Liquid adding and washing integrated device of porous wave plate absorption tube
The integrated multi-channel waveboard absorber system addresses inefficiencies in traditional liquid addition and washing by providing a streamlined, efficient, and space-saving solution for liquid distribution and washing, ensuring accuracy and cleanliness.
Patent Information
- Application Number
- CN202422381558.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The liquid addition and washing of traditional porous wave plate absorber is complicated and inefficient, easy to introduce human error and risk of secondary pollution, lacking efficient and convenient integrated solutions.
A integrated liquid addition and washing device for multi-porous wave plate absorption tube is designed. By installing a bracket and mounting ring, the wave plate absorption tube is fixed, combined with the design of the reservoir, water diversion pipe, drainage pipe and wastewater pool, the integrated operation of liquid addition, washing and waste liquid treatment is achieved.
It improves operational convenience and efficiency, ensures accurate liquid addition, thorough washing, reduces human error and secondary pollution risks, simplifies equipment management, and reduces operating costs.
Smart Images

Figure CN223096827U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of laboratory equipment, and particularly relates to an integrated device for liquid addition and washing of a multi-hole wave plate absorption tube. Background Technique
[0002] In the application scenarios of multi-hole wave plate absorption tubes, especially in the fields of environmental monitoring, chemical analysis, and industrial production, the high absorption performance of multi-hole wave plate absorption tubes makes them indispensable experimental tools. However, in the frequent use process, liquid addition and washing, as the key links to maintain the performance of the absorption tube and ensure the accuracy of experiments, have many inconveniences.
[0003] Traditional liquid addition methods mostly use manual tools such as pipettes and syringes to add the absorption liquid to the multi-hole wave plate absorption tube one by one. This method is not only cumbersome to operate, requiring the operator to have a high skill level and patience to ensure precise control of the liquid addition volume, but also has low efficiency. Especially when dealing with a large number of samples, manual liquid addition is time-consuming and laborious, and is prone to introducing human errors.
[0004] Washing is an important step to keep the multi-hole wave plate absorption tube clean and avoid cross-contamination. Traditional washing methods usually include using a faucet to rinse, blowing with an ear bulb, etc., but these methods often have problems such as incomplete washing and easy introduction of secondary pollution. Especially when there are stubborn stains remaining inside the multi-hole wave plate absorption tube, it needs to be rinsed and blown repeatedly, which is not only time-consuming and laborious, but also may damage the absorption tube.
[0005] In summary, the traditional methods for liquid addition, washing, and waste liquid treatment of multi-hole wave plate absorption tubes have many deficiencies, and there is an urgent need for a more efficient, convenient, and environmentally friendly integrated solution. Such a solution should be able to integrate liquid addition, washing, drainage, and waste liquid treatment, simplify the operation process, improve work efficiency, reduce operating costs, and ensure the accuracy and reliability of experimental results. Therefore, it is particularly important to design a multi-hole wave plate absorption tube device that integrates liquid addition, washing, drainage, and waste liquid treatment. Summary of the Utility Model
[0006] In order to overcome the problems existing in the prior art, the purpose of the utility model is to provide an integrated device for liquid addition and washing of a multi-hole wave plate absorption tube.
[0007] The technical solution adopted by the utility model to solve its technical problems is: an integrated device for liquid addition and washing of a porous corrugated plate absorption tube, comprising: a mounting bracket, and a plurality of mounting rings are provided on the mounting bracket; the porous corrugated plate absorption tubes are installed in the mounting rings, there are a plurality of the porous corrugated plate absorption tubes, each of the porous corrugated plate absorption tubes is installed in one of the mounting rings, and the openings on both sides of the porous corrugated plate absorption tube face upward; a water storage tank and a water inlet pipe are provided above the mounting bracket, the water storage tank is communicated with the water inlet pipe, and the water inlet pipe is provided with a water inlet connected to the porous corrugated plate absorption tube; a waste water tank and a drain pipe are provided below the mounting bracket, the waste water tank is communicated with the drain pipe, and a plurality of drain ports connected to the porous corrugated plate absorption tube are provided in the drain pipe; the porous corrugated plate absorption tube can be connected to the drain port or the water inlet or the waste water tank or an adjacent porous corrugated plate absorption tube.
[0008] Its main working principle is as follows. In the preparation stage, it is ensured that enough absorption liquid has been injected into the water storage tank, and at the same time, the porous corrugated plate absorption tubes are correctly installed in the mounting rings of the mounting bracket, and it is ensured that the openings on both sides of each porous corrugated plate absorption tube face upward.
