Pollution source detection and extraction equipment
By using auxiliary supports and combined pipe structures, the problem of unstable equipment placement on different ground surfaces is solved, achieving stable support and flexible adjustment, expanding the detection range, and making it suitable for various environments.
Patent Information
- Application Number
- CN202520354586.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Conventional pollution source detection equipment is unstable when placed on ground with varying degrees of flatness, and its structural flexibility is insufficient, resulting in a limited detection range.
The system employs an auxiliary support and combined tube structure, including a slewing base, a fixed plate, a telescopic rod, a support rod, a combined tube, a quick-connect plug, and a connecting tube. Through the hinge structure and quick-connect structure, the equipment achieves stable support and flexible combination, adapting to different terrains.
It achieves stable support and flexible adjustment of the equipment on different terrains, expands the detection range, improves the structural stability and flexibility of the equipment, and facilitates transportation and assembly.
Smart Images

Figure CN223856514U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of pollution source detection, specifically to a pollution source detection extraction equipment. BACKGROUND
[0002] Pollution source detection refers to the process of measuring and analyzing various pollutants in the environment quantitatively or qualitatively through scientific methods and technical means. Its purpose is to monitor and assess the degree of environmental pollution and provide scientific basis for environmental protection and management.
[0003] Pollution source detection is of great significance in environmental protection. By determining the source, type, concentration and emission pattern of pollutants, it can provide scientific basis for formulating effective pollution control measures, thereby improving environmental quality, protecting ecological balance and human health. For example, in the industrial production process, detection can identify the reaction kettle, pipeline leakage and other links that may cause the escape of pollutants.
[0004] The conventional extraction equipment is directly placed on the ground for use. Due to the limitation of the bottom structure, it may not be stable when placed on different flatness of the ground, which may cause the equipment to be difficult to operate stably. At the same time, the limitation of the structure may limit the detection range, resulting in insufficient structural flexibility.
[0005] Therefore, in view of the above problems, the existing structure and defects are improved, and a pollution source detection extraction equipment is proposed. UTILITY MODEL CONTENT
[0006] The utility model aims to provide a kind of pollution source detection extraction equipment to solve the problems raised in the above background.
[0007] To achieve the above object, the utility model provides the following technical scheme: a kind of pollution source detection extraction equipment, including detector group and auxiliary support, the bottom of the detector group is equipped with auxiliary support, and the side of detector group is equipped with combination pipe, and the end of combination pipe away from detector group is connected with extraction component, the auxiliary support includes swivel seat, fixed plate, telescopic link and strut, the top of swivel seat is connected with fixed plate, and the lower end side of swivel seat is connected with telescopic link, and the bottom of telescopic link is equipped with strut.
[0008] Further, the detector group includes air extraction detector, handle, butt joint socket, link groove and supporting leg, the top of air extraction detector is equipped with handle, and the side of air extraction detector is provided with butt joint socket, and the middle of the bottom of air extraction detector is provided with link groove, and the four diagonal positions of the bottom of air extraction detector are all equipped with supporting leg.
[0009] Further, the foot is connected to the bottom of the air extraction detector through a spherical structure, and the handle is fixed to the middle of the top of the air extraction detector, and the inner surface structure of the docking socket is matched with the top surface structure of the fixed plate.
[0010] Further, the telescopic rods are arranged in a circular array structure with the rotary seat as the center and are provided in three groups, and the telescopic rods and the rotary seat are connected and combined through a hinge structure.
[0011] Further, the telescopic rods are arranged in a circular array structure with the rotary seat as the center and are provided in three groups, and the telescopic rods and the rotary seat are connected and combined through a hinge structure.
[0012] Further, the first and second connecting pipes are connected and combined through a quick connection structure, and the inner surface structure of the docking socket is matched with the surface structure of the quick connection plug away from the first connecting pipe.
