Waste Oil to Base Oil ReRefining Plant

Convert waste lubricating oil into high-quality base oil through an integrated system combining pretreatment, vacuum dehydration, fractional distillation, high-vacuum distillation and selective refining.

Diesel Output

SN150–SN300 / Group I

80–85% Recovery

Reference diesel recovery rate

PLC / SCADA

Centralized process automation

EPCM Services

Engineering to commissioning


Waste Oil to Base Oil Plant

STANDARD REFINING ROUTE

Group I Base Oil

Adsorptive refining configuration

DESULFURIZATION ROUTE

Near Group II Base Oil

Selective solvent extraction refining process

Flexible Distillation Technology

Choose vacuum distillation or thin film distillation based on feedstock characteristics, plant capacity and targeted base oil specifications.

Multiple Refining Routes

Adsorbent refining is available for Group I base oil production, while selective solvent extraction can produce base oil with quality approaching Group II.

Advanced Hydrorefining for ≥50 TPD Plants

Plants with capacities of 50 TPD or above can integrate an optional hydrorefining section to produce Group II and higher-grade base oils with improved color, sulfur content, oxidation stability and overall performance.

80–85%

DIESEL RECOVERY RATE

5–200+ TPD

PROCESSING CAPACITY

PLC / SCADA

CONTROL SYSTEM

EPCM

PROJECT SERVICES

———— Plant Film · Actual Project

WATCH THE PLANT IN OPERATION

04:05 MIN ·Full Project Film

VBOLT Project Film

Real Equipment · Real Process · Real Operation

———— Plant Film

Waste Oil Re-Refining Plant

Feedstock

Waste Lubricating Oil

Process

Vacuum Distillation

Output

Base Oil / Diesel-Range Product

Configuration

Modular · Skid-Mounted

———— BASE OIL RE-REFINING PROCESS

Waste Oil Base Oil Plant Process

01

STAGE 01 · MATERIAL IN

Feed Preparation

Coarse Filtration

Sedimentation & Draining

Feed Transfer & Buffering

PROCESS RESULT

Stable feed ready for dehydration

02

STAGE 02 · PRETREATMENT

Dehydration

Controlled Heating

Water Removal

Stable Feed

PROCESS RESULT

Prepared waste oil ready for dehydration

03

STAGE 03 · LIGHT ENDS REMOVAL

Light Ends Removal

Controlled Vacuum

180–260°C Operating Range

Light Fraction Collection

PROCESS RESULT

De-lighted oil ready for vacuum thin-film distillation

04

STAGE 04 · CORE DISTILLATION

Vacuum Thin-Film Distillation

Deep Vacuum <20–30 mbar

260–360°C Distillation Range

Short Residence Time

PROCESS RESULT

Base oil vapor separated from heavy residue

05

STAGE 05 · FRACTION SEPARATION

Base Oil Fractionation

SN75–SN150 Base Oil

SN150–SN200 Base Oil

SN250–SN350 Base Oil

PROCESS RESULT

Separated base oil fractions routed to refining

06

STAGE 06 · BASE OIL REFINING

Base Oil Refining

Adsorbent Refining

Selective Solvent Extraction

Hydrofinishing for ≥50 TPD Plants

PROCESS RESULT

Refined base oil ready for final filtration and storage

07

STAGE 07 · FINAL PRODUCT

Base Oil Filtration & Storage

Final Polishing Filtration

Product Quality Inspection

Grade-Separated Storage

PROCESS RESULT

Finished regenerated base oil ready for sale or lubricant blending

MATERIAL IN

Waste Oil

CONTROLLED CONVERSION

VBT-DB Process

MAIN PRODUCT

Base oil· 80–85%

ENERGY LOOP

Light Fraction → Plant Fuel

QUALITY ROUTES

Group I Base Oil / Group II

———— EPCM PROJECT SERVICES

Base Oil Plant EPCM Services

VBOLT coordinates engineering, procurement, construction management and commissioning as one managed project—from the design basis to stable plant operation.

01 · PROJECT DEFINITION

Define the Right Base Oil Plant

Feedstock Evaluation

Capacity & Product Planning

Site & Utility Assessment

Customer outcome

A clearly defined project scope, process route and investment basis.

02 · ENGINEERING

Engineer the Complete Re-Refining System

Process Design & Material Balance

PFD / P&ID & Equipment Sizing

Plant Layout & Utility Engineering

Customer outcome

A coordinated engineering package ready for equipment manufacturing and site implementation.

