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WSC: Liner shipping defines the six critical pathways to zero carbon shipping

There will be no single or simple fuel technology solution, no single party that can set the pace, no single regulation that will drive the necessary change, states World Shipping Council.

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Transitioning global shipping from a carbon dependent industry into one that operates without greenhouse gas (GHG) emissions is a massive task. Container and roro carriers are already investing in the development of zero GHG technologies and are committed to enabling the industry’s transition to zero, but clear global regulations are needed.

The World Shipping Council (WSC) has identified six regulatory and economic pathways, all of which are critical for the nations of the UN International Maritime Organisation to address for a successful maritime energy transition. In June this year, the 78th session of the International Maritime Organisation’s Marine Environment Protection Committee (IMO MEPC 78) will consider further development of IMO’s GHG Strategy. There will be no single or simple fuel technology solution, no single party that can set the pace, no single regulation that will drive the necessary change.

The reality will be a complex multi-technology, multi-stakeholder development process that needs to be driven and supported by an array of mutually reinforcing global regulations. Maritime actors, technology providers, fuel innovators, organisations and regulators will need to work together to decarbonise shipping in line with the Paris agreement.

“Liner shipping understands the shared responsibility for GHG reductions in the maritime sector, and we don’t underestimate the challenge. We are committed to decarbonising shipping and have multiple ideas and projects in the pipeline. But to be able make these investments, to take the necessary risks, we – and all other maritime actors – need a regulatory framework that addresses the key strategic issues. We are now offering our perspective on the critical pathways the IMO should consider as it tackles this global challenge. Action is needed now by the governments of the IMO so as not to stall development but rather to support ambitious innovators and front runners,” says John Butler, President & CEO of WSC.

The path to zero emissions

WSC has identified six regulatory and economic pathways, all of which are critical for the IMO MEPC to successfully navigate the maritime energy transition:

  • A global price on carbon combined with dependable and broad-based “buy down” programmes that effectively level the playing field among newer low and zero GHG ships and the tens of thousands of ships that will still be burning conventional fuels. This will play a large role in making it possible for companies to put zero GHG ships on the water and to operate them competitively.
  • Transparent well-to-wake life cycle analysis of fuels, breaking out well-to-tank emissions and tank-to-wake emissions, combined with regulatory mechanisms to incentivize firstmovers for use of alternative fuels that offer significant GHG reductions even if they are not available from fully renewable sources from the start.
  • Integrated development of global production and supply of zero GHG fuels through partnerships between IMO member states and energy providers, as well as regulatory provisions that allow for flexibility in the initial stages of the energy transition, given that zero GHG fuels will not be available at the same time around the globe.
  • A Green Corridors Programme to accelerate an equitable fuel and technology transition, introducing zero GHG ships and fuels across trade lanes where the necessary shoreside energy infrastructure is first available. This will speed development of best practices and encourage IMO member states and interested parties to focus on government-togovernment initiatives and coordinated public-private investments to build the necessary production facilities and supply infrastructure.
  • New build standards that support the energy transition, such as requiring ships built after a certain date to be able to operate on zero GHG fuels or not allowing the construction of vessels that can only operate on fossil fuels after a certain date.
  • Applied R&D for shipboard and shoreside systems that allow the safe use of zero GHG fuels is necessary to put zero emission ships on the water. To avoid accidents and stranded assets, a significant increase in the level of R&D effort and investment is needed to develop the technologies necessary to use the most promising fuels onboard transoceanic ships.

The critical pathways have been further detailed and submitted by WSC to the IMO. Each and every one of these elements should be part of an expanded IMO GHG Strategy, and WSC looks forward to working with member states and organisations to develop and integrate these elements into explicit regulations and programmes.

Moving forward together

“We are looking to decarbonise shipping as soon as possible and will continue to lead the way in enabling shipping’s transition to zero. But we cannot do this alone. If we are to decarbonise shipping in line with the Paris agreement, the governments of the IMO must work together. For the sake of future generations and the future of shipping, our focus in the coming years must be to develop and implement innovative, concrete and equitable global regulatory frameworks,” John Butler concludes.

“These are complicated matters and we do not pretend to have all the answers. What we do know is that we must develop these critical pathways together to address the climate challenge and transition the fleet to zero GHG ships.”

