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Alternative Fuels

ABS survey: LNG and hydrogen emerge as future bunker fuel frontrunners

LNG was the solution for IMO 2050 for 47% of respondents, while hydrogen was the answer for 40%; 8% opted for ammonia and 5% for methanol.

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Liquefied natural gas (LNG) and hydrogen are viewed as frontrunners to be the fuels that will help shipping reach IMO decarbonisation ambitions, according to a new survey conducted by classification and technical advisory service provider ABS earlier in October.

LNG was the solution to the 2050 emissions target for 47% of respondents to the ABS Future Fuels LinkedIn Survey, while hydrogen was the answer for 40%. Just 8% opted for ammonia and 5% for methanol.

LNG was again the dominant fuel option to get the industry to 2030 targets, securing the support of 64% of respondents, against 22% for hydrogen and 7% each for ammonia and methanol.

The results illustrate the challenges facing shipowners in developing fleets that meet and exceed IMO targets.

“Owners of internationally trading ships are facing increasingly complex investment decisions as they try to navigate the most efficient course to the low-carbon future, which is why ABS has moved to simplify the landscape by identifying three fuel pathways potentially open to shipping,” said Christopher J. Wiernicki, ABS Chairman, President and CEO.

“The first pathway is defined as ‘Light Gas’, using generally light, small molecule fuels with high energy content, but more demanding, mainly cryogenic fuel supply systems and storage. This group includes the relatively mature methane (as LNG) solution leading towards bio-derived or synthetic methane, and ultimately to hydrogen as fuel,” said Wiernicki.

“On this pathway, if methane slip is discounted, LNG can reduce GHG emissions by approximately 20%; bio-methane can be carbon neutral, while hydrogen is a zero-carbon fuel. Hydrogen can serve as the ultimate solution along this pathway, but it will necessitate significant technical advances, which may require a decade or more, until it becomes a practical solution.

“The second pathway is defined as ‘Heavy Gas’, by using generally heavier, more complex molecules, but with less demanding fuel supply and storage requirements than the light gas pathway. This group includes LPG, methanol and ethanol, leading to bio-derived or synthetic LPG/methanol and ultimately to ammonia.

He added: “On this pathway, methanol can reduce CO2 by approximately 10 percent, while bio-methanol can be carbon neutral, and ammonia is a zero-carbon fuel. While ammonia shows considerable promise as a fuel, the technology for its application still needs to be developed, and regulations must account for its particular safety considerations.

“The third pathway hinges on bio/synthetic fuels that are derived from renewable sources and can produce liquid fuels. These fuels have similar properties to diesel oil and thus are much less demanding in terms of new infrastructure and technologies onboard and can be utilized with minimal changes to current ship designs.

In the future, a third generation of biofuels, such as lignocellulosic or algae-based fuels could potentially provide the industry with almost 500 million tons of fuels annually, more than the current annual bunker demand. This group includes electro/synthetic Gas-to-Liquid (GTL) fuels produced though either carbon capture and electrolysis, or from converting biomass to syngas and then to liquid fuels such as methanol or diesel.”

But which particular pathway makes sense for a shipowner to focus on will depend on the operational profile and trade of the vessel, cautioned Wiernicki.

“In all likelihood, the fleet of the future will be fuelled by a variety of choices, including oil, that will be selected depending on the owner’s operational preferences,” he said. “Although we are fuel and technology agnostic, ABS focuses on working across the board to help owners not only reach their decarbonisation and sustainability targets but hit them successfully, while maintaining a laser focus on safety.”

 

Photo credit: ABS
Published: 28 October, 2020

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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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