FIELD: various technological processes.
SUBSTANCE: present invention represents a method and device for flash pyrolysis of carbon-containing material using induction heating. Prior to the beginning of the recycling process, the pyrolysis plant is divided into systems and reduced to allowable weight and dimension characteristics of cargoes placed in separate metal universal mounting containers corresponding to the dimensions of the euro pallet. Missing systems are added to the composition and placed in universal mounting containers, including a power module, for converting thermal energy into electrical energy using combustion of pyrolysis gas (gas piston electric generator) and liquid pyrolysis fuel (steam-screw electric generator), chemical batteries for providing the pyrolysis process for operation of gas-piston and steam-screw electric generators. Ultrasonic action is applied to the reactor housing, frequency and amplitude of ultrasonic action is determined from the condition of maximum output of steam-gas fraction of pyrolysis products. Device for implementation of flash pyrolysis of carbon-containing raw material using induction heating includes a system for purification of pyrolysis products, connected to a separation and cooling system and an energy module, power supply system, which includes a gas piston engine connected by a gas-dynamic link to a pyrolysis gas cleaning system, steam-propeller engine running on liquid pyrolysis fuel, connected by hydrodynamic link with liquid pyrolysis fuel cleaning system, electric generators connected by mechanical drives with motors and electric connection with storage batteries and control system, grinding system, ultrasonic generator connected to the reactor, fittings for interfacing the corresponding systems. All systems are distributed in appropriate universal mounting containers integrated into modules.
EFFECT: disclosed is a method of recycling carbon-containing material in a self-contained small-size recycling modular plant and a device for its implementation.
2 cl, 2 dwg
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Authors
Dates
2024-08-13—Published
2023-12-06—Filed