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Decarbonisation

Study: Optimising port arrivals could reduce voyage emissions by up to 25%

A new study by UCL and UMAS found that optimising port arrivals to take into account port congestion or waiting times could reduce voyage emissions by up to 25% for some vessel types.

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RESIZED Chris Pagan

Maritime consultancy UMAS on Thursday (5 December) said its new study, completed with UCL, found that optimising port arrivals to take into account port congestion or waiting times could reduce voyage emissions by up to 25% for some vessel types. 

The study, which analysed ship movements between 2018 to 2022, found that the average potential emissions saving for the voyages is approximately 10% for container ships and dry bulkers, 16% for gas carriers and oil tankers, and almost 25% for chemical tankers. 

The study finds that these ships spend between 4-6% of their operational time, around 15 to 22 days per year, waiting at anchor outside ports before being given a berth. 

Dr Tristan Smith, Professor of Energy and Transport at the UCL Energy Institute, said: “The IMO set ambitious GHG reduction targets in 2023. Meeting those targets means unlocking all efficiency opportunities – including voyage optimisation and operations around ports.”

“This will only happen if CII remains a holistic metric covering all emissions, and incentivising shipowners, charterers and port stakeholders to break down long-running market barriers and failures.”

Over the period 2018-2022, chemical tankers, gas tankers, and bulk carriers spent increasing waiting times at anchor before berthing, rising to 5.5 to 6% of time per annum, by 2022. Waiting times for oil tankers and container ships stayed approximately constant (around 4.5% and 5.5% respectively). 

Some of the increase in waiting times may be attributable to the port congestion caused during Covid-19 and by a post-pandemic surge in maritime trade.

The study also found that smaller vessels generally experience longer waiting times, though this varies by vessel type. Previous report by the authors, Transition Trends, has shown that poor operational efficiency is one of the main reasons for increased emissions in the period 2018 to 2022.

Dr Haydn Francis, Consultant at UMAS, said: “Our analysis highlights the current and growing issue of port waiting times and the inefficiency they represent. This is just one piece of the broader operational inefficiency puzzle that is key to generating the short-term emissions reductions that will need to be achieved before 2030.” 

“By targeting these idle periods, the IMO can unlock significant emissions reductions while also reinvigorating improvements in operational efficiency, which have stagnated since 2012.”

The waiting behaviour stems from the common operational practices such as “first-come, first-served” scheduling and the “sail-fast-then-wait” approach—and is exacerbated by systemic issues such as port congestion, inadequate data standardisation, inflexible charterparties (between ship owners and charterers), and limited coordination between the many wider stakeholders involved in a loading/unloading operation (port authorities, cargo owners etc.).

The study showed that the CII regulation should consider all aspects of the voyage and not just the ‘sea-going passage’ as some have proposed, as it can incentivise stakeholders to come together to find solutions to reduce the GHG intensity of the ships across the value chain, instead of just isolating those parts where the shipowner or charterer are fully in control of. 

Limiting the CII to only parts of the voyage would mean that the well-known market barriers at the interface of ship-port operation would remain under incentivised and continue to persist, making the 20%-30% absolute GHG reduction in 2030, relative to 2008, specified in IMO’s Revised Strategy more difficult to achieve.

The work also highlighted the contribution of port congestion to system-wide inefficiencies. Port congestion has been highlighted by low-income member states, as a disadvantage to them and their efforts to decarbonise. 

Although unable to be looked at in depth in this study, this suggests that there could be links between efforts to find system efficiencies at the interface between ships and ports, and the efforts to enable a just and equitable transition, which are an important feature of the design of midterm measures.

Note: The full report titled ‘Port congestion, Waiting Times and Operational Efficiency’ can be found here

 

Photo credit: Chris Pagan on Unsplash
Published: 10 December, 2024

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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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