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LR: Feedstock availability poses challenge to bio bunker fuel adoption in shipping

Feedstock availability and demand competition from other transport sectors pose challenges that will need to be addressed for widespread adoption in shipping, finds LR report.

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Biofuels may have an important role to play in shipping’s decarbonisation, but feedstock availability and demand competition from other transport sectors pose challenges that will need to be addressed for widespread adoption, according to Lloyd’s Register’s (LR) new Fuel for Thought: Biofuel report.

The report pointed to biofuels as a path to compliance with environmental regulations for ships for which retrofits to adopt other future fuels are not economically feasible. As ‘drop-in’ replacements for traditional fuels, biofuels require minimal changes to machinery and operations and offer GHG emissions savings of up to 84% compared to traditional fuels. 

The similarities between biofuels and their fossil equivalents, as well as the ability to blend biofuels with traditional fuels, makes adopting biofuels a comparatively straightforward process for shipowners compared to other alternative fuels. Biofuels are generally compatible with existing onboard machinery and fuel tanks, use the same bunkering infrastructure as fossil equivalents, and their similarity to traditional bunkers means training requirements for crew are minimal compared to other future fuels.

The most established products suitable for shipping are Fatty Acid Methyl Ester (FAME) and Hydrotreated Vegetable Oil (HVO), and novel fuels continue to be developed. Ship operators need to be alert to the individual characteristics of any given biofuel.

There are many types of biofuels produced through different processes using a wide range of feedstocks, variables that affect the GHG intensity of a fuel and that can raise operational considerations for machinery. Fuel for Thought: Biofuel details industry standards for FAME and HVO, common considerations for engines and machinery and when using biofuels, and a process for undertaking trials of novel and untested biofuels in marine engines.

The report stated that the main challenges for widespread deployment are availability and demand competition from other transport sectors, including aviation, and the investment in biofuel production capacity that will be needed to meet the growing demand from the transport sector. The price of biodiesel blends is expected to rise alongside blending levels as feedstock prices are driven higher by demand.

Tim Wilson, Principal Specialist Fuels Lubes and Emissions, Lloyd’s Register, said: “Biofuels are unique among the future fuels for shipping as the vast majority of the world fleet is equipped with engines that can use them. As a drop-in replacement for fossil fuels, biofuels are an available and affordable method of reducing carbon emissions in the short term without large capital investment. The range of biofuel trials across ship segments and biofuel types reflect a strong level of interest from shipowners in their use onboard.”

Fuel for Thought: Biofuel gathers into one place the most relevant information on the use of biofuels in shipping, serving as a convenient reference for shipowners considering alternative fuel options for their fleets, and for maritime professionals seeking a deeper understanding of the zero-carbon transition. The report combines expertise from LR and other shipping knowledge leaders on topics including the characteristics and operational considerations for biofuels, regulatory drivers for biofuel adoption, techno-economic considerations, fuel quality and availability, and biofuel trials in shipping.

The report builds on the success of earlier Fuel for Thought reports, where LR is creating a one-stop repository for relevant information on all alternative fuels for the maritime industry. The report also contains information from LR’s recently updated Zero Carbon Fuel Monitor, an insight-based assessment of the readiness of biofuels and other zero carbon fuels for maritime applications.

Note: Lloyd’s Register’s (LR) new Fuel for Thought: Biofuel report can be found here.

 

Photo credit: william william on Unsplash
Published: 9 September, 2024 

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BHP and GCMD trial multi-feedstock B100 bio bunker fuel on bulk carrier

Bio-blend in the BHP and GCMD pilot is being used on a BHP-chartered bulk carrier “Berge Lyngor”, which was bunkered in Singapore in early May.

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BHP and GCMD trial multi-feedstock B100 bio bunker fuel on bulk carrier

BHP and the Global Centre for Maritime Decarbonisation (GCMD) on Wednesday (3 June) said they have blended biofuels from two distinct feedstocks—used cooking oil and waste animal fats —and introduced the lower-emissions marine fuel into a BHP-chartered bulk carrier as part of a pilot project.

The bio-blend in the BHP and GCMD pilot is being used on a BHP-chartered bulk carrier Berge Lyngor, owned and operated by Berge Bulk, transporting BHP iron ore from Western Australia to China. When run on bio-blend, the vessel has the potential to reduce well-to-wake greenhouse gas emissions by approximately 79 per cent per voyage compared to sailing on very low sulphur fuel oil (VLSFO).

The vessel bunkered in Singapore in early May with a B100 bio-blend comprising 50 percent tallow-derived biodiesel, sourced and supplied by HAMR Energy, and 50 per cent used cooking oil (UCOME) supplied by Mitsui & Co Energy Trading Singapore (METS).

Mitsui also blended the fuel and Dan-Bunkering coordinated and executed the bunkering operation, which was performed by Global Energy’s barge MT Maple.

The BHP and GCMD pilot will assess how biofuels from multiple feedstocks can be blended, handled, and introduced under real-world operating conditions using existing used cooking oil bunkering infrastructure.

