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The Standard Club issues Exhaust Gas Cleaning Systems (Scrubber) Guidance

Updates on list of ports with discharge bans, considerations of scrubber types, and equipment breakdown.

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Yves Vandenborn, Director of Loss Prevention, and Akshat Arora, Senior Surveyor, at the Standard Club on Wednesday (11 December) published an industry guidance on scrubber systems informing on the latest list of ports with discharge bans, considerations of scrubber types, and equipment breakdown; the article has been shared with Manifold Times:

Introduction

In a few weeks, IMO’s ‘global sulphur cap’ will take effect. The permitted levels of SOx in ship emissions will be restricted in association with the revised MARPOL Annex VI, ie the current sulphur limit of 3.5% of any fuel oil used onboard ships will be reduced to 0.5% from 1 January 2020, except for ships using ‘equivalent’ compliance mechanisms.

It is yet to be proven how reliable the quality and supply of low sulphur compliant fuel (LSFO) is. There is a possibility that the price of high sulphur fuel oil (HSFO) could see a sharp decline in 2020. 

The ‘equivalent’ compliance mechanism includes fitting ships with an Exhaust Gas Cleaning System (EGCS), or scrubber that cleans exhaust gasses from the engines. Ships with scrubber installations are allowed to run on HFSO under the new regulations. Considering fuel price differentials, it is possible for shipowners to benefit from the lower prices of HSFO by choosing this method of compliance with the regulations.

Should members elect to continue operating on HSFO with scrubbers, they will need to consider a few factors which are outlined below.

Exhaust Gas Cleaning Systems

The available SOx scrubbing technologies fall into two main categories: dry and wet scrubbing systems.

Dry scrubbers, as the name implies, do not use water or any liquid substances to carry out the scrubbing process. Instead, the system exposes hydrated lime-treated granulates to the exhaust gas to create a chemical reaction that removes the SOx emission compounds. They are more commonly used on land-based installations and not so common for marine use.

Wet scrubbers are more common in the marine industry. These fall into three design variations:

  1. Open loop system, where seawater with naturally existing alkali is used for scrubbing and discharged back into the sea. These are only effective in removing SOx compounds from the exhaust gas when the source water is alkaline, therefore their effectiveness depends on the alkalinity of the water the vessel is operating in. Open loop scrubbers are relatively simple and comparatively cheaper than other wet scrubbing systems. Among the limitations of this system is the need to position the overboard discharge well away from the sea chests, as well as strict domestic wash water discharge regulations in some parts of the world (see table below).
  2. Closed loop system, where seawater or fresh water is typically treated by adding sodium hydroxide (caustic soda) to achieve the required alkalinity for scrubbing and neutralization. This system requires a separate tank for collecting any residual waste. This could incur additional expense, and logistical coordination in obtaining supplies and arranging for the discharge of waste to shore reception facilities.
  3. Hybrid system, which offers maximum flexibility, is a combination of the open and closed loop; but it is more complex and expensive.

Overview of scrubber discharge bans 
Some port states have concerns regarding water borne sulphates resulting from the neutralizing process being discharged into the sea, as they have been known to significantly change the pH of sea water. The changes may have an impact on marine biodiversity, especially among fish species. Therefore, discharge limitations set by the IMO and various region regulations stipulate that the pH of the wash water discharge must be measured prior to overboard discharge. 

Wash water from open loop scrubbers must be treated and monitored at the inlet and outlet to ensure that it conforms with the MEPC 259(68) discharge criteria, with no risk of harm to the environment. However, some coastal states and ports have implemented local regulations with more stringent requirements for the quality of wash water being discharged overboard. Details of these ports are given below:
 

China Discharge prohibited in inland & coastal ECAs and Bohai Bay waters.
**Ban in the entire coastal domestic ECA may be announced soon.
Hong Kong Discharge may be allowed but vessels are to request permission to use non-compliant fuel 14 days before arrival.
Singapore Use of open loop scrubbers prohibited within Singapore port limit.
Malaysia Use of open loop scrubbers prohibited throughout Malaysian territorial waters & ports.
India Generally permitted but some ports may have more stringent requirements in place.
UAE Abu Dhabi may allow discharge overboard if free from pollutants, whilst scrubber sludge should be discharged to a licensed waste disposal contractor. 
Fujairah has banned the use of open loop scrubbers in territorial waters.
Belgium Discharge prohibited in ports and inland waterways.
Germany Discharge prohibited in inland waterways and on the Rhine.
Lithuania Discharge prohibited when in port.
Latvia Discharge prohibited in territorial and port waters.
Ireland Discharge prohibited in ports of Dublin, Waterford and Cork.
Norway Discharge prohibited in Norwegian fjords (visible emissions reduction also required).
Panama Use of open loop scrubbers prohibited in Panama Canal waters.
Hawaii Currently permitted subject to special conditions.
Conneticut Discharge prohibited.
California Use of scrubbers is banned.