[0013] Further, the extraction member comprises a sampling head, a sample suction device and a connecting head, one end of the sampling head is provided with the sample suction device, and the other end of the sampling head away from the sample suction device is provided with the connecting head.
[0014] Further, the extraction member comprises a sampling head, a sample suction device and a connecting head, one end of the sampling head is provided with the sample suction device, and the other end of the sampling head away from the sample suction device is provided with the connecting head.
[0015] The utility model provides a kind of pollution source detection extraction equipment, with following beneficial effects:
[0016] 1, the utility model, by being provided with the connecting groove matched with the surface structure of fixed plate in the bottom of detector group, cooperation bolt can be used, quick auxiliary support and detector group can be combined or structure is split, so that auxiliary support can be selectively used according to needs, wherein the telescopic rod and rotary seat connected and combined by hinge structure, utilize structural characteristics, telescopic rod can be swung and adjusted in a certain angle range, so it can correspond to different terrain structure, and ensure the stability of erected structure, while the telescopic rod can be adjusted in height in a certain range, and respond to different geology, can be inserted into ground to guarantee the stable support of auxiliary support whole, to further provide structural stability and structural flexibility.
[0017] 2. The utility model, through the combination pipe that has between the extraction component and detection instrument group connects, among them and the first adapter pipe and the second adapter pipe adopt quick -witted structure interconnect combination, simultaneous suction detection instrument utilizes the structure of butt joint socket and quick -witted plug and combination pipe fast butt joint combination, and the adapter through quick -witted structure and the second adapter pipe far from the first adapter pipe one end interconnect combination, utilize the use of above -mentioned structure, make detection instrument group, combination pipe and extraction component have good structure split between each other, convenient structure combination, also convenient packing transportation carrying after split, in addition because of the structure same between the first adapter pipe and the second adapter pipe, with the use of this structure can need according to, through the first adapter pipe and the second adapter pipe head -tail interconnect, realize the extension adjustment on the structure, thereby adjust the structure length of combination pipe, with this be applicable to different use scene and use need. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the body axis side view structural diagram of a kind of pollution source detection extraction equipment of the utility model;
[0019] Figure 2 It is the detection instrument group structural diagram of a kind of pollution source detection extraction equipment of the utility model;
[0020] Figure 3 It is the auxiliary support three-dimensional structural diagram of a kind of pollution source detection extraction equipment of the utility model;
[0021] Figure 4 It is the combination pipe three-dimensional structural diagram of a kind of pollution source detection extraction equipment of the utility model;
[0022] Figure 5 It is the extraction component three-dimensional structural diagram of a kind of pollution source detection extraction equipment of the utility model.
[0023] In the drawing: 1, detection instrument group;101, suction detection instrument;102, handle;103, butt joint socket;104, adapter groove;105, support leg;2, auxiliary support;201, swivel seat;202, fixed plate;203, telescopic link;204, support rod;3, combination pipe;301, quick -witted plug;302, first adapter pipe;303, second adapter pipe;4, extraction component;401, sampling head;402, sample collector;403, adapter. DETAILED DESCRIPTION
[0024] The embodiment of the utility model is further described in detail below in combination with the drawings and examples. The following examples are used to illustrate the utility model, but cannot be used to limit the scope of the utility model.
