Portable water rock weathering carbon sink detector

By designing a portable water body rock weathering carbon sink detector, the problems of inconvenient device carrying and inaccurate sampling results were solved, achieving efficient and stable water body carbon sink detection.

CN223926421UActive Publication Date: 2026-02-17INST OF GEOCHEMISTRY CHINESE ACAD OF SCI
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Patent Information

Application Number
CN202423075639.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-02-17
Estimated Expiration
2034-12-13

AI Technical Summary

Technical Problem

In existing technologies, the devices are inconvenient to carry and the sampling results are inaccurate when staff collect samples alone, affecting the accuracy of water carbon sequestration data.

Method used

A portable water body rock weathering carbon sink detector was designed, including a carrier box, a collection tube and a carbon sink detector. The collection tube is divided into collection chambers by multiple sealing plates and is fixed by straps and buckles, which ensures good stability when carried. The collection tube is placed vertically in the water. After the sealing plates are pulled out, water at different depths enters the chambers, and the detection sensor detects the carbon sink values ​​at different depths.

Benefits of technology

This improves the portability of the device and the accuracy of the detection data, ensuring the stability and precision of the sampling results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the field of water body carbon sink detection, and provides a portable water body rock weathering carbon sink detector which comprises a bearing box body, a partition plate is arranged in the bearing box body, a collecting pipe and a carbon sink detector which are arranged in the bearing box body are arranged on the two sides of the partition plate respectively, bandages which are distributed at intervals are arranged in the bearing box body, and the carbon sink detector is arranged in the bearing box body. A buckle for fixing the collecting tube and the carbon sink detector is arranged between the two binding bands, and a handle is arranged at the top of the bearing box body; a plurality of sealing plates distributed at intervals are arranged in the collecting pipe, the interior of the collecting pipe is divided into a plurality of collecting cavities by the sealing plates, a collecting opening penetrating through the collecting pipe is formed in each collecting cavity, and a sealing assembly for blocking the collecting opening is arranged on each collecting opening; according to the utility model, the acquisition device is fixed in the acquisition box body, so that the device is convenient to carry, the safety of the device is improved, and meanwhile, the data accuracy is improved through multi-point acquisition.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the field of water body carbon sink detection, concretely is a portable water body rock weathering carbon sink detector. BACKGROUND

[0002] Water body carbon sink refers to the ability of water body to absorb and store carbon dioxide in the atmosphere, through water body carbon sink detection, the carbon absorption and storage of water body can be understood, which provides scientific basis for formulating emission reduction policy and promoting sustainable development.

[0003] Especially for the unique water chemical characteristics of loess area, water chemical characteristics can reflect the content and distribution characteristics of dissolved inorganic carbon (DIC) in water body, combined with flow data, and then evaluate the rock weathering carbon sink flux of loess area.

[0004] In the process of measuring water body carbon sink, water body needs to be sampled, in the case of sampling alone, the staff will carry the detector and sampling tool at the same time, so that it is inconvenient to carry, and in the process of collecting water body, there is lack of multi-point collection, which affects the accuracy of water body carbon sink data. UTILITY MODEL CONTENT

[0005] In order to solve the above technical problems, the utility model provides a kind of portable water body rock weathering carbon sink detector, to solve the problem of existing technology in the case of staff sampling alone, there is no device convenient to carry and sampling result is inaccurate.

[0006] A kind of portable water body rock weathering carbon sink detector, including bearing box, the bearing box is equipped with partition, the both sides of the partition are equipped with collection pipe and carbon sink detector placed in the bearing box, the inside of the bearing box is equipped with interval distribution bandage, buckle for fixing the collection pipe and the carbon sink detector is equipped between two bandages, the top of the bearing box is equipped with handle;

[0007] The collection pipe is equipped with multiple interval distribution sealing plate, the sealing plate divides the collection pipe into multiple collection chambers, each collection chamber is equipped with collection port penetrating the collection pipe, and the collection port is equipped with sealing assembly for plugging.

