A clean powered carbon emission detection device and method of use thereof

The carbon emission detection device, powered by photovoltaic panels and wind power modules, combined with a brush and moving track system, solves the problems of inconvenient battery replacement and filter clogging, achieving clean energy supply and self-cleaning function, and ensuring the continuity and accuracy of detection.

CN118731285BActive Publication Date: 2025-12-05POWER RES INST OF STATE GRID SHAANXI ELECTRIC POWER CO LTD +1
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Patent Information

Application Number
CN202410779549.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2025-12-05
Estimated Expiration
2044-06-17

AI Technical Summary

Technical Problem

Existing carbon emission detection devices rely on battery power, which makes maintenance inconvenient, and the filters are prone to clogging after long-term use, affecting the accuracy of detection.

Method used

Powered by photovoltaic panels and wind power modules, the filter screen is self-cleaning thanks to the brushes on the movable door and the moving track system. The battery replacement problem is solved by the integrated photovoltaic-wind power supply, and the filter screen is self-cleaning thanks to the close fit between the brushes and the filter screen.

Benefits of technology

It achieves clean energy supply, increases the detection area, ensures the long service life and detection accuracy of the detection device, and avoids detection errors caused by filter clogging.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application belongs to the technical field of carbon emission detection, and discloses a clean energy-supplied carbon emission detection device and a use method thereof. In the carbon emission detection device, the detection device body comprises a shell, a detection probe, a drying device, a detection sensor and a suction pump arranged in the shell. A photovoltaic panel and a wind power module are used to supply power to the power-consuming components in the carbon emission detection device. The shell is further provided with a first track and a second track. The first track is fixedly installed on the inner wall of the shell, and the second track is movably installed on the first track. The detection probe is movably arranged on the second track. A driving device is used to drive the second track to move on the first track and drive the detection probe to move on the second track under the control of a control device. The application can solve the problems of inconvenience in replacing the battery or regular charging of the existing carbon emission detection device, and the problems of filter screen blockage and impurities affecting the detection accuracy after long-term use.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of carbon emission detection, and particularly relates to a clean energy-supplied carbon emission detection device and a use method thereof. BACKGROUND

[0002] In today's increasingly globalized world, climate change and environmental protection have become the focus of global attention. With the acceleration of industrialization and the continuous growth of population, the amount of carbon emissions generated by human activities has risen sharply, causing significant impact on the Earth's climate system; therefore, accurate and timely detection and monitoring of carbon emissions are necessary conditions for achieving sustainable development.

[0003] Currently, existing carbon emission detection devices still face some challenges in actual application, including:

[0004] 1) Most carbon emission detection devices rely on battery power; the defect of this existing solution is not only to increase the use cost, but also to change the battery or regular charging, which brings many inconveniences to the use of the device; especially in remote areas or inaccessible monitoring points, this battery-dependent design will lead to maintenance difficulties, affecting the continuity and accuracy of monitoring data;

[0005] 2) The existing carbon emission detection device is easy to cause filter screen blockage after long-term use; illustratively, the main function of the filter screen is to filter impurities in the air to protect the sensor from pollution; however, over time, the filter screen will gradually accumulate dust, particulate matter and other impurities, causing the filter screen to be blocked, which not only reduces the suction of the device and affects the collection of air samples; more seriously, impurities may directly invade the sensor, causing pollution, resulting in reduced accuracy of the detection results. SUMMARY

[0006] The purpose of the present application is to provide a clean energy-supplied carbon emission detection device and a use method thereof to solve the problems of inconvenience of changing battery or regular charging of existing carbon emission detection devices and filter screen blockage after long-term use, and impurities affecting detection accuracy.

[0007] To achieve the above-mentioned purpose, the present application adopts the following technical solutions:

[0008] In a first aspect of the present application, a clean energy-supplied carbon emission detection device is provided, comprising: a detection device body, a photovoltaic panel, a wind power module, a driving device and a control device; wherein,

[0009] The detection device body comprises a shell, a detection probe, a drying device, a detection sensor and a suction pump arranged in the shell; wherein the detection probe, the drying device, the detection sensor and the suction pump are sequentially communicated; the detection probe is provided with a filter screen; one side of the shell close to the detection probe is provided with a movable door, and one side of the movable door close to the detection probe is fixedly provided with a brush; when the movable door is in a closed state, the brush can be tightly attached to the filter screen;

[0010] The photovoltaic panel and the wind power module are both installed outside the shell, and are used for supplying power to the power components in the carbon emission detection device.

