Japan cannot switch off coal overnight. It imports almost all of its energy, has limited land for solar and wind, and still relies on coal for close to 30% of its electricity. JERA, the country’s largest power generator, is betting on a different route: burning ammonia, a fuel that contains no carbon, alongside coal in existing plants. Here is how ammonia co-firing works, where JERA stands, and why the debate matters beyond Japan.

Why ammonia?

Ammonia (NH3) is made of nitrogen and hydrogen. When it burns, it produces water and nitrogen, not carbon dioxide. It is also easier to handle than pure hydrogen: it liquefies at about -33°C or under modest pressure, and the world already ships around 18 million tonnes of it a year for fertilizer.

For a country like Japan, that makes ammonia a practical way to carry hydrogen across the ocean. Existing coal boilers can be adapted with new burners rather than rebuilt, which protects billions of dollars in assets that would otherwise become stranded.

JERA’s Hekinan plant

JERA, a joint venture of TEPCO Fuel & Power and Chubu Electric, operates the Hekinan Thermal Power Station in Aichi Prefecture, one of Japan’s largest coal plants. Its Unit 4 has a capacity of 1 gigawatt.

The 2024 demonstration

Between April and June 2024, JERA and engineering group IHI ran a large-scale test at Hekinan Unit 4, replacing 20% of the coal’s heat input with ammonia. It was the first time ammonia had been co-fired at this ratio in a commercial-scale coal unit. The companies reported stable operation and nitrogen oxide (NOx) emissions at or below those of coal-only firing, which had been the main technical concern. Sulfur oxides fell in line with the reduced coal use.

From test to commercial operation

JERA now plans to run Hekinan Unit 4 at 20% ammonia commercially from the fiscal year starting April 2029. The project secured a 15-year government subsidy under Japan’s Hydrogen Society Promotion Act, which covers the price gap between ammonia and coal.

Where the ammonia will come from

A single 1 GW unit at 20% co-firing needs about 500,000 tonnes of ammonia a year. To secure it, JERA joined CF Industries and Mitsui & Co. in the Blue Point project in Louisiana, a roughly $4 billion plant that will capture and store the CO2 from production. JERA expects to import about 490,000 tonnes a year from the project, most of it for Hekinan.

Item Detail
Plant Hekinan Thermal Power Station, Unit 4 (1 GW), Aichi
Demonstration 20% co-firing, April–June 2024, with IHI
Commercial start Fiscal 2029 (planned)
Ammonia required About 500,000 tonnes per year
Main supply Blue Point, Louisiana (CF Industries, JERA, Mitsui)
Policy support 15-year price-gap subsidy

The long-term roadmap

JERA’s stated goal is net-zero CO2 by 2050. The plan moves in stages:

Japan’s government also promotes the technology across Southeast Asia, where young coal fleets in Indonesia, Vietnam and the Philippines face the same problem of how to cut emissions without closing new plants.

The criticism

Ammonia co-firing has strong critics, and the debate shapes how investors and buyers view the technology.

Why it matters for overseas partners

Conclusion

Ammonia co-firing is not a quick fix for coal, and its climate value depends on how the ammonia is made. But Japan has moved it from the laboratory to a 1 GW unit and toward a commercial start in 2029, with supply contracts and subsidies in place. Whether it becomes a bridge to zero-carbon power or a way to extend coal will depend on how fast the co-firing ratio rises after that.

Interested in Japanese business opportunities?

Whether you're looking for technology partners, engineering talent, or market insights — we can help connect you with the right Japanese organizations.

Get in Touch →