Ventilated gas oxidizing system capable of recovering heat energy
A ventilation gas and oxidation system technology, applied in the direction of exothermic chemical reaction heat generation, non-combustion exothermic chemical reaction heat generation, heating fuel, etc., can solve the problem of poor adaptability of methane concentration, poor economy of oxidation device, heating surface Difficult maintenance and other problems, to achieve strong adaptability, high thermal efficiency, and reduce wall heat dissipation
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Embodiment 1
[0018] figure 1 It is the first embodiment of the present invention. The ventilation gas enters the ceramic heat storage material 10 for preheating through the air inlet pipe 1, the blower 2, the three-way reversing valve A3, and the rectifying chamber 11, and then enters the oxidation chamber 9 for oxidative decomposition (airflow flow The direction is indicated by the solid arrow in the figure). Part of the heat released after methane decomposition and oxidation passes through the internal insulation layer 8 and is absorbed by the heat exchange surface 7 of the model wall; this part of heat is related to the concentration of methane in the ventilation gas, accounting for 0% to 80% of the total heat released by the oxidation of methane in the ventilation gas %; In the outer wall of the oxidation chamber 9 and the inner side of the mode wall heat exchange surface 7, an internal heat insulation layer 8 is arranged, which is made of a refractory material, and is used to control ...
Embodiment 2
[0020] figure 2 It is the second embodiment of the present invention. The ventilation gas enters the ceramic heat storage material 10 to preheat through the air inlet pipe 1, the three-way reversing valve A3, and the rectifying chamber 11, and then enters the oxidation chamber 9 for oxidative decomposition (the flow direction of the airflow is shown in the figure indicated by the solid arrow). Part of the heat released after methane decomposition and oxidation passes through the internal insulation layer 8 and is absorbed by the heat exchange surface 7 of the model wall; this part of heat is related to the concentration of methane in the ventilation gas, accounting for 0% to 80% of the total heat released by the oxidation of methane in the ventilation gas %; on the outer wall of the oxidation chamber 9 and the inner side of the mode wall heat exchange surface 7, an internal heat insulation layer 8 is set, which is made of refractory material, and is used to control the heat a...
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