[0008] Preferably, the inside of the bearing box is equipped with foam plate, the foam plate is equipped with bearing groove, and the collection pipe and the carbon sink detector are placed in the bearing groove.

[0009] Preferably, the top of the bearing box is open, and the top opening position is equipped with a cover connected by rotation, and the cover is equipped with a switch lock for locking with the bearing box.

[0010] Preferably, the carbon sink detector is connected with an external power supply and is provided with a plurality of detection sensors connected through electric wires.

[0011] Preferably, the sealing assembly comprises sealing plugs made of rubber and inserted into the collection ports, and pull rods connected to the top of each sealing plug and used to pull out all the sealing plugs from the collection ports.

[0012] Preferably, the collection tube is provided with an opening on one side, each sealing plate is provided with a sealing ring abutting against the inner wall of the collection tube, and the center of each sealing plate is provided with a linkage pull rod penetrating through and fixedly connected to the sealing plate.

[0013] Preferably, the linkage pull rod is provided with an abutting disc at the end extending out of the collection chamber, and the abutting disc abuts against the side wall of the collection tube when the linkage pull rod is inserted into the collection chamber.

[0014] Compared with the prior art, the carbon sink detector has the following beneficial effects:

[0015] 1. The collection tube and the carbon sink detector are stored in the bearing box together, are fixed on the bearing band through the buckles on the binding belt, and are fixed in the bearing box, so that the stability of carrying is ensured, the staff can easily carry the equipment through the handle, and the convenience of carrying the equipment is improved.

[0016] 2. The collection tube is provided with a plurality of sealing plates, the inside of the collection tube is divided into a plurality of collection chambers, the sealing assembly is pulled out after the collection tube is vertically placed in water, so that water bodies at different water depths can enter the collection chambers, the carbon sink values of the water bodies at different depths can be detected through the detection sensors on the carbon sink detector, and the accuracy of the detection data is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 FIG. 1 is a schematic structural diagram of the internal components of the bearing box of the present application;

[0018] Figure 2 FIG. 1 is a schematic structural diagram of the internal components of the bearing box of the present application;

[0019] Figure 3 FIG. 1 is a schematic structural diagram of the internal components of the bearing box of the present application;

[0020] Figure 4 FIG. 1 is a schematic structural diagram of the internal components of the bearing box of the present application;

[0021] Figure 5 It is the internal component structure schematic view of the collecting pipe of the utility model.

[0022] In the drawing:

[0023] 1, bearing box; 2, partition; 3, collecting pipe; 4, carbon sink detector; 5, binding belt; 6, buckle; 7, handle; 8, sealing plate; 9, collecting chamber; 10, collecting port; 11, foam board; 12, bearing groove; 13, cover; 14, switch lock; 15, detection sensor; 16, sealing plug; 17, pull rod; 18, sealing ring; 19, linkage pull rod; 20, fit disc. DETAILED DESCRIPTION

[0024] The embodiment of the utility model will be further described in detail 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.

[0025] As shown in the accompanying Figure 1 to the accompanying Figure 5 As shown:

[0026] Example one: the utility model provides a portable water body rock weathering carbon sink detector 4, including bearing box 1, bearing box 1 is equipped with partition 2, the both sides of partition 2 are equipped with collecting pipe 3 and carbon sink detector 4 placed in the inside of bearing box 1, the inside of bearing box 1 is equipped with the binding belt 5 of interval distribution, and the buckle 6 for fixing collecting pipe 3 and carbon sink detector 4 is equipped between two binding belts 5, and the top of bearing box 1 is equipped with handle 7.

[0027] Collecting pipe 3 is equipped with multiple sealing plates 8 of interval distribution, and sealing plate 8 divides the inside of collecting pipe 3 into multiple collecting chambers 9, and collecting port 10 is equipped on each collecting chamber 9 and penetrates collecting pipe 3, and sealing assembly for plugging collecting port 10 is equipped.

