Survitec awarded €22.7m contract for dry inert gas systems

Survitec to supply LNG carrier safety systems in China

Survitec has announced that its brand Maritime Protection will provide dry inert gas systems for 24 LNG carriers under construction in China.

The company confirmed on 9 June that the contract is valued at €22.7 million and covers equipment deliveries between 2026 and 2030.

According to Survitec, the deal is the largest single order in Maritime Protection’s history and supports Qatar’s second LNG fleet expansion programme.

The systems will be installed on vessels owned by a consortium of five shipowners.

Each unit will include a high-capacity dry inert gas generator rated at 21,000 Nm³/h.

Design and delivery to span four years

Survitec stated that deliveries will be phased to align with vessel completion schedules.

The manufacturer said the systems will be installed between 2026 and 2030 across 24 ships.

It added that the project will contribute to meeting rising global demand for liquefied natural gas transport.

According to Survitec, system design maturity and operational reliability were central to the contract evaluation process.

The company noted that the order followed a multi-party selection process involving detailed technical reviews.

Bernt Øhrn, Managing Director at Maritime Protection, said: “This is a defining contract for Maritime Protection.

“It’s the largest single order in our history and reflects the growing demand for engineered safety systems in the LNG sector.”

Technical specifications and compliance

Survitec confirmed that each system includes a combustion chamber, cooler, chiller and dryer arranged in a horizontal configuration.

The company stated that this layout helps eliminate hydrocarbon risk in the seawater drain.

It added that the dry inert gas systems are designed to maintain an oxygen level near 1 percent in cargo tanks, minimising fire and explosion risk during operations such as dry docking.

Survitec explained that the design meets approval standards set by DNV, BV, ABS and Lloyd’s Register.

These approvals are required by the shipowners commissioning the new LNG carriers.

Market confidence in existing performance

Survitec highlighted that Maritime Protection has delivered dry inert gas generators for over 400 gas tankers since 2005.

It stated that more than half of those deliveries occurred in the past five years.

Knut Kaupang, Director of Sales at Maritime Protection, said: “Throughout the quotation process, it became clear that the shipowners were focused on securing a technically mature solution from a supplier with a long-standing track record in the LNG sector.

“The vessels involved are among the largest and most advanced of their type, and the equipment requirements reflect that scale.

“Our system design has been proven across a wide range of vessel types and operating conditions, which has helped build confidence among all stakeholders involved.

“When equipment is this integral to a ship’s infrastructure, owners need to have certainty in the design, the delivery capability, and the long-term support behind it.”

Industry relevance and contract background

Survitec reported that the contract was awarded following an extended negotiation period.

It stated that performance history, system maturity and lifecycle support were all key evaluation criteria.

The LNG carriers form part of a wider expansion programme aiming to support increased liquefied natural gas distribution worldwide.

Maritime Protection is responsible for engineering, manufacturing and service delivery across the lifecycle of the supplied systems.

The company noted that its integrated delivery model was a factor in the contract decision.

Survitec awarded €22.7m contract for dry inert gas systems: Summary

Survitec announced a €22.7 million contract to supply dry inert gas systems.

The contract was awarded to Survitec’s brand Maritime Protection.

It covers 24 LNG carriers being built in China for five shipowners.

The project is part of Qatar’s second LNG fleet expansion programme.

Deliveries will occur between 2026 and 2030.

Each system includes a 21,000 Nm³/h dry inert gas generator.

System design includes a combustion chamber, cooler, chiller and dryer.

The layout eliminates hydrocarbon risk in the seawater drain.

The systems are approved by DNV, BV, ABS and Lloyd’s Register.

They are used to maintain oxygen levels of around 1 percent.

This reduces explosion and fire risk during cargo operations.

The contract followed a competitive evaluation and negotiation process.

More than 400 tankers have been fitted with Maritime Protection systems since 2005.

Over half were delivered in the past five years.

Survitec stated that design maturity and lifecycle support influenced the contract award.

Survitec warns of 2026 deadline for fire protection rules on RORO and ROPAX ships

New SOLAS rule requires water monitors on vehicle decks

Survitec has reported that amendments to international maritime fire safety regulations will come into force on 1 January 2026, requiring fixed water monitors on weather decks of RORO and ROPAX ships.

The change was approved at the International Maritime Organization’s 107th Maritime Safety Committee session and modifies SOLAS Chapter II-2 and the FSS Code.