Members with an open-loop (or hybrid) EGCS system installed on their ships would need to be mindful when their ships operate in regions where scrubber discharge is banned. The ships will need to switch to either closed-loop mode or to compliant fuel well in advance of the ship’s arrival at such ports.

Scrubber type considerations
Vessels' operational profiles will differ vastly, and each ship will have its own unique solution. Some of the factors for deciding which type of scrubber to install, include: 

  • Vessel’s trading pattern – alkalinity of water on deep sea passage and length of periods in/out of restricted areas where scrubber wash-water is banned.
  • Commercial aspects – charterparty agreement, current fuel oil consumption, fuel oil bunker capacity, etc.
  • Initial investment, operational and maintenance costs – is the scrubber system type approved and inclusive of after-sales service provided by the manufacturer.
  • Installation time – installation times may vary depending on the ease of access to the funnel space and on the complexity/size of scrubber to be fitted. 
  • Vessel configuration – space availability onboard and complexity of the system (piping, tanks, etc).
  • Power requirement – additional load availability to operate the scrubber support systems.
  • Stability and lightship weight – these need to be evaluated due to the additional weight of the scrubber system.
  • Recalculation of the ship’s Gross Tonnage (GT) – due to enclosed superstructure being enlarged, causing volumetric change. 
  • Strengthening and Structural Enforcement – scrubber that is installed at the stern section of the ship may increase the ship’s hogging moment.
  • Increase of exhaust backpressure – may result in additional fuel consumption, increased component temperatures and increased wear.
  • Crew training – this will include operating the scrubber unit, monitoring control systems and carrying out maintenance, but also safe handling of the chemicals used and scrubber waste. The maintenance checklist and critical spares list will need to be prepared in consultation with the manufacturer.

 
Scrubber breakdown

Scrubbers, like any other piece of mechanical equipment, can break down from time to time. In the case of an exhaust gas scrubber installation, it is likely this will involve the external support equipment, pumps, pipes, valves, etc. Apart from the nozzles, there is very little that is likely to fail within the scrubber itself.

Corrosion
The wash water from scrubbers is acidic and highly corrosive. The effects are aggravated by high temperatures of exhaust gases. Therefore, the structural integrity of the scrubber and associated pipework will need to be regularly checked for signs of leakage or corrosion.

There are recent reports of scrubber pipework failing very early in the life of the installation, sometimes within six months of commissioning. These failures could be traced back to quality issues during its installation. Corrosion has been discovered in pipes leading from the scrubber and in way of the residue treatment systems which handle acidic substances. 

Pipes in these systems should ideally be manufactured from a corrosion resistant material, but as the demand to install scrubbers moves at an increasing pace, these materials are short in supply.

As an alternative, steel pipes are applied with a corrosive resistant protective coating and, like any other protective coating, for example ship shell coatings, the preparation of the substrate is very important. If the preparations are not carried out correctly, for example correct cleaning procedures with etching or pickling to remove grease and acid deposits from the internal surfaces of the pipe and for all corrosion products (for example surface rusting) to have been removed, the coating will not bond with the substrate correctly leading to an early failure of the coating. Similarly, it is essential the complete recommended coating system is correctly applied to the required dry film thickness (DFT) as set out by the coating manufacturer.

When overseeing a scrubber installation, members need to pay extra attention to the installation and coating of the system pipework, remembering that welding onto the surface of a pipe may well destroy any internal coating and could lead to an unexpected early failure of the pipe.

Failure of the above equipment will render the scrubber non-operational, making it mandatory for the ship to report it to the flag and relevant port state authority immediately.

Contingency planning
It is recommended that the Ship’s Implementation Plan (SIP) include a section on ‘contingency planning’ as there could be a potential non-compliance and off-hires in circumstances where the scrubber system breaks down or is defective. 

In case of a breakdown or reduced performance, members would need to notify both the flag and port states immediately. This should be viewed as a temporary non-compliance, but the vessel would not be in breach of the regulations if the vessel immediately took steps to change over to a compliant fuel. If a compliant fuel is not available, it must be bunkered at the next port alongside the necessary repairs.

