Cola production gas purification device
By combining UV ultraviolet light beams and ozone synergistic decomposition and oxidation reactions with activated carbon adsorption, the problem of low exhaust gas purification efficiency in existing gas purification devices is solved, achieving efficient exhaust gas treatment and compliance with emission standards.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-09
- Publication Date
- 2026-04-10
AI Technical Summary
Existing gas purification devices have low efficiency in purifying exhaust gases, resulting in exhaust emissions failing to meet standards and causing air pollution.
It employs a synergistic decomposition and oxidation reaction of UV ultraviolet light beams and ozone, combined with activated carbon adsorption, to degrade organic or inorganic high-molecular-weight odorous compounds in industrial waste gas, converting them into low-molecular-weight compounds and carbon dioxide.
It improves the efficiency of waste gas purification, ensures that waste gas emissions meet standards, prevents air pollution, and simplifies the waste gas collection and treatment process.
Smart Images

Figure CN224100333U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to gas purification technical field, concretely is a kind of coke production gas purification device. BACKGROUND
[0002] In the production process of factory workshop, waste gas will be generated in production procedures such as film package and code spraying, and the main component is non-methane total hydrocarbon. Non-methane total hydrocarbon belongs to volatile organic compounds, which is the main source of environmental PM2.5 and O3 pollution. Local environmental protection departments also advocate the installation of volatile organic compounds (VOCs) treatment equipment.
[0003] The existing reference announcement number is CN108854277B Chinese utility model patent, which discloses a kind of gas purification device, including suction pipe and tank;Suction pipe is arranged at the top of the tank;Tank includes filter chamber and power chamber;Power chamber includes fan, controller, control panel and power socket, fan is connected with controller, controller is connected with the control panel arranged on tank, power socket is connected with controller and control panel respectively, one end of fan is connected with filter chamber, the other end of fan is connected with air outlet;At least one layer of filter assembly is provided in filter chamber, filter assembly is movably connected on support, support is connected with tank, right side surface of tank is provided with the access opening corresponding to each layer of filter assembly, access opening is provided with baffle. The gas purification device provided by the application, filter assembly can be easily disassembled.
[0004] Based on the above patent search, and combined with the equipment in the prior art, it is found that when purifying waste gas, purification device needs to be used, and the waste gas purification efficiency of traditional purification device is low when used, so that the waste gas purification discharge cannot meet the waste gas emission standard, causing air pollution, and when using the purification device, waste gas is collected through collection pipeline, and the diameter of collection pipeline is large, so that the subsequent solid is more inconvenient and affects the subsequent use. The existence of these problems affects the use of the device. UTILITY MODEL CONTENT
[0005] (1) technical problem solved
[0006] In view of the deficiencies of the prior art, the utility model provides a coke production gas purification device, which has the advantages of effectively preventing the waste gas purification efficiency of traditional purification device from being low when used, so that the waste gas purification discharge cannot meet the waste gas emission standard, causing air pollution, and solves the above technical problems.
[0007] Technical scheme
[0008] To achieve the above object, the utility model provides the following technical scheme: a coke production gas purification device, including pipeline delivery assembly, the upper end of pipeline delivery assembly is connected with the UV ultraviolet light beam in the irradiation ware and is installed to industrial waste gas, it is convenient for subsequent use organic or inorganic high molecule malodorous compound molecular chain, under the irradiation of high energy ultraviolet light beam, the purification structure subassembly of degradation conversion into low molecular compound, the rear end of the purification structure subassembly is connected with the ozone exhaust port in the inside and is installed to export ozone, through the synergistic decomposition oxidation reaction of ozone to industrial waste gas, make industrial waste gas material its degradation conversion into low molecular compound, water and carbon dioxide, it is convenient for subsequent through the activated carbon of adsorption plate upper end and adsorbs impurity, it is convenient for subsequent adsorption exhaust subassembly of air exhaust,
[0009] The upper end of the pipeline delivery assembly is connected with a fixing frame, the upper end of the fixing frame is fixedly installed with a supporting frame, the upper end of the supporting frame is connected with a connecting ring, and the supporting frame is fixedly installed on the right side of the upper end of the fixing frame. The connecting ring at the upper end is used in combination with the supporting frame, so that the delivery pipe can be connected and installed subsequently.