 

Photo credit: Chris Pagan on Unsplash
Published: 14 February, 2022

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LNG Bunkering

PIL’s LNG dual-fuel boxship “Kota Elok” arrives in Singapore on maiden call

As the first of 13 new 13,000 TEU vessels joining its fleet, Kota Elok is equipped to operate on LNG and low-sulphur fuel oil that helps reduce our greenhouse gas emissions.

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PIL's LNG dual-fuel boxship “Kota Elok” arrives in Singapore on maiden call

Singapore-based Pacific International Lines Pte Ltd on Monday (20 July) said its first 13,000 TEU LNG dual-fuel container vessel, Kota Elok, recently made her maiden call to Singapore on 15 July.

As the first of 13 new 13,000 TEU vessels joining its fleet, Kota Elok is equipped to operate on liquefied natural gas (LNG) and low-sulphur fuel oil that helps reduce our greenhouse gas emissions. 

The vessel also incorporated energy-saving features and digital technologies to reduce fuel consumption and enhance operational performance, as well as a bow windshield to improve aerodynamics, contributing to improved fuel efficiency and lower emissions over the course of long-haul voyages.

“Following Singapore, Kota Elok will continue her voyage on our East Coast Service 1 (ES1) route to South America, calling at ports in Brazil, Uruguay, and Argentina before returning to Asia,” the company said in a social media post. 

Kota Elok also became PIL’s first vessel to receive Lloyd’s Register certification for compliance with the IACS UR E26 and UR E27 cyber security requirements.

Developed by the International Association of Classification Societies (IACS), UR E26 and UR E27 are mandatory cyber resilience requirements for newbuild vessels contracted from 1 July 2024. 

 

Photo credit: Pacific International Lines
Published: 21 July, 2026

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LNG Bunkering

CIMC SOE secures order for 12,000-cbm LNG bunkering vessel from Sinopec Clean Energy

Once operational, the vessel is expected to strengthen Sinopec’s domestic coastal LNG bunkering network and help address gaps in China’s alternative fuel bunkering infrastructure.

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CIMC SOE secures order for 12,000-cbm LNG bunkering vessel from Sinopec Clean Energy

China’s Nantong CIMC Sinopacific Offshore & Engineering Co., Ltd. (CIMC SOE) recently signed a contract with Sinopec (Beijing) Clean Energy Co., Ltd. to build a 12,000-cubic metre (m3) LNG bunkering vessel, according to Chinese maritime media.

The vessel is scheduled for delivery in 2028 and will support Sinopec’s efforts to expand its presence in the marine clean energy sector.

Once operational, the vessel is expected to strengthen Sinopec’s domestic coastal LNG bunkering network and help address gaps in China’s LNG bunkering infrastructure.

With this signing , CIMC Pacific Offshore Engineering’s LNG bunkering vessel orderbook is further strengthened, maintaining its leading position in the global market for small and medium-sized LNG bunkering vessels.

The contract also marked another milestone for CIMC SOE, which has seen a sharp increase in orders and business performance this year amid a surge in domestic LNG vessel demand.

 

Photo credit: Nantong CIMC Sinopacific Offshore & Engineering
Published: 21 July, 2026

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Nuclear

ABS awards AiP to Korean institute for SMR-powered container ship concept design

KRISO says AiP recognises the technical feasibility and safety of its concept design, marking an important milestone toward the development of next-generation nuclear-powered commercial ships.

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ABS awards AiP to Korean institute for SMR-powered container ship concept design

Korea Research Institute of Ships & Ocean Engineering (KRISO) on Thursday (16 July) received Approval in Principle (AiP) from the American Bureau of Shipping (ABS) for its concept design of a 15,000 TEU Small Modular Reactor (SMR)-powered container ship utilising Molten Salt Reactor (MSR) technology.

KRISO said the AiP recognises the technical feasibility and safety of its concept design, marking an important milestone toward the development of next-generation nuclear-powered commercial ships.

“This achievement demonstrates international recognition of KRISO’s technological capabilities in the rapidly evolving field of nuclear-powered shipping, supporting the transition toward low-carbon maritime transport,” it said. 

Building on this milestone, KRISO will continue advancing basic and detailed ship design, paving the way for future demonstration and commercialisation of SMR-powered vessels. 

Through continued R&D and international collaboration, KRISO remains committed to strengthening next-generation maritime technologies and contributing to the safe deployment of nuclear propulsion in the maritime industry.

 

Photo credit: Korea Research Institute of Ships & Ocean Engineering
Published: 21 July, 2026

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