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China Waste to Energy Plant Factory - Reliable Suppliers for Efficient Waste Incineration Power Solutions
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China Waste to Energy Plant Factory - Reliable Suppliers for Efficient Waste Incineration Power Solutions

Introducing our advanced waste to energy plant, a state-of-the-art facility located in China that specializes in transforming non-recyclable waste materials into valuable energy sources, such as steam and electricity. This innovative waste incineration power plant effectively processes a variety of waste types, including municipal solid waste, industrial waste, and biomass waste, providing a sustainable solution for managing waste.

Our operation reduces the volume of waste by 80-90% through high-temperature incineration, leaving behind a non-toxic and harmless residue. This residue can either be safely buried or repurposed as building materials, showcasing our commitment to resource reduction and environmentally friendly waste treatment. As a leading supplier and factory in the waste-to-power sector in China, we are dedicated to promoting sustainable energy solutions while addressing the challenges of waste disposal.

    Animation Video

    The waste to energy is composed of garbage incinerator, waste heat boiler, flue gas duct, denitrification system, deacidification tower system, dust collector system, boiler auxiliary machine, etc. The garbage is fed into the garbage feeding hopper by the grab, and is pushed into the incinerator by the pusher after passing through the bypass cracking device and the chute. The incinerator grate consists of three parts: the drying section, the burning section and the burning section, the burnt waste ash and dregs are discharged through a slag discharging machine. The high temperature flue gas produced by combustion is discharged from the chimney after it reaches the discharge standard through the waste heat boiler and the flue gas treatment system.
    Waste to Energy Incinerator System Flow
    Waste to Energy Boiler Structure
    The waste heat boiler is a single-drum, natural circulation medium pressure boiler, which adopts suspension structure. The boiler is horizontal and consists of three vertical membrane water wall channels (i.e. Furnace I, combustion chamber II, convection shaft). High-temperature superheater, middle-temperature superheater, low-temperature superheater and suspended tube superheater are arranged from bottom to top in convective shaft. A water-jet temperature reducer is arranged between the high and middle temperature superheater and the middle and low temperature superheater to adjust the steam temperature at the outlet of the superheater.
    Waste Heat Boiler Diagram

    Features

    • Huayuan owns a complete set of core technologies of WTE boilers and waste incinerators, and have strong capacity in designing, manufacturing and supplying products with excellent quality.
    • With the whole set of technologies and operation references of WTE boilers of large capacities, high parameters and/ or RH system, Huayuan is dedicated to create excess value for client.
    • Furnaces of insulating, air cooling and water cooling types are developed to adapt different heating values of MSW (Municipal Solid Waste) and with large fuel flexibility.
    • Front and rear arches are to be properly arranged on a case-by-case basis to reduce the loss of ignition and to increase the thermal efficiency.
    • The heating surfaces are provided with efficient soot-blowing arrangement and proper layout to ensure the heat exchange efficiency.
    • Mature and reliable anti-corrosion solutions for furnace, Superheater (high temperature corrosion) as well as economizer (low temperature corrosion).
    • The structural layout is properly made so as to avoid coking on heat recovery area.
    • Advanced manufacture technologies and complete quality assurance system to ensure the stability and reliability of the boiler operation.

    Customer Case Video

    Technical Data

    Main Performance Parameters of LC Series Solid Waste and Municipal Solid Waste Incineration Boiler
    Items LC35-5-1.25 LC40-5-1.25 LC60-6-1.25 LC60-8-1.25 ALC120-12-1.25
    Rated output (t/h) 5 5 6 8 12
    Rated Working Pressure (MPa) 1.25 1.25 1.25 1.25 1.25
    Steam temperature (°C) Saturated (194) Saturated (194) Saturated (194) Saturated (194) Saturated (194)
    Combustion mode Chain layer combustion Chain layer combustion Chain layer combustion Chain layer combustion Chain layer combustion
    Fuel type Coal, firewood Coal, firewood Waste of paper material (humidity <20%, sand content <5%) Waste of paper material (humidity <20%, sand content <5%) Waste of paper material (humidity <20%, sand content <5%)
    Grate area (m²) 10 8.3 8.9 11.2 18
    Heated surface of boiler proper (m²) 188.9 232.2 255 254.7 372.6
    Heating surface of boiler tail (m²) 99.3 99.3 99.3 99.3 8497
    Maximum size of transportation cargo (L×W×H) (mm) 5740×2830×3550 6320×3230×3550 8750×3240×3550 7770×3400×3550 8200×3350×2930
    Maximum weight of transportation cargo (t) 23 28 34 34 60
    Daily treatment waste amount (t/d) ~35 40 60 60 120

    Application

    The technology has been widely used in municipal solid waste treatment, waste incineration for power generation, waste incineration in paper industry, general solid waste treatment, urban central heating and other fields.

    Contact Us

    For custom engineering solutions and detailed technical specifications, please get in touch with our team.

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    Frequently Asked Questions

    What components make up the waste-to-energy system?
    The system consists of a garbage incinerator, waste heat boiler, flue gas duct, denitrification system, deacidification tower system, dust collector system, and boiler auxiliary machinery.
    How is the steam temperature regulated in the waste heat boiler?
    A water-jet temperature reducer is placed between the high/middle-temperature and middle/low-temperature superheaters to adjust and control the outlet steam temperature.
    What types of furnaces are available to accommodate different waste types?
    Insulating, air-cooling, and water-cooling furnace designs are available to adapt to different heating values of Municipal Solid Waste (MSW), offering high fuel flexibility.
    What fuels can the LC Series Solid Waste Incineration Boiler handle?
    Depending on the model, the system can incinerate coal, firewood, and paper material waste with a humidity level under 20% and sand content below 5%.
    What measures are taken to prevent boiler corrosion and coking?
    The boilers feature mature anti-corrosion designs for the furnace, superheater, and economizer, alongside an optimized structural layout to avoid coking in the heat recovery zone.
    What are the primary applications of this technology?
    It is widely used in municipal solid waste treatment, power generation, paper industry waste incineration, general solid waste treatment, and urban central heating systems.