Carbon emission analysis device

By designing a detachable filter structure and purification system, the problems of difficult cleaning and insufficient purification in existing carbon emission detection equipment have been solved, achieving efficient carbon emission monitoring and environmental protection.

CN223923120UActive Publication Date: 2026-02-17ZHONGTONG INNOVATION (NINGXIA) INFORMATION & ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202423207261.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2026-02-17
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing carbon emission testing equipment is not easy to disassemble and clean the filter structure, which affects the filtration effect. It also lacks exhaust gas purification and treatment functions, resulting in inaccurate test data and environmental pollution.

Method used

A carbon emission analysis device was designed, which includes a detachable filter structure and a purification system. It uses an activated carbon layer and a photocatalytic oxidation layer to purify the exhaust gas, and combines a magnetic ring and an adjusting screw to achieve quick installation and sealing.

Benefits of technology

The system enables timed cleaning of the filter structure, improving the accuracy of test data. It also maintains the testing environment through purification treatment, ensuring both filtration effectiveness and data accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of carbon emission monitoring, in particular to a carbon emission analysis device which comprises a detection pipe arranged at the end of a gas inlet pipe, and the detection pipe can monitor carbon emission in tail gas. According to the utility model, the mounting ring II is taken down from the magnetic suction ring, so that dust and impurities on the filter plate can be cleaned at regular time, and after cleaning, a permanent magnet sheet on the outer wall of the mounting ring II can magnetically attract the magnetic suction ring for quick mounting, so that two insertion columns can be inserted into a fixed seat to drive an adjusting screw rod to rotate; therefore, a sliding block and an inner inclined groove are driven to be inserted in a sliding mode, a first installation ring can abut against a fixed ring plate, meanwhile, a limiting ring is driven to extrude a second installation ring, and therefore the air inlet pipe and the detection pipe can be rapidly installed in a butt joint mode, and the sealing performance of the connecting position of the air inlet pipe and the detection pipe can be enhanced. And the filtering effect on the exhaust gas can be ensured by cleaning the filter plate at regular time, so that the accuracy of carbon dioxide content detection data of the exhaust gas is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to carbon emission monitoring technical field, specifically a carbon emission analysis device. BACKGROUND

[0002] With the rapid progress and development of society, cars are everywhere on the road now, and with the increase of cars, the emission of greenhouse gases mainly with carbon elements will also lead to global warming, and the carbon emission of vehicles in cities is increasingly becoming the focus of social attention, so currently sensor technology is generally used to detect and analyze the carbon emission of cars.

[0003] The existing carbon emission detection equipment is provided with a filtering structure, which can filter out dust, oil stain molecules and other impurities in the gas to prevent the impurities in the gas from affecting the detection effect, but the device is not convenient to disassemble after detection and analysis, and the filtering mechanism cannot be cleaned, which will seriously affect the filtering effect when using the device subsequently, and long-term use will affect the carbon emission monitoring and analysis data, and the existing carbon emission analysis device lacks purification treatment function for tail gas, so the working environment will be polluted. UTILITARIAN CONTENT

[0004] The utility model aims at providing a carbon emission analysis device to solve the problems in the above background technology.

[0005] To achieve the above purpose, the utility model provides the following technical scheme:

[0006] A carbon emission analysis device comprises:

[0007] An air inlet pipe can intake carbon emission tail gas;

[0008] A connecting seat is fixedly connected to the end of the air inlet pipe;

[0009] A mounting ring one is fixedly sleeved on the end of the air inlet pipe;

[0010] Two insertion columns are symmetrically fixedly connected to the side wall of the mounting ring one;

[0011] An inner inclined groove is arranged at the end of the insertion column;

[0012] A detection pipe is arranged at the end of the air inlet pipe, and the detection pipe can monitor the carbon emission of the tail gas;

[0013] A fixed ring plate is fixedly sleeved on the outer wall of the detection pipe;

[0014] Two fixed seats are inserted with the insertion columns.

[0015] Further in, the side wall of two fixing bases is fixedly connected with a positioning plate, the positioning plate is screw-connected with an adjusting screw, the bottom of the adjusting screw is rotatably connected with a sliding block, and the sliding block is slidably connected with the inner inclined groove.

[0016] Further in, the top of the sliding block is fixedly connected with a limiting frame which is slidably connected with the positioning plate.

[0017] Further in, the inner wall of the air inlet pipe is fixedly connected with a closed ring plate, the end of the detection pipe is provided with a sealing groove, the sealing groove is fixedly provided with a sealing ring, and the closed ring plate is slidably inserted into the sealing groove.

