Movable air deodorization device for sewage treatment plant

By designing a mobile sewage treatment plant air deodorization device that works in a multi-component collaborative manner, the problem of incomplete removal of existing devices is solved, efficient and safe odor treatment is achieved, and the environment is protected.

CN222855024UActive Publication Date: 2025-05-13GUANGZHOU JUKE ENVIRONMENTAL PROTECTION ENG CO LTD
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Patent Information

Application Number
CN202421765288.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-05-13
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

Most of the existing air deodorizing devices in mobile sewage treatment plants only do odor removal once, and the odor absorption and removal are incompletely used to absorb and remove odor, which may lead to the discharge of toxic gases and cause environmental damage.

Method used

An air deodorizing device including a fixing assembly, a main body assembly, an air intake assembly, a stirring assembly, a vaporization assembly and an air outlet assembly is designed. The device heats and condenses the gas through the intake assembly, generates precipitation by the stirring assembly, and performs secondary adsorption and detection to ensure that the gas is completely processed.

Benefits of technology

Through multiple cycles and secondary adsorption, the efficiency of odor removal is significantly improved, the possibility of toxic gas emissions is reduced, and the environment is protected.

✦ Generated by Eureka AI based on patent content.

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    Figure CN222855024U_ABST
Patent Text Reader

Abstract

The utility model relates to the field of deodorization devices, in particular to a movable air deodorization device for a sewage treatment plant. The technical problems that most existing air deodorization devices for the movable sewage treatment plant only conduct odor removal work once, activated carbon is mostly directly used for absorbing and removing odor during removal, but only the activated carbon is used for removing the odor incompletely, possibly, gas is not completely adsorbed, and the odor cannot be completely removed are solved. Therefore, toxic gas is possibly discharged, and the environment is damaged. According to the technical scheme, the movable air deodorization device for the sewage treatment plant comprises a fixing assembly, a main body assembly, an air inlet assembly, a stirring assembly, a vaporization assembly and an air outlet assembly. The air deodorization device is arranged and comprises the fixing plate structure, the hardware connecting plates are arranged on the two sides of the fixing plate, fixed connection work can be conveniently carried out, meanwhile, work is carried out on a movable sewage treatment plant, and therefore the spring damper structure is arranged on the periphery of the upper end of the fixing plate.
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Description

Technical Field

[0001] The utility model relates to the field of deodorization devices, in particular to an air deodorization device for a mobile sewage treatment plant. Background Art

[0002] Mobile sewage treatment plant is actually an integrated sewage treatment equipment, which completes all the treatment processes together. The whole equipment is shaped like a container (some are modified from containers), so it is also called container sewage treatment equipment. Sewage treatment plant is a place where sewage (waste) water discharged from pollution sources must be artificially strengthened because of the high total amount or concentration of pollutants, which does not meet the emission standards or environmental capacity requirements, thereby reducing the water environment quality and functional goals. Sewage generally contains harmful gases, so it has a strong odor, so it needs to be deodorized by air, which requires us to make an air deodorization device for mobile sewage treatment plants. Most of the existing air deodorization devices for mobile sewage treatment plants directly use activated carbon to absorb and remove odors, and most of them only do odor removal work once, but the use of activated carbon alone is not complete for odor removal, and there may be gases that are not completely adsorbed, resulting in toxic gases being discharged, causing environmental damage. Utility Model Content

[0003] In order to overcome the disadvantage that most of the existing mobile sewage treatment plants use air deodorization devices to remove odor only once, and when removing odor, most of them directly use activated carbon to absorb and remove the odor, but only using activated carbon to remove odor is not complete, and there may be gases that are not completely adsorbed, which may lead to the emission of toxic gases and cause environmental damage.

[0004] The technical solution of the utility model is: an air deodorization device for a mobile sewage treatment plant, including a fixed component, a main component, an air intake component, a stirring component, a vaporization component, and an air outlet component; the upper end of the fixed component is provided with a main component for performing the main work; the fixed component is a place for fixed connection. The main component is a place for performing the main work. An air intake component for air intake is provided on one side of the main component; the air intake component is a place for air intake. A stirring component for stirring is provided on one side of the air intake component; the stirring component is a power device for stirring. A vaporization component for vaporization is provided on one side of the stirring component; the vaporization component is a place for heating and vaporization. An air outlet component for air outlet is provided on the upper end of the vaporization component; the air outlet component is a place for air outlet.

