Thermal recycling paper material treatment device and recycling method thereof
A resourceful and thermal technology, applied in the fields of biofuel, special dry distillation, petroleum industry, etc., can solve the problems of lack of effective recycling means for paper materials, interference of comprehensive utilization of paper materials recycling, complex composition of composite materials, etc., to achieve It is convenient for comprehensive treatment, prevents direct discharge from polluting the environment, and achieves the effect of recycling
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Embodiment 1
[0054] See figure 1 This embodiment discloses a heat-resourced paper material processing device, including a heat-insulating protective shell 1, a carbonized heat assembly 2, an opening and closing bin door 3, a slag carbonization collection system 7; a heat-insulating protective shell 1 There is an openable and closable entrance on the side; the carbonization heat assembly 2 is arranged inside the heat insulation protection shell 1 and is located below the inlet side of the heat insulation protection shell 1. The inlet of the heat insulation protection shell 1 and the carbonization heat assembly The carbonization heat assembly 2 is in the shape of a hollow cylinder with a through bottom. An opening and closing door 3 is placed between the carbonization heat assembly 2 and the slag carbonization collection system 7. The opening and closing door 3 can be opened and closed. Located at the bottom of the carbonization heat assembly 2; the slag carbonization collection system 7 is lo...
Embodiment 2
[0074] A method of thermal resource utilization, including the following processes:
[0075] 1) Refining paper materials into blocks with appropriate particle size, or flakes with appropriate thickness and area;
[0076] The original shape of the paper material cannot be determined, it may be a thin sheet of paper, or it may be an irregular piece of material. Preferably, it is broken into fragments of appropriate size and then subjected to resource treatment.
[0077] 2) The paper materials obtained in step 1) are concentrated in an oxygen-deficient environment, and the paper materials are continuously heated to make them incombustible under oxygen-deficient conditions but high-temperature pyrolysis, so that the combustible organic and inorganic components Gasification occurs due to chemical changes, non-combustible organic components are transformed into organic carbon, and the remaining impurities are gasified;
[0078] An oxygen-deficient environment is the key to resource treatme...
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