NYK Completes World-First Ship-to-Ship Ammonia Bunkering in Japan

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NYK Line and four Japanese partners completed what the companies describe as the world’s first ship-to-ship transfer of ammonia as marine fuel into an ammonia-fueled vessel on September 17, 2026, at Japan Marine United’s Ariake Shipyard in Kumamoto Prefecture. Ammonia was transferred from the 998-GT carrier Shoei Maru to NYK’s new 40,000-cbm ammonia-fueled medium gas carrier, which is being prepared for ammonia-fueled sea trials ahead of delivery in November. Japan Marine United, Nihon Shipyard, Mitsubishi Gas Chemical and Kokuka Sangyo participated with NYK. The amount of ammonia transferred and the bunkering rate were not disclosed. The receiving vessel is 180 metres long, will fly the Japanese flag and is already committed to Yara Clean Ammonia under a long-term charter.
Ammonia moves from one vessel directly into the fuel system of another
The September 17 operation supplied fuel ammonia from an existing ammonia carrier to NYK's new oceangoing ammonia-fueled gas carrier ahead of its first ammonia-powered sea trials.
Owned by Kokuka Sangyo
Fuel-supply vessel
180 m × 32 m
Receiving ammonia as propulsion fuel
Ammonia had previously been transferred ship-to-ship as cargo. This operation is being claimed as the first STS transfer where ammonia was bunkered specifically as fuel into an ammonia-powered ship.
Ammonia's toxicity requires dedicated detection, containment, emergency-release arrangements, procedures, training and exclusion controls that go beyond simply transferring another liquid fuel.
From Ammonia Cargo to Ammonia Fuel
| Date | Milestone | Vessels / Equipment | What Happened | What It Proved | Status |
|---|---|---|---|---|---|
| July 2024 | Ammonia bunkering boom receives ClassNK AiP | NYK / TB Global Technologies bunkering boom with emergency-release system | ClassNK granted Approval in Principle for an STS ammonia-fuel transfer system. | A dedicated connection and emergency-disconnection concept could satisfy classification review at the design stage. | Equipment AiP |
| June 2025 | Japan publishes ammonia bunkering guidelines | Applicable to ship-to-ship and other ammonia bunkering operations | National guidance addressed gas detection, emergency release, controlled areas, training and protective measures. | Japan established an operational framework before larger commercial ammonia-fuel activity began. | Rules Framework |
| September 2025 | Large-scale ammonia STS cargo transfer | BERLIAN EKUATOR → ECO ENCHANTED | Approximately 23,000 tonnes of liquid ammonia were transferred between ammonia carriers off Ceuta. | Large quantities of ammonia could be transferred STS under near-commercial cargo-transfer conditions. | Cargo Transfer |
| September 2026 | Operational ammonia bunker vessel enters service | Shenghang Yongle | A converted 5,500-cbm gas carrier was reported operationally ready for liquid-ammonia STS bunkering and received an ammonia-bunkering class certificate. | A dedicated bunker vessel could progress from design into operational readiness. | Bunker Vessel |
| September 17, 2026 | Ammonia bunkered as fuel | Shoei Maru → NYK 40,000-cbm AFMGC | Ammonia was transferred ship-to-ship directly into an ammonia-fueled vessel at JMU's Ariake Shipyard. | NYK describes this as the world's first STS ammonia bunkering operation to an ammonia-powered receiving vessel. | World-First Claim |
| Next | Ammonia-powered sea trials | NYK AFMGC | The newly bunkered ship is preparing to run its propulsion plant using ammonia during sea trials. | Moves the project from shore-based engine validation and fuel-transfer work into integrated vessel operation. | Upcoming |
| November 2026 | Scheduled commercial delivery | NYK AFMGC / Yara Clean Ammonia | The 40,000-cbm vessel is scheduled for completion and subsequent operation under its charter to Yara Clean Ammonia. | Creates an oceangoing commercial operating case combining ammonia cargo carriage and ammonia-fueled propulsion. | Scheduled |
Ammonia Bunkering Turnaround Model
Test how bunker quantity, transfer capacity and non-transfer time affect the total port window required for a future ship-to-ship ammonia fueling operation.
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