[0010] The upper end of the purification structure subassembly is connected with a shell, the inside of the shell is connected with an irradiator, the lower end of the irradiator is connected with a mixing rod, the upper end of the shell is connected with a connecting pipe, and the connecting pipe is connected to the connecting port at the upper end of the shell, so that the waste gas can be delivered into the inside of the device shell subsequently.
[0011] The upper end of the adsorption exhaust subassembly is provided with an ozone exhaust port, the lower end of the ozone exhaust port is connected with a stirring rod, the right side of the stirring rod is connected with an adsorption plate, and the adsorption plate is connected to the right side of the ozone exhaust port. The impurities in the waste gas are adsorbed by the adsorption plate, so that the gas can be discharged subsequently.
[0012] As a preferred technical scheme of the utility model, the upper end of the pipeline delivery assembly is connected with an adsorption port, and the upper end of the adsorption port is fixedly installed with a delivery pipe. The delivery pipe is fixedly installed at the upper end of the adsorption port, and the delivery pipe is connected to the connecting pipe, so that the waste gas can be delivered into the purification structure subassembly subsequently.
[0013] As a preferred technical scheme of the utility model, the upper end of the purification structure subassembly is connected with a connecting pipe, and the inside of the connecting pipe is fixedly installed with a delivery fan blade. The connecting pipe is connected to the delivery pipe, so that the waste gas in the inside of the delivery pipe can be delivered into the inside of the shell subsequently.
[0014] As the preferred technical scheme of the utility model, the upper end of the adsorption and discharge assembly is provided with a device shell, a connecting port is connected and installed at the upper end of the device shell, and a discharge pipe is connected and installed at the right side of the upper end of the device shell.
[0015] As the preferred technical scheme of the utility model, the purification structure assembly is connected and installed at the rear end of the sampling and conveying pipe in the pipeline conveying assembly, and the adsorption and discharge assembly is connected and installed at the rear end of the connecting pipe in the purification structure assembly.
[0016] As the preferred technical scheme of the utility model, the lower end of the adsorption port is in a widened rectangular structure, the lower end of the adsorption port is connected and fixed by the fixing frame, the connecting ring is connected and installed at the upper end of the conveying pipe, and the conveying pipe is connected and installed with the connecting pipe.
[0017] As the preferred technical scheme of the utility model, the number of the mixing rods is two, the inside of the illuminator is a UV ultraviolet light beam, and the connecting pipe is connected at the connecting port.
[0018] As the preferred technical scheme of the utility model, the upper end of the adsorption plate is activated carbon, the ozone discharge port is connected and installed inside the device shell, and the number of the stirring rods is two.
[0019] Compared with the prior art, the utility model provides a coke production gas purification device with the following beneficial effects:
[0020] 1. Through the setting of the whole device, the industrial waste gas is introduced into the purification equipment by the exhaust equipment, the purification equipment utilizes high-energy active free radicals, a UV ultraviolet light beam and ozone to perform a synergistic decomposition oxidation reaction on the industrial waste gas, so that the industrial waste gas is degraded and converted into low-molecular compounds, water and carbon dioxide, and then discharged outside through the exhaust pipeline, the UV light oxygen catalytic part utilizes a special high-energy high-ozone UV ultraviolet light beam to irradiate the industrial waste gas, cracks the molecular chain structures of the industrial waste gas and the like, such as ammonia, trimethylamine, hydrogen sulfide, methyl mercaptan, methyl mercaptan, methyl mercaptan, dimethyl disulfide, carbon disulfide and styrene, sulfide H2S, VOC, benzene, toluene, xylene and the like, so that the molecular chain of the organic or inorganic high-molecular odor compound is degraded and converted into low-molecular compounds, such as CO2 and H2O, the conveying pipe is connected and installed through the connecting ring, the lower end of the connecting ring is connected and installed with the supporting frame, the conveying pipe is supported and installed through the supporting frame, the low waste gas purification efficiency of the traditional purification device during use is effectively prevented, the subsequent waste gas purification discharge cannot meet the waste gas emission standard, and air pollution is caused, the waste gas is collected through the collecting pipeline during use of the purification device, the collecting pipeline has a large diameter, and subsequent fixing is inconvenient and affects subsequent use. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the whole structure schematic diagram of the utility model;
[0022] Figure 2 It is the pipeline delivery assembly schematic diagram of the utility model;
[0023] Figure 3 It is the purification structure assembly schematic diagram of the utility model;
[0024] Figure 4 It is the adsorption and discharge assembly schematic diagram of the utility model;
[0025] Wherein: 1, pipeline delivery assembly;101, adsorption port;102, delivery pipe;103, fixed frame;104, support frame;105, connecting ring;2, purification structure assembly;201, connecting pipe;202, delivery fan blade;203, shell;204, illuminator;205, mixing rod;206, link pipe;3, adsorption and discharge assembly;301, device shell;302, connecting port;303, discharge pipe;304, ozone discharge port;305, stirring rod;306, adsorption plate. DETAILED DESCRIPTION
[0026] The embodiments of the utility model will be further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0027] In the description of the utility model, unless otherwise specified, the meaning of "multiple" is two or more than two;The orientation or position relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or position relationship shown in the drawings, which is only for the convenience of describing the utility model and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore, it cannot be understood as a limitation on the utility model. In addition, the terms "first", "second", "third" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance.