[0011] The first rail is fixedly installed on the inner wall of the shell, and the second rail is movably installed on the first rail, and the detection probe is movably arranged on the second rail.

[0012] The driving device is used for driving the second rail to move on the first rail and driving the detection probe to move on the second rail under the control of the control device.

[0013] The further improvement of the present application is that it further comprises:

[0014] A display screen is fixedly arranged outside the shell and is used for displaying the detection result of the detection sensor.

[0015] The further improvement of the present application is that,

[0016] The driving device comprises a first motor and a second motor.

[0017] The first rail is a vertical rail.

[0018] The second rail is a moving cross beam.

[0019] The further improvement of the present application is that,

[0020] Two vertical rails are fixedly arranged on the inner wall of the shell, and a fixed gear and a movable gear connected by a first chain are arranged on each vertical rail.

[0021] The first motor is used for driving the fixed gear to rotate, so as to drive the movable gear to move on the vertical rail.

[0022] The further improvement of the present application is that,

[0023] The moving cross beam comprises a cross beam body, a second chain, a gear, a first bevel gear and a second bevel gear; wherein,

[0024] The crossbeam body is fixedly mounted on the two moving gears;

[0025] A gear is installed at each end of the crossbeam body and connected by the second chain;

[0026] The second motor is fixedly mounted on the crossbeam body, and the output shaft of the second motor is equipped with the second helical bevel gear; the first helical bevel gear is coaxially arranged with the gear at one end of the crossbeam body, and the first helical bevel gear is meshed with the second helical bevel gear.

[0027] The detection probe is fixedly mounted on the second chain.

[0028] A further improvement of the present invention is that the detection probe is fixedly disposed on the second chain in the following specific implementation:

[0029] The detection probe is fixedly mounted on the second chain by a fixed limiting block.

[0030] A further improvement of the present invention is that,

[0031] Both the first motor and the second motor are capable of rotating in both forward and reverse directions.

[0032] A further improvement of the present invention is that,

[0033] The movable door is mounted on the housing via hinges.

[0034] A further improvement of the present invention is that,

[0035] Both the control device and the drive device are housed within the housing.

[0036] In a second aspect, the present invention provides a method for detecting carbon emissions from clean energy supply, based on the carbon emission detection device described in any one of the first aspects of the present invention, the carbon emission detection method comprising the following steps:

[0037] Place the carbon emission detection device at the detection site, open the movable door and turn on the air pump to draw air, so that the air to be detected passes through the filter, the detection probe and the drying device and enters the detection sensor for detection;

[0038] During the detection process, the photovoltaic panel and the wind power module supply power to the electrical components in the carbon emission detection device; under the control of the control device, the drive device drives the second track to move on the first track and drives the detection probe to move on the second track to increase the detection area.

[0039] After the detection is completed, the movable door is closed, and the driving device drives the second track to move on the first track and drives the detection probe to move on the second track under the control of the control device, so that the filter screen on the detection probe moves on the surface of the brush to realize self-cleaning of the filter screen.

[0040] Compared with the prior art, the present application has the following beneficial effects:

[0041] The present application discloses a kind of carbon emission detection devices of clean energy supply, in solving carbon emission detection device battery replacement or regular charging inconvenience Also realized clean energy supply;In addition, it also effectively increases the detection area, realizes the protection inside detection device and the effective self-cleaning of filter screen, can prolong the service life of detection device, also can ensure the detection accuracy after long-term use of detection device.Further explanatory, by the close fit of brush and filter screen, and the movement of detection probe on the second track, the effective self-cleaning of second track on the first track is realized. BRIEF DESCRIPTION OF DRAWINGS

[0042] In order to more clearly illustrate the technical solutions in the present application or prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description; Obviously, the drawings in the following description are some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0043] Figure 1 is the overall appearance structure schematic diagram of a kind of carbon emission detection devices of clean energy supply in the embodiment of the present application;

[0044] Figure 2 is the internal side view structure schematic diagram of a kind of carbon emission detection devices of clean energy supply in the embodiment of the present application;

