Device used for carrying out heating and supercharging treatment on oxygen-containing gas
A pressurization treatment, gas technology, applied in jet propulsion devices, parts of pumping devices for elastic fluids, gas turbine devices, etc., can solve the problems of insufficient use of residual oxygen in flue gas, increased flue gas volume, and lag in updating and upgrading and other problems, to achieve the effect of saving and controlling the increase of flue gas, increasing the flue gas pressure head, and reducing the power
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Embodiment 1
[0105] Embodiment 1 Assembled a heating pressurized treatment device and applied it to flue gas pretreatment
[0106] According to the description in the specific embodiment part, a heating and supercharging device is assembled in the exhaust duct 4 for transporting flue gas. The diameter of air duct 4 is 55cm; In the front section of combustion chamber 6, inlet duct 3 inner diameter gradually decreases (B point) until 50% (C point) of air inlet 2 inner diameter, then gradually becomes larger, in combustion chamber 6 The central part reaches 90% of the inner diameter of the air inlet 2 (point D), then gradually becomes smaller, and is 60% of the inner diameter of the air inlet at the turbine inlet (point E), and then gradually becomes larger, and at the central part of the turbine, it reaches 60% of the inner diameter of the air inlet. 105% (point F) of the inner diameter of the air port, then gradually decreases, and reaches 50% (point G) of the inner diameter of the air inle...
Embodiment 2
[0112] Embodiment 2 Assembled another heating pressurized treatment device and applied it to flue gas pretreatment
[0113]According to the description in the specific embodiment part, a heating and supercharging device is assembled in the exhaust duct 4 for transporting smoke, and the specific technical parameters here are: the diameter of the air inlet 2 of the intake duct 3 for transporting smoke is 35 cm, and The diameter of the exhaust passage 4 is 60cm; in the front section of the combustion chamber 6, the inner diameter of the intake passage 3 gradually becomes smaller (point B) until 55% (point C) of the inner diameter of the air inlet 2, and then gradually becomes larger. 6 The central part reaches 85% of the inner diameter of the air inlet (point D), then gradually becomes smaller, and is 50% of the inner diameter of the air inlet at the turbine inlet (point E), and then gradually becomes larger, reaching the air inlet at the central part of the turbine 115% of the i...
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