[0025] As Figures 1 to 5As shown, a pollution source detection extraction device, including detection instrument group 1 and auxiliary support 2, the bottom of detection instrument group 1 is installed with auxiliary support 2, and one side of detection instrument group 1 is installed with combined pipe 3, and the end of combined pipe 3 away from detection instrument group 1 is connected with extraction component 4, auxiliary support 2 includes rotary seat 201, fixed plate 202, telescopic rod 203 and support rod 204, the top of rotary seat 201 is connected with fixed plate 202, and the lower end side of rotary seat 201 is connected with telescopic rod 203, and the bottom of telescopic rod 203 is installed with support rod 204, telescopic rod 203 is distributed in annular array structure with rotary seat 201 as the center and is provided with three groups, and telescopic rod 203 and rotary seat 201 are connected with each other in hinge structure,
[0026] Detection instrument group 1 includes air extraction detector 101, handle 102, butt joint socket 103, connection groove 104 and supporting leg 105, the top of air extraction detector 101 is installed with handle 102, and the side of air extraction detector 101 is provided with butt joint socket 103, the middle of the bottom of air extraction detector 101 is provided with connection groove 104, and the four diagonal positions of the bottom of air extraction detector 101 are all installed with supporting leg 105, supporting leg 105 is connected to the bottom of air extraction detector 101 through spherical structure, and handle 102 is fixed to the middle of the top of air extraction detector 101, the inner surface structure of butt joint socket 103 and the top surface structure of fixed plate 202 are matched with each other, by being provided with connection groove 104 matched with the surface structure of fixed plate 202 at the bottom of detection instrument group 1, combined with the use of bolts, auxiliary support 2 and detection instrument group 1 can be quickly combined or disassembled in structure, so that auxiliary support 2 can be selectively used according to needs.
[0027] As Figures 1 to 5As shown, the combination pipe 3 includes a quick connector 301, a first adapter pipe 302 and a second adapter pipe 303, the first adapter pipe 302 is connected to the end of the quick connector 301 away from the detector group 1, and the second adapter pipe 303 is connected to the end of the first adapter pipe 302 away from the quick connector 301, the structures of the first adapter pipe 302 and the second adapter pipe 303 are the same, and the first adapter pipe 302 and the second adapter pipe 303 are connected and combined with each other by a quick connection structure, the inner surface structure of the docking port 103 matches the surface structure of the end of the quick connector 301 away from the first adapter pipe 302, the extraction member 4 includes a sampling head 401, a sample collector 402 and an adapter head 403, the sample collector 402 is installed at one end of the sampling head 401, and the adapter head 403 is installed at the end of the sampling head 401 away from the sample collector 402, the adapter head 403 is connected and combined with the end of the second adapter pipe 303 away from the first adapter pipe 302 by a quick connection structure, and the sample collector 402 is communicated with the inside of the sampling head 401, wherein the first adapter pipe 302 and the second adapter pipe 303 are connected and combined with each other by a quick connection structure, and the docking port 103 and the quick connector 301 are quickly docked and combined between the combination pipe 3 by the structure of the docking port 103 and the quick connector 301, and the adapter head 403 is connected and combined with the end of the second adapter pipe 303 away from the first adapter pipe 302 by a quick connection structure.
[0028] In summary, as Figures 1 to 4 As shown, the pollution source detection and extraction device is used, first, the fixed plate 202 at the top of the rotary seat 201 is embedded into the bottom of the air extraction detector 101, and the use of bolts is matched to quickly connect and fix the auxiliary support 2 and the detector group 1, then the end of the quick connector 301 is inserted into the docking port 103 on the side of the air extraction detector 101, and according to the needs of selection, a plurality of first adapter pipes 302 and second adapter pipes 303 are selected to be connected and combined end to end, and the first adapter pipe 302 and the second adapter pipe 303 after being connected and combined are inserted and combined with the quick connector 301 at one end of the first adapter pipe 302, and finally the end of the second adapter pipe 303 is inserted and combined with the adapter head 403 at one end of the sampling head 401, so as to complete the combination and installation between the detector group 1, the combination pipe 3 and the extraction member 4;
[0029] According to the needs, the detector group 1 can be rotated in the horizontal direction by the activity of the rotary seat 201, and the telescopic rod 203 can be adjusted in structure to adjust the support height of the auxiliary support 2 as a whole, and the support rod 204 at the bottom of the telescopic rod 203 is inserted into the ground to ensure the structural stability of the device;
[0030] Under the structural operation of the air extraction detector 101, the sample collector 402 on one side of the sampling head 401 will operate synchronously, wherein the sampling head 401 and the sample collector 402 adopt intelligent TSP DL-6100 and PM2.5 sensors respectively, wherein the intelligent TSP DL-6100 is an environmental particulate matter sampler adopting filter membrane weighing method, which supports sampling of various environmental particulate matters, is suitable for different scenes, and has a sampling time range of 1 minute to 99 hours and 59 minutes, meets the long-time monitoring requirement, and has a working temperature range of-30 DEG C to 50 DEG C, and is suitable for use in various environments, and the PM2.5 sensor is well-known for its high precision and multifunction, can capture more subtle changes of particulate matters in the air, provide more accurate data support, integrate more than ten kinds of measurement elements including PM2.5, such as temperature, humidity, carbon dioxide concentration, etc., meet diversified monitoring requirements, and is equipped with 4G network transmission technology, so that data can be rapidly and stably transmitted to a cloud server, real-time monitoring and analysis are facilitated, and the detection precision and effectiveness of the whole equipment are ensured to the maximum extent.