[0018] Further in, the outer wall of the detection pipe is fixedly sleeved with two supporting frames, and the inner wall of the detection pipe is fixedly provided with a flow sensor and a carbon dioxide sensor.

[0019] Further in, the inner wall of the detection pipe is fixedly sleeved with a magnetic ring, the outer wall of the magnetic ring is fixedly connected with a plurality of butt joint columns at equal intervals in a ring shape, one side of the magnetic ring is provided with a mounting ring two, the mounting ring two is provided with a filter plate, a plurality of butt joint holes which are inserted into the butt joint columns are formed in the mounting ring two at equal intervals in a ring shape, and the side wall of the mounting ring two is fixedly connected with a plurality of permanent magnets which are magnetically attracted to the magnetic ring at equal intervals in a ring shape.

[0020] Further in, the top end of the detection pipe is fixedly connected with a tail gas cover, the top end of the tail gas cover is fixedly connected with a treatment cylinder which is communicated with the inside of the tail gas cover, the treatment cylinder is provided with an activated carbon layer, the top of the activated carbon layer is provided with a plurality of ultraviolet lamp tubes which are fixedly connected with the inside of the treatment cylinder, and the inner cavity of the treatment cylinder is fixedly provided with a photocatalyst catalytic oxidation layer.

[0021] Compared with the prior art, the beneficial effects of the utility model are:

[0022] 1, by rotating the adjusting screw, the sliding block is gradually separated from the inner inclined groove, so that the two insertion columns lose the limitation, then the installation ring one no longer abuts against the fixed ring plate, the closed ring plate at the end of the air inlet pipe is separated from the sealing groove in the detection tube, and the limiting ring no longer abuts against the installation ring two, then the installation ring two can be taken off from the magnetic attraction ring, and the dust and impurities on the filter plate can be cleaned in time, after cleaning, the permanent magnet piece on the outer wall of the installation ring two can be quickly installed by the magnetic attraction of the magnetic attraction ring, then the closed ring plate is inserted with the sealing groove, the two insertion columns can be inserted into the fixed seat, and the adjusting screw is driven to rotate, so that the sliding block and the inner inclined groove are slidably inserted, so that the installation ring one abuts against the fixed ring plate, and the limiting ring is pressed against the installation ring two, so that the air inlet pipe and the detection tube can be quickly connected and installed, and the sealing property of the connection part of the two is also improved, the filter plate can be cleaned in time to ensure the filtering effect of the exhaust gas, so that the accuracy of the monitoring data of the carbon dioxide content in the exhaust gas is improved.

[0023] 2, the carbon dioxide sensor arranged in the detection tube can detect the carbon dioxide concentration in the exhaust gas, and the flow sensor can monitor the flow of the gas, then the collected exhaust data is processed and analyzed, so that the monitoring and analysis can be realized, the exhaust gas enters the processing cylinder, the activated carbon layer is used for adsorbing and filtering the exhaust gas, then the carbon dioxide is photochemically reacted under the irradiation of the ultraviolet light beam, and the carbon dioxide is reduced by the photocatalytic oxidation layer to complete the carbon neutralization, so that the carbon emission exhaust gas can be purified and treated, and the carbon emission analysis and detection environment is maintained. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is the overall structure schematic diagram of the utility model;

[0025] Figure 2 It is the overall cross section structure schematic diagram in the utility model;

[0026] Figure 3 It is the installation ring connecting structure schematic diagram in the utility model;

[0027] Figure 4 It is the air inlet pipe end structure schematic diagram in the utility model;

[0028] Figure 5 It is the filter plate installation structure schematic diagram in the utility model;

[0029] Figure 6 It is the processing cylinder cross section structure schematic diagram in the utility model.

