Plastic Washing Systems by Application

Choosing the Right Process for Your Waste Stream

Plastic washing is not one-size-fits-all

One of the biggest mistakes in plastic recycling is assuming the same washing process will work across every waste stream.

It will not.

The right plastic washing system depends on the material type, contamination level, moisture content, throughput target, downstream process, and required output quality. A washing line built for rigid HDPE containers will not behave the same way when faced with contaminated film, food waste plastics, agricultural plastics, or mixed WEEE streams.

That is why process design matters.

At Rotajet, we focus on engineered plastic washing systems built around the application, not just a collection of standalone machines. Whether the requirement is a full new line, a retrofit to increase throughput, or a more flexible buy or rent route, the process has to match the waste stream.


Why application matters in plastic washing

Different plastics behave differently during washing.

Rigid plastics are generally easier to handle mechanically, but they still carry labels, glue, dirt, oils, and product residue that must be removed efficiently. Films are harder to control, wrap around moving parts, and retain more moisture. Agricultural plastics often arrive loaded with abrasive soil and sand. WEEE plastics introduce mixed polymers and more demanding separation requirements. Food and AD plastics can carry organics, fats, fibres, and liquid contamination that put far greater pressure on the washing process.

That is why choosing a plastic washing line should always begin with the application, not just the capital budget.

A properly matched system can:

  • improve cleaning efficiency
  • increase throughput
  • reduce downtime
  • reduce wear
  • lower water usage
  • improve recyclate quality
  • increase the commercial value of the finished product

Rigid plastics washing systems

Rigid plastics remain one of the most commercially attractive recycling streams. These materials often include HDPE and PP containers, drums, crates, pallets, totes, and moulded components.

Although rigid plastics are usually easier to process than films, they still need a controlled washing process if the goal is clean, high-value recyclate. Typical contamination includes labels, glue, dirt, light organics, and residual product.

A typical rigid plastics process may include:

  • size reduction or granulation
  • friction washing
  • sink-float separation
  • dewatering
  • drying

The exact layout depends on contamination level and final quality target, but the principle stays the same: better washing produces better output.

See Rigid Plastics Recycling Systems.


Film washing systems

plastic

Film washing is one of the most difficult areas of plastic recycling.

LDPE and LLDPE films are light, unstable, prone to wrapping, and difficult to dry. Poorly designed film washing systems often suffer from blockages, moisture carryover, low throughput, and inconsistent final output.

A successful film washing process often requires:

  • controlled size reduction
  • pre-wash where needed
  • high-intensity friction washing
  • strong water management
  • effective drying

Film cannot simply be treated like rigid plastic. The system has to be designed around the material’s behaviour.

This is where application-led engineering makes the difference between a washing line that performs commercially and one that becomes a maintenance problem.

See Film Washing Systems.


Agricultural plastic washing

Agricultural plastics are among the harshest waste streams to process.

Silage wrap, mulch film, fertiliser bags, and similar materials often arrive with:

  • soil
  • sand
  • moisture
  • organics
  • abrasive contamination

These streams quickly expose weak points in under-specified machinery. Agricultural plastic washing systems usually need robust fabrication, wear-resistant components, strong solids handling, and aggressive washing stages capable of removing heavy contamination without destroying throughput.

The challenge is not only getting the plastic clean. It is also about keeping the line running reliably while dealing with abrasive contamination that causes wear throughout the system.

See Agricultural Plastic Washing Solutions.


WEEE plastic washing systems

WEEE plastics create a different technical challenge.

These materials come from waste electrical and electronic equipment and often contain mixed polymers, variable densities, and more demanding separation requirements. In this type of application, washing alone is not enough. Separation accuracy and final purity are just as important.

WEEE systems often require:

  • controlled size reduction
  • advanced sink-float separation
  • multiple washing stages
  • accurate process balancing
  • reliable drying

A poorly designed line can reduce output purity, increase losses, and damage the value of recovered material.