The regulatory update responds to the growing number of fires involving vehicle cargo, including incidents with electric vehicles, which have shown the limitations of current fire suppression systems.

Survitec outlines fire risks and design constraints

According to Rafał Kołodziejski, Head of Product Support and Development – Fire Systems at Survitec, the layout of vehicle decks increases the risk of fire escalation.

Kołodziejski said: “The open and expansive nature of vehicle decks means that a fire can escalate very quickly, potentially spreading across the entire length of the ship.

“This incoming regulatory requirement puts a renewed focus on practical fire suppression systems that can be deployed quickly and effectively to extinguish or control a fire in these large, open deck spaces.”

Fixed water monitors are intended to provide targeted coverage beyond what is possible with sprinkler or deluge systems, especially in areas that are hard to retrofit.

Technical specifications for compliance explained

Survitec noted that the new rules will require two fixed water monitors for ships with a breadth of less than 30 metres and four for ships wider than this.

Each monitor must deliver at least 2.0 litres per minute per square metre, with a total minimum flow rate of 1,250 litres per minute.

The company added that options exist for manually operated, self-oscillating, hydraulic, and electrically controlled systems, offering shipowners choices suited to their vessel configurations.

Equipment selection depends on layout and usage

Michał Sadzyński, Product Manager at Survitec, explained that choosing the correct system is dependent on several operational factors.

Sadzyński stated: “Understanding how to interpret and apply the new rules is as important as the technical specification of the equipment itself.

“We can advise customers on the various monitor types that can be implemented to meet the new requirements, including manually operated, self-oscillating, hydraulic, and electrically controlled systems.

“Each type brings different advantages depending on the ship’s configuration, operating conditions, and available firefighting infrastructure.”

He added that material durability and ease of maintenance are important considerations, particularly for ships operating in challenging environments.

Fixed monitors seen as key to faster suppression

Kołodziejski added that early detection remains a critical safety factor, but rapid suppression using fixed monitors provides a necessary secondary defence.

Kołodziejski said: “Prevention is always better than cure, especially where EV fires are concerned.

“Early monitoring and detection of fire remain key safety factors, but fixed water monitors can play a vital role in supporting a rapid, targeted response to contain and suppress fire.”

He also noted: “Many in the industry are still unaware of the upcoming 2026 deadline.

“As the Team Trusted to Protect Lives, we welcome the opportunity to support our customers with this important development.

“While the regulation change represents a technical requirement, it is also a vital step forward in protecting lives and assets at sea.”

Fire safety regulations for RORO and ROPAX ships to change from 2026: Summary

Survitec has reported that new IMO rules for RORO and ROPAX ships will take effect from 1 January 2026.

The regulations will require fixed water monitors on vehicle decks under changes to SOLAS Chapter II-2 and the FSS Code.

The change follows fires involving vehicle cargo, including electric vehicles.

Survitec explained that deck layout affects fire escalation and suppression requirements.

Fixed monitors offer targeted coverage that can be more effective than traditional systems.

Ships under 30 metres wide must install two monitors.

Ships 30 metres or wider must install four monitors.

Each monitor must deliver a flow of at least 2.0 litres per minute per square metre.

Total flow from all monitors must be at least 1,250 litres per minute.

Survitec stated that both manual and remote-controlled options are available.

Environmental conditions, ship design, and water supply all influence equipment selection.

Survitec warned that many operators may be unaware of the deadline.

The company is offering technical advice to help ensure compliance.

Survitec expands operations to support UAE shipping safety

Expansion adds liferaft servicing to Fujairah facility

Survitec has announced the expansion of its service station in Fujairah, United Arab Emirates.

According to Survitec, the facility now includes 1,350 square metres of new capacity.

This development allows the site to operate as a full-service station for liferaft rental and exchange, lifeboat inspections, and marine fire safety servicing.

The upgrade is intended to reduce turnaround times and help customers meet marine compliance requirements in a single location.

Survitec stated that the Fujairah facility will now support its RaftXChange service, which provides a rental and exchange option for liferafts.

The company added that this service helps reduce downtime and improve efficiency for ship operators in the region.

Survitec targets regulatory compliance and customer needs

Beibei Qiu, Executive Managing Director for APAC & MEA at Survitec, said the investment reflects a direct response to rising service needs in the region.

Qiu said: “This is a targeted investment in regional capacity and capability.

“By broadening the scope of our Fujairah operations, we’re responding directly to the growing demand in the Middle East, ensuring we can deliver timely, flexible solutions tailored to the evolving needs of our customers such as RaftXChange, which enhances operational efficiency, reduces vessel downtime, and provides greater flexibility in managing liferaft compliance.”

