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DNV GL: The role of combustion engines in decarbonisation – seeking fuel solutions

Suppliers, regulators, shipowners and engine manufacturers have to agree on alternatives over traditional carbon-based bunker fuels in order to progress.

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MAN ES Internal Combustion Engine

Classification society DNV GL in early May published an analysis outlining the relevance of the internal combustion engine to the maritime industry’s decarbonisation efforts, available alternative fuels and its competitor technologies; it was written by Christos Chryssakis, Business Development Manager at DNV GL.

Internal combustion engines (ICEs) represent the dominant technology in marine propulsion today. If ICEs are to play a role in the decarbonisation of shipping, suppliers, regulators, shipowners and engine manufacturers will have to agree on viable alternatives to carbon-based fuel.

With the current focus on alternative marine power sources, it’s easy to overlook the overwhelmingly dominant position of the internal combustion engine, or ICE, in marine propulsion. The marine two-stroke ICE is so well proven and so well established that it will continue to have a central place in ship propulsion for decades to come.

If demands for decarbonisation in shipping are to be met, the question then becomes one of fuel: which fuels can be green enough, and available soon enough, to satisfy stricter emissions regulations, and how will engine makers adapt to the new norm of fossil-free fuel?

Making the ICE transition

“All the big engine makers are looking at alternative solutions, everything from energy sources to engine technology,” says Christos Chryssakis, Business Development Manager at DNV GL – Maritime.

Chryssakis believes that internal combustion power will be the dominant force in shipping for the next 20–30 years, due both to the development timelines for alternative power solutions and to the time it will take for those solutions to become a force in the marine market.

“In the meantime, if we manage to find good alternative fuels, ICEs can compete,” he says. “The big two-stroke engines are close to efficiency limits, but gains can be made in other energy efficiency technology that will open the way for smaller engines consuming less fuel.”

Kjeld Aabo, Director New Technologies, MAN Energy Solutions, backs up Chryssakis’ claims with numbers: “We have more than 25,000 two-stroke engines operating, and more than 300 orders for alternative fuel engines.” The market for ICEs will be open for many years, he believes. “Right now there is no better power solution for ships of 2,000 dwt and above.”

Finding the right ICE fuels

So what is the right combustion fuel for the future? “That is the big question,” Chryssakis confirms. “It is still open to discussion, but we are learning a lot about some of the more likely options.” While still searching for the right solution, shipping will soon need to achieve critical mass in low-carbon fuels to reach the IMO emissions targets for 2050, he says. These targets stipulate a 50 per cent reduction in greenhouse gas emissions and a 70 per cent reduction in carbon intensity by 2050. “Some of this will be achieved through efficiency measures, but the rest will have to come from alternative fuels.”

The role of DNV GL will be to provide fact-based figures on how much fuel is needed and how it will be produced. “We are now updating our energy transition model based on the latest learning and regulations,” says Chryssakis.

While markets and regulations will dictate price, another key issue is how fuels are produced. “Alternative fuels have to be produced with renewable energy and in a sustainable manner or they will ultimately not help to reduce the overall carbon footprint,” Chryssakis points out.

The emergence of ammonia as fuel

Already a familiar industrial commodity, ammonia is one fuel alternative steadily attracting more interest in the industry. “Ammonia is a good way of storing hydrogen, but it has different handling requirements than natural gas,” Chryssakis says. Ammonia takes up less space than hydrogen, but it is both toxic and corrosive. Existing class rules for ammonia as a cargo and as a refrigerant are a good starting point for developing rules for ammonia as a fuel, he says, but emissions still represent a challenge. “The technology required to burn ammonia in an internal combustion engine is still being refined.”

Emissions from combusted ammonia may contain a high amount of nitrous oxide (N2O), a powerful greenhouse gas, even small amounts of which present a risk to the environment. “We might be able to clean this exhaust, but the technology is not proven.” Small amounts of unspent ammonia may also be emitted, Chryssakis says. “Anything over 30 ppm locally can be dangerous, and as little as 5 ppm can be smelled.”

