A carbon emission detection device

CN224636508UActive Publication Date: 2026-08-14HANGZHOU BIXI DIGITAL CARBON TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-10
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

[0005]针对上述存在的技术不足,本实用新型的目的是提供一种碳排放检测装置,以解决上述背景技术中提出的企业排放烟气会混合一定数量的固体颗粒颗粒物,导致检测设备运行一段时间之后产生积灰问题,影响检测设的正常使用和检测精度问题

Benefits of technology

[0054]本实用新型,通过采样管道直接连接在企业排烟设备上进行实时采样,方便检测设备实时检测企业的碳排放状况,在采样管道上直接使用装填气缸在装填箱、采样管道、回收箱之间进行滤材的更换,保证采样管道内的滤材可以定时定期更换,防止固体颗粒堵塞滤材,影响到采样管道和检测仪主体的配合检测。

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Abstract

This utility model discloses a carbon emission detection device, belonging to the field of carbon emission detection technology. It includes a sampling pipe arranged on the side of the detector body, filter media arranged inside the sampling pipe for filtering out solid particles in the test gas, a mounting plate arranged on the bottom of the detector body for mounting the detector body, a base plate arranged on the bottom of the mounting plate, and a support mechanism arranged between the mounting plate and the detector body for mounting the device. This utility model allows for real-time sampling via a sampling pipe directly connected to the enterprise's exhaust equipment, facilitating real-time monitoring of the enterprise's carbon emissions. A filling cylinder is used directly on the sampling pipe to replace the filter media between the filling box, sampling pipe, and recovery box, ensuring that the filter media in the sampling pipe can be replaced regularly and periodically, preventing solid particles from clogging the filter media and affecting the coordinated detection between the sampling pipe and the detector body.
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Description

Technical Field

[0001] This utility model relates to the field of carbon emission detection technology, and specifically to a carbon emission detection device. Background Technology

[0002] Carbon emissions refer to the amount of greenhouse gases emitted during the production, transportation, use, and recycling of a product.

[0003] Chinese Patent Publication No. CN221463264U discloses a carbon emission monitoring device, including a monitoring device body. A base is fixedly connected to the bottom of the monitoring device body, and eight vertical plates are fixed to the bottom of the base. The eight vertical plates are arranged in pairs, with a movable wheel positioned between each pair of vertical plates. A connecting plate is provided at the bottom of the base, and two mounting frames are fixedly connected to both sides of the connecting plate. This invention facilitates the movement of the monitoring device body through the arrangement of mounting frames, mounting cylinders, connecting columns, and springs. Once the monitoring device body is moved to a certain position, the movable wheels can be easily fixed to prevent further movement of the monitoring device body and thus avoid affecting the measurement data. The arrangement of movable columns, fixed plates, and protrusions ensures vertical movement when the cylinder pushes the connecting plate. The fixed plate and protrusions increase the friction between the fixed plate and the ground, thereby ensuring the stability of the monitoring device body.

[0004] However, under certain testing conditions, it is necessary to conduct tests on the flue gas emitted by enterprises. In this case, the testing equipment needs to be installed on the enterprise's emission equipment. However, the flue gas emitted by enterprises will be mixed with a certain amount of solid particulate matter, which will cause the testing equipment to accumulate dust after a period of operation, affecting the normal use of the testing equipment and the testing accuracy. Utility Model Content

[0005] To address the aforementioned technical shortcomings, the purpose of this utility model is to provide a carbon emission detection device to solve the problem mentioned in the background art, which states that enterprise emissions flue gas mixes with a certain amount of solid particulate matter, causing dust accumulation in the detection equipment after a period of operation, thus affecting the normal use and detection accuracy of the equipment.

[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0007] A carbon emission detection device, the main body of the detector, is characterized in that it further includes:

[0008] The sampling pipe is located on the side of the main body of the detector;

[0009] Filter media, arranged inside the sampling pipe, is used to filter out solid particles in the test gas;

[0010] The mounting plate is located on the bottom side of the main body of the detector and is used to mount the main body of the detector.