[0031] The embodiments of the present application are given for the purpose of illustration and description, and are not exhaustive or limit the present application to the disclosed form. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiments are chosen and described in order to better illustrate the principles and practical application of the present application, and to enable those of ordinary skill in the art to understand the present application so as to design various embodiments with various modifications suitable for specific purposes.
Claims
1. A pollution source detection extraction device, comprising a detector group (1) and an auxiliary support (2), characterized in that: The bottom of the detector group (1) is provided with an auxiliary support (2), one side of the detector group (1) is provided with a combined pipe (3), and one end of the combined pipe (3) away from the detector group (1) is connected with an extraction component (4).
2. The device of claim 1, wherein, The detector group (1) comprises a gas extraction detector (101), a handle (102), a butt joint socket (103), a connecting groove (104) and a supporting leg (105), the top of the gas extraction detector (101) is provided with the handle (102), the side of the gas extraction detector (101) is provided with the butt joint socket (103), the middle of the bottom of the gas extraction detector (101) is provided with the connecting groove (104), and the four corners of the bottom of the gas extraction detector (101) are provided with the supporting leg (105).
3. A device for detecting and extracting a pollution source according to claim 2, characterized in that, The supporting leg (105) is connected to the bottom of the gas extraction detector (101) through a spherical structure, and the handle (102) is fixed to the middle of the top of the gas extraction detector (101), the inner surface structure of the butt joint socket (103) and the top surface structure of the fixed plate (202) are matched with each other.
4. The device of claim 1, wherein, The telescopic rod (203) is arranged in a circular array structure with the rotary seat (201) as the center and is provided with three groups, and the telescopic rod (203) and the rotary seat (201) are connected and combined with each other through a hinge structure.
5. The device of claim 2, wherein, The combined pipe (3) comprises a quick connector (301), a first connecting pipe (302) and a second connecting pipe (303), one end of the quick connector (301) away from the detector group (1) is connected with the first connecting pipe (302), and one end of the first connecting pipe (302) away from the quick connector (301) is connected with the second connecting pipe (303).
6. A device for detecting and extracting a pollution source according to claim 5, characterized in that, The structures of the first connecting pipe (302) and the second connecting pipe (303) are the same, the first connecting pipe (302) and the second connecting pipe (303) are connected and combined with each other through a quick connection structure, and the inner surface structure of the butt joint socket (103) and the surface structure of one end of the quick connector (301) away from the first connecting pipe (302) are matched with each other.
7. The device of claim 5, wherein, The extraction component (4) comprises a sampling head (401), a sample suction device (402) and a connecting head (403), one end of the sampling head (401) is provided with the sample suction device (402), and one end of the sampling head (401) away from the sample suction device (402) is provided with the connecting head (403).
8. A device for detecting and extracting a pollution source according to claim 7, characterized in that, The connecting head (403) is connected and combined with one end of the second connecting pipe (303) away from the first connecting pipe (302) through a quick connection structure, and the sample suction device (402) is communicated with the inside of the sampling head (401).