The organisation added that the enhanced station allows for a single point of service across liferafts, lifeboats, and fire safety systems, helping customers reduce the burden of navigating multiple providers.

Qiu added: “Increasing capacity is just one part of the story.

“Ultimately, this is about giving our customers peace of mind and the confidence that their safety equipment is in expert hands, wherever their vessels operate.”

Facility strengthens shipping support across the Gulf

Survitec said the Fujairah station is located near the Strait of Hormuz and provides access to shipping lanes in the Gulf of Oman and beyond.

The company explained that consolidating multiple marine safety services under one roof improves both cost and operational efficiency for customers.

The facility has received regulatory approval from the UAE Civil Defence and Ministry of Interior.

Survitec reported that this allows it to meet the latest standards in safety and inspection services.

Survitec expands workforce and regional footprint

To support the expanded services, Survitec said it has recruited and certified new technicians.

These personnel are qualified to conduct servicing across liferafts, lifeboats, and marine fire systems.

The company noted that this expansion aligns with its wider strategy to grow in global shipping hubs and improve readiness for regulatory changes.

According to Survitec, the facility was opened at an official event attended by CEO Robert Kledal and Mr. Sharief Al Awardi, Director General of the Fujairah Free Zone.

Kledal said: “The expansion of Fujairah reflects our commitment to long-term investment in regions critical to global shipping.

“By strengthening our operational footprint and technical capabilities, we’re enhancing service delivery for our customers and reinforcing Survitec’s purpose: We Exist to Protect Lives.”

Survitec expands operations to support UAE shipping safety: Summary

Survitec has expanded its service station in Fujairah, United Arab Emirates.

The expansion adds 1,350 square metres of new operational space.

The facility now offers full-service liferaft rental, lifeboat inspections, and marine fire safety servicing.

Survitec’s RaftXChange service will operate from the expanded station.

The facility is located near the Strait of Hormuz to support regional shipping routes.

It has received regulatory approval from UAE Civil Defence and the Ministry of Interior.

Additional skilled technicians have been recruited and certified by Survitec.

Beibei Qiu and Robert Kledal both attended the facility opening.

The expansion is part of Survitec’s broader growth strategy in global maritime hubs.

The company operates over 400 service centres across 2,000 ports worldwide.

AI detection system ZOE fitted to cruise ship Ambition

Zelim’s ZOE system deployed on Ambassador Cruise Lines ship

Zelim has reported that its AI-based man overboard (MOB) detection and tracking system, ZOE, is being installed on the Ambition, a 48,123 grt cruise ship operated by UK-based Ambassador Cruise Lines.

The Ambition, which has a capacity of 1,200 passengers, will be the first operational deployment of ZOE in the cruise sector.

According to Zelim, the installation includes infrared and daylight cameras, sensors and supporting software to provide continuous 360° visibility from the bridge.

Ambassador Cruise Lines’ Chief Operating Officer, Nick Hughes, said: “With the safety of our passengers and crews our foremost concern we were keen to put ZOE onboard.

“ZOE gives our passengers and crew piece of mind that in the rare event of a MOB incident bridge teams are immediately alerted to a person falling overboard, with the person tracked until rescued.”

Tracking capabilities designed to improve MOB response

According to Zelim, ZOE detects a person falling overboard and continuously tracks them in the water, delivering geo-location data to support coordinated rescue operations.

Zelim’s Chief Technology Officer, Doug Lothian, said: “Man overboard detection is an emergent technology, but most existing solutions focus solely on detecting the fall, not on tracking the person in the water.

“Without continuous tracking, a drifting casualty can be quickly lost from view as the vessel moves, making a successful rescue far more challenging.”

He added: “ZOE’s AI-powered detection models not only identify and classify a person as they fall, automatically alerting the bridge, but continuously tracks them as they drift.

“It provides precise geo-location data, enabling bridge teams to coordinate and accelerate the rescue effort with greater accuracy.”

System undergoes testing for international safety standards

ZOE is currently being tested aboard Ambition to meet ISO 21195 standards for detecting persons falling overboard.

Zelim reported that the system recently achieved a 98 percent detection rate during Lloyd’s Register Phase I and II type approval tests.

Zelim’s Chief Operating Officer, Stewart Gregory, said: “First and second phase trials have been a huge success and LR will now move ahead with Phase III of the certification process.