At the same time, insights from this pilot will help identify solutions to challenges related to fuel quality, handling, traceability, and onboard vessel performance.

Biofuels for global shipping today rely heavily on used cooking oil – a feedstock whose availability is approaching its projected limits. Biofuel from waste animal fats presents a promising option to expand the supply of lower-emissions marine fuels.

The outcomes of the pilot are expected to shed light on the practical steps to integrate biofuel blends from different feedstocks into existing supply chains. The diversity of biofuels will provide shipowners and operators with greater flexibility to optimise fuel procurement based on cost, availability, and lifecycle emissions performance.

Biofuels derived from different feedstocks can exhibit varying properties that may impact operations, including potential corrosion from oxidation, fuel system clogging caused by wax formation, which this pilot aims to assess.

The pilot will trace and verify the biofuel blend’s integrity aimed at bolstering confidence in emissions reductions reporting. The pilot will also provide insights into how robust tracing can support future marine fuel supply chains where biofuels from multiple feedstocks with varying lifecycle greenhouse gas emissions footprints are blended together.

This project is co-funded by the Maritime and Port Authority of Singapore under the Maritime Innovation and Technology Fund (MINT).

 

Photo credit: Global Centre for Maritime Decarbonisation
Published: 3 June, 2026

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NYK starts one-year B100 bio bunker fuel trial on car carrier

In this trial, NYK will operate a car carrier continuously on B100 for one year to evaluate the impact on engines, fuel supply systems, and operational practices.

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NYK starts one-year B100 bio bunker fuel trial on car carrier

Japanese shipping firm NYK on Tuesday (2 June) said it has commenced a one-year long-term trial involving the continuous use of 100% biofuel (B100) on an NYK-operated car carrier. 

In this trial, NYK will operate a car carrier continuously on B100 for one year to evaluate the impact on engines, fuel supply systems, and operational practices. High-purity biofuels such as B100 are known to be susceptible to degradation from oxygen, light, and heat, raising concerns about the stability of such fuels during long-term use.

In this trial, the biofuel primarily comprises FAME (Fatty Acid Methyl Ester) derived from used cooking oil and similar feedstocks.

The initiative is designed to evaluate the fuel’s effects on the vessel’s equipment and verify operational safety under real-world conditions. 

Through this effort, NYK seeks to accumulate technical expertise that will support the broader use of high-purity biofuels and further accelerate efforts to reduce greenhouse gas (GHG) emissions.

NYK has been advancing the use of biofuels through various initiatives. In 2024, the company conducted a trial using biofuel blend B24 and subsequently expanded practical usage to B30. However, the company said there remains limited global experience with the long-term continuous use of B100.

“By collecting long-term operational data through this trial, NYK aims to accumulate valuable technical insights to support both the safe operation of vessels and the wider adoption of high-purity biofuels,” it said. 

 

Photo credit: NYK
Published: 3 June, 2026

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Dutch inland barge “Birjo II” to fully operate on B100 bio bunker fuel

Conversion of the barge to run on B100 demonstrates how existing barges can already contribute to a more sustainable transport sector, says Sunoil.

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Dutch inland barge “Birjo II” to fully operate on B100 bio bunker fuel

Biofuel producer Sunoil recently said it successfully converted the barge Birjo II to run on 100% biodiesel (B100), in collaboration with BFT Tanker Logistics. 

The company said the conversion of the barge to run on B100 marks an important step toward reducing emissions within inland shipping and demonstrates how existing barges can already contribute to a more sustainable transport sector.

The Birjo II, owned by DK Shipping, is a large barge used for transporting biofuels on Dutch inland waterways. It is primarily used for transporting biodiesel from Sunoil’s production facility in Kampen to its storage locations, while also carrying out direct deliveries to customers.

By transitioning from fossil fuel to B100, the barge can reduce CO₂ emissions by up to 90% while continuing normal operations without replacing the engine itself. 

“This makes Birjo II one of the first barges in the world capable of running fully on 100% biodiesel,” the company added. 

The barge will be able to be fueled directly from Sunoil’s Kampen location, creating a fully integrated renewable fuel chain from production to transport and end use.

“What makes this project especially valuable for Sunoil is that Birjo II now operates on our own biodiesel while transporting renewable fuels between our locations and customers,” said Jeroen Hovius, Chief Commercial Officer at Sunoil. 

“Together with BFT, we are continuing a strong long-term collaboration focused on practical solutions that help make inland shipping more sustainable. At the same time, this project creates a platform for the conversion and rollout of multiple barges operating on B100 across Europe.”

Sunoil said the successful conversion of Birjo II demonstrates that existing inland shipping assets can already be adapted today to significantly reduce emissions. 

“It highlights how practical renewable fuel solutions can support a more sustainable future for inland shipping without requiring full vessel replacement,” it added. 

 

Photo credit: Sunoil
Published: 3 June, 2026

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