[0005] Preferably, a fixing component is provided for fixed connection, which can also perform buffering and shock absorption work; a main component is provided for main deodorization work; an air intake component is provided for air intake, and air is extracted through an exhaust device, and the gas is first heated and then cooled to achieve liquefaction; a stirring component is provided for stirring to generate precipitation; a vaporization component is provided for heating and vaporization, and secondary adsorption is performed at the same time to check whether there is any toxic gas; and an air outlet component is provided for circulation work and air outlet.

[0006] Preferably, the fixing assembly includes a base plate, a hardware plate, a spring damper and a connecting plate; the base plate is provided with hardware plates on both sides; the upper end of the base plate is provided with a spring damper; the upper end of the spring damper is provided with a connecting plate. The base plate is fixedly connected by the hardware plate, the spring damper performs buffering and shock absorption, and the connecting plate is fixedly connected to the main assembly.

[0007] Preferably, the main assembly includes a box, a feeding port and a slag outlet; the box is arranged between the connecting plates; the feeding port is arranged at the front end of the box; and the slag outlet is arranged at the rear end of the box. The box performs the main work, the reactants are fed into the feed port, and the precipitate generated by the reaction is discharged from the slag outlet.

[0008] Preferably, the air intake component includes a bellows, a fixing frame, a fan, a rotating shaft, a fan blade, a funnel tube, a U-shaped tube, an air intake heating tube, an air intake condensing tube, an air intake condensing liquid inlet tube and an air intake condensing liquid outlet tube; a bellows is arranged at the lower end of the box body; a fixing frame is arranged at the upper end of the bellows; a fan is arranged at the upper end of the fixing frame; the upper end of the fan is rotatably connected to the rotating shaft; a fan blade is arranged at the upper end of the rotating shaft; a funnel tube is arranged outside the fan blade; a U-shaped tube is arranged at the upper end of the funnel tube; an air intake heating tube is arranged outside the U-shaped tube; an air intake condensing tube is arranged on one side of the air intake heating tube; an air intake condensing tube is arranged at the upper end of the air intake condensing tube; an air intake condensing liquid inlet tube is arranged at the lower end of the air intake condensing tube. The corrugated tube is easy to pull out and fold. The fixed frame fixes and supports the fan. When the fan is started, it drives the shaft and the fan blades to rotate and draw air, and the odor enters the U-shaped tube from the funnel tube. The air intake heating tube heats the gas first, and the condensate enters the air intake condensation tube from the air intake condensation liquid inlet tube, and then flows out from the air intake condensation liquid outlet tube. The air intake condensation tube condenses and cools the gas to realize gas liquefaction, which is convenient for fusion with water inside the device.

[0009] Preferably, the stirring assembly includes a stirring motor, a stirring rod and a stirring plate; a stirring motor is provided on one side of the air inlet condenser tube; a stirring rod is provided at the lower end of the stirring motor; and a stirring plate is provided on the stirring rod. When the stirring motor is started, the stirring rod and the stirring plate are driven to rotate and stir, thereby achieving mixing and generating precipitation.

[0010] Preferably, the vaporization assembly includes a funnel-shaped square plate trough, a pump, a pumping tube, an outlet heating tube, an activated carbon plate, a color-changing plate and a color-changing monitor; a funnel-shaped square plate trough is provided on one side of the stirring plate; a pump is provided on the funnel-shaped square plate trough; a pumping tube is provided on the pump; an outlet heating tube is provided at the lower end of the pumping tube; an activated carbon plate is provided at the upper end of the outlet heating tube; a color-changing plate is provided at the upper end of the activated carbon plate; and a color-changing monitor is provided on one side of the color-changing plate. The pump is fixed in the funnel-shaped square plate trough, and the pump draws the upper clear liquid to the pumping tube to enter the next process, the outlet heating tube is heated and vaporized, the activated carbon plate is subjected to secondary adsorption, and whether the color-changing plate changes color can be used to check whether there is still toxic gas, which is detected by the color-changing monitor, and the color-changing monitor is electrically connected to the valve.