“This delivers further confidence to cruise lines that ZOE reduces the risk of persons falling overboard going undetected and lost at sea.”

Gregory also stated: “The decision by Ambassador Cruise Lines to install ZOE is an important milestone in maritime safety.

“Ambition shows the passenger ship sector there is now proven technology available that mitigates the risk of losing lives to MOB incidents, especially in rough seas and in hours of darkness.”

Additional functionality includes navigational hazard detection

In addition to MOB monitoring, the installation on Ambition includes forward-facing cameras to expand the system’s use beyond overboard incidents.

Zelim said the technology can also detect objects such as semi-submerged debris, small vessels and other low radar cross-section hazards.

This aims to enhance bridge team situational awareness and support navigation safety.

Nick Hughes said: “It allows us to direct an immediate and rapid rescue response.

“What we also like about the system is that it can be used to alert our watchkeepers to hard-to-see navigational hazards.”

Doug Lothian added: “ZOE’s advanced cameras and sensors also identify navigational hazards such as semi-submerged objects, vessels of all sizes, and low radar cross-section threats that pose risks to safety and ship security.”

AI detection system ZOE fitted to cruise ship Ambition: Summary

Zelim is installing its man overboard detection and tracking system ZOE on Ambassador Cruise Lines’ cruise ship Ambition.

The 48,123 grt ship, with a capacity of 1,200 passengers, is the first cruise vessel to be fitted with ZOE.

The system uses AI-powered infrared and daylight cameras, as well as software and sensors, to detect, classify and track individuals who fall overboard.

ZOE also provides real-time geo-location data to improve rescue operations.

The system is undergoing testing to meet ISO 21195 standards and has passed Lloyd’s Register Phase I and II type approval trials with a 98 percent detection rate.

Zelim’s representatives said the technology helps locate and track MOB casualties and detect navigational hazards such as semi-submerged objects and low radar cross-section vessels.

The system will be showcased at Seatrade Global Cruise in Miami, Florida, from 7–10 April 2025.

EU shipowners must upgrade firefighting suits to Level 2 by June 2025

Regulatory changes require new firefighting suit standards

Shipowners and operators of EU-flagged vessels must ensure that all new firefighting suits meet enhanced protection standards by June 2025, according to VIKING Life-Saving Equipment.

The updated Marine Equipment Directive (MED) regulations (EU) 2024/1975 mandate that new firefighting suits comply with ‘Level 2’ standards, which provide enhanced protection against heat, water penetration, and breathability.

These requirements build on rules introduced in August 2024, which already require suits to be tested to EN469:2020 standards.

Existing ‘Level 1’ firefighting suits may remain in use until they are no longer fit for service.

However, once replaced, they must meet the Level 2 standard.

Enhanced protection requirements for firefighting suits

The Level 2 classification introduces additional safety measures designed for high-risk firefighting scenarios.

These include improved resistance to radiant and convective heat (X2), enhanced water penetration protection (Y2), and increased breathability (Z2).

The Y2 classification has been introduced to address rising concerns over electrical fires and high-volume water use in enclosed spaces.

Firefighting suits with Y2 protection include an extra moisture barrier to guard against steam burns and chemical exposure.

“There has been widespread acknowledgement that seafarers need more protection, including from electric vehicle and battery fires, and in enclosed spaces,” said Charlotte Nielsen, Product Manager PPE at VIKING Life-Saving Equipment.

Compliance checks advised for shipowners

To avoid potential issues with Port State Control inspections, shipowners should confirm that all new firefighting suits meet the Level 2 requirements at the time of purchase.

VIKING recommends fleet managers conduct risk assessments on their firefighting gear and update each vessel’s Safety Management System (SMS) to reflect the new standards.

“We recommend customers conduct risk assessments on the condition and certification of suits and update each vessel’s Safety Management System (SMS),” Nielsen added.

International impact of EU firefighting regulations

VIKING has been supplying Level 2 marine firefighting suits since 2016, with its existing models already meeting X2 and Z2 requirements.

With the new MED regulations coming into force, the company expects more non-EU countries to adopt similar standards.

The UK has already updated its legislation to reflect Y2 requirements.

VIKING has reported increased demand for its YouSafe Torch firefighting suit, which meets the Level 2 EN469:2020 standard.

“As a one-stop shop for marine life-saving equipment, we respond well ahead of the regulators, with a strong lead provided by the products we develop for land-based firefighting professionals,” Nielsen said.

