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Dual-Chamber System: Secondary chamber temperatures reach up to 1100°C for thorough decomposition.
Extended Residence Time: Gas residence time of over 2 seconds ensures complete burnout of harmful substances.
Automated Workflow: Integrated automatic feeding, screening, and drying mechanisms reduce manual intervention.
Durable Construction: Built with a carbon structural steel shell and acid-resistant fireclay brick refractory lining.
Multiple Configurations: Available in Rotary Kiln, Fixed Grate, and Gasification Pyrolysis models depending on application requirements.
Feature | Advantage | Buyer Benefit |
|---|---|---|
Two combustion chambers (Primary and Secondary) with temperatures reaching 900°C-1100°C in the secondary chamber. | Ensures complete decomposition and burnout of unburned harmful substances and gases. | Provides safe emission control for hazardous and medical waste, reducing environmental liability. |
Rotary kiln design with acid-resistant fireclay brick refractory lining and continuous rotation. | Allows solid and viscous waste to fully mix with combustion air during processing. | Efficiently handles high-moisture and hard-to-treat waste with continuous operation, saving manual labor. |
Integrated automatic feeding, screening, drying, incineration, and ash removal system. | Streamlines the entire waste processing workflow without requiring heavy manual intervention. | Lowers operational costs and minimizes worker exposure to hazardous medical waste. |
Gasification Pyrolysis model with > 2 seconds residence time in the secondary chamber. | Provides sufficient time for high-temperature gases and particles to completely mix and burn out. | Maximizes destruction of toxic compounds, ensuring cleaner output. |
Primary Chamber Temperature | 500°C - 800°C (Gasification model) / 700°C - 800°C (Fixed Grate model) |
Secondary Chamber Temperature | 900°C - 1100°C (Gasification model) / 900°C - 1000°C (Fixed Grate model) |
Secondary Chamber Residence Time | > 2 seconds |
Shell Material | Carbon structural steel plate |
Refractory Lining | Acid-resistant fireclay brick |
Insulation Layer | Pearlite and aluminum silicate fiber felt |
Emission Control | Biochemical smoke and dust removal system; Emergency emission safety valve (Rotary Kiln model) |
Medical waste disposal
Hazardous waste treatment
Solid, semi-solid, and liquid waste processing
High moisture content waste incineration
Please confirm the required maximum daily waste processing capacity for your facility prior to ordering.
Verify physical dimensions, total equipment weight, and required footprint for site installation.
Confirm power supply specifications and auxiliary fuel consumption rates based on your local infrastructure.
Inquire about specific international quality or environmental certifications (e.g., CE, ISO, EPA) if required by your local regulations.
Details regarding warranty periods and after-sales service terms can be confirmed during the inquiry process.
Q: What configurations are available for this incinerator?
A: The equipment is available in Rotary Kiln, Fixed Grate, and Gasification Pyrolysis configurations, depending on your specific application requirements.
Q: How does the incinerator handle smoke and emissions?
A: It utilizes a dual-chamber design where the secondary chamber operates at 900°C-1100°C with a gas residence time of over 2 seconds. This is combined with a biochemical smoke and dust removal system to ensure complete burnout of harmful substances.
Q: What materials are used for the incinerator's construction?
A: The exterior shell is constructed from carbon structural steel plate, while the interior features an acid-resistant fireclay brick refractory lining and a pearlite/aluminum silicate fiber felt insulation layer for optimal heat retention.
To request a detailed quotation, please provide your specific waste type, required daily processing capacity, and site installation requirements. Submit your inquiry here to discuss equipment specifications with a representative.