[0011] Preferably, the gas outlet assembly includes a gas outlet pipe, a valve, a gas outlet condensation pipe, a gas outlet condensation liquid inlet pipe and a gas outlet condensation liquid outlet pipe; a gas outlet pipe is arranged at the upper end of the funnel-shaped square plate groove; valves are arranged on both sides of the gas outlet pipe; a gas outlet condensation pipe is arranged outside the gas outlet pipe; a gas outlet condensation liquid inlet pipe is arranged at the upper end of the gas outlet condensation pipe; and a gas outlet condensation liquid outlet pipe is arranged at the lower end of the gas outlet condensation pipe. The valve is controlled, and when the color-changing plate changes color, the valve close to the air inlet is opened, and the gas is circulated again from the gas outlet pipe, and the condensate enters the gas outlet condensation pipe from the gas outlet condensation liquid inlet pipe, and then discharges from the gas outlet condensation liquid outlet pipe to perform condensation and liquefaction work. When the color-changing plate does not change color, the valve on the other side is opened to exhaust gas.

[0012] Beneficial effects of the utility model:

[0013] 1. By setting up an air deodorization device, including a fixed plate structure, hardware connection plates are set on both sides of the fixed plate to facilitate fixed connection work, and work on a mobile sewage treatment plant at the same time, a spring damper structure is set around the upper end of the fixed plate to perform buffering and shock absorption work, a main deodorization device is set between the spring damper structures, a feeding structure is set at the front end of the deodorization device, a slag discharge structure is set at the rear end, and a water inlet and outlet hole structure is set at the upper end of the slag discharge structure to facilitate the entry and exit of condensed water. A bellows structure is set at the lower end of the deodorization device to facilitate telescopic folding during buffering and shock absorption, a fan structure is set at the upper end of the bellows to pump air and draw the odor into the deodorization device, a funnel-shaped pipe structure is set outside the fan structure, a heating structure is set outside the upper end of the pipe structure to heat the odor, a condensation structure is set outside one side of the pipe structure to cool down, realize gas liquefaction, and accelerate fusion with the liquid in the device, and then a stirring and mixing structure is set on one side to rotate and stir to generate precipitation. A pumping structure is provided on one side of the device, and a one-way valve plate structure is provided at the lower end of the pumping structure for one-way output. A heating structure is provided on one side of the device to heat and vaporize the upper clear liquid. An activated carbon plate and a color-changing plate structure are provided at the upper end of the heating structure. The activated carbon plate performs secondary deodorization. The color-changing plate can be used to check whether there is still odor. When there is still odor, the color-changing plate changes color. A monitoring structure with a transparent plate blocking is provided on the pump to check whether the color-changing plate changes color. If it changes color, open one side of the valve to allow the gas to enter the stirring structure again for stirring and sedimentation. If it does not change color, open the other side of the valve to discharge the gas. This overcomes the disadvantage that most of the existing air deodorization devices used in mobile sewage treatment plants only remove odor once, and when removing odor, most of them directly use activated carbon to absorb and remove odor. However, using only activated carbon to remove odor is not complete, and there may be gas that has not been completely adsorbed. Therefore, toxic gases may be discharged, causing environmental damage.

[0014] 2. Support and protection work is carried out by setting fixed components and main components. The bottom plate is fixedly connected by hardware plates, spring dampers are used for buffering and shock absorption, and connecting plates are fixedly connected to the main components. The box body performs the main work, the reactants are fed into the feed port, and the precipitate generated by the reaction is discharged from the slag outlet. After that, the deodorization work is carried out by setting the air intake component, stirring component, vaporization component and air outlet component. The bellows is easy to pull out and fold. The fixed frame fixedly supports the fan. The fan starts, drives the shaft and the fan blades to rotate and draw air, and the odor enters the U-shaped tube from the funnel tube. The air intake heating tube heats the gas first, and the condensate enters the air intake condensation tube from the air intake condensation inlet pipe, and then discharges from the air intake condensation outlet pipe. The air intake condensation tube condenses and cools the gas to realize gas liquefaction, which is convenient for fusion with the water inside the device. The stirring motor starts, drives the stirring rod and stirring plate to rotate and stir, achieve mixing, and generate precipitation. The funnel-shaped square plate trough is fixed with a pump, which pumps the upper clear liquid into the pumping tube to enter the next process. The outlet heating tube is heated and vaporized, and the activated carbon plate is subjected to secondary adsorption. Whether the color-changing plate changes color can be checked to see whether there is still toxic gas, which is detected by a color-changing monitor, and the color-changing monitor is electrically connected to the valve. The valve is controlled, and when the color-changing plate changes color, the valve close to the air inlet opens, and the gas is circulated again from the outlet pipe. The condensate enters the outlet condensation pipe from the outlet condensation inlet pipe, and then discharges from the outlet condensation outlet pipe for condensation and liquefaction. When the color-changing plate does not change color, the valve on the other side opens to exhaust air, completing the air deodorization work of the mobile sewage treatment plant; BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The three-dimensional structure diagram of the mobile air deodorization device for sewage treatment plants of the utility model is shown;

