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MEPC 75th session: establishment of international R&D board and funds to be discussed

This could represent a significant step in promoting and facilitating more research and development on clean bunker fuels and zero-carbon technologies, says IMO Secretary-General Kitack Lim.

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Discussions on crucial measures to further reduce greenhouse gas (GHG) emissions from ships is on the agenda at the International Maritime Organisation (IMO)’s Marine Environment Protection Committee (MEPC) meeting held virtually this week (16-20 November). 

Firstly, the MEPC is expected to adopt amendments to the International Convention for the Prevention of Pollution from Ships (MARPOL) to significantly strengthen the “phase 3” requirements of the Energy Efficiency Design Index (EEDI) – meaning that new ships built from 2022 will have to be significantly more energy-efficient. Those amendments were approved at the previous session of the Committee (MEPC 74) in May 2019.  

Moreover, the MEPC will discuss draft proposed amendments to MARPOL on short-term measures to reduce the carbon intensity of shipping. The aim is to add further energy efficiency requirements which would also apply to existing ships, by bringing in two measures: a new Energy Efficiency Existing Ship Index (EEXI) for all ships; and an annual operational carbon intensity indicator (CII) and its rating, which would apply to ships of 5,000 gross tonnage and above. Those draft amendments were agreed by IMO’s Intersessional Working Group on Reduction of GHG Emissions from Ships (ISWG-GHG 7) in October. If approved at this session of the Committee, they could then be put forward for adoption at the subsequent MEPC 76 session, to be held in June2021. The MARPOL treaty requires draft amendments to be circulated for a minimum six months before adoption, and they can enter into force after a minimum 16 months following adoption. 

Opening the meeting, IMO Secretary-General Kitack Lim invited delegates to come together to reach the necessary agreements. “It is of utmost importance that IMO continues to deliver on the implementation of the Initial GHG Strategy by means of concrete measures, which will ensure achieving the levels of ambition as set out in the Initial IMO GHG Strategy, providing a globally harmonized regulatory framework,” Mr Lim said. The initial strategy, containing ambitious targets to cut shipping emissions, was adopted in 2018. 

The Secretary-General also invited the Committee to discuss a proposal by industry organizations to establish an International Maritime Research and Development Board and the Associated Fund. This could represent a significant step in promoting and facilitating more research and development on clean fuels and zero-carbon technologies. “IMO has to ensure that no country is left behind in the transition to decarbonisation of international shipping”, Mr Lim added.  

This 75th session of the MEPC is also expected to adopt draft amendments to the Ballast Water Management (BWM) Convention, relating to commissioning testing of ballast water management systems and the form of the International Ballast Water Management Certificate. 

The Committee will also consider, with a view to approval, draft amendments to MARPOL to introduce a prohibition on the use and carriage for use as fuel of heavy fuel oil (HFO) by ships in Arctic waters on and after 1 July 2024. If approved, the draft amendments would be circulated for adoption at an MEPC session in 2021. 

The Marine Environment Protection Committee (MEPC) is the decision-making body which addresses environmental issues under IMO’s remit, including the control and prevention of pollution from ships into the ocean and the air.  

The meeting is chaired by Mr. Hideaki Saito (Japan).  

 

Photo credit: International Maritime Organisation
Published: 17 November, 2020

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LNG Bunkering

MOL and Seaspan sign annual LNG bunkering deal for car carriers in Port of Vancouver

MOL says North America is one of the key trade lanes for car carriers, and with recent delivery of new LNG-fuelled vessels, securing a stable LNG fuel supply in the area has become increasingly important.

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MOL and Seaspan sign annual LNG bunkering deal for car carriers in Port of Vancouver

Mitsui O.S.K. Lines, Ltd. (MOL) on Thursday  (21 May) announced that MOL and Seaspan Energy have signed the first annual contract for LNG bunkering for car carriers at the Port of Vancouver, Canada. 

On 29 April, MOL completed the first LNG bunkering under this contract. Since completing the first LNG bunkering on the West Coast of North America on 1 March 2025 – the first by a Japanese shipping company – MOL has conducted several additional LNG bunkering operations in the region. 

North America is one of the key trade lanes for car carriers, and with the recent delivery of new LNG-fuelled vessels, securing a stable LNG fuel supply in the area has become increasingly important. This contract underscores the company’s commitment to establishing a stable and seamless regional LNG fuel procurement framework.

Seaspan expanded its LNG bunkering capabilities in 2026 from Vancouver to Long Beach, California, and continues to proactively support the growth of a clean marine supply chain.

Seaspan Energy President Harly Penner, said: “The relationship between Seaspan Energy and MOL is highly valued. MOL was the first car carrier operator to receive LNG bunkering services in the Port of Vancouver, and we are proud to continue supporting their operations in Vancouver through this annual LNG bunkering agreement. 

“This partnership reflects our shared commitment to advancing lower-emission marine transportation and supporting the industry’s transition toward net-zero GHG emissions.”

Marine Fuel GX Division General Manager Daisuke Fujihashi, said: “We are very pleased to further strengthen our partnership with Seaspan Energy through this contract for LNG fuel procurement. 