[0011] The base plate is located on the bottom side of the mounting plate;

[0012] A support mechanism, located between the mounting plate and the main body of the detector, is used to install this device;

[0013] A filter arrangement mechanism is located on the top side of the sampling pipe and is used to place filter media inside the sampling pipe;

[0014] The filter replacement mechanism is located at the bottom of the sampling pipeline and is used to store used filter media.

[0015] The support device is also equipped with a lifting assembly for adjusting the height and a driving assembly for driving the lifting. The filter arrangement mechanism and filter replacement mechanism are also equipped with a replacement assembly for replacing the sampling pipe and a sealing assembly for sealing the sampling pipe.

[0016] Preferably, the support mechanism includes:

[0017] Fixed support columns are arranged on the top side of the base plate;

[0018] The movable support columns are located on the bottom side of the mounting plate and work in conjunction with the fixed support columns to support the mounting plate.

[0019] Preferably, the lifting assembly includes:

[0020] Rotate the lifting rod and position it on the bottom side of the mounting plate;

[0021] The rotating shaft is located at both ends of the rotating lifting rod;

[0022] A fixing block is placed on the bottom side of the mounting plate, and its position is adjusted by rotating the rotating shaft.

[0023] Preferably, the driving component includes:

[0024] The substrate is arranged at the top of the fixed support column;

[0025] A drive motor, located at the top of the substrate, is used to provide driving force;

[0026] The lead screw is located at the output end of the drive motor;

[0027] A drive block, located at the bottom of the rotating lifting rod, is used to drive the rotating lifting rod to rotate at the point of the rotating axis.

[0028] A positioning block, located on the top side of the substrate, is used to restrict the rotation of the drive screw in place.

[0029] Preferably, the filter arrangement mechanism includes:

[0030] The filling box is located on the top side of the sampling pipeline;

[0031] The first movable door is located on the side of the filling box and is used to place filter media inside the filling box;

[0032] The feeding cylinder is located on the side of the filling box;

[0033] The feeding pusher plate is located at the output end of the feeding cylinder, which extends into the filling box.

[0034] The movable groove is located on the inner wall of the filling box;

[0035] A movable slider, positioned between the movable trough and the filter media, is used to restrict the movement trajectory of the stored filter media.

[0036] Preferably, the filter replacement mechanism includes:

[0037] The recycling bin is located at the bottom of the sampling pipeline;

[0038] The second movable door is located on the side of the recycling bin and is used to remove the waste filter material stored inside the recycling bin.

[0039] The recovery cylinder is located on the side of the recovery box;

[0040] A recovery pusher plate is located on the output end of the recovery cylinder, which extends into the recovery box, and is used to move the filter media.

[0041] The limiting groove is formed on the inner wall of the recycling bin;

[0042] The limiting slider is arranged between the limiting groove and the waste filter media, and works with the limiting groove to restrict the range of motion of the waste filter media.

[0043] Preferably, the replacement component includes:

[0044] The loading cylinder is located on the top side of the loading box;

[0045] A filling pusher plate, located at the output end of the filling cylinder extending into the filling box, is used to push the filter media in the filling box into the sampling pipe or the filter media in the sampling pipe into the recovery box.

[0046] Preferably, the enclosure component includes:

[0047] The filling and storage compartment is located on the side of the filling box;

[0048] A closed filling cylinder is positioned on the side of the filling and storage compartment;

[0049] A filling and sealing push plate is arranged at the output end of the filling and sealing cylinder extending into the filling box, and is used to seal the connection between the filling box and the sampling pipeline.

[0050] The retractable sealed cylinder is placed at the bottom of the sampling pipeline;

[0051] The recycling and storage compartment is located between the recycling enclosed cylinder and the recycling box;

[0052] A recovery sealing push plate is placed at the output end of the recovery sealing cylinder extending into the recovery box, and is used to seal the connection between the recovery box and the sampling pipeline.

[0053] The beneficial effects of this utility model are as follows:

[0054] This invention allows for real-time sampling via a sampling pipe directly connected to the enterprise's smoke exhaust equipment. This facilitates real-time monitoring of the enterprise's carbon emissions. A filling cylinder is used directly on the sampling pipe to replace the filter media between the filling box, sampling pipe, and recovery box, ensuring that the filter media in the sampling pipe can be replaced regularly and periodically. This prevents solid particles from clogging the filter media and affecting the coordinated detection between the sampling pipe and the main body of the detector.