[0009] During the liquid addition process, the opening on one side of the porous corrugated plate absorption tube is connected to the water inlet, and the opening on the other side of the porous corrugated plate absorption tube is connected to the drain port. The absorption liquid can enter one end of each porous corrugated plate absorption tube from the water inlet. After the absorption liquid fills the porous corrugated plate absorption tube, it flows out from the other end and is discharged into the waste water tank through the drain port on the drain pipe. The liquid addition amount is controlled by observing the water storage tank to ensure that the amount of absorption liquid added to each porous corrugated plate absorption tube is accurate. When enough absorption liquid has been added to all the porous corrugated plate absorption tubes, the porous corrugated plate absorption tubes are ready for subsequent experiments or operations.
[0010] During the washing state process, one end of the first porous corrugated plate absorption tube needs to be connected to the water inlet, and the other end is connected to the drain port. One end of the second porous corrugated plate absorption tube is connected to the next drain port. At this time, the first porous corrugated plate absorption tube is connected to the second porous corrugated plate absorption tube through the drain pipe, and the other end of the second porous corrugated plate absorption tube is connected to the subsequent porous corrugated plate absorption tubes. The subsequent porous corrugated plate absorption tubes are connected end to end in sequence until one end of the last porous corrugated plate absorption tube is connected to the waste water tank. Subsequently, the washing liquid is poured into the water storage tank. The washing liquid flows from the water storage tank into the first porous corrugated plate absorption tube. After the washing liquid fills the first porous corrugated plate absorption tube, it flows out from the other end and flows into the second porous corrugated plate absorption tube through the drain pipe. The washing liquid flows through the subsequent porous corrugated plate absorption tubes in sequence until one end of the last porous corrugated plate absorption tube is connected to the waste water tank and is discharged into the waste water tank.
[0011] In summary, by reasonably designing functional modules such as liquid addition, washing, drainage, and waste liquid treatment, the present device realizes the integrated operation of liquid addition and washing of the porous corrugated plate absorption tube, improving the convenience and efficiency of experimental operations.
[0012] Preferably, the water inlet is located below the water inlet pipe, and the number of the water inlets corresponds to the number of the mounting rings.
[0013] Preferably, a first water stop valve is provided on the water inlet, and the water flow from the water inlet pipe is controlled by rotating the first water stop valve.
[0014] Preferably, the side wall of the reservoir is a transparent plate, and scale lines for easy observation are provided on the transparent plate, and the scale lines are arranged at equal intervals perpendicular to the horizontal direction.
[0015] Preferably, the drain outlet is arranged on the surface of the drain pipe, and the number of the drain outlets corresponds to the number of the mounting rings.
[0016] Preferably, a two-way peristaltic pump is further provided, and the two-way peristaltic pump is communicated with the drain outlet.
[0017] Preferably, a second water stop valve is further provided, and the second water stop valve is arranged between the second drain outlet and the third drain outlet.
[0018] Preferably, a hot air blower is further included, the hot air blower is communicated with the waste water tank, and the porous corrugated plate absorption tube is communicated with the hot air blower through a pipeline.
[0019] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0020] By integrating the liquid addition and washing functions of the porous corrugated plate absorption tube, the present utility model realizes the integrated operation of liquid addition, absorption, and washing, improving the use efficiency and convenience of the equipment. Through the design of the mounting bracket and multiple mounting rings, the porous corrugated plate absorption tube can be conveniently installed and fixed. At the same time, the porous corrugated plate absorption tube can be connected to the drain outlet, water inlet, waste water tank or adjacent porous corrugated plate absorption tubes, providing flexible and diverse connection methods to adapt to different usage scenarios and requirements. The design of the reservoir, water inlet pipe, water inlet, waste water tank, and drain pipe forms a complete fluid management system. This can not only ensure that the porous corrugated plate absorption tube is timely added with liquid and washed, but also effectively collect and discharge waste water, maintaining the cleanliness and efficient operation of the equipment. The integrated design makes the structure of the entire device compact, occupies less space, and also facilitates the maintenance and management of the equipment, reducing the usage cost.
[0021] In summary, the integrated device for liquid addition and washing of the porous corrugated plate absorption tube described in the claims has multiple beneficial effects such as high efficiency, flexibility, optimized fluid management, improved absorption efficiency, and ease of maintenance and management. Description of the Drawings
[0022] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for use in the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0023] Figure 1 Schematic diagram of the liquid addition state of the integrated device for liquid addition and washing of the porous corrugated plate absorption tube;
[0024] Figure 2 Schematic diagram of the washing state of the integrated device for liquid addition and washing of the porous corrugated plate absorption tube;
[0025] 1. Mounting bracket; 10. Mounting ring; 2. Reservoir; 3. Water inlet pipe; 30. Water inlet; 31. First water stop valve; 4. Wastewater tank; 5. Drain pipe; 50. Drain outlet; 51. Second water stop valve; 6. Dual-direction peristaltic pump; 7. Hot air blower; 8. Porous corrugated plate absorption tube. Detailed Embodiments
[0026] In order to more clearly understand the above-mentioned objects, features, and advantages of the present utility model, the present utility model will be described in detail below in conjunction with the drawings and specific embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other. In the following description, many specific details are set forth in order to fully understand the present utility model. The described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present utility model.