“Looking ahead, we will continue to deepen our collaboration with Seaspan Energy in the field of clean fuels, including bio LNG, and remain committed to offering our customers more pathways toward cleaner supply chains.”

 

Photo credit: MOL
Published: 22 May, 2026

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Ammonia

MMMCZCS: MAGPIE Project confirms operational feasibility of ammonia bunkering

MAGPIE consortium completed a successful ship-to-ship ammonia bunkering simulation in Rotterdam on 12 April, proving that ammonia can be bunkered safely within an operating port.

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MMMCZCS: MAGPIE Project confirms operational feasibility of ammonia bunkering

The Mærsk Mc-Kinney Møller Center for Zero Carbon Shipping (MMMCZCS) on Thursday (21 May) said a new demonstration project in the Port of Rotterdam showed that ship-to-ship ammonia bunkering can be carried out safely within an active port environment. 

The demonstration is part of the EU-funded MAGPIE (sMArt Green Ports as Integrated Efficient multimodal hubs) project, and the report is now available, providing concrete learnings that industry can use to guide future ammonia bunkering and accelerate global port permitting.

The shipping sector must transition away from fossil fuels to meet climate targets. Ammonia is considered a promising alternative fuel, but its specific hazards pose significant safety, operational, and regulatory challenges. Without competent operators, fit-for-purpose equipment and robust safety and regulatory frameworks, ammonia bunkering cannot take place safely in ports.

Within the MAGPIE project, a full-scale simulation of a ship-to-ship ammonia bunkering operation was conducted in the Port of Rotterdam on 12 April 2025. The demonstration showed that ammonia bunkering within port limits is operationally feasible when carefully planned and executed within a robust safety and regulatory framework.

The learnings from the demonstration have now been consolidated by the Mærsk Mc-Kinney Møller Center for Zero Carbon Shipping and project partners in a comprehensive ammonia bunkering demonstration report. This publication provides the industry with practical lessons and a validated port safety framework and tools that other ports can use as a blueprint for ammonia bunkering.

A key outcome of the project is the validation of the Port of Rotterdam’s port safety framework for ammonia as a fuel, as well as the International Association of Ports and Harbours’ (IAPH) Port Readiness Tool. The results demonstrate that these frameworks are fit-for-purpose instruments for ports considering the introduction of new alternative fuels.

“The project delivers practical learnings, validation sheets and recommendations that can be used by ports globally to build confidence in ammonia bunkering and to inform future port permitting and regulatory processes. The results support the EU’s ambition for green ports and the safe deployment of alternative fuels in the maritime sector,” said Bo Cerup-Simonsen, CEO, Mærsk Mc-Kinney Møller Center for Zero Carbon Shipping.

“The energy transition requires new, integrated value chains. This ammonia bunker pilot is an important step in developing a complete value chain for alternative fuels, from import to application in shipping. Together with our partners, we demonstrate that innovation, safety, and scalability can go hand in hand. Rotterdam plays a connecting role as an energy and logistics hub for Northwest Europe,” said Boudewijn Siemons, CEO, Port of Rotterdam.

The learnings from MAGPIE contribute to a broader effort to accelerate sustainable, smart and multimodal port systems and results will be shared with the wider industry to support the global transition of the shipping sector.

Note: The report titled ‘Ammonia Bunkering Demonstration Report’ can be found here

 

Photo credit: Mærsk Mc-Kinney Møller Center for Zero Carbon Shipping
Published: 22 May, 2026

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Environment

OliOil selects Elomatic as partner for autonomous oil spill response container design

A unique feature of the solution is that the container can be placed on both oil-carrying vessels and in ports, enabling rapid response capability.

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OliOil selects Elomatic as partner for autonomous oil spill response container design

Finnish startup OliOil recently said it is developing an oil spill response container that enables advanced prevention of oil spread immediately after an incident occurs. 

Elomatic will design the system to meet performance and operational reliability requirements under challenging conditions.

The collaboration between Elomatic and OliOil focuses on developing the oil spill response container technology from pilot phase toward industrial manufacturing. 

In the preliminary design phase, the aim is to create a concept for a functional system where containerized boats deploy autonomously during an oil spill, using AI and robotics to position containment booms.

OliOil’s oil spill response container was created from a LUT University research project focused on Baltic Sea protection. 

What makes the solution advanced is that the container can be placed on both oil-carrying vessels and in ports, enabling rapid response capability. Boom deployment is the critical first step in any spill response, preventing the oil’s spread and enabling efficient oil recovery with specialized collection equipment.

Elomatic’s scope covers container design, boat hoisting systems, electrification, and ventilation. The team is also defining the boats’ technical specifications and designing their propulsion systems.

“Elomatic’s expertise in both industry and marine technology is valuable. It’s also important to us that Elomatic has experience in commercializing innovations in addition to engineering expertise,” said Kristian Laiho, Chair of the Board at OliOil.

“It’s great to work with a company bringing new solutions to environmental challenges. Utilizing our broad expertise in OliOil’s product development and commercialization is meaningful to us,” said Karoliina Joensuu, Head of Industry Business Unit at Elomatic.

 

Photo credit: OliOil
Published: 15 May, 2026

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