[0055] In order to improve the applicability of the device, this utility model uses fixed support columns and movable support columns as the base support for the main body of the detector. The fixed support columns and movable support columns can be adjusted in height by telescoping, so as to meet the purpose of installing and using the main body of the detector and the sampling pipe at different height positions.

[0056] In order to facilitate the use of the device, the present invention can store new and old filter media in the filling box and the recycling box. With the help of the filling cylinder and the filling push plate, the replacement of filter media can be automated. Maintenance personnel only need to replenish the new filter media and recycle the old filter media periodically, which reduces the number of equipment maintenance and the time spent in the dusty working environment, thereby reducing the labor intensity. Attached Figure Description

[0057] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0058] Figure 1 A three-dimensional structural schematic diagram of a carbon emission detection device provided in an embodiment of this utility model;

[0059] Figure 2 A top view of a carbon emission detection device provided in an embodiment of this utility model;

[0060] Figure 3 This is a side view of a carbon emission detection device provided in an embodiment of the present invention.

[0061] Figure 4 A schematic diagram of the filling box portion of a carbon emission detection device provided in an embodiment of this utility model;

[0062] Figure 5 This is a schematic diagram of the recycling bin portion of a carbon emission detection device provided in an embodiment of the present invention.

[0063] Explanation of reference numerals in the attached figures:

[0064] 1. Detector body; 101. Sampling pipe; 102. Filter media; 2. Mounting plate; 201. Base plate; 202. Fixed support column; 203. Movable support column; 204. Rotating lifting rod; 205. Rotating shaft; 206. Fixing block; 3. Base plate; 301. Drive motor; 302. Drive screw; 303. Drive block; 304. Positioning block; 4. Filling box; 401. Movable door one; 402. Feeding cylinder; 403. Feeding... Push plate; 404, movable groove; 405, movable slider; 406, loading cylinder; 407, loading push plate; 408, loading storage bin; 409, loading sealing cylinder; 410, loading sealing push plate; 5, recycling bin; 501, movable door two; 502, recycling cylinder; 503, recycling push plate; 504, limit groove; 505, limit slider; 506, recycling sealing cylinder; 507, recycling storage bin; 508, recycling sealing push plate. Detailed Implementation

[0065] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0066] Example 1:

[0067] like Figures 1 to 5 As shown, this utility model provides a carbon emission detection device. The detector body 1 also includes a sampling pipe 101 arranged on the side of the detector body 1, a filter material 102 arranged in the sampling pipe 101 for filtering out solid particles in the test gas, a mounting plate 2 arranged on the bottom side of the detector body 1 for mounting the detector body 1, a bottom plate 201 arranged on the bottom side of the mounting plate 2, a support mechanism for mounting the device arranged between the mounting plate 2 and the detector body 1, a filter arrangement mechanism arranged on the top side of the sampling pipe 101 for placing the filter material 102 in the sampling pipe 101, and a filter replacement mechanism arranged on the bottom side of the sampling pipe 101 for storing used filter material 102.

[0068] The support device is also equipped with a lifting assembly for adjusting the height and a driving assembly for driving the lifting. The filter arrangement mechanism and filter replacement mechanism are also equipped with a replacement assembly for replacing the sampling pipe 101 and a sealing assembly for sealing the sampling pipe 101.

[0069] Specifically, the replacement assembly includes a filling cylinder 406 arranged on the top side of the filling box 4, and a filling pusher plate 407 arranged at the output end of the filling cylinder 406 extending into the filling box 4 for pushing the filter media 102 in the filling box 4 into the sampling pipe 101 or pushing the filter media 102 in the sampling pipe 101 into the recovery box 5. The output end of the filling cylinder 406 pushes the waste filter media 102 in the sampling pipe 101 into the recovery box 5 through the filling pusher plate 407, or pushes the new filter media 102 into the sampling pipe 101 through the filling cylinder 406 and the filling pusher plate 407.

