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Pyrolysis Oil To Diesel Plant

Pyrolysis Oil To Diesel Plant

VBOLT's Pyrolysis Oil to Diesel Plant separates tire or plastic pyrolysis oil into controlled fuel fractions through feedstock pretreatment, vacuum distillation and configurable polishing. Final yield and permitted use depend on feed testing, product specification and local regulations.

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Upgrade Tire and Plastic Pyrolysis Oil Into Controlled Fuel Fractions

VBOLT's Pyrolysis Oil to Diesel Plant separates crude tire or plastic pyrolysis oil into controlled light, middle-distillate and heavy fractions through feedstock pretreatment, dehydration, vacuum distillation and configurable finishing. The middle fraction may be suitable as diesel-range industrial fuel after laboratory testing, but it is not automatically automotive diesel.

Feed composition varies with the pyrolysis feedstock and reactor conditions. Sulfur, chlorine, water, solids, acidity, olefins, gum-forming compounds and low flash point can affect equipment design, storage stability, emissions and the permitted end use. VBOLT therefore selects the process from representative samples and the buyer's target specification.


1. Project Application and Process Objective

The plant is designed to fractionate and condition pyrolysis-derived liquids for a defined industrial fuel market.

Main Processing Objectives

  • Remove free water, sediment and coarse contamination
  • Separate light, middle and heavy boiling-range fractions
  • Improve consistency of density, viscosity and distillation range
  • Apply polishing or contaminant-reduction steps where justified
  • Produce fuel fractions against agreed laboratory limits

Suitable Project Types

  • Tire pyrolysis plants with a stable oil stream
  • Plastic pyrolysis projects with controlled feed composition
  • Waste recycling companies adding fuel fractionation
  • Licensed industrial fuel processors
  • Integrated resource-recovery projects
  • Industrial users with an approved fuel specification

2. Feedstocks and Acceptance Testing

Each feed stream requires review before it is accepted into the process.

Potential Feedstocks

  • Waste tire pyrolysis oil
  • Rubber pyrolysis oil
  • Polyethylene and polypropylene pyrolysis oil
  • Controlled mixed-plastic pyrolysis oil
  • Pyrolysis oil blends approved by feed testing
  • Other hydrocarbon liquids only after compatibility review

Recommended Feed Tests

  • Water and sediment
  • Density and kinematic viscosity
  • Distillation curve and boiling range
  • Flash point and pour point
  • Sulfur and total chlorine
  • Acid number, ash and carbon residue
  • Metals, solids and filterability
  • Storage stability and gum tendency where required

Unknown mixtures and streams containing excessive chlorine, incompatible chemicals or regulated contaminants must be isolated until a laboratory and regulatory review confirms the correct handling route.


3. Product Fractions and Intended Use

The available products depend on the feed analysis, selected cut points and finishing system.

Light Fraction

Low-boiling hydrocarbons are separated and collected in dedicated tanks. Their use or further treatment depends on flash point, composition and local volatile-organic-compound controls.

Diesel-Range Middle Distillate

The middle cut is a diesel-range fuel fraction. It may be considered for approved industrial burners, furnaces or boilers only after testing confirms that the fuel and the combustion equipment meet local requirements.

Heavy Fraction and Bottoms

High-boiling material, carbon, metals and unstable compounds are concentrated in the heavy stream and residue. These materials require sampling, contained storage and an authorized reuse or disposal route.

Distillation alone does not guarantee compliance with EN 590, ASTM D975 or another road-diesel specification. Engine, generator, marine and on-road use require full fuel testing, regulatory approval and confirmation from the equipment manufacturer.


4. Pyrolysis Oil Distillation Process

A typical process flow includes the following stages:

Step 1 - Sampling and Pretreatment

Incoming oil is sampled, segregated and filtered. Free water and sediment are removed before the oil enters the heated process section.

Step 2 - Dehydration and Light-Ends Removal

Controlled heating removes residual water and the lowest-boiling components. Condensed streams are collected separately for testing and compliant management.

Step 3 - Vacuum Distillation and Fractionation

Reduced pressure allows the required hydrocarbon fractions to be separated at lower temperatures. The fractionation and condensation system directs light, middle and heavy cuts to separate receivers.

Step 4 - Configurable Finishing

Filtration, adsorption, deodorization or a suitable desulfurization process may be added when feed tests and the product target justify them. The selected step must include chemical handling, recovery and waste-management requirements.

Step 5 - Product Testing and Storage

Each product fraction is tested before release to a dedicated storage tank. Off-specification material is held for reprocessing or managed under the approved quality plan.

