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Singapore institute joins partnership to advance maritime electrification and battery safety

Partnership builds on SIT’s ongoing collaboration with ABS Houston and Sea Forrest under the Future Ship and System Design (FSSD) programme on the safety of battery rooms onboard harbour craft.

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Singapore institute joins partnership to advance maritime electrification and battery safety

Representatives from ABS, University of Michigan (UM), Singapore Institute of Technology (SIT) and Sea Forrest Technologies (S) Pte Ltd. recently signed a memorandum of understanding to explore batteries and electrification in maritime applications. 

The agreement establishes a cooperative framework for the organisations to collaborate on academic and scientific projects related to battery technologies and electrification capabilities, with activities to include the development of publications and reports along with joint research projects and workshops.

According to SIT, this partnership builds on SIT’s ongoing collaboration with ABS Houston and Sea Forrest under the Future Ship and System Design (FSSD) programme on the safety of battery rooms onboard harbour craft. 

With UM, SIT is broadening the scope and impact of this vital research, while creating valuable learning and research opportunities for our students and academic staff.

“This collaboration allows SIT to leverage our research expertise and partner with global leaders and innovators in advancing maritime electrification. It provides valuable learning and research opportunities for our students and faculty. By bridging education, research, and industry application, SIT is committed to nurturing talent and co-developing safe and practical solutions that will support the sector’s transition towards a more sustainable future,” said Bernard Nee, Deputy President (Industry & Community), SIT.

“Electrification is a key technology in the industry that offers tangible benefits in marine and offshore operations, supporting advancements in efficiency and regulatory compliance. ABS is proud to work with leading research institutions like the University of Michigan and Singapore Institute of Technology, as well as forward-thinking innovators such as Sea Forrest, to strengthen maritime safety around these important technologies,” said Patrick Ryan, ABS Senior Vice President and Chief Technology Officer.

“This collaboration spans the globe and unites three sectors that are essential to advancing maritime electrification—academia, industry, and technology development—and we’re looking forward to creating a pathway to move promising ideas from the lab to the marketplace,” said Karen A. Thole, the Robert J. Vlasic Dean of Engineering at the University of Michigan.

“This MOU reflects our shared commitment to accelerate maritime electrification. Together with ABS, the University of Michigan and Singapore Institute of Technology, we’re setting a new standard for marinised batteries – faster approvals, uncompromised safety, and a critical step towards enabling mass adoption of clean energy solutions for maritime decarbonisation,” said George Lee, Chief Executive Officer, Sea Forrest Technologies (S) Pte Ltd.

 

Photo credit: Brenda Ahearn/University of Michigan, College of Engineering, Communications and Marketing
Published: 15 September 2025

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WK NatPower expands inland shipping electrification drive into Jiangsu

WK NatPower and Jiangsu Port Investment will strengthen collaboration across the maritime, port and clean energy sectors, bringing together expertise in shipping, port infrastructure and electrification technologies.

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WK NatPower expands inland shipping electrification drive into Jiangsu

Wah Kwong NatPower (WK NatPower) on Wednesday (2 September) said it signed a Memorandum of Understanding (MoU) with Jiangsu Port Group Investment Management Co Ltd (Jiangsu Port Investment), a wholly owned subsidiary of Jiangsu Port Group, at the Jiangsu International Maritime Conference in Nanjing. 

The company said the MoU strengthens collaboration across the maritime, port and clean energy sectors, bringing together expertise in shipping, port infrastructure and electrification technologies.

As China’s leading province for inland waterway transport, with the country’s largest inland waterway network, Jiangsu plays a critical role in the nation’s shipping and logistics system. 

“The partnership represents a strategic step in WK NatPower’s China strategy,” the company said in a statement. 

Building on the momentum of its Zhejiang projects, WK NatPower is extending its footprint further into one of the country’s most significant inland shipping areas. By leveraging the strengths of their respective parent companies, Jiangsu Port Group, Wah Kwong Maritime Transport and NatPower, the parties will also establish a cooperation mechanism to explore opportunities for deeper collaboration and enhance the complementary use of global maritime and port resources.

From a technological perspective, WK NatPower is evolving from individual charging infrastructure towards integrated energy systems combining charging, battery storage and battery-swapping solutions capable of serving a broader range of operational scenarios. 

By combining the international experience and global network of WK NatPower and its partner NatPower Marine, with Jiangsu Port Group’s local resources and project delivery capabilities, the partnership will promote coordinated regional development. 