[0070] Specifically, the sealing assembly includes a storage compartment 408 disposed on the side of the filling box 4, a filling and sealing cylinder 409 disposed on the side of the filling and storage compartment 408, a filling and sealing push plate 410 disposed at the output end of the filling and sealing cylinder 409 extending into the filling box 4 for sealing the connection between the filling box 4 and the sampling pipe 101, a recovery and sealing cylinder 506 disposed on the bottom side of the sampling pipe 101, a recovery and storage compartment 507 disposed between the recovery and sealing cylinder 506 and the recovery box 5, and a recovery and sealing... The cylinder 506 extends to the output end inside the recycling box 5, which is used to close the recycling sealing push plate 508 at the connection between the recycling box 5 and the sampling pipe 101. The filling sealing push plate 410 and the recycling sealing push plate 508 are opened. The output end of the filling sealing cylinder 409 pulls the filling sealing push plate 410 back into the filling storage bin 408, and the output end of the recycling sealing cylinder 506 pulls the recycling sealing push plate 508 back into the recycling storage bin 507, thereby opening the connection between the filling box 4, the recycling box 5 and the detector body 1.

[0071] Example 2:

[0072] Based on Example 1, in order to improve the applicability of the device, fixed support columns and movable support columns are used as the base support for the main body of the detector. The overall height of the fixed support columns and movable support columns can be adjusted by telescoping.

[0073] Specifically, the support mechanism includes a fixed support column 202 arranged on the top side of the base plate 201 and a movable support column 203 arranged on the bottom side of the mounting plate 2, which cooperates with the fixed support column 202 to support the mounting plate 2. The movable support column 203 rises within the fixed support column 202 to adjust the overall height.

[0074] Specifically, the lifting assembly includes a rotating lifting rod 204 arranged on the bottom side of the mounting plate 2, a rotating shaft 205 arranged at both ends of the rotating lifting rod 204, a fixed block 206 that adjusts the position of the mounting plate 2 by rotating the rotating shaft 205, and a driving block 303 that drives the rotating lifting rod 204 to rotate on the movable support column 203. The distance between the base plate 3 and the mounting plate 2 is adjusted by changing the state of the rotating lifting rod 204.

[0075] Specifically, the driving assembly includes a base plate 3 disposed at the top of the fixed support column 202, a drive motor 301 disposed at the top of the base plate 3 for providing driving force, a drive screw 302 disposed at the output end of the drive motor 301, a drive block 303 disposed at the bottom end of the rotating lifting rod 204 for driving the rotating lifting rod 204 to rotate at the point of the rotating shaft 205, and a positioning block 304 disposed on the top side of the base plate 3 for restricting the rotation of the drive screw 302 in place. The output end of the drive motor 301 drives the drive screw 302 to rotate. The rotating drive screw 302 is restricted by the positioning block 304 to maintain stable rotation. When the drive screw 302 rotates, it can drive the drive block 303 to move.

[0076] Example 3:

[0077] Based on Example 1, in order to facilitate the use of the device, new and old filter media can be stored in the filling box and the recycling box. With the help of the filling cylinder and the filling push plate, the replacement of filter media can be automated.

[0078] Specifically, the filtration arrangement mechanism includes a filling box 4 arranged on the top side of the sampling pipe 101, a movable door 401 arranged on the side of the filling box 4 for placing filter material 102 inside the filling box 4, a feeding cylinder 402 arranged on the side of the filling box 4, a feeding push plate 403 arranged on the feeding cylinder 402 extending to the output end inside the filling box 4, the output end of the feeding cylinder 402 pushes the new filter material 102 to the bottom of the filling push plate 407 through the feeding push plate 403, a movable groove 404 opened on the inner wall of the filling box 4, and a movable slider 405 arranged between the movable groove 404 and the filter material 102 to restrict the movement trajectory of the filter material 102. The new filter material 102 is restricted by the movable groove 404 and the movable slider 405 inside the filling box 4 to ensure that the movement trajectory of the new filter material 102 is fixed.