[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those of ordinary skill in the technical field to which the present utility model belongs. The terms used in the description of the present utility model herein are only for the purpose of describing specific embodiments, and are not intended to limit the present utility model.
[0028] This embodiment discloses an integrated device for liquid addition and washing of a porous corrugated plate absorption tube, as Figure 1 - Figure 2As shown in the figure, it includes an installation bracket 1, where the installation bracket 1 is placed on the workbench, and the installation bracket 1 is provided with a plurality of installation rings 10. A porous corrugated plate absorption tube 8 is installed in each installation ring 10, ensuring that the two openings on both sides of the porous corrugated plate absorption tube 8 face upward, facilitating fluid circulation. Above the installation bracket 1, a water storage tank 2 and a water inlet pipe 3 are provided. The water storage tank 2 and the water inlet pipe 3 are connected through a pipeline. The water inlet pipe 3 is provided with a plurality of water inlets 30, and the water inlets 30 are located below the water inlet pipe 3 and are connected to the porous corrugated plate absorption tubes 8 below one by one. Below the installation bracket 1, a wastewater tank 4 and a drain pipe 5 are provided. The wastewater tank 4 and the drain pipe 5 are connected through a pipeline. The drain pipe 5 is provided with a plurality of drain openings 50, and the drain openings 50 are arranged on the surface of the drain pipe 5 and are connected to the porous corrugated plate absorption tubes 8 above one by one.
[0029] Specifically, as Figure 1 and as Figure 2 shown in the figure, there are three groups of porous corrugated plate absorption tubes 8, and correspondingly, there are three water inlets 30 and three drain openings 50. To facilitate the understanding of the installation of the porous corrugated plate absorption tubes 8, the porous corrugated plate absorption tube 8 closest to the water storage tank 2 is the first porous corrugated plate absorption tube 8, the porous corrugated plate absorption tube 8 connected to the first porous corrugated plate absorption tube 8 is the second porous corrugated plate absorption tube 8, and the porous corrugated plate absorption tube 8 farthest from the water storage tank 2 is the last porous corrugated plate absorption tube 8. Of course, the number of porous corrugated plate absorption tubes 8 can be adjusted according to actual needs.
[0030] During the preparation stage, ensure that enough absorption liquid has been injected into the water storage tank 2, and at the same time, correctly install the porous corrugated plate absorption tubes 8 in the installation rings 10 of the installation bracket 1, ensuring that the two openings on both sides of each porous corrugated plate absorption tube 8 face upward.
[0031] As Figure 1 shown in the figure, during the liquid addition process, connect the opening on one side of the porous corrugated plate absorption tube 8 to the water inlet 30, and connect the opening on the other side of the porous corrugated plate absorption tube 8 to the drain opening 50. Then the absorption liquid can enter one end of each porous corrugated plate absorption tube 8 from the water inlet 30. After the absorption liquid fills the porous corrugated plate absorption tube 8, it flows out from the other end and is discharged into the wastewater tank 4 through the drain opening 50 on the drain pipe 5. Control the liquid addition amount by observing the water storage tank 2 to ensure that the amount of absorption liquid added to each porous corrugated plate absorption tube 8 is accurate. When enough absorption liquid has been added to all the porous corrugated plate absorption tubes 8, the porous corrugated plate absorption tubes 8 are ready for subsequent experiments or operations.
[0032] As Figure 2As shown, during the washing state process, one end of the first porous corrugated plate absorption tube 8 needs to be connected to the water inlet 30, and the other end is connected to the drain outlet 50. One end of the second porous corrugated plate absorption tube 8 is connected to the next drain outlet 50. At this time, the first porous corrugated plate absorption tube 8 and the second porous corrugated plate absorption tube 8 are connected by the drain pipe 5, and the other end of the second porous corrugated plate absorption tube 8 is connected to the subsequent porous corrugated plate absorption tubes 8. The subsequent porous corrugated plate absorption tubes 8 are connected end to end in sequence until one end of the last porous corrugated plate absorption tube 8 is connected to the waste water tank 4. Subsequently, the washing liquid is poured into the reservoir 2. The washing liquid flows from the reservoir 2 into the first porous corrugated plate absorption tube 8. After the first porous corrugated plate absorption tube 8 is filled with the washing liquid, it flows out from the other end and enters the second porous corrugated plate absorption tube 8 through the drain pipe 5. The washing liquid flows through the subsequent porous corrugated plate absorption tubes 8 in sequence until one end of the last porous corrugated plate absorption tube 8 is connected to the waste water tank 4 and is discharged into the waste water tank 4.
