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Refuse Derived Fuel (RDF) Production: Turning Municipal Solid Waste into a Coal Substitute

Waste management is going through a period of profound change. Around the world, governments, municipalities, and industry are searching for smarter ways to deal with domestic waste streams – and one of the most promising options is producing Refuse Derived Fuel (RDF) from municipal solid waste (MSW). Instead of sending combustible waste to landfill, it can be processed into a high-calorific fuel capable of substituting coal in power stations and cement kilns.

This article breaks down how an RDF production line works, what equipment is involved, and why it represents a genuine win-win for waste diversion and energy recovery.

What Is Refuse Derived Fuel?

RDF is produced from the combustible fraction of municipal solid waste – materials such as rubber, plastics, paper, cardboard, textiles, and wood. These components are separated from the rest of the waste stream through a series of mechanical processing steps, including:

  • Screening
  • Air classification
  • Magnetic separation (to remove ferrous metals)
  • Removal of glass, stones, and other inert materials

Once the unwanted fractions are removed, the remaining combustible material is shredded into a uniform particle size. The result is a homogeneous, energy-dense fuel that can replace fossil fuels such as coal in industrial combustion processes.

RDF is largely made up of the same materials we throw away every day – plastics, paper, textiles, and wood – transformed into a usable energy resource instead of landfill waste.

Why RDF Matters

Producing RDF addresses two problems at once: it diverts waste away from landfill, and it creates a viable, lower-cost alternative fuel for industries that rely heavily on coal, such as cement manufacturing and power generation. This dual benefit is why RDF is increasingly seen as a cornerstone technology in the wider waste-to-energy sector.

Organics has over 20 years of experience in waste-to-energy engineering, designing, building, installing, and commissioning RDF systems tailored to the specific waste stream at each site. Because every waste stream is different, a full analysis is carried out first to determine exactly which processing equipment is required to produce a quality RDF product.

Overview render of an RDF processing line with conveyors and feed hoppers

Key Features of an RDF System

  • Versatile design – configurable to match the composition and volume of the incoming waste stream
  • Limited wear and tear through efficient product conveyance
  • Excellent quality control throughout the process
  • Low power consumption
  • Flexible equipment and drive arrangements to meet individual site requirements
  • Waste becomes an energy resource rather than a disposal cost
  • Proven system for fuel production used as a coal substitute

How the RDF Production Process Works

A typical RDF system is built from a sequence of processing units, each performing a specific function. Depending on the required RDF grade, these units can be combined and scaled to fit larger throughput needs.

Typically, RDF Grade 3 meets the necessary standards for substituting coal in power production and cement kiln heating.

Drum Feeder

The drum feeder simultaneously feeds, sorts, and orients large quantities of waste along one or multiple linear tracks. It ensures a consistent size and flow rate of material entering the system – the foundation for stable downstream processing.

Weighing Scale

Waste is weighed in batches to maintain an even flow rate through the production line. This also provides an accurate record of the total volume of MSW processed.

Bag Opener

Bag openers are specialised double-shaft shredders designed to open waste bags and prepare the material for manual sorting and automatic selection further down the line.

Sorting Station

After bag opening, waste passes through a hand sorting line with a conveyor system. Operators manually remove inert or unsuitable objects – metals, glass, and large indestructible items – that would otherwise contaminate the RDF product.

Workers on a manual sorting line removing contaminants from a waste conveyor

Magnetic Separator

Installed after the sorting station, the magnetic separator acts as a secondary safeguard, catching any ferrous metals missed during manual sorting so they can be recycled rather than passed through to the fuel stream.

Screen Trommel

A rotary trommel removes particles larger than 60 mm, filtering out soil and other organic material. This step increases the calorific value of the RDF and lowers its moisture content.

Shredder

The shredder(s) reduce the RDF particle size down to below 200 mm or 50 mm, depending on site-specific requirements. A grate on the shredder also removes any oversized rejects that slipped past earlier sorting stages.

Thermal Dryer

The thermal dryer uses a hollow screw heated by oil to reduce the moisture content of the material. Waste heat from an external source – such as a pyrolyser thermal oxidation process – can be redirected to heat the oil, making the drying stage more energy-efficient. As waste travels through the screw conveyor, moisture evaporates until the desired final moisture level is reached.

Cutaway diagram of a screw-type thermal dryer heated by oil

Equipment Summary

EquipmentModel CodePrimary Function
Drum FeederODF10Feeds, sorts, and orients waste at a consistent rate
Weighing ScaleOWC10Batches and measures waste flow
Bag OpenerOBO10Opens bags to prepare waste for sorting
Sorting StationOSS10Manual removal of inert/contaminant materials
Magnetic SeparatorOMS10Removes ferrous metals for recycling
Screen TrommelOST10Filters particles greater than 60 mm
ShredderOS5010Reduces particle size to below 200 mm or 50 mm
Thermal DryerOTD10Reduces moisture content using recovered heat

Units can be combined and scaled to fit larger throughput needs, allowing RDF systems to be tailored precisely to the waste volumes and composition of each site.

Typical Applications

Once processed, RDF is used primarily as a substitute for coal in two major industrial applications:

  • Power production – RDF can be combusted to generate electricity, reducing reliance on fossil coal.
  • Cement kilns – The cement industry uses large amounts of thermal energy for kiln heating, making RDF an attractive lower-carbon fuel alternative.

Key Takeaways

  • RDF is produced from the combustible fraction of municipal solid waste – plastics, paper, textiles, rubber, and wood.
  • A complete RDF production line typically includes a drum feeder, weighing scale, bag opener, sorting station, magnetic separator, screen trommel, shredder, and thermal dryer.
  • RDF Grade 3 typically meets the standard required to substitute coal in power plants and cement kilns.
  • Systems are modular and can be combined to handle larger throughput requirements.
  • RDF production turns a waste management cost into a genuine energy resource, supporting both landfill diversion and fossil fuel substitution goals.

Get in Touch

If you’re exploring ways to divert municipal solid waste from landfill while generating a valuable coal-substitute fuel, our team can help design an RDF system tailored to your waste stream and throughput needs. Get in touch with us to discuss your project and find out how a bespoke RDF production line could work for your site.

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