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Liquid Waste Fuel Type Waste Incinerators with 850°C To 1100°C Operating Temperature and Steam Generation Energy Recovery

Liquid Waste Fuel Type Waste Incinerators with 850°C To 1100°C Operating Temperature and Steam Generation Energy Recovery

Liquid Waste Fuel Type Waste Incinerators

850°C To 1100°C Operating Temperature Waste Incinerators

Steam Generation Energy Recovery Waste Incinerators

Brand Name:

Waste Incinerators

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Product Details
Maintenance Needs:
Regular Cleaning And Inspection
Application:
Waste Management And Disposal
Waste Handling System:
Crane, Conveyor, Grab Bucket
Fuel Type:
Solid Waste, Liquid Waste, Gas Waste
Energyrecovery:
Steam Generation, Electricity Production
Operatingtemperature:
850°C To 1100°C
Automation Level:
Fully Automated, Semi-automated, Manual
Cost:
Varies Depending On Model And Features
Highlight:

Liquid Waste Fuel Type Waste Incinerators

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850°C To 1100°C Operating Temperature Waste Incinerators

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Steam Generation Energy Recovery Waste Incinerators

Payment & Shipping Terms
Product Description
Liquid Waste Fuel Type Waste Incinerators
Advanced systems designed for effective waste management and disposal in commercial facilities through efficient combustion processes.
Product Overview
Waste Incinerators are engineered to efficiently and safely dispose of various waste types through combustion. These systems play a crucial role in waste management by significantly reducing waste volume, minimizing environmental impact, and converting waste materials into ash, flue gas, and heat. Widely used across industries, municipalities, and healthcare facilities, they handle solid, hazardous, and medical waste while ensuring regulatory compliance and promoting sustainable disposal practices.
Construction & Durability
Constructed from high-quality carbon steel, Waste Incinerators withstand extreme temperatures and corrosive environments generated during incineration. Carbon steel provides excellent durability, strength, and thermal stress resistance, ensuring long operational lifespan, structural integrity, and reliable performance under continuous use.
Key Features
  • Product Name: Waste Incinerators
  • Maintenance Interval: Monthly to Quarterly
  • Application: Waste Management and Disposal
  • Capacity: 1 ton/day to 100 tons/day
  • Inner Cavity: Steel Plate 3-8mm
  • Energy Recovery: Steam Generation, Electricity Production
  • Robust construction with steel plate inner cavities
  • Efficient waste management and disposal solutions
Technical Specifications
Fuel Type Solid Waste, Liquid Waste, Gas Waste
Waste Handling System Crane, Conveyor, Grab Bucket
Material Carbon Steel
Ash Handling Bottom Ash Removal, Fly Ash Collection
Energy Recovery Steam Generation, Electricity Production
Maintenance Needs Regular Cleaning and Inspection
Ash Disposal Bottom Ash Conveyor
Ash Removal System Mechanical or Pneumatic
Operating Temperature 850°C to 1100°C
Applications
Waste Incinerators are essential equipment in modern waste management systems, designed to handle various waste types including solid, liquid, and gas waste. Their versatility makes them suitable for diverse applications from municipal waste treatment plants to industrial facilities requiring effective waste reduction and energy recovery solutions.
Urban Waste Management
In urban waste management centers, these incinerators efficiently process large volumes of solid waste daily, reducing waste volume through combustion while ensuring safe ash disposal via bottom ash conveyor systems.
Industrial Applications
Industrial facilities use Waste Incinerators to manage hazardous liquid and gas wastes from manufacturing processes. The ability to combust diverse fuel types allows adaptation to various industrial waste streams while converting waste energy into usable forms like steam and electricity.
Specialized Facilities
Healthcare facilities, chemical plants, and agricultural operations rely on these incinerators for specialized waste disposal. Integrated ash handling systems ensure safe collection and disposal of bottom ash and fly ash, preventing secondary pollution while enabling renewable energy generation.

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