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Alternative Fuels

DNV: Decision and design support for future bunker fuel options for container ships

Container ships ordered today should be able to operate until the late 2040s provided that a viable propulsion system is chosen, highlights new DNV guidance.

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DNV Alternative fuels for containerships

For shipowners ready to order new ships today, the tough question is what fuel to build for. Answering that question is actually not as difficult as some may think, says Jan-Olaf Probst, Business Director Container Ships at DNV.

While the ultimate carbon-free propulsion technology has yet to be determined, there are some fairly safe assumptions for decision makers to go by – for example that the future ship fuel landscape is going to be more diversified than in the past, i.e. that certain fuels will be predominant on specific routes and/or for specific ship types.

Furthermore, there is currently no alternative to combustion engines in sight for ocean-going vessels. The crucial question is which fuel technology is the safest investment decision for the lifetime of a vessel built in the mid-2020s.

New DNV alternative fuels guidance document

To provide decision support to owners, DNV has published a guidance document called Alternative fuels for containerships. The paper should be viewed as a “living document”, says Probst – it will be amended over time as new findings become available. The first edition provides some general information as well as an in-depth discussion of LNG; chapters on other alternative fuels will follow soon, starting with methanol. “Since DNV has no vested interest in any particular fuel solution, our advice is entirely neutral, based on scientific facts, sound industry experience and feasibility calculations only,” stresses Probst. “Our main goal is to support the maritime industry in meeting the decarbonization targets.”

Strong arguments for LNG

The reason DNV decided to begin its discussion of alternative fuels with LNG is simple, Probst says. “LNG is fully established as a ship fuel and embedded in a comprehensive regulatory framework, in particular the IGF Code; LNG technology and expertise is mature and has been around for a long time. Moreover, LNG is the most frequently transported gas worldwide; LNG is the first gaseous fuel to have received full regulatory approval; there is proven know-how for building, bunkering and operating LNG-powered ships; and the bunkering infrastructure has grown so fast that nearly all major seaports can now provide refuelling opportunities.” LNG bunkering vessels can be deployed practically anywhere, and bunkering does not necessarily have to occur in port.

Possible fuel blends for LNG

Governments and energy companies around the world are driving the development of massive green hydrogen production capacity using renewable energy and hydrolysis. They plan to use biohydrogen and CO2 captured from industrial combustion processes to produce synthetic methane, the main component of natural gas. “Once sufficient quantities of ‘green’ methane are available, it can be blended with fossil LNG or fully replace LNG to achieve the required level of CO2 neutrality,” Probst points out. “No infrastructure or on-board modifications will be necessary. In other words, LNG is currently the most realistic and low-risk alternative fuel for newbuilds, especially for deep-sea shipping.”

Detailed technical decision support

The container-shipping segment has been showing the strongest interest in alternative fuels. A growing number of large container vessels are equipped with dual-fuel engines and either run on LNG or are LNG-ready. “The DNV alternative fuels document thoroughly discusses all aspects of building LNG-ready ships, including considerations such as different tank types and tank arrangement options and their pros and cons. It provides solid, well-founded, unbiased decision support,” says Probst.

Of course, there cannot be a one-size-fits-all solution to decarbonization; the topic has to be evaluated individually for each ship type and operating pattern, Probst cautions. A number of uncertainties regarding future fuel prices and availability remain for the time being; it is up to the individual owner to draw the final conclusions for the best way to proceed based on the facts available today. “Based on DNV’s analyses, it makes sense to build ships with propulsion systems that leave several future options open, so whatever conversion or retrofitting decision has to be made in ten or more years’ time, the financial consequences will be manageable,” says Probst.

Extra costs become less significant

Probst emphasizes that it is time for the industry to stop using HFO as a baseline fuel – whether in terms of fuel costs, the simplicity of on-board fuel handling systems or the distances that can be travelled without bunkering. These operating conditions are unsustainable, and the industry is well advised to look ahead and accept that the fuel future will be more complex – but it will be so for everybody.

“Building a ship for alternative fuels is definitely more costly than building a conventional vessel,” Probst contends. “However, considering the extra costs and space requirements of a scrubber and SCR system in an HFO-fuelled vessel, the extra costs for LNG propulsion appear much less significant. Once an LNG-powered vessel reaches the break-even point after five to eight years of operation, its operating cost is actually lower than that of a conventionally powered vessel. Provided that plans to introduce a CO2 taxation system go ahead, which appears likely, the cost difference will shrink even further and the break-even point will be reached faster as well.”