See WEEE Plastic Washing Systems.

Where finer grading or separation support is needed, related equipment such as industrial screening and separation systems can also support the wider process.


Food-contaminated and AD waste plastics

Food-contaminated plastics and AD waste plastics are some of the hardest materials to process properly.

These waste streams can contain:

  • oils
  • fats
  • fibres
  • labels
  • liquid residue
  • heavy organic contamination
  • very high moisture levels

In the AD sector especially, food waste de-packaging can generate heavily contaminated mixed plastics containing up to 50% moisture and 25% organic residue, creating a major recovery and recycling challenge.

This is exactly where a more aggressive washing approach is needed.

Rotajet’s RJ-Turbo is designed for this kind of duty, using high-speed rotor scrubbing to create intense mechanical shear and friction, helping remove food residues, oils, and fats from mixed rigid and film plastics. The same process also supports solid-liquid separation and closed-loop water operation, helping AD plants reduce water demand while feeding recoverable organics back into the digestion process.

For these applications, standard light-duty washing is usually not enough. The process needs to be engineered around:

  • contamination removal intensity
  • water recirculation
  • solids handling
  • dewatering
  • drying

This is also where knowledge from broader industrial degreasing systems becomes valuable, because oily and organic-rich contamination requires far more than a simple rinse process.


Mixed post-consumer plastic waste

Mixed plastic waste brings variability at every stage.

Material type, contamination profile, moisture content, density, and feed consistency can all change from batch to batch. The more variable the input, the more important it becomes to design the line as a complete, integrated system.

For mixed post-consumer waste, the key priorities are:

  • consistent material presentation
  • strong line balancing
  • flexible process control
  • effective separation
  • reliable drying

In these applications, isolated machines rarely solve the real problem. Integrated process engineering does.

That is why Rotajet approaches plastic recycling machinery as a complete process, not just a machine list.


Key process differences by application

ApplicationMain ChallengeTypical Process Focus
Rigid PlasticsLabels, residues, consistencyGranulation, friction washing, separation, drying
FilmWrapping, moisture retention, contaminationPre-wash, friction washing, controlled drying
Agricultural PlasticsSoil, sand, abrasionHeavy-duty washing, wear resistance, solids management
WEEEMixed polymers, purity, density separationAdvanced separation, controlled washing, process accuracy
Food / AD WasteOrganics, oils, fibres, moistureHigh-intensity washing, water management, dewatering, drying

Retrofitting plastic recycling machinery to improve throughput

Not every customer needs a completely new plastic washing line.

In many cases, the better commercial decision is to retrofit existing recycling machinery and remove the specific bottlenecks that are limiting performance. This can be a faster and more cost-effective route to increasing throughput, improving cleaning efficiency, and reducing operating cost.

Typical retrofit opportunities include:

  • adding or upgrading friction washing stages
  • improving water recirculation and filtration
  • upgrading sink-float tanks
  • improving drying performance
  • replacing worn or underperforming equipment
  • rebalancing the process to improve throughput

A well-planned retrofit can deliver a major performance improvement without the cost of replacing the full installation.

At Rotajet, we work with customers who already have washing systems in place but need to improve output, reduce downtime, or adapt the process to a changing waste stream.


Buy, rent or upgrade

Different operations need different commercial routes.

Buy

Buying is often the right option for long-term processing operations where ownership, dedicated design, and full line optimisation are the priority.

Explore Plastic Washing Systems.

Rent

Renting can be a more flexible option where cash flow matters, demand is seasonal, or a business wants to scale capacity without a full upfront capital commitment.

Across the wider Rotajet group, we also promote flexible rental-led routes for industrial equipment through sites such as DrumWashing.com.

Upgrade

Upgrading existing equipment can be the most commercially efficient route where the main line remains viable but selected stages are holding back throughput, cleaning efficiency, or drying performance.


How to choose the right plastic washing system

Choosing the right system starts with defining the application properly.