[0028] In the description of the utility model, it should be pointed out that, unless otherwise specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected;It can be mechanically connected, or it can be electrically connected;It can be directly connected, or it can be indirectly connected through an intermediate medium. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0029] Please refer toFigure 1 Figure 4 In the embodiment, a coke production gas purification device comprises a pipeline conveying assembly 1, a fixed frame 103 is connected and installed at the upper end of the pipeline conveying assembly 1, a support frame 104 is fixedly installed at the upper end of the fixed frame 103, a connecting ring 105 is connected and installed at the upper end of the support frame 104, a purification structure assembly 2 is connected and installed at the upper end of the pipeline conveying assembly 1, a shell 203 is connected and installed at the upper end of the purification structure assembly 2, an irradiator 204 is connected and installed inside the shell 203, a mixing rod 205 is connected and installed at the lower end of the irradiator 204, a connecting pipe 206 is connected and installed at the upper end of the shell 203, an adsorption and discharge assembly 3 is connected and installed at the rear end of the purification structure assembly 2, an ozone discharge port 304 is installed at the upper end of the adsorption and discharge assembly 3, a stirring rod 305 is connected and installed at the lower end of the ozone discharge port 304, an adsorption plate 306 is connected and installed at the right side of the stirring rod 305, the purification structure assembly 2 is connected and installed at the rear end of a conveying pipe 102 in the pipeline conveying assembly 1, and the adsorption and discharge assembly 3 is connected and installed at the rear end of the connecting pipe 206 in the purification structure assembly 2.
[0030] Through the above structure; the pipeline conveying assembly 1 adsorbs waste gas through the adsorption port 101 inside, and the adsorption port 101 is connected and installed with the conveying pipe 102, so as to facilitate subsequent conveying and purification of the waste gas through the conveying pipe 102, the purification structure assembly 2 is installed with the irradiator 204, the UV ultraviolet light beam in the irradiator 204 irradiates industrial waste gas, so as to facilitate subsequent degradation of organic or inorganic high molecular odor compound molecular chain under high-energy ultraviolet light beam irradiation, and conversion into low molecular compounds, the adsorption and discharge assembly 3 discharges ozone through the ozone discharge port 304 inside, and cooperatively decomposes and oxidizes industrial waste gas through ozone, so as to degrade and convert industrial waste gas into low molecular compounds, water and carbon dioxide, and facilitate subsequent adsorption of impurities through activated carbon at the upper end of the adsorption plate 306, and subsequent discharge of air.
[0031] Please refer to Figure 1 Figure 4 The upper end of the pipeline conveying assembly 1 is connected and installed with the adsorption port 101, the upper end of the adsorption port 101 is fixedly installed with the conveying pipe 102, the lower end of the adsorption port 101 is a widened rectangular structure, the fixed frame 103 connects and fixes the lower end of the adsorption port 101, the connecting ring 105 is connected and installed at the upper end of the conveying pipe 102, and the conveying pipe 102 is connected and installed with the connecting pipe 201.