EU shipowners must upgrade firefighting suits to Level 2 by June 2025: Summary

Shipowners operating EU-flagged vessels must ensure that all new firefighting suits meet Level 2 protection standards by June 2025, as required by MED regulations (EU) 2024/1975.

The updated rules introduce enhanced safety measures, including improved heat resistance (X2), water penetration protection (Y2), and breathability (Z2).

Existing Level 1 suits may remain in service but must be replaced with Level 2 models when no longer fit for use.

VIKING Life-Saving Equipment advises fleet managers to conduct risk assessments and update their vessel’s Safety Management System (SMS) to ensure compliance.

The company expects more non-EU countries to follow the EU’s regulatory changes, with the UK already incorporating Y2 requirements into its legislation.

These equipment failures are putting cargo ships at risk, says Survitec

Survitec reveals the most common equipment and servicing failures found on commercial cargo ships—and why addressing them is more urgent than ever

Fires are a common occurrence in commercial shipping, and they occur almost weekly in the container shipping segment.

The latest figures from insurer Allianz highlight the extent of the problem, as while the number of ships lost across the industry is now at a record low, there has still been 55 total losses caused by fires in the past five years. Over 200 fire incidents were reported in 2023 alone.

Industry analysts have pointed to the use of new alternative fuels, the carriage of lithium-ion battery cargoes, and a reported increase in mis-declared dangerous cargoes, especially hazardous containerised cargoes, as being contributing factors.

Metkel Yohannes, Director of Service and Rental Solutions at Survitec, believes that inadequate fire safety inspections are a less obvious but just as important underlying cause.

“The economic downturn and the emphasis on cost reduction post-Covid have had a negative impact on fire safety,” says Yohannes. “We know from experience that some ship owners and operators are maintaining and inspecting safety equipment themselves as a way of making their budgets stretch further. Crew training is also being negatively impacted. We’re finding basic errors and oversights that do not become apparent until either the ship fails an inspection and is detained – or there is a fire.”

Small oversights, big problems: Lessons from inspections

As an Original Equipment Manufacturer (OEM) and fire safety expert, Survitec is often called upon to investigate problems or faults with fire safety equipment. Their specialist fire safety technicians routinely find deficiencies in the routine maintenance and testing of safety-critical equipment that then impact system performance, even leading to equipment failure in some cases.

For instance, Survitec was called out to a vessel after an engine room fire. The crew had managed to extinguish the fire but suspected there was a fault with their high expansion foam firefighting system. The cause of the fault was a blockage in the system. The crew had installed a new foam pump and forgotten to remove one of the protective caps.

Survitec often finds issues that indicate insufficient training or a lack of expertise. For example, the foam proportioner on a high expansion foam system should be removed and inspected regularly, yet Survitec will often find membranes are damaged or broken, which impacts the delivery of foam to the system.

Another common mistake is to mix different types or brands of firefighting foam. When this happens, the foam becomes contaminated. In one inspection of the foam tank for a helideck system, Survitec found the foam had changed from a liquid state to an almost sponge-like, gelatinous state.

The system was therefore inoperable and required major work – and considerable expense – to remove the contaminated foam, deep-clean the system, and recharge it. Fortunately, in this instance, the fault was discovered and rectified before the ship had cause to use the system, because the system would certainly have failed had there been a fire.

The backbone of safety: Routine equipment inspections

Rigorous fire safety inspections of fixed firefighting systems play a vital role in ensuring the safety of a vessel and its crew. Survitec reports that many, if not most, of the inspections they perform reveal issues that require immediate corrective measures.

Furthermore, issues related to poor maintenance or superficial inspections will generally be found across multiple systems, not just one system. For example, valves that have corroded and do not open or close properly can be a common issue across all systems.

This erosion of standards correlates directly with a troubling rise in fire safety-related deficiencies recorded on board ships in recent years. The resulting increase in ship detentions following port state control inspections underscores the real-world consequences of these lapses in safety practices.

Yohannes says: “We clearly see evidence of a slip in standards when it comes to basic safety practices. Approval stamps are being applied to fire systems and appliances that would or should not pass inspection.

“There should be more oversight, more governance, and better quality control procedures. Shipowners and managers need accredited service partners they can trust.”

Technical Sales Manager at Survitec, Jan-Oskar Lid, confirms that while paperwork might indicate that a service inspection has been carried out, the levels of wear and tear on the equipment can sometimes suggest otherwise. “Some issues are self-evident – for example, the rust on a valve or a fire extinguisher is clear to see, but other issues are less obvious and can have catastrophic consequences.”