Key questions include:

  • What material are you processing?
  • What contamination is present?
  • What throughput is required?
  • What output quality is needed?
  • What utilities are available?
  • How much space is available?
  • Is the project a new line or a retrofit?

Too many systems are selected on headline price alone. In practice, that usually leads to higher operating costs, lower throughput, more downtime, and weaker output quality.

A properly specified process will nearly always outperform a cheaper but badly matched alternative over the life of the plant.


Why Rotajet’s approach is different

Rotajet focuses on process-engineered solutions.

That means understanding:

  • the waste stream
  • the contamination
  • the required output
  • the site constraints
  • the commercial objective

From there, the process can be designed properly, whether that means a full new line, a retrofit to improve throughput, or a flexible buy-or-rent approach.

The goal is not just to supply machinery. The goal is to improve throughput, reduce waste, increase output quality, and make the recycling process more commercially effective.

Explore the full range at PlasticWashing.co.uk.


Related Pages

Conclusion

The right plastic washing system always starts with the application.

Rigid plastics, film, agricultural plastics, WEEE, food-contaminated waste, and AD plastics all place different demands on the process. The more accurately the washing line is matched to the waste stream, the better the results will be in throughput, cleaning performance, output quality, and long-term operating cost.

Whether the requirement is to buy a new line, rent equipment, or retrofit existing machinery to improve throughput, Rotajet focuses on process-led solutions that work technically and commercially.


Frequently Asked Questions

1. What is a plastic washing system?

A plastic washing system is an integrated process used to clean, separate, and prepare plastic waste for recycling into reusable flakes or pellets.

2. Why is plastic washing important in recycling?

Plastic washing removes dirt, labels, oils, food residue, adhesives, and organics, helping improve recycled plastic quality and value.

3. Do all plastics require washing before recycling?

Most post-consumer plastics and many post-industrial plastics require washing before further processing.

4. What plastics can be washed?

Common materials include HDPE, LDPE, LLDPE, PP, PET, ABS, and mixed plastics.

5. What is the output from a plastic washing line?

The output is usually clean plastic flakes suitable for extrusion, pelletising, compounding, or reuse.

6. What is a friction washer?

A friction washer uses mechanical scrubbing at high speed to remove contamination from plastic surfaces.

7. What is sink-float separation?

Sink-float separation uses density differences in water so some materials float while others sink.

8. How does a plastic washing line work?

A typical line combines size reduction, washing, separation, dewatering, and drying into one integrated process.

9. Why is water used in plastic washing?

Water helps loosen contamination, flush debris away, and support density-based separation.

10. What is thermal drying?

Thermal drying removes residual moisture after washing and dewatering.

11. What is the best process for rigid plastics?

Rigid plastics are commonly processed through granulation, friction washing, sink-float separation, and drying.

12. How are plastic films washed?

Film washing usually requires pre-washing, controlled size reduction, friction washing, and specialist drying to control wrapping and moisture retention.

13. Can agricultural plastics be recycled effectively?

Yes, but they often need heavy-duty washing systems capable of handling abrasive contamination like sand and soil.

14. What are WEEE plastics?

WEEE plastics come from electrical and electronic waste and usually require more advanced separation and washing.

15. How are food-contaminated plastics cleaned?

They are usually cleaned using higher-intensity washing, stronger water management, and more effective drying.

16. Why are AD plastics difficult to wash?

AD plastics can contain very high moisture and heavy organic contamination from food waste de-packaging, making them much harder to clean efficiently.

17. What does the Rotajet RJ-Turbo do?

The RJ-Turbo uses high-speed mechanical friction to remove residues, oils, fats, and organics from contaminated plastics, especially in tough applications like AD waste.

18. Can the RJ-Turbo handle mixed rigid and film plastics?

Yes. The AD datasheet specifically positions it for mixed rigid and film plastics in high-organic waste streams.

