Fuel Processing Technology

Find innovative production technology for making fuel and connect directly with world-leading specialists.

Fuel
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Energy is constantly changing, but it finds rest in a fuel. Once exposed to heat, though, these natural materials release their captured energy. Every aspect of everyday life – from manufacturing to digital services – is powered by the mastery of this complex conversion from fuel to energy.

Which fuel technology do you need?

Self-cleaning candle filtration system

Self-cleaning candle filtration system

Separating solids from liquids by filtration requires frequent cleaning or replacemen…

complete production line to make wood and food pellets

Complete pellet line

Large industries are shifting towards more environment-friendly technology, such as recycling wastes and …

a pellet mill to produce wood, food and feed pellets

Industrial pellet mill

At the industrial level, the application areas of pellets range widely in fields such as feeds, biomass…

Wood chip gas syngas generator

Wood chip gas syngas generator

The recovery of energy from biomass isn’t all advantages, it has its shortcomings as well. Bi…

Water oil separation centrifuge

Water oil separation centrifuge

Some industries, such as petrochemical, generate large volumes of oily wastewater due to the …

Ultrasonic spraying system for medium and large scale coating

Ultrasonic spraying system for medium and large scale coating

When it comes to expensive chemical solutions and suspensio…

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Production plant for biodiesel

Production plant for biodiesel

As a biofuel producer, making biodiesel from several types of treated vegetable oils or animal…

Oilseeds preparation plant

Oilseeds preparation plant

When producing customized flakes, pressed cakes, or other oilseed products, the oilseed preparatio…

Efficient sized biomethane production system

Efficient sized biomethane production system

Also referred to as biogas purification, biogas upgrading is an excellent alte…

Large-scale biomethane production system

Large-scale biomethane production system

Membrane separation technology for biogas purification is considered as an effectiv…

Modular biogas to biomethane system

Modular biogas to biomethane system

The primary purpose of biogas upgrading technology is to increase the volumetric energy …

Small-scale biogas upgrading system

Small-scale biogas upgrading system

Biogas upgrading refers to the process of purifying biogas through separating methane fr…

Industrial leaf filter for chemicals

Industrial leaf filter for chemicals

In recent years the removal of sulphur has received increasing attention because of saf…

Plug and play natural gas to hydrogen generator

Plug and play natural gas to hydrogen generator

Hydrogen is an all-purpose element and can be simply defined as energy’s S…

Belt dryer for sewage sludge

Belt dryer for sewage sludge

If your water treatment plant often facing difficulties with sewage sludge deposits, drying the …

Online sampling system for larger scale bioprocesses

Online sampling system for larger scale bioprocesses

Accurate sampling is vital for improving a wide variety of industrial…

Conveyors for recovery boilers

Conveyors for recovery boilers

Recovery boilers recapture energy otherwise wasted in organic byproducts of industrial process…

Pneumatic conveying for industrial biomass boilers

Pneumatic conveying for industrial biomass boilers

Modern boiler plants have a wide variety of conveying needs.  While tra…

Ash handling systems for industrial biomass boilers

Ash handling systems for industrial biomass boilers

The increasing use of solid fuels including biomass for energy convers…

Solid biomass boiler feeding systems

Solid biomass boiler feeding systems

Energy conversion from biomass requires efficient boiler operation which is largely inf…

Solid biomass storage and reclaiming equipment

Solid biomass storage and reclaiming equipment

Biomass fuels must often be stored for additional preprocessing or prior to …

Solid biomass screening and crushing equipment

Solid biomass screening and crushing equipment

Biomass fuels come in many forms and often include impurities that can damag…

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Solid biomass receiving systems

Solid biomass receiving systems

Biomass fuels come in many forms and are often handled in very large quantities.  Shipment mu…

High performance classifier

High performance classifier

For ultrafine classifying operations in inline mode of all types of fine to medium-fine products,…

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Going bio with primary fuels


Natural resources like bitumen or coal have long been used to generate heat and produce mechanical work. These primary fuels store energy that can either be used immediately or refined into a secondary fuel without causing any energy loss in the process.


Fossil fuels account for over 85% of primary energy consumption globally. In the last decade, however, alternatives such as biomass and modern biofuels have been making modest but steady inroads.


Making the most of raw resources with artificial fuels

Secondary fuels are produced to maximize their potential for combustion. Their prominent characteristics are derived from primary fuel using a process of distillation and refining.

These so-called artificial fuels are distributed for both industry and domestic use in solid states (e.g. charcoal) liquid (e.g. gasoline), or gas (e.g. methanol). New methods are producing more environmentally-responsible fuels such as ethanol or sustainable aviation fuel (SAF) that reduce the reliance on fossil fuels.

How fuels came of age with the combustion engine


Secondary fuels were developed with the arrival of the combustion engines. In fact, early refineries used to discard petrol as a waste material until technologies became efficient enough.


Today, most industrial applications, from trains to factory generators, rely on diesel compression engines. Concern over the ecological impact of diesel and limited raw resources, however, is encouraging sectors to pivot to sustainable alternatives such as biodiesel.


Revolutionizing power with the fuel cell

The combustion engine has literally propelled the industrial transformations in the last two centuries. The future, however, is looking to rely less on combustion and more on electrochemical reactions. Enter the fuel cell.

Fuel cells are versatile technologies that leverage hydrogen to generate electricity and power. The cells are more efficient and, when green hydrogen is used, they emit no greenhouse gases. The only discharges are heat and water, which can both be harvested for other applications.

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