[0045] Figure 3 is the internal front side structure schematic diagram of a kind of carbon emission detection devices of clean energy supply in the embodiment of the present application;

[0046] Figure 4 is the moving crossbeam rear side structure schematic diagram in the embodiment of the present application;

[0047] The figure mark is explained as follows,

[0048] 1, detection device body; 2, movable door; 2-1, brush; 3, photovoltaic panel; 4, wind power module; 5, display screen; 6, hinge;

[0049] 7, vertical rail; 8, first chain; 9, first motor; 10, driving gear; 11, driven gear; 12, detection probe; 12-1, filter screen; 12-2, fixed limiting block;

[0050] 13, moving cross beam; 13-1, second chain; 13-2, gear; 13-3, first bevel gear; 13-4, second bevel gear; 13-5, second motor;

[0051] 14, drying device; 15, detection sensor; 16, air suction pump; 17, control device. DETAILED DESCRIPTION

[0052] To make the objectives, technical solutions and advantages of the present application clearer, the technical solutions in the present application will be described clearly and completely below with reference to the drawings in the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application. In addition, the terms "comprise" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device comprising a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to the process, method, product or device.

[0053] Please refer to Figure 1 In the embodiments of the present application, a clean energy-powered carbon emission detection device is provided, which comprises a detection device body 1, a photovoltaic panel 3, a wind power module 4, a driving device and a control device 17; wherein,

[0054] The detection device body 1 comprises a shell and a detection probe 12, a drying device 14, a detection sensor 15 and an air suction pump 16 arranged in the shell; wherein, the detection probe 12, the drying device 14, the detection sensor 15 and the air suction pump 16 are communicated in sequence; the detection probe 12 is provided with a filter screen 12-1; a side of the shell close to the detection probe 12 is provided with a movable door 2, and a side of the movable door 2 close to the detection probe 12 is provided with a brush 2-1; when the movable door 2 is in a closed state, the brush 2-1 can be tightly attached to the filter screen 12-1;

[0055] The photovoltaic panel 3 and the wind power module 4 are both installed outside the shell, for supplying power to the power-consuming components in the carbon emission detection device;

[0056] The shell is internally provided with a first track and a second track; wherein the first track is fixedly installed on the inner wall of the shell, the second track is movably installed on the first track, and the detection probe 12 is movably arranged on the second track;

[0057] The driving device is used for driving the second track to move on the first track and the detection probe 12 to move on the second track under the control of the control device 17.

[0058] The technical scheme provided by the embodiment of the present application discloses a clean energy supply carbon emission detection device, which solves the inconvenience of battery replacement or regular charging of the carbon emission detection device and also realizes clean energy supply. In addition, the detection area is effectively increased, the protection of the inside of the detection device and the effective self-cleaning of the filter screen are realized, the service life of the detection device is prolonged, and the detection accuracy of the detection device after long-term use is ensured. Illustratively, the effective self-cleaning is realized through the close fit of the brush and the filter screen, the movement of the detection probe on the second track, and the movement of the second track on the first track.

[0059] In an embodiment of the present application, the movable door 2 is installed on the shell through a hinge 6. Specifically, the front side of the shell is installed with the movable door 2 through the hinge 6, and the back of the movable door 2 is provided with a brush 2-1, which is used to closely fit with the filter screen 12-1 after the movable door 2 is closed, so as to realize the effective self-cleaning of the filter screen.

[0060] In an embodiment of the present application, the outer side of the shell is also provided with a display screen 5 for displaying the detection result of the detection sensor 15.

[0061] In an embodiment of the present application, the top of the shell is installed with a photovoltaic panel 3 for photovoltaic power generation and energy supply of the carbon emission detection device, the rear side of the shell is arranged with a wind power module 4 for wind power generation and energy supply of the carbon emission detection device, the left side of the shell is installed with a display screen 5, the frontmost side inside the shell along the gas flow direction is the detection probe 12, and the drying device 14, the detection sensor 15 and the air pump 16 are sequentially connected in turn, the front side of the shell is installed with the movable door 2 through the hinge 6, the back of the movable door 2 is provided with the brush 2-1, the brush 2-1 closely fits with the filter screen 12-1 after the movable door 2 is closed, and the effective self-cleaning of the filter screen 12-1 is realized through the up, down, left and right movement of the detection probe 12.