[0028] It needs to be explained that, by storing collecting pipe 3 and carbon sink detector 4 together in the inside of bearing box 1, placing it in the bearing groove 12 matched with it, the buckle 6 on binding belt 5 is fixed to collecting pipe 3 and carbon sink detector 4, so that collecting pipe 3 and carbon sink can be fixed in the inside of bearing box 1, the stability of carrying is guaranteed, and staff can realize easy carrying through handle 7, and the convenience of carrying equipment is improved.

[0029] Furthermore, by installing multiple sealing plates 8 inside the collection tube 3, dividing its interior into multiple collection chambers 9, after the collection tube 3 is placed vertically in the water, the sealing components are removed, allowing water at different depths to enter the collection chambers 9. The detection sensor 15 on the carbon sink detector 4 can detect the vertical carbon sink values ​​of water at different depths, thereby improving the accuracy of the detection data.

[0030] In this embodiment, the interior of the carrier box 1 is provided with a foam board 11, and the foam board 11 is provided with a carrier groove 12. The collection tube 3 and the carbon sink detector 4 are placed in the carrier groove 12.

[0031] It should be noted that by setting a foam board 11 inside the bearing box 1, the internal bearing groove 12 and the collection tube 3 are matched with the carbon sink detector 4, so that the collection tube 3 and the carbon sink detector 4 can be inserted into it. The foam board 11 can also effectively absorb energy after the bearing box 1 is impacted, thus avoiding damage to the collection tube 3 and the carbon sink detector 4.

[0032] In this embodiment, the top opening of the carrier box 1 is provided with a cover 13 that is rotatably connected to the top opening, and the cover 13 is provided with a switch lock 14 for locking with the carrier box 1.

[0033] It should be noted that a switch lock 14 is provided on the lid 13 to lock the lid 13, thereby ensuring that the lid 13 will not open after the carrying box 1 is picked up, thus improving the stability when carrying it.

[0034] Furthermore, the cover 13 has a transparent observation section, so that when the water collected by the collection tube 3 is placed in the carrier box 1 for transport, the condition of the collection tube 3 can be viewed through the transparent observation section.

[0035] In this embodiment, the carbon sink detector 4 is powered by an external power source and is equipped with multiple detection sensors 15 connected by wires.

[0036] It should be noted that there are multiple types of detection sensors 15, including those that detect pH, EC and DO values. By detecting these values ​​and then detecting the water flow rate through external equipment, combined with algorithms, the carbon sink value in the water can be derived, thereby realizing the detection of carbon sink in the water.

[0037] In this embodiment, the sealing assembly includes a sealing plug 16 and a pull rod 17. The sealing plug 16 is made of rubber and is inserted into the collection port 10. The pull rod 17 is connected to the top of each sealing plug 16, and all the sealing plugs 16 can be pulled out of the collection port 10 by means of the pull rod 17.

[0038] It should be noted that the sealing plug 16 can be used to seal the collection port 10. After water sampling is completed, the sealing plug 16 can be inserted to ensure that the water does not flow out. The pull rod 17 is fixedly connected to the sealing plug 16, so that all collection ports 10 can be opened and closed at one time, which improves the sampling efficiency.

[0039] In this embodiment, the collection tube 3 has an opening on one side, and the outer wall of each sealing plate 8 is provided with a sealing ring 18 that fits against the inner wall of the collection tube 3. A linkage rod 19 is provided at the center of the sealing plate 8, and the linkage rod 19 passes through each sealing plate 8 and is fixedly connected to it.

[0040] It should be noted that the sealing ring 18 ensures that each collection chamber 9 is independent after the sealing plate 8 is inserted into the collection chamber 9, so that the water entering each collection chamber 9 does not flow back into other collection chambers 9 during the sampling process.

[0041] In this embodiment, the end of the linkage rod 19 extending from the collection chamber 9 is provided with a fitting plate 20. When the linkage rod 19 is inserted into the collection chamber 9, the fitting plate 20 is tightly attached to the side wall of the collection tube 3.

[0042] It should be noted that by setting a linkage rod 19 on the sealing plate 8, after the linkage rod 19 is pulled outward, it can drive all the sealing plates 8 to move outward and out of the collection chamber 9, which facilitates the cleaning of the internal collection chamber 9 and thus ensures the accuracy of each data collection.