Difficulty in repairing scrubber units while the vessel is in remote regions should be anticipated. Due diligence and preparation would require members to revisit their critical spares list, and in consultation with the manufacturer, add items which are most likely to break down, including the continuous emissions monitoring system. 

The Exhaust Gas Cleaning Systems Association (EGCSA) has produced a logic flow diagram which examines this scenario and provides guidance on appropriate steps to rectify the problem and remain compliant with MARPOL Annex VI, this is shown here. The Association also published a guide which can be found here.

Conclusion

The case for scrubbers largely depends on the ship’s trading pattern, fuel availability and price differential between the high and low sulphur (compliant) fuel oil.

While this compliance option may be lucrative for large vessels with high fuel consumption, in order to gain the competitive edge, the shipowner/operator would also need to consider the right technology and utilize reliable suppliers as any breakdown or malfunction of the scrubber could lead to significant fines.

The contractual agreements would also need to consider the down time for scrubber installation and other aspects which are covered in the club's article discussing charterparty FAQs

With thanks to Charles Taylor Adjusting / Marine for their contribution to the technical aspects of this article

Source: The Standard Club
Photo credit: Manifold Times
Published: 12 December, 2019

 

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Ammonia

AM Green plans to build green ammonia plant at Indian port

Initiative also includes development of green ammonia handling, storage and bunkering infrastructure, pilot bunkering operations, safety procedures and training programmes, says VOC Port Authority.

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VO Chidambaranar (VOC) Port Authority on Friday (29 May) said it has signed a Memorandum of Understanding (MoU) with India’s ammonia producer AM Green Ammonia to collaborate in the development of a green ammonia production plant.

The plant will have a capacity of one million tonnes per annum (MTPA) at Tuticorin.

The initiative also includes development of green ammonia handling, storage and bunkering infrastructure, pilot bunkering operations, safety procedures and training programmes. 

The project is expected to support the development of green fuel corridors connecting VOC Port with major ports in Europe and Asia, thereby strengthening India’s position in the global green fuels value chain.

VOC Port also signed a Memorandum of Understanding (MoU) with Bureau Veritas (India) Pvt. Ltd., to collaborate on Green Port certification, emissions accounting, ESG reporting, safety validation, development of green bunkering practices, and establishment of a Centre of Excellence for green fuels and sustainability.

The port also plans for an upcoming 750 m³ green methanol bunkering facility.

 

Photo credit: Naveed Ahmed on Unsplash
Published: 3 June, 2026

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Port & Regulatory

Study: Major drop in ship sulphur emissions confirmed following IMO regulations

National Centre for Atmospheric Science study found that the average sulphur content in ship fuel dropped nearly tenfold in open ocean areas following IMO’s 2020 regulation.

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Recent global regulations have significantly reduced sulphur emissions from ships, helping to improve air quality in coastal regions – confirmed by a recent international study led by researchers at the National Centre for Atmospheric Science. 

The research, published in Environmental Science: Atmospheres, used aircraft and ground-based instruments to measure sulphur dioxide and nitrogen oxides emitted by ships in the North-East Atlantic and European coastal waters between 2019 and 2023.

The team found that the average sulphur content in ship fuel dropped nearly tenfold in open ocean areas following the International Maritime Organization’s 2020 regulation, which capped sulphur content in marine fuel at 0.5%. 

Before the change, many ships exceeded the previous 3.5% limit. After 2020, only a small number of ships were found to breach the new standard.

In European sulphur Emission Control Areas (SECAs), such as the English Channel and the Port of Tyne, sulphur levels were even lower – well below the stricter 0.1% limit. Interestingly, ports outside these zones, like Valencia in Spain, also showed low sulphur levels, likely due to EU rules requiring cleaner fuel when ships are docked for extended periods.

This is the first study to use aircraft-based measurements and predictions from the Ship Traffic Emission Assessment Model (STEAM3) to assess ship emissions outside of sulphur control zones since the 2020 regulation came into effect. The findings support the widely held view that ships now emit around seven times less sulphur than before the rule change – an important step toward cleaner air and healthier coastal environments.

Note: The research, titled ‘SO2 and NOx emissions from ships in North-East Atlantic waters: in situ measurements and comparison with an emission model’ can be found here. 

 

Photo credit: shraga kopstein on Unsplash
Published: 8 December, 2025

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Interview

IBIA Annual Convention 2025: ‘Exciting times’ for post IMO 2020 bunker suppliers, states Equatorial

Choong Sheen Mao, Chief Operating Officer, Equatorial, describes to Manifold Times the pre/post IMO 2020 challenges and evolution of bunker suppliers.