It also demonstrates WK NatPower’s commitment to the electrification of China’s inland waterway transport sector.

 

Photo credit: Wah Kwong NatPower
Published: 3 September, 2026

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Battery

Port electrification could cut 10% of international shipping emissions, study finds

Finding offered hope that the 10% of international shipping emissions which occur within port areas, can be effectively mitigated via electrification technologies such as cold ironing at berth.

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RESIZED Chris Pagan

UCL Shipping and Oceans Research Group on Thursday (27 August) said new research has suggested that 10% of international shipping emissions occur within port areas globally. 

The finding offered hope that these emissions can be effectively mitigated via electrification technologies such as cold ironing at berth, switching to battery electric propulsion whilst idling or manoeuvring at port and converting vessels engaged with short-sea routes to battery-operated electric vessels. 

Presented as an interactive tool on the UCL Shipping and Oceans Research Group website, the ‘Shipping GHG Emissions Explorer’ aims to improve the evidence base supporting IMO negotiations due to resume next week on the adoption of the Net Zero Framework (NZF). 

Built using a dataset of 1.2 million voyages undertaken by over 43,000 unique vessels across a single year, the tool offers IMO delegations visibility on which of 575 million tonnes of CO2e emissions generated by international shipping can be attributed to their country’s economic activity.

James Stewart, Research Fellow in the Analytics of Energy and Transport at the UCL Shipping and Oceans Research Group, said: “Although imperfect, AIS-centred big data approaches have revolutionised our ability to understand key trends in the energy demands and GHG emissions associated with international shipping activity. The tool offers users the chance to benefit from this unprecedented clarity by downloading aggregate data directly from the platform, where interested parties are encouraged to explore and validate available statistics with any complementary datasets they may have access to.”

The tool offers energy demand and GHG emission statistics during port and voyage phases alongside disaggregation possibilities by vessel type, port and maritime trade partner, enabling users to explore key trends in international shipping activity. Future updates to the tool slated for release in September will provide users with additional statistics on state-level seaborne trade volumes and potential economic impacts of the proposed amendments to the IMO NZF ahead of their potential for adoption later in  the year.

Yoseph Ismail, Research Assistant at the UCL Shipping and Oceans Research Group, said: “Having the ability to breakdown international voyages by their ‘In port’ and ‘In voyage’ emissions has given us significant insight into what benefits electrification in port could bring. Our granular approach has allowed us to discover key trends in the country data. 

“For instance, 7 out of 10 countries in Latin America/Caribbean and 8 out of 10 in East Asia Pacific that have the highest in port emissions are small island nations. These countries emissions, are all well above global and regional averages, and often above 20%. Further analysis into the reasons for this could go a long way towards finding the most cost-effective solutions to bring down emissions.”

Note: The Shipping GHG Emissions Explorer can be found here.

 

Photo credit: Chris Pagan on Unsplash
Published: 31 August, 2026

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Baltic Workboats delivers biomethane-powered multi-purpose workboat

“KRATT” is Estonia’s first large workboat to use biomethane as its primary fuel and is also equipped with a 400 kWh battery bank for electric propulsion.

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Baltic Workboats delivers biomethane-powered multi-purpose workboat

Baltic Workboats recently said a new 38-metre multi-purpose workboat, KRATT, built for the Estonian State Fleet, has been christened at its Nasva shipyard in Saaremaa on 12 August. 

KRATT is Estonia’s first large workboat to use biomethane as its primary fuel and is also equipped with a 400 kWh battery bank for electric propulsion. 

On biomethane, the vessel can travel up to 1,000 nautical miles at a speed of seven knots. On battery power, it can operate for up to two hours at five knots. The battery bank also allows the vessel to use electric power for up to ten hours while at anchor, reducing the need to run auxiliary engines as well as fuel consumption, emissions and noise levels.

From autumn, the vessel will carry out a wide range of maritime tasks in Estonian waters, from buoy handling and fairway maintenance to marine research, pollution response and rescue operations.

According to Andres Laasma, Director General of the Estonian State Fleet, the gradual renewal of the state-owned fleet is essential to ensure the country’s ability to carry out its maritime duties.

“Our main workboats today are on average 30-40 years old, and maintaining their reliability is becoming more difficult and costly year by year. The new workboat KRATT will help ease this situation, as it is a multi-purpose vessel capable of performing a wide range of tasks,” Laasma said.

KRATT is the first major workboat ordered by the state in the past ten years.

 

Photo credit: Baltic Workboats
Published: 19 August, 2026

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