THERMAL OXIDATION / HEAT RECOVERY

RTO Regenerative Thermal Oxidizer

High-efficiency thermal destruction of industrial VOCs with regenerative heat recovery.

Request a proposal See how it works
Oxidation methodRegenerative thermal
Typical chamberHigh-temperature oxidation
Fuel demandLow at sufficient VOC load
ControlFully automatic
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PRODUCT OVERVIEW

Engineered around the process, pollutant and production line.

The RTO oxidises combustible organic compounds at high temperature and uses ceramic heat-storage beds to recover energy from the treated gas.

It is suitable for organic exhaust with changing composition, large airflow and sufficient combustible concentration, including streams that are unsuitable for catalyst-based treatment.

SYSTEM ADVANTAGES

Performance that translates into practical operation

01

High purification efficiency

High-temperature oxidation provides robust destruction of diverse organic compounds.

02

Low operating cost

Regenerative ceramic media reduces auxiliary-fuel consumption.

03

No catalyst dependency

Suitable for streams containing components that can deactivate catalysts.

04

Long service life

Industrial chambers, valves and heat-storage media are designed for continuous duty.

PROCESS FLOW

A clear route from collection to controlled discharge

01

Exhaust collection

Stabilise and deliver the organic exhaust to the oxidiser.

02

Ceramic preheating

Pass inlet gas through a hot regenerative bed.

03

Thermal oxidation

Oxidise VOCs in the high-temperature combustion chamber.

04

Heat storage

Transfer outgoing heat into another ceramic bed.

05

Valve switching

Alternate airflow paths to maintain continuous regenerative recovery.

APPLICATION RANGE

Configured for the conditions that matter at your site

Final sizing, materials, controls and safety provisions are selected from the exhaust or process data supplied for the project.

Petrochemical processingCoating & paint productionPrintingElectronicsPharmaceuticalsMixed solvent exhaust
RTO Regenerative Thermal Oxidizer industrial installation
TECHNICAL CHARACTERISTICS

Designed for dependable industrial service

  • Automatic burner and chamber-temperature control
  • Multi-chamber valve switching
  • Ceramic media with high thermal capacity
  • Pressure and safety monitoring
  • Low secondary-pollutant formation
  • Optional heat-recovery and pre-treatment modules
ENGINEERING INPUTS

Information required for accurate equipment selection

Final performance depends on verified process conditions. A technical proposal should not be based on equipment name or nominal airflow alone.

Read the RTO system selection guide →

Process and pollutant data

Provide the production process, pollutant composition, normal and peak concentration, temperature, humidity and any dust, mist or corrosive components.

Capacity and operating pattern

State normal, minimum and peak airflow or treatment capacity, daily operating hours, batch cycles and expected future expansion.

Site and utility conditions

Include available installation space, indoor or outdoor location, electrical standard, fuel or water availability, access constraints and project location.

Required project scope

Clarify whether the inquiry covers equipment supply, OEM manufacture, ductwork, controls, installation guidance, commissioning, training or spare parts.

PROJECT-SPECIFIC ENGINEERING

Tell us what your process needs to handle.

Share the airflow or capacity, pollutant composition, concentration, temperature, operating hours and site constraints. We will recommend the appropriate configuration.

Discuss your project