19. Can a plastic washing system improve recyclate value?

Yes. Cleaner material generally produces a more valuable and more usable recycled output.

20. What throughput can a plastic washing system achieve?

Throughput depends on material type, contamination, moisture, and overall line design.

21. How can I increase throughput in my existing line?

Typical improvements include upgrading friction washing, improving drying, improving recirculation, and removing bottlenecks.

22. What causes low throughput in washing lines?

Poor material presentation, line imbalance, undersized stages, weak drying, and poor water handling are common causes.

23. Can retrofitting improve performance?

Yes. Many lines can be improved significantly by upgrading specific process stages rather than replacing the full system.

24. What moisture level should plastic have after washing?

That depends on the downstream process, but lower residual moisture usually improves extrusion and pelletising.

25. How much water does a plastic washing line use?

Water use depends on the application and the system design.

26. Can water be recycled in washing systems?

Yes. Many systems use recirculation and filtration to reduce fresh water demand.

27. How can water use be reduced?

Water use can be reduced through filtration, recirculation tanks, solids removal, and better process control.

28. Is closed-loop water operation possible?

Yes. Closed-loop or partial recirculation systems are often used to reduce water consumption, and the RJ-Turbo AD application specifically supports integrated water recovery.

29. What is the energy consumption of a washing line?

Energy use depends on motor sizes, heating requirements, throughput, and drying stages.

30. Are plastic washing systems environmentally friendly?

They can be, especially when they reduce landfill, recover useful plastics, and improve water efficiency.

31. How much does a plastic washing system cost?

Cost depends on throughput, contamination, automation level, drying requirement, and separation scope.

32. Is it better to buy or rent?

That depends on budget, project length, and production goals. Buying suits long-term ownership, while renting can reduce upfront cost.

33. What is the ROI of a plastic washing line?

ROI depends on material value, throughput, labour input, operating cost, and the quality of the cleaned output.

34. Can I upgrade instead of buying a new system?

Yes. Many customers improve performance through retrofits and line balancing rather than full replacement.

35. What affects system cost most?

Key factors include material, contamination level, throughput, drying, automation, water treatment, and site layout.

36. How often does a washing line require maintenance?

That depends on contamination level, abrasiveness, operating hours, and system design.

37. What are common maintenance issues?

Wear, blockages, screen damage, bearing wear, and water management issues are all common.

38. Can washing systems handle different materials?

Yes, but the process must be designed around the actual material mix.

39. Can plastic washing systems be customised?

Yes. Most serious systems are engineered around the application, contamination, throughput, and available space.

40. Should material trials be carried out before buying?

Yes. Trials are strongly recommended before a major investment in plastic recycling equipment.

Start by exploring the full range at PlasticWashing.co.uk.

How to Remove Oil, Grease & Organic Contamination

Industrial Plastic Washing Systems for Contaminated Plastic Recycling

Plastic recycling facilities increasingly face a major challenge: contamination in plastic waste streams.

Plastic materials recovered from food processing, waste packaging, anaerobic digestion plants, paint container recycling and industrial processes often contain oils, fats, food residues, labels, adhesives and organic contamination.

Contamination

Without effective cleaning, these contaminants can make plastic difficult to process, impossible to pelletise and unsuitable for reuse in manufacturing.

Modern plastic washing systems are therefore critical to transforming contaminated plastic waste into clean, recyclable raw material.

Rotajet Systems Ltd designs and manufactures industrial plastic washing machinery in the UK, engineered to remove heavy contamination and improve plastic recyclability for recycling plants worldwide.

Learn more about industrial plastic washing equipment here:
https://plasticwashing.co.uk


The Challenge of Contaminated Plastic Recycling

Plastic recyclers rarely receive clean feedstock.

Most post-consumer and post-industrial plastics arrive contaminated with substances that must be removed before recycling can occur.