03 · PROCUREMENT MANAGEMENT

Control Equipment and Supplier Quality

Equipment & Supplier Coordination

Quality Control & Inspection

Packing & Shipping Documentation

Customer outcome

A controlled equipment supply package aligned with the approved design.

04 · CONSTRUCTION MANAGEMENT

Coordinate Site Installation and Construction

Installation Sequence & Progress Control

Equipment, Piping & Utility Coordination

Site Quality & Safety Supervision

Customer outcome

An organized installation process with clearly controlled technical interfaces and construction responsibilities.

05 · COMMISSIONING & SUPPORT

Bring the Plant into Stable Operation

Pre-Commissioning & System Testing

Plant Start-Up & Process Adjustment

Operator Training & Technical Support

Customer outcome

A commissioned base oil plant with trained operators and stable production capability.

5–200+ TPD

Project Scale

PLC / SCADA

Control Integration

Modular Expansion

Future Plant Development

EPCM

Integrated Project Services

———— Core Technologies

Core Technologies for Base Oil Re-Refining

Explore the technologies that control heating, conversion, separation and diesel quality—starting with VBOLT’s patented maintenance-focused furnace design.

VBOLT PATENTED TECHNOLOGY

01 Direct Waste-Oil Heating

02 Detachable Heating Section

03 Internal Coil Access

CORE TECHNOLOGY 01 · PATENTED DESIGN

Patented Detachable Tubular Heating Furnace

Waste oil is heated directly inside the tubular furnace. Unlike conventional fixed furnace structures, VBOLT's patented heating section can be removed for inspection, decoking and internal cleaning.

01

Precision Manufacturing

Your equipment is built with industrial-grade materials and strict quality control to ensure long.

02

Detachable Structure

The heating section is engineered for removal and reinstallation.

03

Decoking & Cleaning

Internal deposits can be accessed and cleaned during maintenance.

04

Long-Term Maintainability

Simplified inspection and servicing for industrial operation.

REMOVEDECOKEINSPECTREINSTALL

Built for Cleaning. Engineered for Long-Term Operation.

CORE TECHNOLOGY 02 · OPTIONAL CONFIGURATION

Thin-Film Distillation

01

Indirect Heating

Thermal oil transfers heat without direct furnace contact.

02

Uniform Liquid Film

A thin film supports controlled and efficient heat transfer.

03

Short Residence Time

Reduces prolonged thermal exposure of the feedstock.

04

Reduced Local Overheating

Helps limit localized thermal stress and coking.

CORE TECHNOLOGY 03 · VACUUM CONTROL

Deep Vacuum System

01

Multi-Stage Vacuum Generation

Roots vacuum boosters and the backing pump work together to achieve the required operating vacuum.

02

Stable Vacuum Control

Vacuum pressure is continuously monitored to maintain stable distillation conditions.

03

Lower Boiling Temperature

Deep vacuum allows base oil fractions to evaporate at lower temperatures with reduced thermal stress.

04

Vacuum System Protection

Buffering and gas-liquid separation help prevent liquid carryover into the vacuum pumps.

CORE TECHNOLOGY 04 · PRODUCT QUALITY

Base Oil Fractionation & Refining

01

Controlled Base Oil Fractions

Fractional condensation separates the recovered vapor into different base oil viscosity ranges.

02

Adsorbent Refining

Clay, silica gel or other adsorbents remove color bodies, oxidation products and polar impurities for conventional base oil finishing.

03

Selective Solvent Extraction

Selective solvent extraction provides deeper refining and can produce base oil quality approaching Group II, depending on the feedstock and operating conditions.

04

Hydrofinishing for ≥50 TPD

eper refining and can produce base oil quality approaching Group II, depending on the feedstock and operating conditions.

———— VBT-DB BASE OIL PLANT CONFIGURATIONS

Select the Right Base Oil Plant Capacity

Compare VBT-DB models by processing capacity, footprint, installed power, heating load, staffing and delivery format to select the right waste oil re-refining base oil plant for your project..