[0032] Through the above structure: through the installation of the adsorption port 101, the waste gas during production is absorbed and transported, and the subsequent waste gas is treated. The conveying pipe 102 is fixedly installed at the upper end of the adsorption port 101, and is connected with the connecting pipe 201 through the conveying pipe 102, so that the waste gas is conveniently transported into the purification structure assembly 2. The fixed frame 103 is connected and installed at the lower end of the adsorption port 101, and the lower end of the adsorption port 101 is connected and installed on both sides through the fixed frame 103. The support frame 104 is fixedly installed at the upper end of the right side of the fixed frame 103, and is used in combination with the upper end connecting ring 105, so that the conveying pipe 102 is conveniently connected and installed.
[0033] Please refer to Figure 1 - Figure 4 The upper end of the purification structure assembly 2 is connected and installed with the connecting pipe 201, and the inside of the connecting pipe 201 is fixedly installed with the conveying fan blade 202. The number of the mixing rod 205 is two. The inside of the illuminator 204 is a UV ultraviolet light beam. The connection pipe 206 is connected at the connecting port 302.
[0034] Through the above structure: through the installation of the adsorption port 101, the waste gas during production is absorbed and transported, and the subsequent waste gas is treated. The conveying pipe 102 is fixedly installed at the upper end of the adsorption port 101, and is connected with the connecting pipe 201 through the conveying pipe 102, so that the waste gas is conveniently transported into the purification structure assembly 2. The fixed frame 103 is connected and installed at the lower end of the adsorption port 101, and the lower end of the adsorption port 101 is connected and installed on both sides through the fixed frame 103. The support frame 104 is fixedly installed at the upper end of the right side of the fixed frame 103, and is used in combination with the upper end connecting ring 105, so that the conveying pipe 102 is conveniently connected and installed.
[0035] Please refer to Figure 1 - Figure 4 The upper end of the adsorption and discharge assembly 3 is installed with the device shell 301, and the upper end of the device shell 301 is connected and installed with the connecting port 302. The upper end right side of the device shell 301 is connected and installed with the discharge pipe 303. The upper end of the adsorption plate 306 is activated carbon. The ozone discharge port 304 is connected and installed in the inside of the device shell 301. The number of the stirring rod 305 is two.
[0036] Through the above structure: through the installation of the device shell 301, the internal structure is connected and installed, and it is convenient to store the exhaust gas through the device shell 301, the connecting port 302 is fixedly installed at the upper end of the device shell 301 and connected with the connecting pipe 206, which is convenient for subsequent conveying of the exhaust gas into the device shell 301, the exhaust pipe 303 is connected and installed at the right side of the device shell 301, which is convenient for subsequent discharge of the purified gas, the ozone discharge port 304 is connected and installed in the device shell 301, and the ozone is discharged through the ozone discharge port 304 to decompose the industrial exhaust gas, and the oxidation reaction converts the industrial exhaust gas into molecular compounds, the stirring rod 305 is connected and installed at the lower end of the device shell 301, which is convenient for subsequent combination of ozone and exhaust gas to accelerate the transformation of the exhaust gas, and the adsorption plate 306 is connected and installed at the right side of the ozone discharge port 304, which adsorbs the impurities in the exhaust gas through the adsorption plate 306, and is convenient for subsequent discharge of the gas.