Typical contamination sources include:

• Waste cooking oil residues
• Food contamination
• Organic residues from depackaging plants
• Paint and coating residues
• Adhesives and labels
• Oils and lubricants from industrial packaging
• Dirt and organic debris

Industry groups such as Plastics Recyclers Europe highlight contamination as one of the largest barriers to improving recycling rates across Europe.

These contaminants reduce the value of recycled plastic and create serious operational challenges during recycling.

Common processing issues include:

• Poor extrusion quality
• Pellet contamination
• Odour problems
• Reduced melt flow performance
• Blocked extrusion filters
• Increased maintenance and downtime

For many recycling plants, plastic washing systems are essential before extrusion or pelletising can take place.


Why Plastic Washing Systems Are Essential in Recycling Plants

Plastic washing systems perform several critical roles within modern recycling operations.

They help to:

• Remove oils and organic contamination
• Separate dirt and debris from plastic flakes
• Improve recyclate purity
• Reduce odours in recycled plastics
• Improve downstream extrusion performance
• Increase the value of recycled plastic pellets

Research from the Waste and Resources Action Programme shows that improving contamination removal significantly increases the value of recycled plastics.


Types of Plastic Washing Technologies

Plastic recycling plants typically use multiple washing stages depending on the level of contamination and material type.


Drum Washing Systems

Drum washing systems are typically used for light contamination removal, particularly when processing plastic containers, packaging and industrial drums before shredding.

For example, container washing equipment such as the Rotajet container washer can remove surface contamination before plastic size reduction.

Learn more:
https://drumwashing.com/container-washer-rj-cw-9-25/

These machines are often installed alongside plastic recycling washing lines supplied by Rotajet.


Sink Float Separation Systems

Sink-float tanks separate plastics based on density differences.

Polyolefins such as HDPE, LDPE and polypropylene float, while heavier contaminants sink.

This stage is widely used in recycling plants handling mixed plastic waste streams.

Rotajet sink-float separation equipment can be integrated into plastic recycling washing lines.

More information:
https://plasticwashing.co.uk


High-Speed Friction Washing

For heavily contaminated plastics, high-speed friction washing systems provide the most effective cleaning solution.

These machines generate intense mechanical friction to remove:

• Oils and grease
• Food contamination
• Paint residues
• Adhesives and labels
• Organic contamination

High-speed friction washing is commonly used in recycling facilities processing plastics from food packaging, waste management operations and anaerobic digestion plants.


High-Speed Friction Washing Technology

The Rotajet RJ-Turbo friction washer is designed to remove heavy contamination from shredded plastics and plastic regrind.

More details:
https://plasticwashing.co.uk/plastic-washer/

The system uses a high-speed rotor inside a perforated screen basket, creating friction between plastic particles.

During operation:

  1. Contaminated plastic enters the washing chamber
  2. A high-speed rotor accelerates the plastic particles
  3. Plastic flakes rub together creating friction
  4. Contamination is dislodged from the plastic surface
  5. Water flushes contaminants through the basket
  6. Clean plastic exits the machine ready for further processing

This friction washing process removes oils, fats and organic contamination from plastic waste streams, significantly improving recyclability.


Example Plastic Washing Line Layout

A typical plastic recycling washing line may include:

Material feed hopper
→ Shredder
→ Granulator
Rotajet friction washer
→ Sink-float tank
→ Secondary washing stage
→ Mechanical dewatering dryer
→ Material storage silos

Rotajet designs complete plastic washing plants as well as individual machines that can integrate into existing recycling facilities.

Full system overview:
https://plasticwashing.co.uk


Retrofit Plastic Washing Systems into Existing Recycling Plants

Many recycling facilities already operate shredders, granulators or extrusion equipment but struggle with contamination problems.

Rotajet plastic washing systems can be retrofitted into existing recycling plants to improve cleaning performance without replacing the full recycling line.

Typical retrofit upgrades include:

• Installing friction washers
• Adding sink-float separation systems
• Integrating water filtration equipment
• Improving contamination removal stages

This approach allows recycling plants to upgrade material quality while maintaining existing infrastructure.