Lid quotes an example. In early 2024 a bulk carrier left port, having just completed a fire safety inspection and received full certification from a local service provider. Shortly after leaving port, a fire started in the engine room.

The crew released the CO2 system, which had just been inspected and approved, yet more than half the cylinders failed to activate. The fire was eventually extinguished but there was significant damage to the vessel, with costs of US$2-3 million for off-hire and repairs.

Lid also points out that this is not just an issue for older vessels. Inspections are just as essential for new vessels, to verify that new equipment is fully operational. For example, a CO2 system will be disabled, for safety, while a ship remains in the shipyard.

It is not uncommon for Survitec service technicians to discover that a new ship has been sailing without a functioning CO2 firefighting system, because the pilot hoses for the main control valves and release cabinets have not yet been reconnected, and safety pins are still in place.

Procuring the right parts

The procurement of spare and replacement parts can also be a challenge for ship owners and operators. Without the relevant training or expertise, it can be difficult for purchasing personnel to recognise low-quality or counterfeit parts, or even the “right” part.

High pressure hoses for CO2 fire extinguishing systems are a key example. Hoses approved for use on a high-pressure CO2 system can be distinguished by the pin pricks that run along the length of the hose, and by the Type Approval Test certificate details which will be stamped into the crimping neck, as mandated by the class societies. Poor-quality or counterfeit parts will not have these features, but the purchaser needs to know what to look for.

Revised guidelines for the maintenance and inspection of CO2 systems were published in 2021 (MSC 1318 Rev.1), to help protect seafarers against the dangers of leaking gas. Yet, safety inspections often uncover serious issues.

Hydraulic hoses are often mistaken for high-pressure hoses and improperly used in CO2 systems, risking failure under pressure. Deviations from datasheet specifications, ill-fitting hoses forced with copper washers, over-crimping, blocked or peeling hoses, and the use of multiple connections—all contrary to best practices—highlight lapses in inspection and maintenance routines.

Evaluating service provider credentials

Survey reports from Survitec’s global network of service engineers indicate declining crew competencies and skills in this respect, possibly due in part to the seafarer shortage but also the challenge of keeping on top of the various rules and regulations.

As Yohannes explains: “Service requirements are complex and varied. The International Maritime Organisation’s (IMO) MSC 1432. MSC 1432 is effectively a baseline for servicing. The vessel class and flag may specify additional or stricter requirements, and the Original Equipment Manufacturer (OEM) may have their own requirements too.

“Requirements will also vary depending on the service interval. Specialist fire safety service providers therefore invest heavily in training to provide for this.”

However, it is not always easy to identify the reputable providers. There can be a wide disparity in service quality between service providers. As Lid explains: “Cost can be the determining factor when selecting a service provider, especially when different providers boast the same approvals. Some providers may compete by undercutting their competitors, but they can often only do this by cutting corners.

“They may not invest in training to the same degree, so their technicians may lack knowledge of the different rules and regulations or the requirements for all the different brands.

“They may not even have all the equipment required to complete the inspection beyond a cursory visual check. In extreme cases, certificates may even be issued without an engineer setting foot onboard the vessel.”

Finding a provider you can trust

In its 2024 white paper Why are the fires not going out? Survitec highlights the importance of proactive measures and robust maintenance practices to ensure fire safety systems operate effectively in critical situations, also offering practical advice on what shipping companies should look for in their fire safety providers, and how to assess competency.

As Yohannes maintains, specialist fire safety service providers can play a crucial role in supporting proper and effective maintenance and testing on board ship, however trust is key. “Currently, there are no quality benchmarks, and no training standards in place to help determine competencies,” says Yohannes.

“As an industry, we should review current practices and decide: do we need more oversight, more governance, better quality control procedures around servicing and approvals?

“Ship owners and operators need accredited service partners they can trust. Anything less is not just a false economy, it’s potentially dangerous.”

Why Are the Fires Not Going Out?

Survitec’s recent white paper, Why Are the Fires Not Going Out? explores these key considerations in greater detail, offering practical advice on evaluating providers’ expertise, compliance with safety standards, and ability to deliver effective, long-term solutions. Download your free copy at survitecgroup.com

This article was originally published in the February 2025 issue of International Fire & Safety Journal – to read your FREE digital copy, click here.

