System and method for treating waste electronic products
An electronic product and waste technology, applied in the field of solid waste recycling, can solve the problems of high equipment requirements, insufficient recycling of non-metallic materials, and neglect of utilization, etc., to achieve clean and efficient recycling of resources and achieve high value The effect of chemical utilization and reduction of raw material cost
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Embodiment 1
[0047] This embodiment proposes a system for processing waste and old electronic products, the system includes a pretreatment unit, a separation unit, a pyrolysis unit, a mixing unit and a calcium carbide production unit:
[0048] A Pretreatment: In the pretreatment unit, the waste electronic products are dismantled and broken to obtain pretreated products.
[0049] B Separation: The pretreated product is finely crushed, ferromagnetic metals are selected by magnetic separation, wind separation and electrostatic separation are separated to obtain other metals, glass fibers and non-metallic organic matter, the content of non-metallic organic matter is 37%, and the content of non-metallic organic matter is Particle size control is 100mm.
[0050] C pyrolysis: feed the non-metallic product into the pyrolysis furnace evenly for pyrolysis reaction, the pyrolysis temperature is 550°C, and the pyrolysis time is 3h. After the pyrolysis reaction is complete, high-temperature oil gas and...
Embodiment 2
[0056] The present embodiment is the same as the system used in the above-mentioned embodiment 1, but the process conditions are different, as follows:
[0057] A Pretreatment: In the pretreatment unit, the waste electronic products are dismantled and broken to obtain pretreated products.
[0058] B Separation: The pretreated product is finely crushed, ferromagnetic metals are selected by magnetic separation, and other metals, glass fibers and non-metallic organic matter are obtained by winnowing and electrostatic separation. The content of non-metallic organic matter is 35%, and the content of non-metallic organic matter is Particle size control is 60mm.
[0059] C pyrolysis: feed the non-metallic product into the pyrolysis furnace evenly for pyrolysis reaction, the pyrolysis temperature is 450°C, and the pyrolysis time is 2h. After the pyrolysis reaction is complete, high-temperature oil gas and solid carbonaceous matter are generated. , high-temperature oil and gas are col...
Embodiment 3
[0065] The present embodiment is the same as the system used in the above-mentioned embodiment 1, but the process conditions are different, as follows:
[0066] A Pretreatment: In the pretreatment unit, the waste electronic products are dismantled and broken to obtain pretreated products.
[0067] B Separation: The pretreated product is finely crushed, ferromagnetic metals are selected by magnetic separation, wind separation and electrostatic separation are separated to obtain other metals, glass fibers and non-metallic organic matter, the content of non-metallic organic matter is 40%, and the content of non-metallic organic matter is Particle size control is 20mm.
[0068] C pyrolysis: feed the non-metallic product into the pyrolysis furnace evenly for pyrolysis reaction, the pyrolysis temperature is 850°C, and the pyrolysis time is 0.5h. After the pyrolysis reaction is complete, high-temperature oil gas and solid carbon are generated The high-temperature oil and gas are col...
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Abstract
Description
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Application Information
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