Paint Pot and Paint Container Recycling

Paint pot and paint container recycling is an increasingly important sector in plastic recycling.

Plastic containers used for paints and coatings often contain:

• Dried paint residues
• Pigments and fillers
• Adhesive labels
• Surface contamination

Industry bodies such as the British Coatings Federation promote improved recycling of paint packaging.

Plastic washing systems manufactured by Rotajet can help clean:

• HDPE paint containers
• Plastic paint pots
• Coatings containers
• Construction chemical packaging

High-energy washing stages remove:

• Paint residues
• Pigments
• Labels
• Surface contamination

This allows clean HDPE plastic to be recovered and recycled into new products.


Anaerobic Digestion Plastic Recycling

Another challenging plastic waste stream comes from food waste depackaging systems used in anaerobic digestion plants.

These plastics are contaminated with:

• Food residues
• Organic waste
• Liquids and fats

The Anaerobic Digestion and Bioresources Association highlights the importance of recovering plastics from organic waste streams.

High-speed friction washing systems can remove organic contamination from these plastics and significantly improve recycling performance.


How Clean Does Plastic Need to Be Before Extrusion?

Plastic washing is not only about appearance — it is about producing a consistent feedstock for extrusion and pelletising.

If contamination remains on plastic flakes it can lead to:

• unstable extrusion
• blocked melt filters
• poor pellet quality
• odour problems
• lower product value

This is why many recycling facilities install a Rotajet friction washing stage before pelletising.

By removing oils, paint residues and organic contamination, plastic washing systems help produce cleaner plastic flakes suitable for recycling.


Environmental Benefits of Plastic Washing Systems

Plastic washing systems play an important role in supporting the circular economy.

Benefits include:

• Increased plastic recycling rates
• Reduced landfill waste
• Improved recycled material quality
• Lower contamination in recycled pellets
• Reduced environmental impact

Modern washing plants designed by Rotajet can also operate with water recirculation systems to minimise water usage.


UK Manufactured Plastic Washing Machinery

Rotajet designs and manufactures industrial plastic washing machinery in the United Kingdom.

Rotajet equipment is installed in recycling plants across:

• United Kingdom
• Europe
• North America
• Asia
• Middle East

Rotajet plastic washing systems are engineered for:

• Heavy contamination removal
• Integration with existing recycling plants
• Industrial processing environments
• Long operational service life


Buy, Rent or Trial Plastic Washing Equipment

Rotajet offers flexible equipment supply options.

Purchase

Complete plastic washing systems for new recycling plants.

Rental

Rental options allow recyclers to increase capacity quickly.

Material Trials

Material trials can be carried out to determine the most suitable washing configuration.

More information:
https://plasticwashing.co.uk


Frequently Asked Questions

How do you remove oil from plastic recycling?

Oil contamination can be removed using high-speed friction washers, where plastic particles rub together while water removes oils and residues.

What is a friction washer in plastic recycling?

A friction washer is a machine that cleans plastic flakes using a high-speed rotor and screen basket to generate mechanical friction.

Why must plastic be washed before recycling?

Contaminants such as oils, paints, adhesives and food residues can disrupt extrusion and reduce recycled plastic quality.

Can plastic washing systems be retrofitted into existing recycling plants?

Yes. Plastic washing systems manufactured by Rotajet Systems Ltd can be retrofitted into existing recycling lines to improve contamination removal and recyclate quality.

Visit Plastic Washing to learn more, or get in contact with us.

Inside a Modern Plastic Washing Line

Inside a Modern Plastic Washing Line

Feed Preparation and Size Reduction

The process begins with size reduction, where incoming plastic is shredded and granulated to produce a consistent particle size. Uniform feed material directly improves washing efficiency, separation accuracy, and downstream drying performance. Poor size control leads to uneven cleaning and increased contamination carryover.