T3 Con 371 approach to pre design investigation tcm71 215205

Green projects attract charterers and improve access to financing

As a low-carbon technology that can eventually become carbon-neutral, LNG propulsion makes a newbuilding project much more attractive to financiers and charterers, the cargo market and, ultimately, the general public. What is more, combining a low-carbon project with an environmentally friendly financing scheme gives projects a compelling “green” character. Several newbuilding orders for larger container vessels running on LNG are already being financed as environmentally friendly projects via a “syndicated green loan” conforming to the Loan Market Association’s principles. “This kind of project is sure to set a new benchmark and will be the new normal,” says Probst.

T1 Con 371 LNG fuelled fleet tcm71 215203

Actionable facts for equipment design

The Alternative Fuels document also provides valuable input for key decisions about the on-board energy concept. “Every machinery concept comes with specific, calculable emission levels,” explains DNV expert Jan-Olaf Probst. “For example, a high-pressure main engine has only negligible methane slip but cannot burn boil-off gas. Type C tanks can handle overpressure, while membrane tanks cannot, which can be an issue during a longer stay in port.” All these considerations are discussed thoroughly in the DNV document and presented in a way that helps decision makers arrive at the most appropriate solution for the ship they want to build.

Loss of container slots is negligible

“We frequently hear the argument that valuable container slots will be lost when LNG tanks must be installed,” Probst mentions. “But the actual number of slots sacrificed is minimal on a modern large container ship.” It is advisable to position the LNG tanks below the deckhouse in the case of a twin-island design, he points out, and to optimize the shape of the tank to account for the risk of sloshing. “Opting for Type B or C tanks instead eliminates this issue. However, there is no solution that has only positive aspects,” he says. “It is also important to fine-tune the engine, tank and fuel-handling arrangements to create an efficient and coherent overall system, and to discuss all these aspects in depth with the yard so considerations of economy on the shipbuilder’s side won’t compromise the operational fitness and profitability of the resulting ship.”

Certification requirements and bunkering considerations

Designers of LNG container vessels should be aware of the regulatory restrictions surrounding bunkering. “It makes sense to arrange the bunkering equipment in a section of the ship where the bunkering process has the lowest possible impact on efficient loading and discharging,” says Probst. Furthermore, the crew of an LNG-powered vessel must undergo specific training, and the responsible persons for bunkering must obtain a special certificate. “All this can be taken care of prior to delivery, and a comprehensive risk assessment should be a standard part of the planning process for any newbuild,” he emphasizes.

LNG is available today and is easier to implement than what is commonly believed. It opens up a fuel perspective for the entire lifetime of a vessel built during this decade, including multiple options to eventually switch over to eco fuels to ensure compliance with emission regulations far into the future. DNV will continuously update its Alternative fuels for containerships paper and incorporate lessons learned. The document thus provides owners with solid, state-of-the-art knowledge as a basis for planning the next generation of containerships and other vessels.

Note: Manifold Times readers are able to download DNV’s Alternative fuels for containerships report from the link here.

 

Photo credit and source: DNV
Published: 20 January, 2022

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Methanol

World Fuel and partners complete first green methanol bunkering of car carrier in Shanghai

Operation involved the delivery of approximately 2,800 MT of green methanol to “Arctic Tern” via a ship-to-ship transfer using SIPG Energy’s dedicated methanol bunkering vessel “M/V Hai Gang Zhi Yuan”.

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World Fuel and partners complete first green methanol bunkering of car carrier in Shanghai

Marine fuel provider World Fuel on Tuesday (21 July) said it successfully completed the first green methanol bunkering of M/V Arctic Tern, with EUKOR Car Carriers and SIPG Energy at the Port of Shanghai. 

Arctic Tern is the first vessel in the new Shaper Class series of car carriers. 

The operation involved the delivery of approximately 2,800 MT of green methanol to Arctic Tern via a ship-to-ship transfer using SIPG Energy’s dedicated methanol bunkering vessel M/V Hai Gang Zhi Yuan, the largest vessel of its kind in operation. 

The bunkering operation was carried out at Haitong Terminal, Waigaoqiao Port Area, Shanghai Port, with cargo handling operations conducted simultaneously during bunkering.

This marks EUKOR Car Carriers’ first green methanol operation and the first time Arctic Tern has bunkered methanol since its delivery on 9 July. The operation marked the first bunkering at Shanghai Port of green methanol produced locally in Shanghai for an international PCTC operator. 

It also demonstrated the city’s integrated green methanol value chain, spanning local production, storage and bunkering, and established a replicable “Shanghai Model” for green methanol supply.