[0037] In use, first, the fixed frame 103 is built and installed at the upper end of the device, the adsorption port 101 is connected and placed to the upper end of the fixed frame 103 for support, the upper end of the adsorption port 101 is fixedly installed with the conveying pipe 102, the upper end of the conveying pipe 102 is connected and installed with the connecting ring 105, the lower end of the connecting ring 105 is connected and installed with the support frame 104, the pipeline conveying assembly 1 is supported by the support frame 104 and the fixed frame 103, the conveying pipe 102 is connected and installed with the connecting pipe 201, the conveying fan blade 202 in the connecting pipe 201 is started when the exhaust gas is conveyed and purified, the exhaust gas is adsorbed and conveyed when the conveying fan blade 202 is started, the exhaust gas is sucked into the inside of the conveying pipe 102 through the adsorption port 101, the exhaust gas is conveyed to the inside of the connecting pipe 201 through the conveying pipe 102, the connecting pipe 201 is fixedly installed at the upper end of the shell 203, which is convenient for subsequent conveying of the exhaust gas into the shell 203 for treatment, the inside of the shell 203 is installed with the irradiator 204 at the upper end, the irradiator 204 irradiates uv ultraviolet light beam, the industrial exhaust gas in the shell 203 is irradiated by the ultraviolet light beam, and the industrial exhaust gas is degraded and converted into low molecular compounds under the irradiation of high-energy ultraviolet light beam, the upper end of the shell 203 is installed with the connecting pipe 206, the shell 203 is connected with the device shell 301 through the connecting pipe 206, the exhaust gas is conveyed to the inside of the device shell 301 through the connecting pipe 206, the inside of the device shell 301 is installed with the ozone discharge port 304, the ozone is conveyed to the inside of the device shell 301 and contacted with the exhaust gas through the ozone discharge port 304, the exhaust gas is degraded and converted into low molecular compounds, hydrated carbon dioxide, and the ozone discharge port 304 is installed with the adsorption plate 306 at the right side, the impurities in the gas are adsorbed by the activated carbon in the adsorption plate 306, which is convenient for subsequent discharge of the purified gas through the exhaust pipe 303 at the right side of the device shell 301.
[0038] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A carbon monoxide production gas purification device characterized by comprising: The utility model provides a pipeline conveying assembly (1), the upper end of pipeline conveying assembly (1) is connected installation has fixed frame (103), the upper end of fixed frame (103) is fixedly installed and supports frame (104), the upper end of support frame (104) is connected installation has connecting ring (105), the upper end of pipeline conveying assembly (1) is connected installation has purification structure assembly (2), the upper end of purification structure assembly (2) is connected installation has shell (203), the inside of shell (203) is connected installation has illuminator (204), the lower end of illuminator (204) is connected installation has mixing rod (205), the upper end of shell (203) is connected installation has link pipe (206), the rear end of purification structure assembly (2) is connected installation has adsorption exhaust assembly (3), the upper end of adsorption exhaust assembly (3) is installed and has ozone exhaust (304), the lower end of ozone exhaust (304) is connected installation has stirring rod (305), the right side of stirring rod (305) is connected installation has adsorption plate (306).
2. A carbon dioxide production gas purification device according to claim 1, characterized by The upper end of the pipeline conveying assembly (1) is connected and installed with an adsorption port (101), and the upper end of the adsorption port (101) is fixedly installed with a conveying pipe (102).
3. A carbon dioxide production gas purification device according to claim 1, characterized by The upper end of the purification structure assembly (2) is connected and installed with a connecting pipe (201), and the inside of the connecting pipe (201) is fixedly installed with a conveying fan blade (202).
4. A carbon dioxide production gas purification device according to claim 1, characterized by The upper end of the adsorption exhaust assembly (3) is installed with a device shell (301), and the upper end of the device shell (301) is connected and installed with a connecting port (302), and the upper end of the right side of the device shell (301) is connected and installed with an exhaust pipe (303).
5. A carbon dioxide production gas purification device according to claim 1, wherein The purification structure assembly (2) is connected and installed at the rear end of the conveying pipe (102) in the pipeline conveying assembly (1), and the adsorption exhaust assembly (3) is connected and installed at the rear end of the link pipe (206) in the purification structure assembly (2).
6. A carbon dioxide production gas purification device according to claim 2, wherein The lower end of the adsorption port (101) is a widened rectangular structure, the fixed frame (103) connects and fixes the lower end of the adsorption port (101), the connecting ring (105) is connected and installed at the upper end of the conveying pipe (102), and the conveying pipe (102) is connected and installed with the connecting pipe (201).
7. A carbon dioxide production gas purification device according to claim 3, wherein The number of the mixing rod (205) is two, the inside of the illuminator (204) is a UV ultraviolet light beam, and the link pipe (206) is connected at the connecting port (302).
8. A carbon dioxide production gas purification device according to claim 4, wherein The upper end of the adsorption plate (306) is activated carbon, the ozone exhaust (304) is connected and installed in the inside of the device shell (301), and the number of the stirring rod (305) is two.
Citation Information
Patent Citations
Gas purification device
CN108854277B