Chryssakis mentions the option of ammonia tankers burning their cargo as fuel, much the same as modern LNG tankers do. But this technology will first gather momentum in newbuilds, he maintains, while regulations and contracts favouring sustainable power will drive retrofits. The cost of producing ammonia will also influence decisions.

“We have a pallet of different fuels already, and ammonia will soon be added to that,” Kjeld Aabo says. MAN plans to offer engines designed to burn green ammonia by 2024, with testing scheduled to begin in 2021. “The goal is no ammonia slip at all. Both odour and N2O should be eliminated with these tests.”

He reports that some owners are asking for ammonia-burning engines before 2024. “These are the carriers of ammonia who can burn their cargo as fuel, but there is also a broader interest out there for ammonia.”

A host of green ICE alternatives

Burning hydrogen in combustion engines is another option, says Chryssakis. And though hydrogen contains no carbon atoms, and thus emits no CO2 when consumed, it is often produced using natural gas. Hydrogen can be used to partly replace LNG in combustion engines, thereby reducing their carbon footprint.

Biofuels have long been considered an alternative to petroleum-based fuel, but producing them at scale remains an issue. “Large-scale production, including facilities, has not performed well enough to justify realisation, either economically or technically,” says Chryssakis. “For example, if it takes 50 years for a forest to mature, and only two per cent can be harvested annually if we are to ensure regeneration, that would limit access to sustainable feedstock.”

Synthetic fuels can use the same infrastructure and engines as petroleum fuels, but they will need to be produced from renewable energy in order to qualify as green. “The issues right now are scaling up production, and identifying suitable energy sources,” Chryssakis says. “For example, it has been estimated that we would need 8 km2 of solar panels to produce enough ammonia to operate one large container vessel for a single year.”

The case for bridge fuels

Despite its status as a fossil fuel, LNG should not be discounted as a short and medium-term solution, Chryssakis maintains. “LNG can contribute a 15–20 per cent greenhouse gas emissions reduction, and it can also serve as a basis for using other fuels in the future. Evolving engine technology could also reduce methane slip from LNG.” All engine makers are working to resolve this issue, he points out. “No one wants to risk stranded assets of ships unable to sail because of emissions restrictions.”

If so-called bridge fuels are abandoned, he says, the alternative is to continue burning oil while in pursuit of the “perfect” solution. “But we cannot bet safely today on a solution that will not be available until 2035 or 2045. It is better to work with what we have, and concentrate on building a future-proof infrastructure that can match future ships.”

Competition to ICEs

Chryssakis notes that batteries with currently available chemistries are approaching the physical limits of energy storage. “New storage chemistries may emerge that can offer tenfold improvement, but they are still not proven on a commercial scale, and probably the first applications will be seen in automobiles, not large units like ships.”

Fuel cells are more suited than batteries when size is an issue, he says. “But they perform better under constant loads, so they need batteries to even out consumption.” Then there are the issues of fuel access and storage to resolve, as well as fuel production methods. Fuel cell life expectancy also remains a significant variable, he notes.

The relative attractiveness of different power solutions will vary between segments as well, Chryssakis says. “For example, cruise passengers might be willing to pay a premium for cleaner ships. But how quickly are consumer attitudes changing in the same direction?” That being said, charterers and owners in the transport trade are becoming more attentive as consumer sentiment shifts towards green alternatives, and they are actively seeking alternatives, he confirms.

Keeping ICE options open

“Right now we are still in the phase where we need to explore all available options for ICEs. The most important thing is not to close doors too early. We can experiment today with what is available until the best alternative emerges,” says Chryssakis.

Kjeld Aabo agrees. “We have a zero-emission strategy, but we must also be prepared for markets to evolve. Many in the industry want to follow their hearts in one direction or another, but we do not know enough about the right direction yet.”