[0062] Please refer to Figure 2In one embodiment of the present application, the driving device comprises a first motor 9, and the first track is a vertical track 7; wherein two vertical tracks 7 are arranged on the inner wall of the shell, and a driving gear 10 and a driven gear 11 connected by a first chain 8 are arranged on each vertical track 7, and the first motor 9 is used to drive the driving gear 10 to rotate to drive the driven gear 11 to move on the vertical track 7.

[0063] In a specific example, one first motor 9 is fixedly installed at each of the left and right ends of the top inner side of the shell, and vertical tracks 7 are further arranged on the left and right sides of the interior, and a first chain 8, a driving gear 10 and a driven gear 11 are arranged in the vertical track 7; the driving gear 10 is fixedly installed on the transmission shaft of the first motor 9, and is connected with the driven gear 11 through the first chain 8, and the driven gear 11 is driven to move up and down on the vertical track 7 by the forward and reverse rotation of the first motor 9.

[0064] Please refer to Figure 3 In one embodiment of the present application, the driving device further comprises a second motor 13-5, and the second track is a moving cross beam 13; wherein the moving cross beam 13 comprises a cross beam body, a second chain 13-1, a gear 13-2, a first bevel gear 13-3 and a second bevel gear 13-4; specifically, the moving cross beam 13 is arranged on the front side of the interior of the shell, and the cross beam body is fixedly installed above the driven gear 11; one gear 13-2 is arranged on each of the left and right sides of the cross beam body, the second motor 13-5 is fixedly installed on the cross beam body, and the output shaft of the second motor 13-5 is connected with the second bevel gear 13-4; the first bevel gear 13-3 is coaxially connected with one side of the gear, the first bevel gear 13-3 is engaged with the second bevel gear 13-4, the two gears 13-2 on the left and right sides are connected through the second chain 13-1, and the detection probe 12 is fixedly installed on the second chain 13-1 through a fixed limiting block 12-2.

[0065] Explanatorily, the rotation of the second motor 13-5 is transmitted to the second chain 13-1 through the first bevel gear 13-3, the second bevel gear 13-4 and the two gears on the left and right sides, and then the detection probe 12 is driven to move left and right on the second chain 13-1 through the fixed limiting block 12-2.

[0066] In one embodiment of the present application, the control device 17 and the driving device are arranged in the shell.

[0067] Please refer to Figures 1 to 4 In a specific embodiment of the present application, a carbon emission detection device with clean energy supply is provided, which comprises:

[0068] The front side of the shell of the detection device body 1 is provided with a movable door 2 through a hinge 6, the back of the movable door 2 is provided with a brush 2-1, and the brush 2-1 can be closely attached to the filter screen 12-1 after the movable door 2 is closed; wherein when the carbon emission detection device stops detection, the movable door 2 is closed, the brush 2-1 is closely attached to the filter screen 12-1, the effective self-cleaning of the filter screen 12-1 is realized through the up, down, left and right movement of the detection probe 12, and the detection of too much impurities into the detection sensor 15 is prevented, which can protect the internal device and prolong the service life of the device, and also ensure the accuracy of the detection result of the device.

[0069] The top of the shell of the detection device body 1 is provided with a photovoltaic panel 3, and the rear side is provided with a wind power module 4, so that the photovoltaic-wind power integrated cleaning energy supply is realized.

[0070] As shown in Figure 3 and Figure 4 The inside of the shell is provided with a vertical rail 7, the inside of the vertical rail 7 is provided with a first chain 8, a fixed gear 10 and a movable gear 11; wherein the fixed gear 10 is connected with a first motor 9 fixed on the top of the inside of the shell, the movable gear 11 is connected with a movable cross beam 13, the up / down movement of the movable cross beam 13 is realized through the forward / reverse rotation of the first motor 9; the inside of the movable cross beam 13 is provided with a second chain 13-1, and one gear 13-2 is arranged at each end of the movable cross beam 13, the back of the movable cross beam 13 is fixed with a second motor 13-5, a first bevel gear 13-3 and a second bevel gear 13-4, one end of the second bevel gear 13-4 is connected with the second motor 13-5, and the other end is meshed with the first bevel gear 13-3; the second chain 13-1 is fixedly connected with a detection probe 12 for sampling through a fixed limiting block 12-2, and the left / right movement of the detection probe 12 is realized through the forward / reverse rotation of the second motor 13-5. Further, the up / down / left / right movement of the detection probe 12 is realized through the up / down movement of the movable cross beam 13 and the left / right movement of the second chain 13-1, and the detection range is greatly increased.