[0079] Specifically, the filter replacement mechanism includes a recycling box 5 arranged at the bottom of the sampling pipe 101, a movable door 501 arranged on the side of the recycling box 5 for taking out the waste filter material 102 stored in the recycling box 5, a recycling cylinder 502 arranged on the side of the recycling box 5, a recycling push plate 503 arranged on the output end of the recycling cylinder 502 extending into the recycling box 5 for pushing the filter material 102 to move. The output end of the recycling cylinder 502 moves the waste filter material 102 into the interior of the recycling box 5 for storage through the recycling push plate 503. A limiting groove 504 is opened on the inner wall of the recycling box 5. A limiting slider 505 is arranged between the limiting groove 504 and the waste filter material 102 and works with the limiting groove 504 to limit the range of movement of the waste filter material 102. The movement of the waste filter material 102 in the recycling box 5 is limited by the limiting groove 504 and the limiting slider 505 to ensure that the storage position of the waste filter material 102 is fixed.

[0080] Working principle: When using this device, the height of the mounting plate 2 needs to be adjusted first to ensure that the detector body 1 and the sampling pipe 101 are installed at the appropriate height. The drive motor 301 is started, and the output end of the drive motor 301 drives the drive screw 302 to rotate. The rotating drive screw 302 is restricted by the positioning block 304 to maintain the stability of the rotation. When the drive screw 302 rotates, it can drive the drive block 303 to move. The moving drive block 303 drives the rotating lifting rod 204 to rotate on the movable support column 203. By changing the state of the rotating lifting rod 204, the distance between the base plate 3 and the mounting plate 2 is adjusted, so that the movable support column 203 is raised within the fixed support column 202, thereby achieving the purpose of adjusting the overall height.

[0081] During the use of the detector body 1 and the sampling pipe 101, the filter media 102 inside the sampling pipe 101 can filter out solid particles in the collected flue gas, preventing the detector body 1 from being affected. However, the filter media 102 needs to be replaced periodically. When replacing the filter media 102, the filling sealing push plate 410 and the recovery sealing push plate 508 need to be opened. The output end of the filling sealing cylinder 409 pulls the filling sealing push plate 410 back into the filling and receiving chamber 408, and the output end of the recovery sealing cylinder 506 pulls the recovery sealing push plate 508 back into the recovery and receiving chamber 508. 7. This opens the connection between the filling box 4, the recycling box 5, and the main body of the detector 1. At this time, the filling cylinder 406 is activated. The output end of the filling cylinder 406 pushes the waste filter material 102 in the sampling pipe 101 into the recycling box 5 through the filling push plate 407. Then, the recycling cylinder 502 is activated. The output end of the recycling cylinder 502 moves the waste filter material 102 into the recycling box 5 for storage through the recycling push plate 503. The movement of the waste filter material 102 in the recycling box 5 is restricted by the limiting groove 504 and the limiting slider 505 to ensure that the storage position of the waste filter material 102 is fixed.

[0082] Then, the connection between the recycling box 5 and the sampling pipe 101 is closed, and the feeding cylinder 402 is activated. The output end of the feeding cylinder 402 pushes the new filter material 102 to the bottom of the filling push plate 407 through the feeding push plate 403. The new filter material 102 is restricted by the movable groove 404 and the movable slider 405 in the filling box 4 to ensure that the movement trajectory of the new filter material 102 is fixed. Then, the new filter material 102 can be pushed into the sampling pipe 101 through the filling cylinder 406 and the filling push plate 407. The connection between the filling box 4 and the sampling pipe 101 is closed using the filling closing push plate 410. The filter material 102 can be replaced once in one cycle. The maintenance personnel only need to place the new filter material 102 in the filling box 4 through the movable door 1 401 and take out the waste filter material 102 in the recycling box 5 through the movable door 2 501.

[0083] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.

Claims

1. A carbon emission detection device comprising a detector main body (1), characterized in that, Also includes: The sampling pipe (101) is arranged on the side of the main body (1) of the detector; Filter media (102) is arranged inside the sampling pipe (101) to filter out solid particles in the test gas; Mounting plate (2) is arranged on the bottom side of the detector body (1) for mounting the detector body (1). The base plate (201) is arranged on the bottom side of the mounting plate (2); A support mechanism is arranged between the mounting plate (2) and the main body of the detector (1) for mounting the device; A filter arrangement mechanism is arranged on the top side of the sampling pipe (101) for placing filter media (102) inside the sampling pipe (101). A filter replacement mechanism is arranged on the bottom side of the sampling pipe (101) for storing used filter media (102). The support device is also equipped with a lifting assembly for adjusting the height and a driving assembly for driving the lifting. The filter arrangement mechanism and filter replacement mechanism are also equipped with a replacement assembly for replacing the sampling pipe (101) and a sealing assembly for sealing the sampling pipe (101).

