Power & Sustainability explores the future of sustainable energy within the maritime sector, providing our members with insights and discussion on emerging technologies, practical solutions and policy developments.
You can expect topics such as renewable energy innovations, energy efficiency strategies and alternative fuels.
Innovative LNG transfer infrastructure is improving safety, efficiency and operational flexibility across maritime energy operations. By examining specialised manifold design, transfer interfaces and ship-to-shore integration, the work addresses key engineering challenges in fuel handling. Insights highlight opportunities to streamline LNG logistics, strengthen reliability and support evolving low-carbon maritime energy networks.
Selecting the right mooring system is critical to the performance and economics of floating storage and regasification units. Evaluating jetty nearshore and offshore solutions researchers identified key trade-offs and developed a practical decision framework supporting owners operators and port authorities in optimising project-specific designs reducing risk improving flexibility and resilience.
Microalgae oil is emerging as a promising low-carbon marine fuel. Engine testing of pure and blended Schizochytrium fuel demonstrated significant reductions in NOx and carbon monoxide emissions despite efficiency and fuel-consumption trade-offs at higher loads. The findings highlight renewable biofuels’ potential to support cleaner shipping and emissions compliance efforts globally.
Meeting IMO emissions goals requires more than efficiency technologies. This analysis examines speed reductions, wind propulsion, alternative fuels, waste-derived energy sources, and renewable fuel availability. It highlights supply-chain constraints, transitional pathways, and the growing role of shipping as a major future liquid-fuel consumer, shaping decarbonisation strategies worldwide over coming decades.
Liquefied natural gas bunkering is creating a new class of maritime support vessel. Drawing on extensive experience in floating LNG infrastructure and gas carrier design, engineers are developing robust bunker-vessel concepts to enable global fuel supply networks. The trend highlights LNG’s transitional role in shipping’s pathway toward lower-carbon operations worldwide.
Recovering LNG cryogenic energy for onboard freshwater production could significantly improve the sustainability of LNG-fuelled vessels. By integrating atmospheric water generation and distillation systems with regasification processes, researchers achieved notable efficiency gains and reduced energy consumption. The concept demonstrates a practical approach to resource recovery, operational efficiency, and maritime decarbonisation overall.
LNG carrier conversions are emerging as a faster, lower-cost route to expanding gas import infrastructure. By transforming existing vessels into floating storage and regasification units, operators can significantly reduce capital expenditure and deployment timelines. The approach strengthens energy security, improves market responsiveness, and supports growing global natural-gas demand efficiently today.
Dedicated LNG bunkering vessels and barges are rapidly expanding to support growing adoption of gas-fuelled shipping. Tracking successive generations of newbuilds and conversions, the analysis highlights evolving transfer capabilities, specialised fuel-handling systems, and accelerating global infrastructure development. The trend underscores LNG’s emerging role in lower-emission maritime operations worldwide today ahead.
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