Program-controlled electromagnetic induction heating device and method for treating waste batteries using the device
An electromagnetic induction heating and waste battery technology, applied in induction heating, battery recycling, recycling technology, etc., can solve problems affecting people's health, animal and plant growth, harsh environmental effects, and air pollution, achieving uniform heating and low separation costs , High heating efficiency
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Embodiment 1
[0027] A program-controlled electromagnetic induction heating device includes a water tank 1, a metal pipe 3, and a containment box 2. Both ends of the metal pipe 3 are provided with a steam inlet 31 and a steam outlet 32, and the steam inlet 31 and the water tank 1 Connected, the outer side of the metal pipe 3 is evenly wound with a coil 4, the two ends of the coil 4 are electrically connected to the electric control box 5; the containing box 2 is arranged in the metal pipe 3, and a plurality of Through hole (not shown in the figure).
[0028] Preferably, the coil 4 wound on the outside of the metal pipe 3 is a high frequency coil.
[0029] Preferably, the containing box 2 is rectangular, which is located in the middle of the metal pipe 3 and its length direction is parallel to the axial direction of the metal pipe 3. It should be noted, figure 1 The containment box and figure 2 with image 3 Box 2 in the same.
[0030] When the program-controlled electromagnetic induction heatin...
Embodiment 2
[0032] The method of using a program-controlled electromagnetic induction heating device to treat waste batteries includes the following steps:
[0033] 1) Put the waste battery in the containing box 2 of the program-controlled electromagnetic induction heating device in embodiment 1, turn on the program-controlled electromagnetic induction heating device, and heat the water in the water tank 1 to produce water vapor;
[0034] 2) The water vapor enters the metal pipe 3 through the steam inlet 31. Under the action of the coil 4 after the power is turned on, the water vapor is continuously heated to form wet saturated steam at 140°C; the wet saturated steam is continuously heated until it turns into dry saturated steam , Continue to heat the dry saturated steam to 250℃~700℃ to form superheated steam;
[0035] 3) Maintain the temperature at 250°C~700°C and the pressure at 0.1~1.0Mpa to decompose the organic matter inside the battery. Only metal solids are left in the containment box 2, ...
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