Renewable fuel pathways for maritime transport

Vessel type, route, cargo requirements, engine technology, onboard storage and port infrastructure all influence the choice of maritime fuel. Renewable pathways such as e-methanol, e-methane and e-ammonia may support selected longer-distance operations where direct electrification is more difficult. Each option must be assessed according to lifecycle emissions, fuel handling, safety and well-to-wake performance.

Short-distance vessels may have stronger opportunities for direct electrification, while longer routes may require energy-dense gaseous or liquid fuels. The appropriate pathway should be evaluated on a well-to-wake basis.

The role of e-fuels in maritime transport depends on vessel type, route, engine technology, fuel availability and port infrastructure. Renewable pathways such as e-methanol, e-methane and e-ammonia may support longer-distance operations where direct electrification is more difficult. Each option should be assessed using verified lifecycle emissions and well-to-wake performance.

What Must Be Evaluated

  • Lifecycle emissions

  • Renewable electricity sourcing

  • Fuel pathway suitability

  • Vessel and engine compatibility

  • Port infrastructure readiness

  • Fuel handling and safety requirements