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MagnetGas Treatment System
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MagnetGas Treatment System

MagnetGas Technology

Advanced Gasification, Pyrolysis & RCO Technology for Pharmaceutical and Chemical Waste

Technology Overview

MagnetGas is an advanced hazardous waste treatment system developed by EASE Environmental Solutions in Canada for pharmaceutical waste, chemical waste, medical waste, hazardous organic residues, and other difficult-to-treat industrial waste streams. The system integrates controlled gasification, pyrolysis conversion, regenerative catalytic oxidation (RCO), intelligent process control, and project-specific emission treatment within one engineered platform.

Through three coordinated thermal treatment stages, MagnetGas converts complex organic waste into a more stable process gas before final catalytic oxidation, supporting deep molecular decomposition, stable operation, and effective emission control under variable waste conditions. Depending on project requirements, the system can include waste feeding, gasification, pyrolysis, RCO treatment, heat recovery, flue-gas treatment, residue discharge, safety interlocks, and centralized PLC or SCADA control.

How MagnetGas Works: The Three-Stage Process

Controlled Gasification

Controlled Gasification

Waste is introduced into a sealed reactor under oxygen-limited conditions. Key objectives: Prevent direct combustion, Initiate thermal decomposition, Convert solid and liquid waste into intermediate gaseous compounds. This stage significantly reduces the formation of harmful byproducts.

Pyrolysis Conversion

Pyrolysis Conversion

In the pyrolysis chamber, complex organic molecules are thermally broken down into simpler gaseous fractions. Key characteristics: No direct oxygen combustion, Controlled thermal cracking, Maximized conversion of organic compounds into syngas. This stage ensures deep molecular breakdown of pharmaceutical and chemical compounds.

Regenerative Catalytic Oxidation (RCO)

Regenerative Catalytic Oxidation (RCO)

The final stage involves catalytic oxidation of syngas in a regenerative system. Functions include: Complete oxidation of VOCs, Conversion into CO₂ and H₂O, Heat recovery for energy efficiency, Stabilization of exhaust gas composition. This stage is critical for achieving ultra-low emission performance.

Core System Configuration

A MagnetGas installation is configured around the waste characteristics, required throughput, site utilities, local environmental requirements, and operating model. A typical system may include the following modules:

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Core System Configuration
Waste Receiving and Feeding System

Waste Receiving and Feeding System

Enclosed receiving, dosing, loading, and sealing arrangements selected for drums, bags, solids, sludge, or liquid waste. The objective is to support safe feeding, stable throughput, and minimal uncontrolled air ingress.

Gasification Reactor

Gasification Reactor

The primary controlled conversion chamber in which waste is heated under oxygen-limited conditions. Reactor design and operating parameters are selected according to waste composition, moisture, ash content, and calorific value.

Pyrolysis Conversion Chamber

Pyrolysis Conversion Chamber

Designed for islands, remote areas, and off-grid waste management scenarios.

Regenerative Catalytic Oxidation Unit

Regenerative Catalytic Oxidation Unit

The final high-efficiency oxidation stage, combining regenerative heat recovery with catalytic treatment of VOC-rich process gas.

Flue-Gas Treatment System

Flue-Gas Treatment System

Project-specific downstream treatment for particulate matter, acid gases, trace pollutants, or other regulated components. The exact configuration depends on waste analysis and local discharge requirements.

Residue Cooling and Discharge

Residue Cooling and Discharge

Controlled collection and discharge of bottom residue, ash, or inert fractions for testing and compliant downstream management.

Intelligent Control Platform

Intelligent Control Platform

PLC or SCADA-based monitoring of temperature, pressure, oxygen, airflow, equipment status, alarms, operating trends, and selected emission parameters.

Safety and Interlock System

Safety and Interlock System

Automatic permissives, shutdown logic, pressure protection, abnormal-temperature response, feeding interlocks, and emergency operating sequences.

Applications

EASE innovates with advanced technologies for sustainable solutions.

Pharmaceutical Manufacturing

Treatment of API residues, rejected products, process residues, contaminated packaging, organic by-products, and other combustible hazardous waste generated during pharmaceutical production.

Chemical Production

Controlled treatment of solvent-bearing waste, organic process residues, contaminated absorbents, sludge, and mixed hazardous waste from chemical manufacturing.

Hazardous Waste Treatment Facilities

A modular treatment line for facilities receiving multiple industrial waste streams that require controlled thermal conversion and advanced gas treatment.

Research and Specialty Laboratories

Treatment of selected laboratory and research waste streams after characterization and segregation according to compatibility and safety requirements.

Let’s build a cleaner, More Sustainable Future Together

MagnetGas Technology is a core component of EASE’s municipal and industrial waste treatment solutions, enabling low-emission, energy-efficient, and flexible decentralized waste processing systems. Developed jointly in Canada, USA, and China, the system integrates advanced thermal conversion and intelligent control to deliver safe and reliable operation.

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