Bright days ahead for container shipping safety

Consilium Safety Group discusses the integration of digital and AI-driven solutions in container shipping safety, introducing the revolutionary TMS

Almost every shirt we wear, and every gadget we use has made a journey across the seas, a testament to the container shipping industry’s role in knitting the global economy together.

These colourful containers move more than 90 per cent of global trade.

Capable of carrying over 24,000 containers, today´s ships carry an incredible 1 500 percent more containers than in the late 1960s.

Yet, as these ships swell in size, now stretching to the lengths of four football fields, they carry not just cargo but a potential risk of fire.

A peril that grows with every container added to their load.

Thobias Ernfridsson, the Chief Technology Officer at Consilium Safety Group, sits at the heart of efforts to mitigate this risk.

“The expansion of container transportation is undeniable,” he states, “and with it, the risk of fire escalates, posing a significant threat to goods, ships, and more importantly, human lives and the environment.”

A stark reality

This recognition is echoed in the stark figures of the 2023 Cargosafe study, commissioned by the European Maritime Safety Agency (EMSA), which highlights the potential risk associated with the median operation of these ships.

The study shows a ship faces potential losses including fatalities, cargo, the ship itself, environmental damage, and salvage costs.

As insurance premiums for container shipping rise by 55 per cent, reflecting the increased risks of fire and cargo loss, the industry is at a crossroads.

“With the values aboard these vessels soaring, insurance costs can account for the third highest operational expense, after fuel and crew,” Ernfridsson explains.

Yet, amidst the calculus of risk and premium, Ernfridsson sees a silver lining: “Cut through the risk, and you slice through the premiums. It’s straightforward economics but underpinned by a complex challenge.”

Innovation at the helm

In the wake of disaster, innovation often follows, spurred by necessity and the collective will for change.

“Accidents are never good, but it is usually the way that triggers a desire for change”, says Ernfridsson.

 This sentiment is echoed across the industry, from insurance companies and ship owners to ports and suppliers, all recognizing the need for a more digital and AI-driven approach to early detection and fire prevention.

The International Maritime Organization (IMO) has responded with plans to introduce new fire safety regulations by January 2028.

Aiming to address the increased fire risks brought on by container ships and the misdeclaration of hazardous goods.

“My understanding is that IMO’s wish or requirement is that safety players like Consilium should embrace digitalisation a bit more on board,” says Ernfridsson.

The revolutionary TMS technology

At the heart of Consilium Safety Group’s response to this call is the strategic acquisition of Radicos, a vanguard in linear heat detection.

The acquisition has birthed the innovation of a Temperature Monitoring System (TMS), a product formerly under Radicos before its rebranding and integration into Consilium’s fire, flame, and gas safety solutions.

TMS represents a fundamental shift in how fire safety is approached at sea.

Leveraging a sophisticated network of sensors to monitor for the slightest anomalies in temperature that could indicate a possible fire.

Promises early detection of fire risks, potentially saving lives, cargo, and ships from disaster.

“This solution allows quick tracing if for instance, one container is at 18 degrees Celsius, and the adjacent one is 35 degrees Celsius.

“Using our safety management system software, SMiG, operators receive valuable information when a conflicting pattern is identified.

“With this solution, incidents are detected in an early stage, even at ambient temperatures.

It’s a true game-changer for safety within the container shipping industry”, highlights Thobias Ernfridsson.

The robustness of the system is further underlined by real-world testing.

It has been rigorously tested in harsh environments, including various stressors such as saltwater exposure, vibrations, wind and temperature variations.

The technology has proven to be highly reliable and effective in the most demanding maritime conditions.

With a new round of real-world trials planned for early 2025, and the first ship deliveries and installations expected later that summer, the anticipation within the marine community is palpable.

“It is in everyone’s interest to bring this product to market as quickly as possible.

“We have listened to our customers, insurers, and the authorities.

“Based on this, we have developed this outstanding product,” says Ernfridsson, reflecting a sentiment that goes beyond commercial interests and touches on collective responsibility for safety at sea.

“Simply said, there won’t be as many fires, everyone will be happy”, he concludes.

The expansive potential of TMS

The potential applications for TMS extend far beyond container ships, with interest from sectors ranging from car carriers such as RoRo ships to agriculture.

 “This technology is unique,” says Marcus Andersson, CCO at Consilium, “and its ability to monitor temperature changes has a wide range of applications, from detecting heat increases in cars on a car deck to monitoring the well-being of livestock.”

He explains:  “It was our customers who led us to expand our vision,” Andersson reveals, his voice a testament to the collaborative spirit that drives this innovation.