[0016] Figure 2 Shown is a schematic diagram of the main components of the mobile air deodorization device for sewage treatment plants of the utility model;

[0017] Figure 3 Shown is a schematic diagram of the fixed components of the mobile air deodorization device for sewage treatment plants of the utility model;

[0018] Figure 4 Shown is a schematic diagram of an air outlet component of an air deodorization device for a mobile sewage treatment plant of the utility model;

[0019] Description of reference numerals: 1, fixing assembly; 2, main assembly; 3, air intake assembly; 4, stirring assembly; 5, vaporization assembly; 6, air outlet assembly; 101, bottom plate; 102, hardware plate; 103, spring damper; 104, connecting plate; 201, box body; 202, feeding port; 203, slag outlet; 301, bellows; 302, fixing frame; 303, fan; 304, rotating shaft; 305, fan blade; 306, funnel pipe; 307, U-shaped pipe; 308, air intake heating pipe; 309, 09. Inlet condenser tube; 310. Inlet condenser liquid inlet tube; 311. Inlet condenser liquid outlet tube; 401. Stirring motor; 402. Stirring rod; 403. Stirring plate; 501. Funnel-shaped square plate trough; 502. Pump; 503. Pumping tube; 504. Outlet heating tube; 505. Activated carbon plate; 506. Color-changing plate; 507. Color-changing monitor; 601. Outlet pipe; 602. Valve; 603. Outlet condenser tube; 604. Outlet condenser liquid inlet tube; 605. Outlet condenser liquid outlet tube. DETAILED DESCRIPTION

[0020] The utility model is further described below in conjunction with the accompanying drawings and embodiments.

[0021] See also Figure 1 The utility model provides an embodiment: an air deodorizing device for a mobile sewage treatment plant, comprising a fixed component 1, a main component 2, an air intake component 3, a stirring component 4, a vaporization component 5, and an air outlet component 6; the upper end of the fixed component 1 is provided with a main component 2 for performing main work; one side of the main component 2 is provided with an air intake component 3 for air intake; one side of the air intake component 3 is provided with a stirring component 4 for stirring; one side of the stirring component 4 is provided with a vaporization component 5 for vaporization; the upper end of the vaporization component 5 is provided with an air outlet component 6 for air outlet.