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The International Bunkering Industry Association (IBIA) will be hosting its flagship Annual Convention in Hong Kong at the Hong Kong Convention Exhibition & Convention Centre between 18 to 20 November 2025, as part of Hong Kong Maritime Week.

Choong Sheen Mao, Chief Operating Officer, Equatorial Marine Fuel Management Services (Equatorial), speaks to bunkering publication Manifold Times about the challenges of a post IMO 2020 bunker supplier.

MT: How does Equatorial continue to offer customer assurance and maintenance of marine fuel quality to ISO8217 standards despite increasing complexity of bunker fuel blends?

We maintain our focus to provide compliant, quality and competitively priced products to our customers. There is no shortcut. We source our products from a wide range of cargo producers and suppliers. We continue to be strict and vigilant with our testing programme for our products before delivering them to our customers. Equatorial has deepened our engagement with the wider industry to have a better and up-to-date understanding of the existing and new marine fuels.

MT: Can you share the evolution of commercial marine fuel procurement, blending and trading strategies on the back of increasing fuel types (pre/post IMO 2020)?

Pre IMO 2020, the main types of marine fuel procured and consumed by vessels were high-sulphur fuel oil, marine diesel oil and marine gas oil. Trading strategies were therefore closely linked to that within the oil industry.

However, many of the new fuel types are from other industries. For example, biofuels, methanol and ammonia are mainly products from the chemical and agriculture industries. There are marked differences between these industries and the energy industry (in particular, the marine fuels industry). LNG is from the gas industry which is distinct from the oil industry.

Without an existing liquid paper market for many of these commodities (especially as a marine fuel), the price risk management is less straightforward. Furthermore, commodity prices are no longer the sole consideration for price itself. The price of compliance must be considered. This could range from guaranteeing the origin of the marine fuel, its sulphur properties as well as its carbon intensity. The list goes on.

MT: Operational wise, what are the changing role and responsibilities of a bunker supplier to date, compared to before IMO 2020?

The role and responsibility of a bunker supplier have evolved. Fundamentally, it has been about providing quality marine fuels at competitive prices. Quantity assurance has been a critical concern which led to the mandatory implementation of the mass flow meter system for bunkering in the Port of Singapore. Interestingly, due to the nature of credit terms in the bunker industry, bunker suppliers also performed the role of “bankers” by extending favourable credit terms to shipowners and charterers.

These days, post IMO 2020, things have become even more complicated. Today, a bunker supplier retains the abovementioned roles and responsibilities, and much more – it has to ensure compliance with a plethora of rules and regulations. Compliance not only with sulphur cap requirements, but with international and regional sanctions and restrictions unrelated to the quality of the marine fuel itself. In fact, especially with alternative low- and zero-carbon marine fuels, this means compliance with standards, rules and regulations on sustainability such as the European Renewable Energy Directive and/or International Sustainability and Carbon Certification. There is also the need to comply with increasingly stringent safety regulations on both conventional and alternative marine fuels.

In addition to the above, a post IMO 2020 bunker supplier is still expected to supply compliant and quality fuel at competitive prices.

MT: Equatorial is Singapore’s largest local-born supplier; what is the next big thing for the company?

Equatorial continues to adapt and improve with the times, while maintaining its core values – Integrity, Teamwork, Commitment, Proficiency and Quality, and Safety and Environment. The bunker industry is a highly competitive one, and it is our intention to keep our competitive edge and remain relevant. This means that we have had to step out of our comfort zone and embrace the two mega trends of our time – digitalisation and decarbonisation.

We have been early adopters and developers of the electronic bunkering note as part of our own digital bunkering efforts. We have diversified our product offering to include low carbon marine fuels and are proud to be one of the pioneers for bunkering B100 biofuels earlier this year. This was made possible by the arrival of our IMO Type II chemical and oil bunker tankers. These same bunker tankers are also capable for carrying and delivering methanol. Equatorial has invested in an LNG bunkering vessel (LBV) newbuilding that is set to be delivered in Q3 2027. We are also involved in a study to develop low- or zero-carbon ammonia bunkering in Singapore.

These are exciting times.

Note: Choong Sheen Mao is amongst panellists featured in ‘Session Three: Bunker Sellers Panel’ at the IBIA Annual Convention 2025.

Join the Conversation

With over 300 delegates expected, the IBIA Annual Convention 2025 is set to be a defining moment for the marine fuels industry. Registration is now open via the IBIA Annual Convention website.

 

Photo credit: Manifold Times
Published: 31 October 2025

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