2. A carbon emission detection device as claimed in claim 1, wherein, The supporting structure includes: Fixed support column (202) is arranged on the top side of the base plate (201); The movable support column (203) is arranged on the bottom side of the mounting plate (2) and cooperates with the fixed support column (202) to support the mounting plate (2).

3. The carbon emission detection device as described in claim 1, characterized in that, The lifting assembly includes: Rotate the lifting rod (204) and place it on the bottom side of the mounting plate (2); A rotating shaft (205) is arranged at both ends of the rotating lifting rod (204); A fixing block (206) is arranged on the bottom side of the mounting plate (2) and, in conjunction with the rotating shaft (205), adjusts the position of the mounting plate (2) by rotation.

4. The carbon emission detection device as described in claim 1, characterized in that, The driving component includes: The substrate (3) is arranged at the top of the fixed support column (202); A drive motor (301) is arranged at the top of the substrate (3) to provide driving force; The drive screw (302) is located at the output end of the drive motor (301); A drive block (303) is arranged at the bottom end of the rotating lifting rod (204) for driving the rotating lifting rod (204) to rotate at the point of the rotating shaft (205); A positioning block (304) is arranged on the top side of the substrate (3) to restrict the drive screw (302) from rotating in place.

5. A carbon emission detection device as described in claim 1, characterized in that, The filtration arrangement mechanism includes: The filling box (4) is arranged on the top side of the sampling pipe (101); The movable door (401) is arranged on the side of the filling box (4) and is used to place the filter material (102) inside the filling box (4). The feeding cylinder (402) is arranged on the side of the filling box (4); The feeding pusher plate (403) is arranged at the output end of the feeding cylinder (402) extending into the filling box (4); The movable groove (404) is opened on the inner wall of the filling box (4); A movable slider (405) is arranged between the movable groove (404) and the filter media (102) to limit the movement trajectory of the stored filter media (102).

6. The carbon emission detection device as described in claim 1, characterized in that, The filter replacement mechanism includes: A recycling bin (5) is placed on the bottom side of the sampling pipe (101); The second movable door (501) is located on the side of the recycling bin (5) and is used to remove the waste filter material (102) stored in the recycling bin (5). The recovery cylinder (502) is arranged on the side of the recovery box (5); A recovery pusher plate (503) is arranged on the output end of the recovery cylinder (502) extending into the recovery box (5) for pushing the filter media (102) to move; A limiting groove (504) is formed on the inner wall of the recycling bin (5); The limiting slider (505) is arranged between the limiting groove (504) and the waste filter material (102) to limit the range of motion of the waste filter material (102) in conjunction with the limiting groove (504).

7. The carbon emission detection apparatus of claim 1, wherein, The replacement component includes: A loading cylinder (406) is arranged on the top side of the loading box (4); A filling pusher plate (407) is arranged at the output end of the filling cylinder (406) extending into the filling box (4) for pushing the filter media (102) in the filling box (4) into the sampling pipe (101) or pushing the filter media (102) in the sampling pipe (101) into the recovery box (5).

8. The carbon emission detection apparatus of claim 1, wherein, The enclosed component includes: A filling and storage compartment (408) is arranged on the side of the filling box (4); A filling and sealing cylinder (409) is arranged on the side of the filling and receiving compartment (408); A filling and sealing push plate (410) is arranged at the output end of the filling and sealing cylinder (409) extending into the filling box (4) to seal the connection between the filling box (4) and the sampling pipe (101); A closed-loop cylinder (506) is disposed on the bottom side of the sampling pipe (101); The recycling and storage compartment (507) is located between the recycling closed cylinder (506) and the recycling box (5); A recovery sealing push plate (508) is arranged at the output end of the recovery sealing cylinder (506) extending into the recovery box (5) to seal the connection between the recovery box (5) and the sampling pipe (101).

Citation Information

Patent Citations

  • Carbon emission monitoring device

    CN221463264U