[0022] See also Figure 2-4The utility model provides an embodiment: the fixing assembly 1 includes a bottom plate 101, a hardware plate 102, a spring damper 103 and a connecting plate 104; the hardware plates 102 are arranged on both sides of the bottom plate 101; the spring damper 103 is arranged on the upper end of the bottom plate 101; the connecting plate 104 is arranged on the upper end of the spring damper 103. The bottom plate 101 is fixedly connected through the hardware plate 102, the spring damper 103 performs buffering and shock absorption work, and the connecting plate 104 is fixedly connected to the main assembly 2. The main assembly 2 includes a box body 201, a feeding port 202 and a slag outlet 203; the box body 201 is arranged between the connecting plates 104; the feeding port 202 is arranged at the front end of the box body 201; and the slag outlet 203 is arranged at the rear end of the box body 201. The box body 201 performs the main work, the reactants are fed into the feeding port 202, and the precipitate generated by the reaction is discharged from the slag outlet 203. The air intake assembly 3 includes a bellows 301, a fixing frame 302, a fan 303, a rotating shaft 304, a fan blade 305, a funnel 306, a U-shaped tube 307, an air intake heating tube 308, an air intake condensation tube 309, an air intake condensation liquid inlet tube 310 and an air intake condensation liquid outlet tube 311; the lower end of the box body 201 is provided with a bellows 301; the upper end of the bellows 301 is provided with a fixing frame 302; the upper end of the fixing frame 302 is provided with a fan 303; the upper end of the fan 303 A rotating shaft 304 is rotatably connected; a fan blade 305 is arranged on the upper end of the rotating shaft 304; a funnel tube 306 is arranged outside the fan blade 305; a U-shaped tube 307 is arranged on the upper end of the funnel tube 306; an air intake heating tube 308 is arranged outside the U-shaped tube 307; an air intake condensation tube 309 is arranged on one side of the air intake heating tube 308; an air intake condensation liquid inlet tube 310 is arranged on the upper end of the air intake condensation tube 309; and an air intake condensation liquid outlet tube 311 is arranged on the lower end of the air intake condensation tube 309. The bellows 301 is easy to pull out and fold, and the fixed frame 302 fixedly supports the fan 303. The fan 303 is started, driving the rotating shaft 304 and the fan blade 305 to rotate and draw air, so that the odor enters the U-shaped tube 307 from the funnel tube 306. The air intake heating tube 308 first heats the gas, and the condensate enters the air intake condensation tube 309 from the air intake condensation liquid inlet tube 310, and then discharges the liquid from the air intake condensation liquid outlet tube 311. The air intake condensation tube 309 condenses and cools the gas to achieve gas liquefaction, which is convenient for fusion with the water inside the device. The stirring component 4 includes a stirring motor 401, a stirring rod 402 and a stirring plate 403; a stirring motor 401 is provided on one side of the air intake condensation tube 309; a stirring rod 402 is provided at the lower end of the stirring motor 401; and a stirring plate 403 is provided on the stirring rod 402. When the stirring motor 401 is started, it drives the stirring rod 402 and the stirring plate 403 to rotate and stir, achieve mixing, and generate precipitation.The vaporization component 5 includes a funnel-shaped square plate groove 501, a pump 502, a suction pipe 503, an air outlet heating pipe 504, an activated carbon plate 505, a color change plate 506 and a color change monitor 507; a funnel-shaped square plate groove 501 is arranged on one side of the stirring plate 403; a pump 502 is arranged on the funnel-shaped square plate groove 501; a suction pipe 503 is arranged on the pump 502; an air outlet heating pipe 504 is arranged at the lower end of the suction pipe 503; an activated carbon plate 505 is arranged at the upper end of the air outlet heating pipe 504; a color change plate 506 is arranged at the upper end of the activated carbon plate 505; and a color change monitor 507 is arranged on one side of the color change plate 506. The funnel-shaped square plate trough 501 is fixed with a pump 502, and the pump 502 pumps the upper clear liquid to the pump pipe 503 to enter the next process, and the outlet heating pipe 504 is heated and vaporized, and the activated carbon plate 505 is subjected to secondary adsorption. Whether the color-changing plate 506 changes color can be checked to see whether there is still toxic gas, and the color-changing monitor 507 is used for detection, and the color-changing monitor 507 is electrically connected to the valve 602. The outlet assembly 6 includes an outlet pipe 601, a valve 602, an outlet condensation pipe 603, an outlet condensation liquid inlet pipe 604 and an outlet condensation liquid outlet pipe 605; the upper end of the funnel-shaped square plate trough 501 is provided with an outlet pipe 601; valves 602 are provided on both sides of the outlet pipe 601; an outlet condensation pipe 603 is provided outside the outlet pipe 601; an outlet condensation liquid inlet pipe 604 is provided at the upper end of the outlet condensation pipe 603; and an outlet condensation liquid outlet pipe 605 is provided at the lower end of the outlet condensation pipe 603. Valve 602 is controlled. When the color changing plate 506 changes color, the valve 602 near the air inlet opens, and the gas is circulated again from the air outlet pipe 601. The condensate enters the air outlet condensation pipe 603 from the air outlet condensation liquid inlet pipe 604, and then flows out from the air outlet condensation liquid outlet pipe 605 to perform condensation and liquefaction. When the color changing plate 506 does not change color, the valve 602 on the other side opens for exhaust.