Plastic Size Reduction Equipment for Recycling
https://plasticwashing.co.uk/size-reduction/

Plastic Washing

High-Energy Washing and Friction Cleaning

Once size-reduced, material enters the washing stage. High-energy friction washing removes labels, food residues, oils, and ingrained dirt through mechanical action rather than relying solely on chemicals. This approach delivers cleaner flakes while reducing chemical consumption and operating cost.

Plastic Washers & Friction Washers
https://plasticwashing.co.uk/washers/

Density Separation and Contaminant Removal

After washing, plastics pass through sink–float separation, where materials are separated by density. This stage removes unwanted polymers, fines, and residual contamination, producing a consistent output suitable for extrusion or pelletising.

Water Management and Closed-Loop Operation

Modern plastic washing lines increasingly operate with closed-loop water systems. Integrated filtration and fines removal allow wash water to be reused, significantly reducing fresh water consumption and effluent discharge.

Dewatering and Final Conditioning

Mechanical dewatering and thermal drying reduce moisture content, producing clean, free-flowing plastic flakes ready for reuse or further processing.


Typical Applications for Plastic Washing Lines

  • Post-consumer food packaging
  • Film and rigid mixed plastics
  • HDPE, PP, and PET flakes
  • Heavily contaminated plastics from depackaging

Common Plastic Washing Line Design Mistakes

  • Under-sizing size reduction before washing
  • Relying on chemicals instead of mechanical cleaning
  • Ignoring water recirculation and fines management

Avoiding these issues is critical to achieving consistent output quality and stable operation.


At Rotajet Systems Ltd, plastic washing lines are engineered as complete process systems—covering size reduction, washing, separation, and water management—based on real contamination levels and throughput requirements rather than generic layouts.


Frequently Asked Questions

How does a plastic washing line improve recyclate quality?
By combining size reduction, friction washing, separation, and controlled water management to remove contaminants consistently.

What contamination can a plastic washing line remove?
Food residues, labels, oils, dirt, fines, and incompatible polymers.

Is size reduction essential before plastic washing?
Yes. Consistent particle size is critical for effective washing and separation.

How much water does a plastic washing line use?
Modern systems use closed-loop water circuits to minimise consumption and effluent.

Can plastic wash lines be integrated into existing plants?
Yes. Modular washing lines can be integrated into new or existing recycling facilities.

Fibreright announces final Completion of Bespoke Rotajet Plastic Wash Line for Advanced Recycling

Fiberight announces final Completion of Bespoke Rotajet Plastic Wash Line for Advanced Recycling

Rotajet are thrilled to announce the successful completion of a new bespoke plastic processing line for Fiberight.

fibreright Plastic wash plant

Swansea based Fiberight Ltd, a manufacturing company focused on converting waste into sustainable resources, announces the successful completion of a bespoke plastic cleaning line designed and manufactured by Rotajet Systems, a UK-based leader in recycling equipment.

This innovative dual-stream plastic recycling line, manufactured at Rotajets’ Wakefield, UK facility, will significantly increase Fibreright’s production capacity for its revolutionary HydraFlex™ plastic film product.

At Fiberight we differentiate ourselves from the general waste and recycling industry.” said Joe Martoccia, Joint Managing Director at Fibreright. “by positioning ourselves as manufacturers of products. We have worked in conjunction with Rotajet to jointly develop our HydraFlex™ production line, our unique plastic film product.

Martoccia continued, “The bespoke nature of our film cleaning line requirements dovetailed perfectly with Rotajet’s prowess in design, manufacture and installation. Not only that, but their team became fully immersed in the project, supporting and guiding to its excellent conclusion”

Fibreright Plastic recycling plant

This bespoke wash line represents a significant step forward for Fiberight’s advanced recycling capabilities. The dual-stream design allows for increased productivity, enabling Fiberight to transform even more waste plastic into high-quality sustainable products like HydraFlex™.

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