[0043] As can be seen from the above, the collection tube 3 and the carbon sink detector 4 are placed in the support groove 12 inside the support box 1. The staff can lift the support box 1 with the handle 7 and move it to a suitable position, open the cover 13, take out the collection tube 3 and collect water samples first.

[0044] At this time, there are two ways to collect water using the collection tube 3. One way is to place the collection tube 3 horizontally in the water body, and water from multiple locations in the water body will enter different collection chambers 9 through the collection port 10, thus collecting water at different locations at the same water level. The second way is to place the collection tube 3 vertically in the water body, thus collecting water at different depths. Regardless of which method is used, after placing the collection tube 3 in the water body, the sealing plug 16 is moved by the pull rod 17 to completely detach it from the collection port 10. After all the water has entered the collection chamber 9, the sealing plug 16 is inserted and removed from the water body.

[0045] Place it horizontally in a suitable position, and pull out the sealing plug 16 again. The carbon sink detector 4 has multiple detection sensors 15, including detection sensors 15 that detect pH, EC and DO values. Insert the detection sensors 15 into different collection chambers 9 in sequence to obtain values. Then, detect the water flow rate through external equipment. Combined with the algorithm, the carbon sink value in the water can be derived. This not only realizes the detection of carbon sink in the water, but also improves the accuracy of the detection data.

[0046] The embodiments of this utility model are given for the purpose of illustration and description. Although embodiments of this utility model have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the utility model. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of this utility model.

Claims

1. A portable water body rock weathering carbon sequestration detector, characterized in that, include: The carrier box (1) is provided with a partition (2) inside. On both sides of the partition (2) are a collection tube (3) and a carbon sink detector (4) placed inside the carrier box (1). The carrier box (1) is provided with spaced straps (5). Between the two straps (5) are buckles (6) for fixing the collection tube (3) and the carbon sink detector (4). The top of the carrier box (1) is provided with a handle (7). The collection tube (3) is provided with a plurality of spaced sealing plates (8), which divide the inside of the collection tube (3) into a plurality of collection chambers (9). Each collection chamber (9) is provided with a collection port (10) that penetrates the collection tube (3), and the collection port (10) is provided with a sealing component for sealing it.

2. The portable water body rock weathering carbon sequestration detector as described in claim 1, characterized in that: The interior of the support box (1) is provided with a foam board (11), and the foam board (11) is provided with a support groove (12). The collection tube (3) and the carbon sink detector (4) are placed in the support groove (12).

3. The portable water body rock weathering carbon sequestration detector as described in claim 1, characterized in that: The top opening of the carrier box (1) is provided with a cover (13) that is rotatably connected to the top opening. The cover (13) is provided with a switch lock (14) for locking with the carrier box (1).

4. The portable water rock weathering carbon sequestration detector as described in claim 1, characterized in that: The carbon sink detector (4) is powered by an external power source and is equipped with multiple detection sensors (15) connected by wires.

5. The portable water rock weathering carbon sequestration detector as described in claim 1, characterized in that: The sealing assembly includes a sealing plug (16) and a pull rod (17). The sealing plug (16) is made of rubber and is inserted into the collection port (10). The pull rod (17) is connected to the top of each sealing plug (16). All the sealing plugs (16) can be pulled out of the collection port (10) by means of the pull rod (17).

6. The portable water body rock weathering carbon sequestration detector as described in claim 1, characterized in that: The collection tube (3) has an opening on one side. Each sealing plate (8) has a sealing ring (18) on its outer wall that fits against the inner wall of the collection tube (3). A linkage rod (19) is provided at the center of the sealing plate (8). The linkage rod (19) passes through each sealing plate (8) and is fixedly connected to it.

7. The portable water rock weathering carbon sink detector as described in claim 6, characterized in that: The linkage rod (19) has a fitting plate (20) at one end extending from the collection chamber (9). When the linkage rod (19) is inserted into the collection chamber (9), the fitting plate (20) is tightly attached to the side wall of the collection tube (3).