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GCMD, BCG survey highlights three maritime decarbonisation archetypes

Survey identified three decarbonisation archetypes within the shipping industry, differentiated in their outlook, investment appetite and the challenges faced.

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The Global Centre for Maritime Decarbonisation (GCMD) and Boston Consulting Group (BCG) conducted an industry survey to take stock of shipowners and operators’ progress in establishing six elements needed for the shipping industry to reach net zero, according to BCG on Wednesday (27 September). 

The survey saw strong participation from 128 shipowners and operators across vessel types, fleet sizes and geographies, which collectively own or operate 14,000 merchant vessels, and account for USD500 billion in revenue.

The duo found high decarbonisation ambitions: Most respondents viewed net zero as a strategic priority, and 77% had already set concrete decarbonisation targets. The industry has also mobilised resources to decarbonise: respondents are investing 2% of their revenues into green initiatives, and 87% have personnel working toward green objectives.

The path to net zero for shipowners and operators requires six elements:

  • A robust strategy and roadmap
  • Four specific decarbonisation levers to reduce emissions: operational efficiency, technological efficiency, fuel transition, and shipboard carbon capture
  • Enablers such as dedicated sustainability teams, strategic investments in green initiatives, internal carbon prices, and digitalization

While the industry has made some progress in adopting mature and cost-effective efficiency levers, adoption of complex or nascent levers remains low. Drop-in green fuels are constrained by costs and supply-side gaps, and optimism for future cleaner fuels is yet to translate into firm commitment.

The industry is now at a pivotal point, with many shipowners and operators ramping up their decarbonisation efforts. Three-quarters of respondents plan to increase investments in green initiatives. Stakeholders can build on this momentum with a variety of supportive actions. But to be effective, they need to tailor their interventions to address the specific challenges that shipowners and operators face at each stage of decarbonisation.

Three Decarbonisation Archetypes

GCMD and BCG saw three archetypes, differentiated in their outlook, investment appetite, and the challenges faced.

Frontrunners have the greatest ambitions and are willing to invest heavily. They are pushing boundaries, adopting even nascent decarbonisation levers, such as wind propulsion and air lubrication. A majority plan to pilot shipboard carbon capture solutions by 2025. Frontrunners are also planning to adopt methanol and ammonia as early as 2026 and 2029 respectively, and the availability of fuels and bunkering infrastructure will be critical to enabling adoption.

Followers believe in decarbonising their fleets, but have tighter investment thresholds and a near-term outlook. They have kept pace with Frontrunners in adopting mature and cost-effective efficiency levers, such as main engine improvements and slow steaming, but are behind in the adoption of nascent levers, such as wind propulsion and air lubrication.

Conservatives are still early in their decarbonisation journey, likely due to a lack of awareness and familiarity with the various decarbonisation levers, and the capabilities to assess and deploy them. They are best supported by measures that increase their familiarity with the levers and help contextualise them to their specific fleets and operational requirements.

The research highlights five key actions for stakeholders:

Conduct technical pilots and facilitate data sharing, especially for nascent levers

  • Create innovative financing mechanisms to de-risk adoption of less mature levers
  • Raise awareness, contextualize levers, and build capabilities, especially among Conservatives
  • Start to build out future fuels infrastructure at ports
  • Develop mechanisms to equalize and share the costs of levers across the ecosystem
  • Maritime decarbonization is a complex, critical endeavor. The successful implementation of these five key actions demands a whole-of-value-chain approach. By working together, stakeholders can transform the maritime sector into a beacon of environmental stewardship, and set a course for a greener future where decarbonization and commercial success go hand in hand.

Note: The GCMD-BCG Global Maritime Decarbonisation Survey report can be downloaded here.

Photo credit: Venti Views on Unsplash
Published: 28 September, 2023

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Biofuel

BHP and GCMD trial multi-feedstock B100 bio bunker fuel on bulk carrier

Bio-blend in the BHP and GCMD pilot is being used on a BHP-chartered bulk carrier “Berge Lyngor”, which was bunkered in Singapore in early May.

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BHP and GCMD trial multi-feedstock B100 bio bunker fuel on bulk carrier

BHP and the Global Centre for Maritime Decarbonisation (GCMD) on Wednesday (3 June) said they have blended biofuels from two distinct feedstocks—used cooking oil and waste animal fats —and introduced the lower-emissions marine fuel into a BHP-chartered bulk carrier as part of a pilot project.

The bio-blend in the BHP and GCMD pilot is being used on a BHP-chartered bulk carrier Berge Lyngor, owned and operated by Berge Bulk, transporting BHP iron ore from Western Australia to China. When run on bio-blend, the vessel has the potential to reduce well-to-wake greenhouse gas emissions by approximately 79 per cent per voyage compared to sailing on very low sulphur fuel oil (VLSFO).