[0023] When working, the bottom plate 101 is fixedly connected by the hardware plate 102, the spring damper 103 performs buffering and shock absorption, and the connecting plate 104 is fixedly connected to the main assembly 2. The box 201 performs the main work, the bellows 301 is convenient for pulling and folding, the fixed frame 302 fixes and supports the fan 303, the fan 303 is started, and the shaft 304 and the fan blade 305 are driven to rotate and draw air, and the odor enters the U-shaped tube 307 from the funnel tube 306, the air intake heating tube 308 heats the gas first, and the condensate enters the air intake condensation tube 309 from the air intake condensation liquid inlet pipe 310, and then discharges the liquid from the air intake condensation liquid outlet pipe 311, and the air intake condensation tube 309 condenses and cools the gas to realize gas liquefaction, which is convenient for fusion with the water inside the device. The reactant is fed into the feed port 202, and the stirring motor 401 is started, which drives the stirring rod 402 and the stirring plate 403 to rotate and stir, realize mixing, and generate precipitation. The funnel-shaped square plate trough 501 is fixed with a pump 502, which pumps the upper clear liquid to the pump pipe 503 to enter the next process, and the outlet heating pipe 504 is heated and vaporized, and the activated carbon plate 505 is subjected to secondary adsorption. Whether the color-changing plate 506 changes color can be checked to see whether there is still toxic gas, which is detected by the color-changing monitor 507, and the color-changing monitor 507 is electrically connected to the valve 602. The valve 602 is controlled, and when the color-changing plate 506 changes color, the valve 602 near the air inlet is opened, and the gas is circulated again from the outlet pipe 601, and the condensate enters the outlet condensation pipe 603 from the outlet condensation liquid inlet pipe 604, and then discharges from the outlet condensation liquid outlet pipe 605 to perform condensation and liquefaction work. When the color-changing plate 506 does not change color, the valve 602 on the other side is opened to exhaust, and the precipitate generated by the reaction is discharged from the slag outlet 203, completing all the work.

[0024] Through the above steps, the fixing assembly 1 and the main assembly 2 are provided to support and protect, the bottom plate 101 is fixedly connected by the hardware plate 102, the spring damper 103 performs buffering and shock absorption, and the connecting plate 104 is fixedly connected to the main assembly 2. The box body 201 performs the main work, the reactants are fed into the feed port 202, and the precipitate generated by the reaction is discharged from the slag outlet 203. After that, the deodorization work is performed through the provided air intake assembly 3, stirring assembly 4, vaporization assembly 5 and air outlet assembly 6. The bellows 301 is convenient for pulling and folding. The fixed frame 302 fixedly supports the fan 303. The fan 303 is started, driving the rotating shaft 304 and the fan blade 305 to extract and rotate, and the odor enters the U-shaped tube 307 from the funnel tube 306. The air intake heating tube 308 heats the gas first, and the condensate enters the air intake condensation tube 309 from the air intake condensation liquid inlet pipe 310, and then discharges the liquid from the air intake condensation liquid outlet pipe 311. The air intake condensation tube 309 condenses and cools the gas to realize gas liquefaction, which is convenient for merging with the water inside the device. The stirring motor 401 is started, driving the stirring rod 402 and the stirring plate 403 to rotate and stir, realize mixing, and generate precipitation. The funnel-shaped square plate trough 501 is fixed with a pump 502, which pumps the upper clear liquid to the pump pipe 503 to enter the next process, and the outlet heating pipe 504 is heated and vaporized, and the activated carbon plate 505 is adsorbed for the second time. Whether the color-changing plate 506 changes color can be checked to see whether there is still toxic gas, which is detected by the color-changing monitor 507, and the color-changing monitor 507 is electrically connected to the valve 602. The valve 602 is controlled. When the color-changing plate 506 changes color, the valve 602 near the air inlet is opened, and the gas is circulated again from the outlet pipe 601. The condensate enters the outlet condensation pipe 603 from the outlet condensation liquid inlet pipe 604, and then discharges from the outlet condensation liquid outlet pipe 605 to condense and liquefy. When the color-changing plate 506 does not change color, the valve 602 on the other side is opened to exhaust, completing the air deodorization work of the mobile sewage treatment plant. By detecting the circulation of gas, the possibility of harmful gas emissions is reduced and the environment is protected.

[0025] The embodiments of the present invention are described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made within the knowledge scope of those skilled in the art without departing from the purpose of the present invention.

Claims

1. A mobile air deodorizing device for a sewage treatment plant, comprising a fixed component (1); characterized in that: The invention also comprises a main body component (2), an air intake component (3), a stirring component (4), a vaporization component (5), and an air outlet component (6); the upper end of the fixed component (1) is provided with a main body component (2) for performing main work; one side of the main body component (2) is provided with an air intake component (3) for air intake; one side of the air intake component (3) is provided with a stirring component (4) for stirring; one side of the stirring component (4) is provided with a vaporization component (5) for vaporization; and the upper end of the vaporization component (5) is provided with an air outlet component (6) for air outlet.