[0071] In the embodiment of the application, the working principle of the carbon emission detection device with clean energy supply includes:

[0072] Firstly, the carbon emission detection device is placed in the detection site, the movable door 2 is opened, and the air suction pump 16 is started to suck air, so that the air to be detected passes through the filter screen 12-1, the detection probe 12, the drying device 14 and enters the detection sensor 15 for detection; further, the detection result can be displayed on the display screen 5;

[0073] Secondly, in the detection process, the driving device is controlled by the control device 17 to realize the movement of the detection probe 12 to effectively increase the detection area; wherein the up and down movement of the detection probe 12 can be realized by rotating the first motor 9; the left and right movement of the detection probe 12 can be realized by rotating the second motor 13-5;

[0074] Thirdly, in the detection process, the top photovoltaic panel 3 generates photovoltaic power to supply energy for the detection device; at the same time, the wind power module 4 generates wind power to supply energy for the detection device, realizing the clean energy supply of photovoltaic-wind power integration, solving the problem of inconvenience of replacing the battery or regular charging of the traditional carbon emission detection device;

[0075] Finally, after the detection is completed, the movable door 2 is closed to prevent more dust from entering the inside of the detection device, thereby protecting the detection device; after the movable door 2 is closed, the brush 2-1 on the back of the movable door 2 is tightly attached to the filter screen 12-1; the detection probe 12 moves on the surface of the brush 2-1 up, down, left and right by controlling the driving device through the control device 17, thereby realizing the effective self-cleaning of the filter screen 12-1, preventing the accumulation of dust and impurities on the surface of the filter screen 12-1, ensuring the detection accuracy of the detection device after long-term use, and prolonging the service life of the detection device.

[0076] In summary, the carbon emission detection device with clean energy supply provided by the embodiment of the application belongs to the technical field of detection devices, which comprises a detection device body, a display screen on the left side of the detection device body, a detection probe at the front inside of the detection device body, a drying device, a detection sensor and a suction pump connected in turn from front to back inside the detection device body, and a control device arranged inside the detection device body; a filter screen is arranged on the front side of the detection probe and fixed on the second chain through a fixed limiting block; a photovoltaic panel is installed on the top outside of the detection device body, and a wind power module is arranged on the outside of the back side of the detection device body; a first motor is fixed on each of the left and right ends of the top inside of the detection device body, and vertical rails are arranged on the left and right sides inside the detection device body; a first chain, a fixed gear and a movable gear are arranged in the vertical rails; the fixed gear is fixed on the transmission shaft of the first motor and connected with the movable gear through the first chain; a moving cross beam is arranged on the front inside of the detection device body and fixed on the movable gear, and the moving cross beam comprises a second chain, a gear, a first bevel gear, a second bevel gear and a second motor; a movable door is installed on the front side of the detection device body through a hinge, and a brush is arranged on the back of the movable door and tightly attached to the filter screen after the movable door is closed. In the technical scheme provided by the embodiment of the application, photovoltaic and wind power are utilized to solve the inconvenience of replacing the battery or regular charging of the carbon emission detection device and realize clean energy supply; in addition, the detection area is effectively increased, the protection of the inside of the detection device and the effective self-cleaning of the filter screen are realized, the detection accuracy of the detection device after long-term use is ensured, and the service life of the detection device is prolonged.

[0077] It should be pointed out finally that the above embodiments are only used to illustrate the technical solutions of the present application but not to limit it. Although the present application has been described in detail with reference to the above embodiments, it should be understood by those skilled in the art that the specific embodiments of the present application can be modified or equivalently replaced without departing from the spirit and scope of the present application, and any modification or equivalent replacement should be covered within the protection scope of the claims of the present application.