Step 6 - Process Gas and Residue Management

Non-condensable process gas may be recovered in a closed fuel-gas system where the design and permit allow it. Excess gas, wastewater and heavy residue require controlled treatment, monitoring and disposal.


5. Fuel Quality and Release Testing

Product release should be based on the intended market and a documented test plan.

Test AreaWhy It Matters
Distillation range, density and viscosityDefines the usable fuel fraction and handling behavior
Flash point and storage stabilityAffects safe storage, transport and fuel aging
Sulfur, chlorine, ash and metalsAffects emissions, corrosion, deposits and legal use
Water, sediment and carbon residueAffects filtration, burners and maintenance

Additional tests such as cetane index, lubricity, cold-flow properties and compatibility may be required for an engine-related application. The buyer is responsible for confirming the applicable standard and permitted use in the installation country.


6. Core Technical Features

Controlled Vacuum Fractionation

  • Lower separation temperature than comparable atmospheric operation
  • Adjustable product cut points
  • Separate collection of light, middle and heavy streams
  • Reduced risk of uncontrolled thermal cracking

Heat Integration

  • Feed preheating options
  • Heat recovery matched to the operating schedule
  • Insulated hot-oil and vapor lines
  • Utility consumption defined during engineering

Automation and Safeguards

  • PLC control with operating-data monitoring
  • Temperature, pressure, vacuum and level alarms
  • Emergency shutdown and pressure protection
  • Electrical and fire-safety design for the installation site

Controlled Environmental Systems

  • Closed condensate collection
  • Process-gas handling
  • Wastewater segregation
  • Contained heavy-residue discharge

7. Capacity and Configuration

Throughput is selected from the verified feed supply, operating hours, distillation curve, target cuts and site utilities.

Selection FactorRequired Project Input
Feed availabilityAverage and peak daily pyrolysis oil volume
Feed qualityWater, solids, sulfur, chlorine and distillation profile
Product targetRequired fuel fractions and acceptance limits
Operating basisHours per day, days per year and planned maintenance

Batch, semi-continuous or continuous operation can be evaluated. Nameplate capacity is confirmed after material-balance calculations, heat-duty review and equipment sizing.


8. Product Recovery Factors

No single diesel-range yield applies to every tire or plastic pyrolysis oil. A project estimate must state the tested feed basis and product cut specification.

Feed or Process FactorEffect on Product Recovery
Water, solids and light endsReduce recoverable middle distillate
Feed distillation curveDetermines the available light, middle and heavy fractions
Sulfur, chlorine and instabilityMay require additional treatment or restrict the end use
Selected product cut pointsChange the recovery and quality balance

VBOLT can prepare a preliminary material balance after receiving a representative sample and laboratory report. Any performance guarantee must define the feed condition, operating basis, test method and product acceptance limits.


9. Main Equipment

A complete pyrolysis oil distillation plant may include:

  • Feed sampling and raw oil storage system
  • Filtration, settling and dehydration equipment
  • Vacuum distillation and fractionation section
  • Heating and heat-recovery system
  • Condensers and dedicated fraction receivers
  • Vacuum generation system
  • Configurable filtration or polishing unit
  • Separate product storage tanks
  • Process-gas and emissions-control equipment
  • Wastewater and residue collection system
  • PLC, electrical control and safety instrumentation
  • Interconnecting piping, valves and pumps

10. Optional Process Modules

Optional modules are selected only when supported by feed tests and the target product:

  • Continuous feed and automatic level control
  • Additional fractionation stages
  • Adsorption or final polishing
  • Suitable desulfurization or deodorization process
  • Closed chemical handling and recovery system
  • Heat-recovery and feed preheating package
  • Remote operating-data monitoring
  • Automatic heavy-residue discharge
  • Skid-mounted or modular equipment arrangement
  • Site-specific hazardous-area and fire-safety package

Final process selection must address chemical compatibility, corrosion, solvent or adsorbent waste, wastewater and local emissions limits.


11. Approved Industrial Applications

After laboratory release and site approval, a suitable middle-distillate fraction may be evaluated for:

  • Industrial boilers designed for the tested fuel
  • Industrial furnaces and kilns
  • Cement and mineral-processing plants
  • Asphalt and aggregate heating systems
  • Approved industrial burners
  • Further fuel upgrading or blending
  • Contract fuel processing against a defined specification
  • Integrated pyrolysis and resource-recovery facilities

Use in engines, generators, vehicles or marine equipment is outside the basic distillation claim unless the final fuel passes all applicable tests and receives the required approvals.


