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LR: Shipping’s readiness to adopt nuclear is advancing as new technology progresses

Zero Carbon Fuel Monitor shows an upwards trend in the readiness of all nuclear technology types and the interventions required to improve maritime’s nuclear investment case, says LR.

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LR: Shipping’s readiness to adopt nuclear is advancing as new technology progresses

New nuclear technologies are increasingly being considered and developed for shipping as defence and civil offshore applications underpin the case for their adoption, said not-for-profit organisation Lloyd’s Register Maritime Decarbonisation Hub (LR MDH) on Monday (1 July). 

In its most recent expert-led assessment of nuclear solutions in the Zero-Carbon Fuel Monitor, LR MDH, a joint initiative between Lloyd’s Register and Lloyd’s Register Foundation, points to improvements in nuclear-power technology readiness levels with offshore applications increasingly being proven.

To reflect growing maritime industry focus, the Monitor now evaluates five nuclear technology categories up from three in 2023 with high temperature gas reactors and liquid metal cooled reactors joining pressurized water reactors (PWRS) micro-reactors (heat pipes), and molten salt reactors in this year’s assessment.

According to the Monitor, the advent of enhances the inherent level of safety in designs of onboard ship energy systems, helping to address public safety concerns. Further, technologies that can recycle the “spent fuel” from PWRs reduce the potential environmental impact of spent fuel disposal and the practicality of offshore refuelling has also been showcased with the first refuelling of a floating nuclear power station took place at the Akademik Lomonosov platform in November 2023.

However, despite these technological advancements, community readiness levels (CRLs) remain affected by public perception of the nuclear industry and investment readiness levels (IRL) are low due to uncertainties around the wider uptake of nuclear technologies in commercial shipping.

As more evidence from testbed technological solutions becomes available, uncertainties in operation, costs and safety aspects will diminish. Development of regulations have now also been initiated to facilitate the adoption of nuclear technologies in offshore application, further supporting advancement of investment and community readiness.

Amelia Hipwell, Decarbonisation Innovation Manager for LR MDH, said: “An inherent advantage of nuclear power as marine energy source is that nuclear-powered ships are able operate for many years without bunkering and could potentially even supply power to ports whilst docked. Commercial shipping has the opportunity to leverage an existing land-based nuclear production supply chain and decades of experience in nuclear power for deployment.”

“Therefore, from the technological perspective, the industry is making faster progress. It is now essential for the nuclear and maritime industries to collaborate in addressing issues that impact community and investment readiness, including regulatory uncertainties and overall negative public perception of security risk and safety of nuclear deployment in commercial shipping.”

Chirayu Batra, Chief Technology Officer, Lucid Catalyst, who contributed to the ZCFM nuclear assessment, said, “Nuclear power is a zero-carbon, reliable, and mature technology that has been in use for more than 60 years and has undergone testing and deployment in both commercial and defense applications within the maritime domain. We have therefore rated nuclear’s technology readiness level on the upper range for Pressurized Water Reactors (PWRs), as both the fuel and technology are already being used in floating nuclear power stations for supplying electricity offshore. The key challenge is to take that further step to develop nuclear solutions specifically for large scale commercial shipping.”

“We now have the opportunity to create an enabling regulatory framework to decarbonise maritime shipping with the help of nuclear, classification societies like LR have a key role to play in this process. The ZCFM is a great platform to enable more widespread public understanding of the readiness, benefits and challenges of adopting nuclear as a zero-carbon energy option in shipping.”

 

Photo credit: Lloyd’s Register
Published: 3 July, 2024

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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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LR: Rotterdam study sets out pathway for nuclear-powered commercial ship port calls

New joint study has found that existing port safety and risk-management frameworks could provide a credible starting point for assessing nuclear-powered ship calls within a major European port environment.

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RESIZED Shaah Shahidh on Unsplash

A new joint study using the Port of Rotterdam as a case study has found that existing port safety and risk-management frameworks could provide a credible starting point for assessing nuclear-powered commercial ship calls within a major European port environment, according to Lloyd’s Register (LR) on Thursday (11 June). 

The desktop study, Enabling Nuclear-Powered Feeder Ships: A Joint Development Project on Port Call Feasibility and Regulatory Pathways, carried out through a joint development project involving LR, the Port of Rotterdam Authority, CORE POWER and A.P. Moller – Maersk, sets out the questions that ports, regulators and industry would need to answer in order to assess nuclear-powered vessels in a structured and responsible way. 

It also identified further work that would be required before routine operation could be contemplated, including regulatory alignment, emergency preparedness, security, liability and public engagement.