[0030] In the figure: 101, air inlet pipe; 102, connecting seat; 103, mounting ring one; 104, insertion column; 105, inner inclined groove; 106, closed ring plate; 107, limiting ring; 201, detection pipe; 202, support frame; 203, flow sensor; 204, carbon dioxide sensor; 205, fixed ring plate; 206, fixed seat; 207, positioning plate; 208, adjusting screw; 209, sliding block; 210, limiting frame; 211, magnetic attraction ring; 212, butt joint column; 213, mounting ring two; 214, filter plate; 215, butt joint hole; 216, permanent magnet piece; 217, sealing groove; 301, tail gas cover; 302, treatment cylinder; 303, activated carbon layer; 304, ultraviolet lamp tube; 305, photocatalytic catalytic oxidation layer. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0032] Please refer to Figures 1-6 In the embodiments of the utility model, a carbon emission analysis device comprises an air inlet pipe 101, a connecting seat 102, a mounting ring one 103, an insertion column 104, an inner inclined groove 105 and a detection pipe 201. The air inlet pipe 101 can intake carbon emission tail gas. The connecting seat 102 is fixedly connected to the end of the air inlet pipe 101. The mounting ring one 103 is fixedly sleeved on the end of the air inlet pipe 101. The insertion column 104 is provided with two symmetrically fixedly connected side walls on the mounting ring one 103. The inner inclined groove 105 is arranged on the end of the insertion column 104. The sliding block 209 and the inner inclined groove 105 are slidingly connected, so that the mounting ring one 103 is in abutment with the fixed ring plate 205. The detection pipe 201 is arranged on the end of the air inlet pipe 101. The detection pipe 201 can monitor the carbon emission amount in the tail gas. The fixed ring plate 205 is fixedly sleeved on the outer wall of the detection pipe 201. The fixed seat 206 is provided with two fixedly connected side walls on the insertion column 104. The positioning plate 207 is fixedly connected to the side wall of each fixed seat 206. The adjusting screw 208 is screwingly connected in the positioning plate 207. The bottom of the adjusting screw 208 is rotatably connected with the sliding block 209. The sliding block 209 is slidingly and embeddedly connected with the inner inclined groove 105. The top of the sliding block 209 is fixedly connected with the limiting frame 210 which is slidingly connected with the positioning plate 207. The inner wall of the air inlet pipe 101 is fixedly connected with the closed ring plate 106. The end of the detection pipe 201 is provided with the sealing groove 217. The sealing groove 217 is fixedly provided with a sealing ring. The closed ring plate 106 is slidingly and insertedly connected with the sealing groove 217.

[0033] The inner wall of the detection tube 201 is fixedly sleeved with a magnetic attraction ring 211, the outer wall of the magnetic attraction ring 211 is fixedly connected with a plurality of butt joint columns 212 in an annular and equidistant manner, one side of the magnetic attraction ring 211 is provided with a mounting ring two 213, the mounting ring two 213 is taken off from the magnetic attraction ring 211, and then the dust and impurities on the filter plate 214 can be cleaned in a timely manner, the mounting ring two 213 is provided with the filter plate 214, a plurality of butt joint holes 215 which are inserted with the butt joint columns 212 are arranged on the mounting ring two 213 in an annular and equidistant manner, a plurality of permanent magnet pieces 216 which are magnetically attracted to the magnetic attraction ring 211 are fixedly connected to the side wall of the mounting ring two 213 in an annular and equidistant manner, and after cleaning, the permanent magnet pieces 216 on the outer wall of the mounting ring two 213 can be quickly installed by being magnetically attracted to the magnetic attraction ring 211.

[0034] Specifically, when the filter structure needs to be replaced, the adjusting screw 208 is rotated, thereby driving the sliding block 209 to gradually separate from the inner inclined groove 105, so that the two insertion columns 104 lose the limitation, then the mounting ring one 103 no longer abuts against the fixed ring plate 205, the closed ring plate 106 at the end of the air inlet pipe 101 is separated from the sealing groove 217 in the detection tube 201, and the limiting ring 107 no longer abuts against the mounting ring two 213, then the mounting ring two 213 can be taken off from the magnetic attraction ring 211, thereby the dust and impurities on the filter plate 214 can be cleaned in a timely manner, after cleaning, the permanent magnet pieces 216 on the outer wall of the mounting ring two 213 can be quickly installed by being magnetically attracted to the magnetic attraction ring 211, then the closed ring plate 106 is inserted with the sealing groove 217, and the two insertion columns 104 can be inserted into the fixed seat 206, and the adjusting screw 208 is driven to rotate, thereby driving the sliding block 209 and the inner inclined groove 105 to slide and insert, so that the mounting ring one 103 abuts against the fixed ring plate 205, and the limiting ring 107 extrudes the mounting ring two 213, thereby not only the air inlet pipe 101 and the detection tube 201 can be quickly connected and installed, but also the sealing property of the connection part of the two is enhanced, the filter plate 214 is cleaned in a timely manner, the filtering effect on the exhaust gas is ensured, and the accuracy of the carbon dioxide content monitoring data of the exhaust gas is improved.

[0035] Embodiment one

[0036] As Figure 6As shown, in the embodiment, two support frames 202 are sleeved and fixed on the outer wall of the detection tube 201, a flow sensor 203 and a carbon dioxide sensor 204 are fixedly arranged on the inner wall of the detection tube 201, and the flow sensor 203 is used for monitoring the flow of the gas. The tail gas cover 301 is fixedly connected to the top end of the detection tube 201, the collected emission data is processed and analyzed, so that monitoring and analysis can be realized, the processing cylinder 302 which is in communication with the inside of the tail gas cover 301 is fixedly connected to the top end of the tail gas cover 301, the activated carbon layer 303 is arranged in the processing cylinder 302, a plurality of ultraviolet lamp tubes 304 are arranged on the top of the activated carbon layer 303 and are fixedly connected to the inside of the processing cylinder 302, and the photocatalyst catalytic oxidation layer 305 is fixedly arranged in the inner cavity of the processing cylinder 302.