ICEs can accommodate nearly all types of fuel, he says, but the market must be ready or manufacturers will not be able to justify committing their design capacity. “There are so many balls in the air now that stakeholders are facing very complicated decisions,” Aabo acknowledges. In such an environment, engine manufacturers believe they can offer a robust option. “We know that ICEs will provide the highest efficiency possible in the foreseeable future. Unless something completely unexpected turns up, ICEs will be around for many years.”


Source:
DNV GL
Photo credit: MAN ES
Published: 26 May, 2020

 

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Alternative Fuels

Yang Ming orders six LNG dual-fuel, ammonia-ready containerships from Hanwha Ocean

Each of the six new vessels will have a capacity of up to 13,650 TEU and feature LNG dual-fuel propulsion and Ammonia Fuel Ready specifications.

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Yang Ming orders six LNG dual-fuel, ammonia-ready containerships from Hanwha Ocean

Taiwanese shipping firm Yang Ming Marine Transport Corporation (Yang Ming) and South Korean shipbuilder Hanwha Ocean on Wednesday (2 September) signed a shipbuilding contract for six 13,000 TEU class LNG dual-fuel container vessels. 

The contract was signed by Dr. Chuck Tsai, Chairman of Yang Ming, and Mr. Charles Kim, CEO of Hanwha Ocean. The vessels are scheduled for delivery between 2028 and 2029. 

They will complement Yang Ming’s existing fleet of 10,000+ TEU vessels and serve as key vessels on East-West services, with deployment flexibility across trade lanes connecting Asia with the East and West Coasts of North America, South America, and the Mediterranean. 

Each of the six new vessels will have a capacity of up to 13,650 TEU and feature LNG dual-fuel propulsion and Ammonia Fuel Ready specifications.

“As Yang Ming transitions toward net-zero emissions, LNG provides a relatively mature and economically viable alternative fuel solution, capable of reducing greenhouse gas emissions by approximately 20%,” the company said. 

“At the same time, ammonia can serve as a carbon-free fuel by utilising converted LNG storage facilities, while offering relatively lower conversion costs and comparatively well-developed supply chains and infrastructure. The Ammonia Fuel Ready design will therefore provide Yang Ming with greater flexibility in responding to increasingly stringent international regulations on greenhouse gas emissions.”

In addition, the vessels will be equipped with Type B LNG fuel tanks with a design pressure of 1.0 bar to enhance the safety and efficiency of LNG operations, together with a range of energy-saving technologies, including Wind Shields, Rudder Bulbs, Pre-Swirl Stators, and Shore Power Systems. Smart ship technologies and cybersecurity protection features will also be incorporated to enhance operational efficiency, safety, and reliability while effectively reducing fuel consumption and greenhouse gas emissions.

Deliveries under Yang Ming’s next-generation fleet optimization plan commenced earlier this year. By 2030, a total of 24 new vessels are expected to enter service. 

This includes 18 LNG dual-fuel vessels—comprising five 15,500 TEU, seven 16,000 TEU, and the six 13,000 TEU vessels under this contract—alongside six 8,000 TEU methanol dual-fuel-ready ships. 

 

Photo credit: Yang Ming Marine Transport
Published: 4 September, 2026

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Alternative Fuels

LR, China’s MARIC unveil tanker concept ready for three future bunker fuels

Both secured AiP for a new 114,000 DWT product and crude oil tanker designed to accommodate future conversion to LNG, methanol or ammonia.

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LR, China’s MARIC unveil tanker concept ready for three future bunker fuels

Lloyd’s Register (LR) and the Marine Design and Research Institute of China (MARIC) on Thursday (3 September) have secured Approval in Principle (AiP) for a new 114,000 DWT product and crude oil tanker designed to accommodate future conversion to LNG, methanol or ammonia.

Announced at SMM 2026, the concept addresses one of the biggest investment challenges facing shipping today: the need to develop vessels and capabilities that can support a range of alternative fuel options and pathways as technologies, infrastructure and regulations evolve.

While LNG is already a mature fuel pathway, methanol and ammonia remain at an earlier stage of development, with questions around global fuel availability, infrastructure development, economics and long-term adoption.