Its publication comes at a time of growing pressure on the shipping industry to identify even more scalable zero-emission technologies capable of meeting increasingly demanding decarbonisation requirements while preserving operational reliability, endurance and flexibility.

The report argued that maritime nuclear propulsion should be evaluated as part of the wider discussion around shipping decarbonisation, energy resilience and long-term industrial competitiveness.

While much of the current EU policy discussion has focused on alternative fuels such as hydrogen, ammonia and e-fuels, the report notes that segments of global shipping may ultimately require additional propulsion solutions capable of supporting endurance, reliability and operational flexibility at scale.

The Port of Rotterdam participated as a case study because it provides a real-world European port environment through which to examine how emerging energy and shipping technologies could interact with existing port safety frameworks, operations and regulatory processes.

Importantly, the study concluded that existing risk-based port safety frameworks already familiar to European ports could provide a credible starting point for assessing nuclear-powered vessels, provided nuclear-specific safety, security and operational considerations are systematically integrated and supported by appropriate national and international guidance.

The findings suggested that the real challenge for future maritime nuclear propulsion is likely to centre on regulatory alignment, governance, integration between nuclear and maritime safety regimes, and public and institutional preparedness.

The study identifies several key findings:

  • Existing port safety and risk-management frameworks provide a credible starting point for the assessment of nuclear-powered commercial vessels within the defined case study scenario.
  • Further work is needed on regulatory alignment, governance coordination, nuclear-specific safety and security, emergency preparedness, liability and insurance, operational integration and public engagement before routine commercial operation could be contemplated.
  • Current IMO provisions relating to nuclear-powered ships were developed for an earlier era and require modernisation to support any future civil commercial nuclear propulsion pathway.
  • Current European maritime decarbonisation discussions remain heavily focused on alternative fuels, with comparatively limited consideration of high-density, zero-emission propulsion systems capable of supporting long-range and high-utilisation shipping operations.
  • Major ports and maritime Member States may play an important role in shaping how nuclear propulsion is assessed and potentially integrated into future shipping strategies.

 

Photo credit: Shaah Shahidh on Unsplash
Published: 16 June, 2026

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South Korean-led nuclear car carrier design secures LR backing

LR is working with HHI, KSOE, Hyundai Glovis, G- Marine Service and KAERI on a joint development project exploring an advanced small modular reactor (SMR) installation on a PCTC.

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South Korean-led nuclear car carrier design secures LR backing

Classification society Lloyd’s Register (LR) on Tuesday (2 June) said it has teamed up with South Korean shipbuilding, marine services and nuclear research organisations to advance the development of a nuclear‑assisted car carrier concept. 

LR is working with Hyundai Heavy Industries, Korea Shipbuilding & Offshore Engineering (KSOE), Hyundai Glovis, G- Marine Service and the Korea Atomic Energy Research Institute (KAERI) on a joint development project (JDP) exploring an advanced small modular reactor (SMR) installation on a pure car and truck carrier (PCTC). 

The study focused on how a Molten Salt Reactor (MSR) could be physically and operationally integrated into a large vehicle carrier. Work examined the internal arrangement and segregation of the reactor system, shielding requirements, and the impact on cargo deck layout and vehicle capacity, alongside stability and trim implications linked to the reactor’s weight and positioning. 

The partners also assessed propulsion system configuration and power delivery, as well as operational flexibility compared with conventionally fuelled PCTCs, where trade routes and port calls can be tightly constrained. 

A key focus of the project has been safety. LR led hazard identification (HAZID) and preliminary risk assessment work, focusing on containment, onboard safety systems and potential operability constraints tied to nuclear technology at sea. 

The partners will mark the project milestone with an Approval in Principle (AiP) granting ceremony on 2 June at the LR stand during Posidonia 2026. 

Sung-Gu Park, President – North East Asia, Lloyd’s Register, said: “While nuclear propulsion is still at an early stage of development, this project shows the importance of building technical understanding now to support future progress. 

“Establishing feasibility at concept stage is a valuable step forward, particularly in areas such as cargo optimisation, vessel stability and integrated safety design.” 

Hong-Ryeul Ryu, CTO and Senior Executive Vice President at HD HHI, said: “With global environmental regulations becoming increasingly stringent and no definitive net-zero fuel yet available, SMR-powered ships can serve as a highly effective alternative, representing a pioneering next-generation maritime technology capable of complying with GHG emission regulations while allowing lifetime operation without refuelling, and HD HHI will remain at the forefront of sustainable maritime technology development.”

 

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

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