Claims

1. A self-cleaning, energy-powered carbon emission detection device, comprising: The carbon emission detection device comprises a detection device body (1), a photovoltaic panel (3), a wind power module (4), a driving device and a control device (17); wherein, The detection device body (1) comprises a shell, a detection probe (12), a drying device (14), a detection sensor (15) and a suction pump (16) arranged in the shell; wherein, the detection probe (12), the drying device (14), the detection sensor (15) and the suction pump (16) are sequentially communicated; the detection probe (12) is provided with a filter screen (12-1); the side of the shell close to the detection probe (12) is provided with a movable door (2); the side of the movable door (2) close to the detection probe (12) is fixedly provided with a brush (2-1); when the movable door (2) is in a closed state, the brush (2-1) can be tightly attached to the filter screen (12-1); The photovoltaic panel (3) and the wind power module (4) are both installed outside the shell, for supplying power to the power components in the carbon emission detection device; The shell is further provided with a first track and a second track; wherein, the first track is fixedly installed on the inner wall of the shell, the second track is movably installed on the first track, and the detection probe (12) is movably arranged on the second track; The driving device is used for driving the second track to move on the first track and driving the detection probe (12) to move on the second track under the control of the control device (17). Further comprising:

2. A self-cleaning carbon emission detection device according to claim 1, wherein, A display screen (5) is fixedly arranged outside the shell, for displaying the detection results of the detection sensor (15).

3. The carbon emission detection device according to claim 1, wherein, The driving device comprises a first motor (9) and a second motor (13-5); The first track is a vertical track (7); The second track is a moving cross beam (13).

4. The carbon emission detection device according to claim 3, wherein, Two vertical tracks (7) are fixedly arranged on the inner wall of the shell, and a fixed gear (10) and a movable gear (11) connected by a first chain (8) are arranged on each vertical track (7); The first motor (9) is used for driving the fixed gear (10) to rotate, so as to drive the movable gear (11) to move on the vertical track (7).

5. The carbon emission detection device according to claim 4, wherein, The moving cross beam (13) comprises a cross beam body, a second chain (13-1), a gear (13-2), a first bevel gear (13-3) and a second bevel gear (13-4); wherein, The cross beam body is fixedly installed on two movable gears (11); One gear (13-2) is installed at each end of the cross beam body, and the two gears (13-2) are connected by the second chain (13-1). ​ The second motor (13-5) is fixedly installed on the beam body, and an output shaft of the second motor (13-5) is provided with the second bevel gear (13-4); the first bevel gear (13-3) is coaxially arranged with the gear (13-2) at one end of the beam body, and the first bevel gear (13-3) is in meshing connection with the second bevel gear (13-4). The detection probe (12) is fixedly arranged on the second chain (13-1).

6. A self-cleaning carbon emission detection device according to claim 5, wherein, The detection probe (12) is fixedly arranged on the second chain (13-1) in the following specific implementation form, The detection probe (12) is fixedly arranged on the second chain (13-1) through the fixed limiting block (12-2).

7. The clean-powered carbon emission detection device according to claim 3, wherein, The first motor (9) and the second motor (13-5) can rotate in both forward and reverse directions.

8. The clean-powered carbon emission detection device according to claim 1, wherein, The movable door (2) is installed on the shell through the hinge (6).

9. The clean-powered carbon emission detection device according to claim 1, wherein, The control device (17) and the driving device are arranged in the shell.

10. A method of cleaning energy-supplied carbon emission detection, characterized by, The carbon emission detection method based on any one of claims 1 to 9 comprises the following steps: Place the carbon emission detection device at a detection site, open the movable door (2) and start the air suction pump (16) to perform air suction, so that the air to be detected enters the detection sensor (15) through the filter screen (12-1), the detection probe (12) and the drying device (14) for detection; During the detection process, the photovoltaic panel (3) and the wind power module (4) supply power to the electrical components in the carbon emission detection device; the driving device drives the second track to move on the first track and drives the detection probe (12) to move on the second track under the control of the control device (17), so as to increase the detection area; After the detection is completed, the movable door (2) is closed, and the driving device drives the second track to move on the first track and drives the detection probe (12) to move on the second track under the control of the control device (17), so that the filter screen (12-1) on the detection probe (12) moves on the surface of the brush (2-1), to realize self-cleaning of the filter screen (12-1).

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