Ionizor
IONizor
- Organic materials are thermally converted into carbonaceous residue and further reduced into stable ash.
- Inorganic materials remain unaffected and are recovered as dry solid products.

IONizor is designed for the treatment of a wide range of waste streams, including:
- Industrial Scheduled Organic Waste
- Medical Hazardous Organic Waste
- Domestic Organic Waste
- Biomass Waste
Waste Characteristics
- Form: Solid / Shredded solids
- Composition: Organic, inorganic, and moisture-containing waste
- Remarks: High moisture content may require pre-treatment in a separate system or may result in increased fuel consumption during operation
Unique Process Advantages of IONizor
- Fully enclosed, non-contact (non-human touch) operation
- Environmentally friendly and safe system design
- Highly cost-effective solution with zero fuel requirement for primary thermal treatment
- Minimal auxiliary fuel required only for complete combustion of volatile organic compounds (VOCs), syngas, smokes, and odours
- Converts organic materials into carbonaceous residues, further reduced to ash
- Inorganic materials remain unchanged as dry solid residues
- High waste volume reduction efficiency of over 95% (by weight/volume)
- Low operating expenditure (OPEX) with fast return on investment (ROI)
- Cleaner and safer working environment with simplified material handling
This technology is engineered with an environmentally controlled design incorporating:
- Oxygen-limited operating conditions to suppress oxidation reactions, prevent formation of hazardous by-products, and eliminate risk of auto-ignition
- Thermo-chemical conversion processes including carbonization and de-carbonization conducted within a fully sealed, refractory-lined reaction chamber to ensure process stability and containment integrity
- Integrated multi-stage Air Pollution Control System (APCS) designed for high-efficiency abatement of process emissions, including condensable vapours, volatile organic compounds (VOCs), syngas constituents, fine particulates, combustion smoke, and odorous compounds
- Fully automated PLC-based control system enabling real-time monitoring, interlocking safety logic, and precise regulation of temperature, residence time, and process atmosphere for consistent operational performance
Type of Wastes





Process Flow Diagram


Pilot Unit
Air Emission Discharging Ash
Sequential Continuos System