[0037] In the embodiment, the carbon dioxide sensor 204 arranged in the detection tube 201 can detect the carbon dioxide concentration in the exhaust gas, the flow sensor 203 is used for monitoring the flow of the gas, then the collected emission data is processed and analyzed, so that monitoring and analysis can be realized, the exhaust gas is introduced into the processing cylinder 302, the activated carbon layer 303 is used for adsorbing and filtering the exhaust gas, then the carbon dioxide is subjected to photochemical reaction under the irradiation of the ultraviolet light beam, and the photocatalyst catalytic oxidation layer 305 is used for reducing the carbon dioxide to complete carbon neutralization, so that the carbon emission exhaust gas can be purified and treated, and the carbon emission analysis and detection environment is maintained.

[0038] It is apparent for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all aspects as illustrative and not restrictive, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and range of equivalents of the elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be regarded as limiting the claims to which they belong.

[0039] In addition, it should be understood that, although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the description manner of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can be properly combined to form other embodiments which can be understood by those skilled in the art.

Claims

1. A carbon emission analysis device, characterized by, The utility model relates to a carbon emission monitoring device for tail gas, which comprises the following: An air inlet pipe (101) capable of taking in carbon emission tail gas; A connecting seat (102) fixedly connected to the end of the air inlet pipe (101); A mounting ring I (103) fixedly sleeved on the end of the air inlet pipe (101); Two insertion columns (104) symmetrically fixedly connected to the side wall of the mounting ring I (103); An inner inclined groove (105) formed in the end of the insertion column (104); A detection pipe (201) arranged at the end of the air inlet pipe (101) and capable of monitoring the carbon emission of the tail gas; A fixed ring plate (205) fixedly sleeved on the outer wall of the detection pipe (201); Two fixed seats (206) each in insertion connection with the insertion column (104).

2. The carbon emission analysis device according to claim 1, wherein The side wall of each fixed seat (206) is fixedly connected with a positioning plate (207), the positioning plate (207) is in screw connection with an adjusting screw (208) at the bottom of which a sliding block (209) is rotatably connected, and the sliding block (209) is in sliding and embedded connection with the inner inclined groove (105).

3. The carbon emissions analysis device of claim 2, wherein, The top of the sliding block (209) is fixedly connected with a limiting frame (210) in sliding connection with the positioning plate (207).

4. The carbon emission analysis device of claim 2, wherein, The inner wall of the air inlet pipe (101) is fixedly connected with a closed ring plate (106), the end of the detection pipe (201) is formed with a sealing groove (217) in which a sealing ring is fixedly arranged, and the closed ring plate (106) is in sliding insertion connection with the sealing groove (217).

5. The carbon emissions analysis device of claim 2, wherein, The outer wall of the detection pipe (201) is fixedly sleeved with two support frames (202), and the inner wall of the detection pipe (201) is fixedly arranged with a flow sensor (203) and a carbon dioxide sensor (204).

6. The carbon emissions analysis device of claim 2, wherein, The inner wall of the detection pipe (201) is fixedly sleeved with a magnetic attraction ring (211), the outer wall of the magnetic attraction ring (211) is annularly and equidistantly fixedly connected with a plurality of butt joint columns (212), one side of the magnetic attraction ring (211) is provided with a mounting ring II (213), the mounting ring II (213) is arranged with a filter plate (214), the mounting ring II (213) is annularly and equidistantly formed with a plurality of butt joint holes (215) in insertion connection with the butt joint columns (212), and the side wall of the mounting ring II (213) is annularly and equidistantly fixedly connected with a plurality of permanent magnet pieces (216) in magnetic attraction with the magnetic attraction ring (211).

7. A carbon emissions analysis device according to claim 6, wherein, The top end of the detection pipe (201) is fixedly connected with a tail gas cover (301), the top end of the tail gas cover (301) is fixedly connected with a treatment cylinder (302) in communication with the inside of the tail gas cover (301), the treatment cylinder (302) is arranged with an activated carbon layer (303), the top of the activated carbon layer (303) is arranged with a plurality of ultraviolet lamp tubes (304) fixedly connected with the inside of the treatment cylinder (302), and the inner cavity of the treatment cylinder (302) is fixedly arranged with a photocatalyst catalytic oxidation layer (305).