The 114,000 DWT tanker concept has been designed as a product and crude oil carrier that can accommodate future conversion to LNG, methanol or ammonia as technologies, regulations and fuel supply chains mature. By incorporating conversion readiness at the design stage, the concept aims to reduce future retrofit complexity and provide owners with greater confidence when planning long-term fleet investments.

The design concept was reviewed against LR’s July 2026 class rules and regulations, including requirements relating to ships using gases and other low-flashpoint fuels, alongside relevant IACS Common Structural Rules for oil tankers. Final classification and statutory approval remain subject to full compliance with all applicable rules and regulations.

Theo Kourmpelis, Global Business Director for Tankers, Lloyd’s Register, said: “Shipowners are being asked to make major investment decisions today despite continued uncertainty around which fuels will dominate in the decades ahead. Alternative fuel solutions each offer potential pathways to compliance, but fuel infrastructure, regulation and economics continue to evolve at different speeds around the world.

“Designs that preserve flexibility will be critical in helping owners manage risk while preparing for multiple future scenarios.”

Si Nan, Marine & Offshore Marketing Department Vice Director, MARIC, said: “As the industry explores different decarbonisation pathways, shipowners need vessel designs that can adapt alongside technological and regulatory developments. This concept was developed specifically to provide greater fuel flexibility and long-term resilience, allowing owners to respond to changing market requirements without being locked into a single fuel strategy.

“Receiving Approval in Principle from Lloyd’s Register is an important milestone that validates the design concept and supports its future development.”

 

Photo credit: Lloyd’s Register
Published: 4 September, 2026

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Alternative Fuels

DNV: Alternative-fuelled vessel orders hit highest monthly level since October 2024

LNG-fuelled vessels accounted for the vast majority of August activity while the strong summer performance marked a significant acceleration in ordering activity after a relatively slow start to the year.

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DNV: Alternative-fuelled vessel orders hit highest monthly level since October 2024

Latest data from classification society DNV’s Alternative Fuels Insight (AFI) platform alternative-fuelled vessel ordering was strong in August, with 52 new vessels added to the platform.

This is the highest monthly total since October 2024 and follows another active month in July, when 47 vessels were added to the database.

LNG-fuelled vessels accounted for the vast majority of August activity, with 46 orders recorded. The container segment led the way with 30 orders, while the car carrier segment contributed a further 12 LNG-fuelled vessels. In addition, four ethanol-fuelled bulk carriers and two hydrogen-powered bulk carriers were added during the month, as well as one LNG bunker vessel.

The strong summer performance marked a significant acceleration in ordering activity after a relatively slow start to the year. In total, 242 alternative-fuelled vessel orders have been placed in the first eight months of 2026, representing a 27% increase compared with the same period in 2025.

LNG remains the dominant fuel choice, accounting for 63% of all alternative-fuelled vessel orders registered so far this year. Container vessels represent the largest share of these LNG orders (59%), followed by car carriers (30%).

Jason Stefanatos, Global Decarbonization Director at DNV Maritime, said: “The past two months have been particularly strong for alternative-fuelled vessel ordering, with August recording the highest monthly total we’ve seen since October 2024. This has helped lift year-to-date orders to a level well above the same period last year.

“LNG remains the leading fuel choice, driven largely by activity in the container and car carrier segments. These sectors have been among the earliest adopters of alternative fuels, supported by predictable liner operations and increasing demand from cargo owners to reduce emissions across supply chains. 

“For many owners, LNG offers a combination of emissions reductions, fuel availability and future flexibility while the longer-term fuel landscape continues to evolve. 

“At the same time, the latest figures include orders for ethanol- and hydrogen-fuelled vessels, highlighting that owners continue to explore a range of decarbonization pathways. Different segments are making different fuel choices, but the overall level of activity demonstrates continued investment in lower-emission shipping.”

Screenshot 2026 09 04 at 12.29.26 PM Screenshot 2026 09 04 at 12.29.36 PM

 

Photo credit: DNV
Published: 4 September, 2026

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