2. The mobile air deodorizing device for sewage treatment plants according to claim 1, characterized in that: The fixing assembly (1) comprises a base plate (101), a hardware plate (102), a spring damper (103) and a connecting plate (104); the hardware plates (102) are arranged on both sides of the base plate (101); the spring damper (103) is arranged at the upper end of the base plate (101); and the connecting plate (104) is arranged at the upper end of the spring damper (103).

3. The mobile air deodorizing device for sewage treatment plants according to claim 1, characterized in that: The main body component (2) comprises a box body (201), a material feeding port (202) and a slag discharge port (203); the box body (201) is arranged between the connecting plates (104); the material feeding port (202) is arranged at the front end of the box body (201); and the slag discharge port (203) is arranged at the rear end of the box body (201).

4. The mobile air deodorizing device for sewage treatment plants according to claim 3 is characterized in that: The air intake assembly (3) comprises a bellows (301), a fixing frame (302), a fan (303), a rotating shaft (304), a fan blade (305), a funnel tube (306), a U-shaped tube (307), an air intake heating tube (308), an air intake condensation tube (309), an air intake condensation liquid inlet tube (310), and an air intake condensation liquid outlet tube (311); the bellows (301) is arranged at the lower end of the box body (201); the fixing frame (302) is arranged at the upper end of the bellows (301); the fan (303) is arranged at the upper end of the fixing frame (302); the fan (303) ) is rotatably connected to the upper end of the rotating shaft (304); a fan blade (305) is arranged at the upper end of the rotating shaft (304); a funnel tube (306) is arranged outside the fan blade (305); a U-shaped tube (307) is arranged at the upper end of the funnel tube (306); an air intake heating tube (308) is arranged outside the U-shaped tube (307); an air intake condensation tube (309) is arranged on one side of the air intake heating tube (308); an air intake condensation liquid inlet tube (310) is arranged at the upper end of the air intake condensation tube (309); and an air intake condensation liquid outlet tube (311) is arranged at the lower end of the air intake condensation tube (309).

5. The mobile air deodorizing device for sewage treatment plants according to claim 4, characterized in that: The stirring assembly (4) comprises a stirring motor (401), a stirring rod (402) and a stirring plate (403); the stirring motor (401) is arranged on one side of the air inlet condenser pipe (309); the stirring rod (402) is arranged at the lower end of the stirring motor (401); and the stirring plate (403) is arranged on the stirring rod (402).

6. The mobile air deodorizing device for sewage treatment plants according to claim 5, characterized in that: The vaporization component (5) comprises a funnel-shaped square plate groove (501), a pump (502), a pumping tube (503), an air outlet heating tube (504), an activated carbon plate (505), a color change plate (506), and a color change monitor (507); a funnel-shaped square plate groove (501) is arranged on one side of the stirring plate (403); a pump (502) is arranged on the funnel-shaped square plate groove (501); a pumping tube (503) is arranged on the pump (502); an air outlet heating tube (504) is arranged at the lower end of the pumping tube (503); an activated carbon plate (505) is arranged at the upper end of the air outlet heating tube (504); a color change plate (506) is arranged at the upper end of the activated carbon plate (505); and a color change monitor (507) is arranged on one side of the color change plate (506).

7. The mobile air deodorizing device for a sewage treatment plant according to claim 6, characterized in that: The gas outlet assembly (6) comprises a gas outlet pipe (601), a valve (602), a gas outlet condensation pipe (603), a gas outlet condensation liquid inlet pipe (604) and a gas outlet condensation liquid outlet pipe (605); the gas outlet pipe (601) is arranged at the upper end of the funnel-shaped square plate groove (501); valves (602) are arranged on both sides of the gas outlet pipe (601); the gas outlet condensation pipe (603) is arranged outside the gas outlet pipe (601); the gas outlet condensation liquid inlet pipe (604) is arranged at the upper end of the gas outlet condensation pipe (603); and the gas outlet condensation liquid outlet pipe (605) is arranged at the lower end of the gas outlet condensation pipe (603).