Japan

Shiriuchi Power Station — 700 MW Coal

Coal Verified

Shiriuchi Power Station is a 700 MW coal power plant located in Japan. View location, capacity, and technical details.

Capacity
700 MW

Installed

Commissioned
1995

Year online

Owner
Hokkaido Electric Power Company

Operator

Location
41.58, 140.43

Coordinates

Insights

#152
largest in Japan
#1,102
largest Coal worldwide
#3,383
largest worldwide
1995
2 yrs older than avg
7
operated by Hokkaido Electric Power…
10
plants within 100 km

Technical Details

Fuel Type
Coal
Capacity
700 MW
Commissioned
1995
Status
Operational
Owner
Hokkaido Electric Power Company
Country
Japan
Coordinates
41.583, 140.425

Carbon Footprint

Annual CO₂
2,765,532 t

tonnes / year

Lifetime CO₂
110,621,280 t

over ~40 yrs

Intensity
820 g

Est. gCO2/kWh

Annual emissions equivalent to

601,203
cars per year
368,738
homes per year
125,706,000
trees to offset

Indicative estimate from standard life-cycle emission and capacity factors — not a measured figure. Open calculator

Nearby Plants

About this plant

Shiriuchi Power Station, with a capacity of 700 megawatts, is a significant coal-fired power plant located in Japan, specifically owned by Hokkaido Electric Power Company. This power station plays a crucial role in the energy sector of Japan, particularly in Hokkaido, where it contributes to the region’s electricity supply, helping to meet the demands of both residential and industrial consumers. As coal remains one of the primary sources of energy in many parts of the world, Shiriuchi Power Station exemplifies Japan’s reliance on fossil fuels, particularly in the wake of the country’s energy re-evaluation following the Fukushima Daiichi nuclear disaster in 2011, which led to a significant reduction in nuclear power generation.

Coal is the primary fuel type for Shiriuchi Power Station, and it is characterized by its high carbon content and energy density, making it an efficient choice for large-scale electricity generation. The facility utilizes advanced combustion technologies to optimize the burning of coal, aiming to maximize energy output while minimizing waste. Despite the efficiency of modern coal-fired plants, the combustion of coal is associated with the emission of greenhouse gases, particularly carbon dioxide, as well as other pollutants such as sulfur dioxide and nitrogen oxides. Consequently, the environmental impact of Shiriuchi Power Station is a subject of ongoing concern, especially in the context of Japan’s commitments to reduce carbon emissions and transition to cleaner energy sources. In recent years, Hokkaido Electric Power Company has been exploring ways to enhance the plant’s efficiency and reduce its ecological footprint, including considering carbon capture and storage technologies.

Regionally, Shiriuchi Power Station serves as a linchpin in Hokkaido’s energy infrastructure. The plant not only provides a substantial portion of the electricity needed for the region but also supports the stability of the local grid. Given Hokkaido’s geographic isolation and reliance on imported energy resources, the operational capacity of the Shiriuchi Power Station becomes even more critical. In addition to its role in power generation, the plant contributes to local economies by providing jobs and supporting associated industries. However, the future of the Shiriuchi Power Station and similar coal-fired facilities in Japan is under scrutiny as the country seeks to diversify its energy portfolio and reduce dependency on fossil fuels. This shift reflects a broader global trend towards sustainability and renewable energy sources, raising questions about the long-term viability of coal in Japan’s energy landscape.

In summary, Shiriuchi Power Station serves as a vital component of Japan’s energy framework, particularly in Hokkaido, where it provides a significant source of electricity through coal. While it is essential for meeting energy demands, the environmental implications of coal usage and the evolving energy policies in Japan present challenges and opportunities for the power station’s future.

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