SELECTED CONFIGURATION

VBT-DB-05

Processing Capacity

5 TPD*

Reference Footprint

180–260 m²*

Heating Load

200,000–250,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Small commercial plant*

Installed Power

45–65 kW*

Operators Required

2–3 persons/shift*

Delivery Format

Modular skid package*

SELECTED CONFIGURATION

VBT-DB-10

Processing Capacity

10 TPD*

Reference Footprint

260–380 m²*

Heating Load

350,000–450,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Small commercial plant*

Installed Power

80–120 kW*

Operators Required

3 persons/shift*

Delivery Format

Modular skid + site connection*

SELECTED CONFIGURATION

VBT-DB-20

Processing Capacity

20 TPD*

Reference Footprint

450–650 m²*

Heating Load

600,000–800,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Medium industrial plant*

Installed Power

150–220 kW*

Operators Required

3–4 persons/shift*

Delivery Format

Modular sections + site installation*

SELECTED CONFIGURATION

VBT-DB-30

Processing Capacity

30 TPD*

Reference Footprint

650–900 m²*

Heating Load

900,000–1,200,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Large industrial plant*

Installed Power

220–320 kW*

Operators Required

4–5 persons/shift*

Delivery Format

Factory modules + site-built systems*

SELECTED CONFIGURATION

VBT-DB-50

Processing Capacity

50 TPD*

Reference Footprint

950–1,300 m²*

Heating Load

1,500,000–2,000,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Regional processing center*

Installed Power

350–500 kW*

Operators Required

5–6 persons/shift*

Delivery Format

Modular plant + EPCM services*

SELECTED CONFIGURATION

VBT-DB-100

Processing Capacity

100 TPD*

Reference Footprint

1,600–2,300 m²*

Heating Load

3,000,000–4,000,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Large processing complex*

Installed Power

650–900 kW*

Operators Required

7–9 persons/shift*

Delivery Format

Project-engineered EPCM configuration*

SELECTED PLANT MODE

VBT-DB-200

Processing Capacity

200 TPD*

Reference Footprint

2,800–4,000 m²*

Heating Load

6,000,000–8,000,000 kcal/h*

Control System

PLC / SCADA*

Recommended Project

Industrial processing complex*

Installed Power

1,200–1,700 kW*

Operators Required

10–14 persons/shift*

Delivery Format

Complete EPCM project services*

SELECTED CONFIGURATION

VBT-DB CUSTOM EPCM

Processing Capacity

200+ TPD*

Reference Footprint

Project-specific*

Heating Load

Engineering calculation*

Control System

PLC / SCADA*

Recommended Project

Custom EPCM project*

Installed Power

Engineering calculation*

Operators Required

Project-specific*

Delivery Format

Complete EPCM project services*

———— TECHNICAL DATA

Base Oil Plant Technical Data

ParameterReference Value*Remarks
Plant seriesVBT-DB SeriesStandard models and custom EPCM projects
Processing capacity5–200+ TPDModel and project dependent
Diesel recovery rate80–85 wt%Typical range for qualified used-oil feedstock
Distillation temperature180–360°CUp to 380°C for final residue discharge
Distillation technologyDual-reactor / tubular furnace / thin-film distillationSelected according to capacity, feedstock and project requirements
Operating hours<20–30 mbarVacuum distillation section
Main productRegenerated base oilProduct quality depends on feedstock and selected refining route

* Preliminary reference data for model comparison and engineering discussion. Final values are determined according to feedstock properties, selected process route, product quality targets and site conditions.

UtilityReference Requirement*Remarks
Electrical powerModel-specificSee VBT-DB configuration selector
Heating loadModel-specificDepends on the selected heating and distillation route
Heating fuelNatural gas / fuel oil / recovered plant gasSelected according to local availability and burner design
Cooling water circulation6–12 m³/t of feedClosed-loop circulation
Instrument air0.6–0.8 MPaAutomation and scale dependent

* Preliminary utility requirements for engineering comparison. Final power, heating fuel, cooling-water circulation and instrument-air demand depend on plant capacity, process route, feedstock properties and site conditions..

EPCM ServiceTypical Status*Remarks
EngineeringAvailableProcess design, PFD / P&ID, equipment specifications, plant layout, utilities and control philosophy
Procurement managementAvailableSupplier coordination, manufacturing follow-up, quality inspection and technical documentation
Construction managementProject-definedSite coordination, installation sequence, schedule, quality and safety supervision
PLC / SCADA integrationIncludedCentralized control, field instruments, alarms, interlocks and operating data
Commissioning & operator trainingAvailablePre-commissioning checks, plant start-up, process adjustment and operator training

After-sales technical support Included, Remote troubleshooting, spare-parts support and long-term technical guidance

* Final EPCM scope, responsibility boundaries and site-service requirements are defined in the project contract according to plant capacity, site conditions and local regulations.