12. Why Choose VBOLT

VBOLT develops the equipment proposal around the actual pyrolysis oil, required product fractions, site utilities and local project requirements.

Feedstock-Based Engineering

  • Sample and laboratory-data review
  • Preliminary material balance
  • Process and equipment configuration
  • Utility and site input definition

Project Support

  • Equipment manufacturing and inspection documentation
  • Installation guidance
  • Operator and maintenance training
  • Commissioning support
  • After-sales technical support
  • Spare-parts planning under the agreed contract scope

Request a Project Proposal

For a relevant process proposal and quotation, please provide:

  • Pyrolysis feedstock type and oil source
  • Recent feed-oil laboratory report and representative sample
  • Available daily and annual oil volume
  • Required fuel fractions and product specification
  • Site voltage, fuel, water, cooling and compressed-air conditions
  • Local emissions, wastewater, residue and fire-safety requirements

VBOLT's technical team can prepare:

  • Recommended process route
  • Preliminary equipment list and material balance
  • Utility and site input requirements
  • Layout and installation proposal
  • Commercial scope and delivery schedule
  • Detailed quotation

Contact VBOLT to discuss a pyrolysis oil distillation and fuel-fraction project.

  • Q
    What waste oil recycling systems does VBOLT supply?
    A

    VBOLT supplies project-specific equipment for re-refining suitable used lubricating oils into base oil fractions and for recovering diesel-range fuel fractions from used lubricating, mixed waste, or selected pyrolysis oils. Feed testing and target product specifications determine the required process.

  • Q
    What certification and compliance documents are available?
    A

    Certification, declaration, patent, and company qualification documents are shown on the Qualifications page. Applicability depends on the equipment model, manufacturing scope, destination, and current validity; request the relevant documents for the proposed project before purchase.

  • Q
    What information is available about manufacturing capability?
    A

    VBOLT can provide company, workshop, fabrication, inspection, and project-reference information during technical review. Buyers should verify the proposed manufacturing scope, quality-control plan, inspection points, and any third-party requirements for their order.

  • Q
    What after-sales support is included?
    A

    Support scope can include remote troubleshooting, installation guidance, commissioning, operator training, spare-parts recommendations, and maintenance documentation. Response targets, travel, site services, exclusions, and warranty terms should be defined in the contract.

  • Q
    How is a project managed from inquiry to delivery?
    A

    Each project should progress through feed and product definition, process selection, technical clarification, scope confirmation, layout and utility review, manufacturing, inspection, shipment, commissioning planning, and final documentation. Responsibilities and acceptance criteria should be recorded in the proposal and contract.

  • Q
    How is equipment quality controlled during production?
    A

    Quality control should be defined by an agreed inspection and test plan covering material verification, fabrication, welding, assembly, pressure or leak tests where applicable, electrical checks, functional testing, documentation, packing, and release. Required standards and third-party inspection points must be confirmed for each order.

About Us

Chongqing Vbolt Machinery Co., Ltd., founded in 2009, is a high-tech enterprise specialized in R&D and production of industrial oil distillation & filtration equipment. Our main products cover waste engine oil-to-diesel/base oil distillation machines, turbine/transformer/insulating oil purifiers, multifunctional decolorizing filters, etc. All products are ISO9001:2008, ISO14001:2004 and CE certified, enjoying great popularity in domestic and global markets.

With a 4,000+m² factory, strong technical/production/service teams and 13 technical patents, Vbolt adheres to core values of People-oriented, Tech-driven, Quality-focused, Service-excellent & Brand-leading, and strictly implements the product standard of Elite & Premium Quality throughout the whole process from design to delivery, complying with ISO9001:2008 in procurement, packaging and storage.

Guided by the management principle of Clear Accountability and service philosophy of Sincerity, Caution, Satisfaction, we treat every customer sincerely, focus on every detail and provide high-quality satisfactory service, with a commitment to 24-hour after-sales response.

Technical Services

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Pre-sales Service

We provide various forms of pre-sales services, allowing customers to make reasonable plans at a lower cost.

  • Investment Budget: Product profit analysis, machine recommendations, and human resource allocation.
  • Factory Planning: Equipment library dimensions, layout design, and workshop construction suggestions.
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After-sales Support

  • Free Training: Enabling customers to independently use and maintain machines.
  • Technical Q&A: Prompt answers and on-site guidance/assistance if necessary.
  • Upgrades: Free technical guidance for additions or modifications.
  • Lifetime Support: Lifetime free technical assistance for all machines.
  • Warranty 24 months for major parts, 12 months for consumables.
Representative laboratory fuel product test report

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