Biomass self-heating carbonization device and its application
A carbonization device and self-heating technology, applied to biofuels, fixed carbonization furnaces, chemical instruments and methods, etc., to achieve the effects of short production cycle, low production cost and simple equipment
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Embodiment 1
[0039] Biomass self-heating carbonization plant, see figure 1 , the device includes a carbonization sealing device 1 , a decoking and dust removal device 2 , a tail gas absorption device 3 and a temperature detection and control device 4 .
[0040] The carbonization sealing device 1 includes a cavity, a load-bearing column 7 and a rocker arm type lifting device 9 . The cavity is a cylindrical container with a hollow interior, and the cavity includes a furnace door 5 , an air inlet 6 , a feeding port 8 and an exhaust port 10 . The furnace door 5 is arranged at the bottom of the cavity. The air inlet 6 is provided at the bottom of the cavity and one side of the furnace door 5, and the air inlet 6 is used for air intake and temperature measurement. The feeding port 8 is provided on one side of the top of the cavity, and the exhaust port 10 is provided on the other side of the top of the cavity. The load-bearing column 7 is arranged on the side of the cavity close to the feedin...
Embodiment 2
[0046] The biomass self-heating carbonization device includes a carbonization sealing device 1 , a decoking and dust removal device 2 , a tail gas absorption device 3 and a temperature detection and control device 4 .
[0047] The carbonization sealing device 1 includes a cavity, a load-bearing column 7 and a rocker arm type lifting device 9 . The cavity is an inner hollow cylindrical container formed by nesting a stainless steel liner and an outer wall of refractory bricks. The inner liner and the outer wall are filled with perlite. The cavity includes a furnace door 5, an air inlet 6, a feeding port 8 and a discharge port. Air port 10. The furnace door 5 is set at the bottom of the cavity, and the furnace door 5 and the feeding port 8 are sealed by a high temperature-resistant insulating door with an asbestos gasket, and the high-temperature insulating door is a refractory door filled with refractory sponge. The air inlet 6 is provided at the bottom of the cavity and one si...
Embodiment 3
[0053] Based on the device described in Example 2, with the difference that see image 3 , the cavity in the carbonization sealing device 1 also includes a ventilation pipe, the ventilation pipe is attached and fixed on the inner wall of the cavity, one end of the ventilation pipe is connected with the air inlet 6, and the other end is arranged on the top of the cavity, and the ventilation pipe is on the body of the ventilation pipe. Open ventilation holes. The ventilation pipe is a spiral ventilation pipe, and the orifice of the ventilation hole is inclined to the center of the cavity at an angle of 45 degrees. When the biomass inside the cavity is burned, nitrogen gas is input from the vent pipe, and the nitrogen gas introduced obliquely upward carries the heat from the bottom to the upper part of the cavity. The heat from the bottom is transferred to the upper part through the natural rising effect of nitrogen (usually, the combustion temperature of the bottom is high, and...
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