during peak demand periods or when renewable energy sources, such as solar and wind, may be less reliable due to weather conditions.

In terms of its environmental impact, while natural gas is cleaner than other fossil fuels, the extraction, transportation, and processing of natural gas can still pose environmental challenges. Methane, a potent greenhouse gas, can be released during these processes, and the Akō Power Plant, like other gas facilities, must implement strict measures to minimize methane leaks. Moreover, the plant’s operation is closely monitored to ensure compliance with Japan’s environmental regulations, which are among the most stringent in the world.

Regionally, the Akō Power Plant contributes significantly to the local economy by providing jobs and stimulating ancillary industries related to energy production and maintenance. Its presence bolsters energy security in the Kansai region, which is a critical economic hub in Japan, housing numerous businesses and industries that rely on stable electricity supply.

In summary, the Akō Power Plant is an integral part of Japan’s energy framework, combining advanced technology with the utilization of natural gas to deliver power while addressing environmental concerns. Its role in enhancing energy security and supporting economic activity underscores its significance in a region that continues to navigate the complexities of energy production and consumption.

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