———— FEEDSTOCK, CONFIGURATION & BASE OIL OUTPUT

Suitable Feedstocks for Base Oil Re-Refining

Select a representative used-oil feedstock to see how VBOLT connects feedstock evaluation, process configuration and target base oil quality

STANDARD FEEDSTOCK EVALUATION

Used Engine Oil to Base Oil

STANDARD FEEDSTOCK EVALUATION

Used engine oil may contain water, sludge, degraded additives, metal particles and carbon residue. Representative laboratory analysis is used to determine the required pretreatment, vacuum distillation and base oil refining route

02 · RECOMMENDED CONFIGURATION

Waste Oil Pretreatment + Selected Distillation + Diesel Refining

Reference configuration for used engine-oil feedstock.

01

Feedstock Evaluation

Confirm water, sludge, sulfur, chlorine, metals and distillation range.

02

Selected Distillation

Select the tubular heating furnace or optional thin-film distillation at 180–420°C.

03

Conversion & Fractionation

Apply catalytic carbon-chain conversion and separate light and diesel fractions.

04

Diesel Refining Route

Select adsorptive refining or diesel desulfurization from the target quality.

02 · RECOMMENDED CONFIGURATION

Dehydration + Selected Distillation + Diesel Refining

Configurable used motor oil to diesel route.

01

Feedstock Evaluation

Remove water, sludge and unstable contaminants before distillation.

02

Selected Distillation

Select the tubular heating furnace or optional thin-film distillation.

03

Conversion & Fractionation

Recover light fraction for plant fuel and separate the diesel fraction.

04

Diesel Refining Route

Select adsorptive refining or diesel desulfurization from the target grade.

02 · RECOMMENDED CONFIGURATION

Feed Conditioning + Distillation Route + Product Refining

Evaluation route for mixed waste lubricating-oil collections.

01

Feedstock Evaluation

Characterize water, solids, sulfur, metals and mixed lubricant content.

02

Selected Distillation

Choose the distillation technology from the confirmed feed assay.

03

Conversion & Fractionation

Control catalytic conversion and fraction cut points for diesel recovery.

04

Diesel Refining Route

Configure the refining route from the required diesel target.

02 · RECOMMENDED CONFIGURATION

Enhanced Pretreatment + Project-Specific Distillation

Project-specific route for variable industrial waste-oil streams.

01

Feedstock Evaluation

Review the source and apply enhanced settling, filtration and dehydration.

02

Selected Distillation

Select the appropriate distillation route after laboratory screening.

03

Conversion & Fractionation

Control conversion and fractionation around the confirmed oil composition.

04

Diesel Refining Route

Use the required diesel-refining route only after product-target confirmation.

02 · RECOMMENDED CONFIGURATION

Stabilization + Distillation + Fractionation + Refining

Special PP/PE pyrolysis oil distillation configuration.

01

Feedstock Evaluation

Remove solids, water, unstable light components and wax-related contaminants.

02

Selected Distillation

Configure the distillation route for the broad pyrolysis-oil boiling range.

03

Conversion & Fractionation

Separate the recoverable light fraction and target diesel fraction.

04

Diesel Refining Route

Define final refining and stability improvement from full product testing.

02 · RECOMMENDED CONFIGURATION

Pretreatment + Vacuum Distillation + Base Oil Refining

Special tire pyrolysis oil to diesel configuration.

01

Feedstock Evaluation

Analyze water, viscosity, metals, ash, sulfur, chlorine, flash point and distillation characteristics

02

Pretreatment & Dehydration

Remove free water, sediment and suspended contaminants before high-temperature processing.

03

Vacuum Distillation & Fractionation

Separate light ends, recover valuable base oil fractions and discharge heavy residue.

04

Base Oil Refining Route

Select adsorbent refining, solvent extraction or hydrofinishing according to the target product quality

03 · TARGET PRODUCT

Regenerated Base Oil

The plant configuration and refining route are selected according to the feedstock properties and required base oil quality.

