// TECHNOLOGY // PROCESS & ENGINEERING

Disposal Technologies & Process Flows

Our furnace and control technologies in compliance with international B2B standards, aiming for zero emission and high energy recovery in waste disposal.

MT Incineration Process Overview // SCHEMATIC SYSTEM DIRECTORY v2.16
// OPERATIONAL FLOW // PROCESS TIMELINE

Secure Combustion Cycle in 5 Steps

The complete cycle from solid/liquid waste loading to flue gas scrubbing and chimney exhaust is monitored via automation.

Waste Loading
01

Waste Loading

Waste is introduced into the primary chamber manually or via hydraulic automatic loading mechanisms.

Primary Combustion
02

Primary Combustion

Solid waste undergoes thermal decomposition at 800°C - 1000°C, reducing organic materials to inert ash.

Secondary Combustion
03

Secondary Combustion

Volatile gases are drawn into the secondary combustion chamber at 1100°C for post-combustion gas destruction.

Flue Gas Treatment
04

Flue Gas Treatment

Hot flue gases pass through a wet scrubber unit or neutralizing shower tower to wash out acidic particles.

Exhaust & Ash Discharge
05

Exhaust & Ash Discharge

Cleaned flue gas is exhausted through the stack; sterile ash residue at the chamber bottom is safely discharged.

// SYSTEM COMPONENT // PREMIUM HARDWARE

Engineering Technologies Delivering High Efficiency

Incinerator longevity and thermal stability rely on the seamless integration of heavy-duty industrial components.

// SYSTEM MODULE: REFRACTORY_HEAT_SHIELD

Refractory Insulation

Furnace body is protected by high-alumina castable refractory concrete and multi-layer insulation brick rated up to 1450°C.

Alumina Ratio >85%
Max Temp 1450°C
Layer Thickness 230 mm
Medical Waste / Animal Waste / Garbage Incinerator / High Capacity is configured with custom engineering assessment.
// ENGINEERING STANDARDS // INNOVATIVE ENGINEERING

Advanced Engineering Standards

Our thermal analysis and energy recovery systems that define global standards in waste incineration technology.

[ CFD_FLOW_SIMULATION ]

// 3D CFD Flow Simulation

We optimize gas flow and temperature distribution inside the combustion chamber using 3D CFD (Computational Fluid Dynamics) simulations to guarantee maximum efficiency and zero cold zones.

[ ENERGY_RECOVERY_98% ]

// Waste Heat Recovery

We extract high-temperature thermal energy from flue gases to generate hot water, steam, thermal oil, or electricity via integrated cogeneration, minimizing operational utility costs.

2.00s 1100°C
[ PATHOGEN_DESTRUCTION ]

// Toxic Gas Destruction (1100°C / 2s)

Volatile organic compounds and toxic gases are held at 1100°C for a minimum of 2 seconds in the secondary chamber to achieve complete molecular destruction of dioxins and furans.