“They nudged us to see beyond the immediate. And now, car carriers are on the horizon.

“It´s not every day you hear enthusiasm for monitoring heat variations below cars at a car deck, but here we are, in dialogue with shipping companies”.

Our conversation takes an unexpected detour through the countryside, to a chicken farm, where the potential of TMS to save lives takes on another dimension.

“Imagine hanging a cable, a simple act, and suddenly you’re not just monitoring chickens, you’re actively protecting them.

“The rollout of TMS will be methodical, phased, and sensitive to the ecosystems it enters.

“We start with containers and car carriers, yes, but it’s about the order of things,” Andersson explains.

“The fire alarm, the gas alarm, and then this – our solution.

“It’s a sequence designed not just for implementation, but for integration, to become a support system that is as seamless as it is essential”.

Talking to Marcus Andersson, the essence of TMS as more than just a product but a solution comes to the fore.

It’s a technology born from the need to solve a critical problem that expands its embrace to offer protection and peace of mind.

“We can act as a supplier with support. We want to be close to our customers, to meet their challenges, which is why this was created,” he says, summing up the essence of their mission.

 ”We’re not just engineers and salespeople, we’re partners in safety, wherever that journey might lead us”, Andersson concludes.

TMS technology in brief

Basic concept

Imagine the TMS as a highly sensitive digital thermometer spread throughout a ship, constantly checking the temperature of every container on board.

This system is like a network of watchful eyes, designed to notice even the smallest rise in temperature that could indicate a fire risk.

How it works

The system uses a series of advanced sensors placed around the ship in direct proximity of the containers.

These sensors continuously monitor temperatures and send this data to a central system that execute advanced energy flow analysis onboard the ship.

It’s akin to having a network of smoke detectors, but instead of detecting smoke, they’re looking for unusual heat.

Detection and response

Should one container get warmer than usual, perhaps due to a malfunctioning electronic device, a battery or a chemical reaction, the TMS quickly spots this temperature anomaly.

The system then alerts the ship’s crew to the exact location of the potential hazard, allowing them to take immediate action, such as investigating the issue or initiating firefighting measures, long before a small problem turns into a major fire.

Integration with existing systems

TMS isn’t a standalone service; it’s integrated with the ship’s overall safety management system.

This means it works in harmony with other safety measures onboard, like fire extinguishers and alarms, to provide a comprehensive safety net.

Benefits beyond early detection

The true game-changer of this system lies not just in detecting potential fires but in its ability to provide peace of mind.

For ship operators, it means reducing the risk of losing cargo or, more importantly, risking lives.

For insurance companies, it’s about lowering the chances of costly disasters.

And for the global economy, it ensures that the goods we rely on every day make it safely across the seas.

This article was originally published in the August 2024 issue of International Fire & Safety Journal. To read your FREE digital copy, click here.

Fire safety issues persist in European ship inspections despite lower detention rates

Report highlights ongoing fire safety issues

The proportion of ships detained after inspections by European port authorities fell from a 10-year high in 2023 but familiar failings continued, according to a new report.

Fire safety, electrical issues and seafarer welfare remained among the top reasons for detaining ships by the 27 states that are part of the Paris MoU agreement, as reported by Trade Winds.

The detention rate of ships inspected in 2023 was 3.81%, down from 4.25% the previous year.

However, it was still above the pre-COVID-19 rates in 2019 when it dipped below 3%.

Performance of ship flags

The four lowest-ranked flags all performed worse in 2023 compared to the previous year.

The highest number of detentions per inspection was recorded by Cameroon (35%), followed by Tanzania (34%), Comoros (22%), and Vanuatu (18%).

A higher proportion of livestock carriers and general cargo ships were detained than other ship types.

In 2022, Moldova-flagged vessels had the highest proportion of detentions, with 31% of inspected ships being detained.

Criticism of maritime sector players

The Paris MoU leadership in last year’s report criticised shipowners, flag states, and recognised organisations for not doing enough to ensure good quality shipping.

The report noted the “minimal improvement” in 2023 and stated that it would continue to monitor developments closely this year.

It emphasised the expectation for all players in the maritime sector to “take the measures necessary to guarantee safe and environment-friendly shipping, with adequate working and living conditions on board”.

Background on the Paris MoU

The Paris MoU is one of 10 port state control regimes worldwide.

Its membership includes 26 European coastal states and Canada.

The organisation focuses on the safety and environmental standards of ships to ensure they meet international regulations.