80–85%

BASE OIL RECOVERY RATE

STANDARD REFINING

Group I Base Oil Target

ADVANCED REFINING

Higher-Grade Base Oil Options

01 Regenerated Base Oil as the Main Commercial Product

02Refining Route Selected According to the Product Target

03Light Fractions and Non-Condensable Gas Recovered for Plant Heating

FEEDSTOCK EVALUATION BASIS

Configure the Plant Around Your Oil

Water Sediment Density Viscosity Sulfur Chlorine Flash Point Distillation Range Metals

———— BASE OIL PROJECT DELIVERY

Complete Plant Delivery Experience

VBOLT provides integrated engineering, equipment manufacturing, automation, installation guidance and commissioning support for waste oil re-refining base oil projects.

REPRESENTATIVE PROJECT CONFIGURATION

60 TPD Waste Oil Re-Refining Base Oil Plant

LocationSoutheast Asia*
Capacity60 tonnes/day*
FeedstockUsed engine and lubricating oil*
VBOLT ScopeProcess engineering, equipment supply, PLC / SCADA and commissioning*
Project StatusCommercial operation*

———— TECHNICAL RESOURCES

Technical Documents for Base Oil Plant Evaluation

Each document supports a specific project decision—from understanding the VBT-DB plant and process routes to reviewing technical requirements and preparing a project-specific configuration

VBOLT · VBT-DB SERIES

Waste Oil Re-Refining Base Oil Plant

AVAILABLE AFTER CONTENT APPROVAL

Waste Oil Re-Refining Base Oil Plant Brochure

A customer-facing overview of VBT-DB process routes, plant configurations, equipment modules, model capacities, utility requirements and EPCM project services.

PDF 16 PAGES* ENGLISH REV. 2026.07*

Product & Application Overview

Base Oil Re-Refining Process Routes

Reference technical and utility data

EPCM delivery and service scope

DATA

TECHNICAL SELECTION

Preliminary Technical Datasheet

Reference operating conditions, capacities, equipment configuration and utility requirements.

PDF · 6 PAGES*

REQUEST PDF →

PFD

PROCESS UNDERSTANDING

Typical Process Flow Diagram

Shows feed preparation, dehydration, selected distillation, catalytic conversion, fractionation, diesel refining and product routing.

PDF · A3*

REQUEST PFD →

FORM

PROJECT EVALUATION

Feedstock & Project Information Form

Collects feed analysis, required capacity, target product, project country and available utilities.

PDF / DOCX*

START EVALUATION→

Need a Project-Specific Base Oil Process Package?

Submit your feedstock analysis and project requirements to receive a preliminary VBT-DB plant configuration prepared for your application.

———— Technical FAQ

Base Oil Re-Refining Plant FAQs

Answers to common questions about feedstock suitability, base oil quality, recovery rate, process selection, utility requirements and EPCM project delivery

For qualified used lubricating oil feedstock, the typical regenerated base oil recovery rate is approximately 80–85 wt%. The actual recovery depends on the amounts of water, light fractions, additives, contaminants and heavy residue in the feedstock..

The plant can process suitable used engine oil, hydraulic oil, gear oil, transmission oil, compressor oil and other mineral-based waste lubricating oils. A representative feedstock analysis is required to evaluate water, sediment, viscosity, metals, ash, sulfur, chlorine and distillation characteristics.

The final product quality depends on the feedstock and selected refining route. Adsorbent refining is used for conventional Group I base oil finishing; selective solvent extraction can achieve quality approaching Group II, while hydrofinishing can be configured for plants of 50 TPD or above targeting Group II and higher-grade base oils.

VBOLT offers batch dual-reactor distillation, continuous tubular-furnace distillation and vacuum thin-film distillation. The appropriate route is selected according to processing capacity, feedstock properties, investment level, automation requirements and target product quality.

The plant typically requires electrical power, closed-loop cooling water, instrument air and a suitable heating fuel. Depending on the project design and local availability, the heating system can use natural gas, fuel oil or recovered non-condensable gas from the re-refining process.

VBOLT can provide process engineering, equipment supply, procurement management, PLC/SCADA integration, construction management, commissioning and operator training. Civil works, storage tanks, firefighting systems and local installation responsibilities are defined in the project contract according to site conditions..

———— 11 · Contact an Engineer

Start With the Project Basis

01 Feedstock type and available analysis

02 Required processing capacity

03 Target product and intended use

04 Project country and site conditions

1. Interested Solutions *Select the project you are planning to invest in.

Interested Solutions

2. Contact InformationGet Started — Your information will be kept confidential.

3. Project Requirements