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Model | Productivity (kg/h) | Working Temperature (°C) | Electric Power Generation (kWh) | Loading Method | Additional Features |
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LCI Series | 5 - 120 | 850 - 1250 | 600 | Manual or Automatic (Hydraulic Assistance) | Integrated post-combustion system, maximum gas turbulence |
HDI Series | 100 - 3200 | 850 - 1250 | 15000 | Manual or Automatic (Hydraulic Assistance) | Integrated post-combustion system, maximum gas turbulence |
FRI Series | 500 - 5250 | 850 - 1250 | 25200 | Automatic (Hydraulic Assistance) | Integrated post-combustion system, maximum gas turbulence |
C-1000 | 1000 | 850 - 1200 | - | Grab type grip, Additional system air supply, Waste tipper, Fuel tank + filters, Electric generator, Semi-trailer | - |
C-500 | 500 | 850 - 1200 | - | Grab type grip, Additional system air supply, Waste tipper, Fuel tank + filters, Electric generator, Semi-trailer | - |
C-350 | 350 | 850 - 1200 | - | Grab type grip, Additional system air supply, Waste tipper, Fuel tank + filters, Electric generator, Semi-trailer | - |
ROTOMAC | 100 - 500 | 850 - 1100 | - | Rotary or Oscillating Combustion Chamber | Suitable for solid and liquid waste, high efficiency |
Industrial waste incinerators usually include the following main systems:
Waste pre-treatment system:
for Industrial Waste Pretreatment, such as crushing, sorting, drying, etc. , to improve incineration efficiency. Incineration system: the core part, using high-temperature combustion technology, will be completely incinerated waste. In the process of incineration, through the control of combustion air volume, temperature and other parameters to ensure that the full combustion of waste.
Biochemical Smoke dedusting system:
Used to treat the flue gas from incineration, through dust removal, desulphurization, denitrification and other processes, reduce the concentration of pollutants in the flue gas to meet the emission standards. Auxiliary system: such as ignition system, automatic control system, waste heat recovery system, to ensure the normal operation of incinerators and improve energy efficiency.
The working principle of the industrial waste incinerator is as follows:
the waste enters the incinerator through the feeding device. The high temperature environment in the incinerator makes the wastes burn quickly, and produces a lot of heat energy and flue gas. In the process of combustion, by controlling the parameters of combustion air volume and temperature, the waste can be fully burned and the formation of harmful substances can be reduced. The flue gas is discharged into the atmosphere after being treated by the biochemical dust removal system, and solid wastes such as ash and dregs are collected and treated.
Development trend:
With the increasingly strict environmental protection regulations and the continuous progress of environmental protection technology, industrial waste incinerators will be more efficient, more environmental protection, more intelligent direction of development. In the future, more attention will be paid to the development and application of waste heat recovery and flue gas purification technologies to improve energy efficiency and reduce emissions. At the same time, with the development of new energy technology, incinerator will be combined with new energy technology to realize the resource utilization and sustainable development of waste.
Reduction effect is significant
Incineration can greatly reduce the volume and quality of waste, save storage space and processing costs.
Harmless treatment
Through high-temperature incineration and flue gas purification treatment, can kill the pathogens and harmful microorganisms in the waste, reduce the pollution of the environment.
Resource utilization
The heat energy generated in the incineration process can be used for power generation, heating and other fields to realize the resource utilization of waste.
High degree of automation
Modern industrial waste incinerator usually adopts automatic control system, which can realize remote monitoring and intelligent management.