The vessel bunkered in Singapore in early May with a B100 bio-blend comprising 50 percent tallow-derived biodiesel, sourced and supplied by HAMR Energy, and 50 per cent used cooking oil (UCOME) supplied by Mitsui & Co Energy Trading Singapore (METS).

Mitsui also blended the fuel and Dan-Bunkering coordinated and executed the bunkering operation, which was performed by Global Energy’s barge MT Maple.

The BHP and GCMD pilot will assess how biofuels from multiple feedstocks can be blended, handled, and introduced under real-world operating conditions using existing used cooking oil bunkering infrastructure.

At the same time, insights from this pilot will help identify solutions to challenges related to fuel quality, handling, traceability, and onboard vessel performance.

Biofuels for global shipping today rely heavily on used cooking oil – a feedstock whose availability is approaching its projected limits. Biofuel from waste animal fats presents a promising option to expand the supply of lower-emissions marine fuels.

The outcomes of the pilot are expected to shed light on the practical steps to integrate biofuel blends from different feedstocks into existing supply chains. The diversity of biofuels will provide shipowners and operators with greater flexibility to optimise fuel procurement based on cost, availability, and lifecycle emissions performance.

Biofuels derived from different feedstocks can exhibit varying properties that may impact operations, including potential corrosion from oxidation, fuel system clogging caused by wax formation, which this pilot aims to assess.

The pilot will trace and verify the biofuel blend’s integrity aimed at bolstering confidence in emissions reductions reporting. The pilot will also provide insights into how robust tracing can support future marine fuel supply chains where biofuels from multiple feedstocks with varying lifecycle greenhouse gas emissions footprints are blended together.

This project is co-funded by the Maritime and Port Authority of Singapore under the Maritime Innovation and Technology Fund (MINT).

 

Photo credit: Global Centre for Maritime Decarbonisation
Published: 3 June, 2026

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Biofuel

NYK starts one-year B100 bio bunker fuel trial on car carrier

In this trial, NYK will operate a car carrier continuously on B100 for one year to evaluate the impact on engines, fuel supply systems, and operational practices.

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NYK starts one-year B100 bio bunker fuel trial on car carrier

Japanese shipping firm NYK on Tuesday (2 June) said it has commenced a one-year long-term trial involving the continuous use of 100% biofuel (B100) on an NYK-operated car carrier. 

In this trial, NYK will operate a car carrier continuously on B100 for one year to evaluate the impact on engines, fuel supply systems, and operational practices. High-purity biofuels such as B100 are known to be susceptible to degradation from oxygen, light, and heat, raising concerns about the stability of such fuels during long-term use.

In this trial, the biofuel primarily comprises FAME (Fatty Acid Methyl Ester) derived from used cooking oil and similar feedstocks.

The initiative is designed to evaluate the fuel’s effects on the vessel’s equipment and verify operational safety under real-world conditions. 

Through this effort, NYK seeks to accumulate technical expertise that will support the broader use of high-purity biofuels and further accelerate efforts to reduce greenhouse gas (GHG) emissions.

NYK has been advancing the use of biofuels through various initiatives. In 2024, the company conducted a trial using biofuel blend B24 and subsequently expanded practical usage to B30. However, the company said there remains limited global experience with the long-term continuous use of B100.

“By collecting long-term operational data through this trial, NYK aims to accumulate valuable technical insights to support both the safe operation of vessels and the wider adoption of high-purity biofuels,” it said. 

 

Photo credit: NYK
Published: 3 June, 2026

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Ammonia

AM Green plans to build green ammonia plant at Indian port

Initiative also includes development of green ammonia handling, storage and bunkering infrastructure, pilot bunkering operations, safety procedures and training programmes, says VOC Port Authority.

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VO Chidambaranar (VOC) Port Authority on Friday (29 May) said it has signed a Memorandum of Understanding (MoU) with India’s ammonia producer AM Green Ammonia to collaborate in the development of a green ammonia production plant.

The plant will have a capacity of one million tonnes per annum (MTPA) at Tuticorin.

The initiative also includes development of green ammonia handling, storage and bunkering infrastructure, pilot bunkering operations, safety procedures and training programmes. 

The project is expected to support the development of green fuel corridors connecting VOC Port with major ports in Europe and Asia, thereby strengthening India’s position in the global green fuels value chain.

VOC Port also signed a Memorandum of Understanding (MoU) with Bureau Veritas (India) Pvt. Ltd., to collaborate on Green Port certification, emissions accounting, ESG reporting, safety validation, development of green bunkering practices, and establishment of a Centre of Excellence for green fuels and sustainability.

The port also plans for an upcoming 750 m³ green methanol bunkering facility.

 

Photo credit: Naveed Ahmed on Unsplash
Published: 3 June, 2026

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