[0033] In some alternative embodiments, a first water stop valve 31 is installed on each water inlet 30. By rotating the first water stop valve 31, the water flow from the water inlet pipe 3 can be controlled, thereby adding liquid to the corresponding porous corrugated plate absorption tube 8.
[0034] In some alternative embodiments, the side wall of the reservoir 2 is made of a transparent plate, and scale lines for easy observation are provided on the transparent plate. The scale lines are arranged equidistantly perpendicular to the horizontal direction to monitor the water level in the reservoir 2 in real time.
[0035] In some alternative embodiments, each drain outlet 50 in the drain pipe 5 is connected to the corresponding porous corrugated plate absorption tube 8 for discharging waste water.
[0036] In some alternative embodiments, the device is also equipped with a two-way peristaltic pump 6. The inlet of the two-way peristaltic pump 6 is communicated with the waste water tank 4, and the outlet is communicated with the drain pipe 5 to assist in the discharge of waste water and improve the drainage efficiency.
[0037] In some alternative embodiments, a second water stop valve 51 is installed between the second drain outlet 50 and the third drain outlet 50. By opening and closing the second water stop valve 51, the switching between liquid addition and washing can be achieved. When liquid addition is required, it is necessary to ensure that each porous corrugated plate absorption tube 8 is independent of each other. Therefore, the second water stop valve 51 needs to be opened to ensure the smoothness of the drain pipe 5. When washing is required, each porous corrugated plate absorption tube 8 needs to be interconnected. At this time, the second water stop valve 51 needs to be opened so that the washing liquid can enter the second porous corrugated plate absorption tube 8 from the first porous corrugated plate absorption tube 8 along the drain pipe 5, which is used to control the water flow between these two drain outlets 50 when needed, and more flexible drainage control can be achieved by controlling the second water stop valve 51.
[0038] In some alternative embodiments, the device further includes a hot air blower 7. The inlet of the hot air blower 7 is communicated with the wastewater tank 4, and the outlet is communicated with the porous corrugated plate absorption tube 8 through a pipeline. When needed, the hot air blower 7 can be turned on to perform hot air drying on the porous corrugated plate absorption tube 8 to remove residual moisture or washing liquid.
[0039] The above are only the preferred embodiments of the present invention, and do not impose any formal restrictions on the present invention. Therefore, any modifications, equivalent changes, and decorations made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention still fall within the scope of the technical solution of the present invention.
Claims
1. An integrated device for liquid addition and washing of a porous wave plate absorption tube, characterized in that, Including: An installation bracket, wherein the installation bracket is provided with a plurality of installation rings; The porous corrugated plate absorption tubes are installed in the installation rings. There are a plurality of the porous corrugated plate absorption tubes, and each porous corrugated plate absorption tube is installed in one of the installation rings, and the openings on both sides of the porous corrugated plate absorption tube face upward; Above the installation bracket, there is a water storage tank and a water inlet pipe. The water storage tank is communicated with the water inlet pipe, and the water inlet pipe is provided with a water inlet connected to the porous corrugated plate absorption tube; Below the installation bracket, there is a waste water tank and a drain pipe. The waste water tank is communicated with the drain pipe, and the drain pipe is provided with a plurality of drain ports connected to the porous corrugated plate absorption tube; The porous corrugated plate absorption tube can be connected to the drain port, or the water inlet, or the waste water tank, or an adjacent porous corrugated plate absorption tube.
2. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that The water inlet is located below the water inlet pipe, and the number of the water inlets corresponds to the number of the installation rings.
3. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that A first water stop valve is provided on the water inlet, and the flow of water from the water inlet pipe is controlled by rotating the first water stop valve.
4. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that The side wall of the water storage tank is a transparent plate, and the transparent plate is provided with scale lines for easy observation. The scale lines are arranged at equal intervals perpendicular to the horizontal direction.
5. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that The drain ports are arranged on the surface of the drain pipe, and the number of the drain ports corresponds to the number of the installation rings.
6. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that A two-way peristaltic pump is further provided, and the two-way peristaltic pump is communicated with the drain port.
7. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that A second water stop valve is further provided, and the second water stop valve is arranged between the second drain port and the third drain port.
8. The integrated device for liquid addition and washing of the porous corrugated plate absorption tube according to claim 1, characterized in that A hot air blower is further included. The hot air blower is communicated with the waste water tank, and the porous corrugated plate absorption tube is communicated with the hot air blower through a pipeline.