World Fuel arranged the supply and delivery of the fuel on behalf of EUKOR Car Carriers, working with SIPG Energy as the physical supplier at the Port of Shanghai.

The green methanol supplied was produced from municipal solid waste, ISCC-EU certified, and had a carbon intensity value below 25 gCO₂e/MJ.

Arctic Tern is the first of fourteen Shaper Class vessels ordered by Wallenius Wilhelmsen. With a capacity of 9,300 car equivalent units and methanol dual-fuel capability, the vessel will be operated by EUKOR Car Carriers, jointly owned by Wallenius Wilhelmsen and Hyundai Motor Group. Following her first green methanol bunkering, Arctic Tern will continue her maiden voyage from Asia to Europe.

Xavier Leroi, COO Shipping Services at Wallenius Wilhelmsen and CEO of EUKOR Car Carriers, said: “Completing Arctic Tern’s first green methanol bunkering shortly after delivery is a significant milestone towards our decarbonisation ambition for both EUKOR Car Carriers and Wallenius Wilhelmsen. It demonstrates how investments in next-generation vessel technology and fuel flexibility are being translated into real-world operations. 

“This achievement reflects the strong collaboration between all parties involved. Together, we have shown how partnerships across the maritime value chain can help make lower-emission fuels available and operationally viable at scale.”

Mark Tamsitt, SVP Global Marine Sales at World Fuel, said, “The first bunkering event with a new fuel is a significant moment for any shipowner, and our role is to make it as seamless as possible. By connecting EUKOR Car Carriers with SIPG Energy’s proven green methanol capability at the Port of Shanghai, we were able to deliver on reliable supply, fuel quality, and safe processes. As more of our customers bring methanol dual-fuel tonnage into service, we are committed to being the partner that makes these kinds of operations routine.”

Mr. Zhang Da, General Manager of SIPG Energy, said, “Welcoming Arctic Tern to the Port of Shanghai for her first green methanol bunkering demonstrates the strength and maturity of our supply capability. Building on our well-established methanol ship-to-ship bunkering services for container vessels, we have already extended such services to pure car and truck carriers (PCTCs). This bunkering sets a new record for the largest single SIMOPs green methanol bunkering for PCTCs in China, marking another step in building Shanghai’s position as a global green energy hub for international shipping.”

This operation follows Wallenius Wilhelmsen’s announcement on 9 July that Arctic Tern would complete her first methanol bunkering shortly after delivery. The vessel entered service on routes between Asia and Europe immediately following handover from China Merchants Jinling Shipyard in Nanjing.

 

Photo credit: World Fuel
Published: 22 July, 2026

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Ammonia

HPA and MB Energy develop safety concept for STS ammonia bunkering

HPA says the Port of Hamburg will become “bunker ready” for ammonia, laying the groundwork for safe and reliable ammonia bunkering in the future.

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HPA and MB Energy develop safety concept for STS ammonia bunkering

The Hamburg Port Authority (HPA) and integrated energy company MB Energy on Tuesday (21 July) said they have completed a comprehensive risk analysis and developed a dedicated safety concept for ship-to-ship ammonia bunkering.

MB Energy said the analysis lays the groundwork for the safe introduction of ammonia as a future marine fuel.

“With our planned ammonia import terminal in Hamburg-Blumensand, MB Energy intends to provide the reliable land side supply infrastructure needed to support this transition across northern German ports,” it said in a social media post. 

Mabanaft Group was renamed to MB Energy last year and merged over 50 existing brands under one identity. 

Separately, HPA said the Port of Hamburg will become “bunker ready” for ammonia, laying the groundwork for safe and reliable ammonia bunkering in the future.

“The focus is in particular on container ships, cruise ships as well as RoRo and ConRo (Container/RoRo) ships,” it said. 

“We expect ammonia to establish itself as an alternative marine marine fuel in the coming years. With our preparatory work, we are already creating the conditions to welcome the first ammonia-powered ships in Hamburg and to bunker them safely.:

HPA added that the import terminal for ammonia planned by MB Energy from 2029 will make a decisive contribution to ensuring the reliable availability of ammonia as a bunker fuel in northern German ports in the long term. 

“The use of an ammonia bunker barge is considered a possible addition to the landside infrastructure to enable ship bunkering in the port and beyond in the future,” it said.

Related: Mabanaft Group renames as MB Energy, merging over 50 brands under one identity

 

Photo credit: Hamburg Port Authority
Published: 22 July, 2026

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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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