A concentrated brine chemical cleaning of a canister
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 魏化涛
- Filing Date
- 2025-05-28
- Publication Date
- 2026-08-07
AI Technical Summary
[0002]煤矿井下浓盐水处理过程中,需要在化学清洗罐中添加药剂,以达到较好的处理效果,然而药剂添加到化学清洗罐中需要搅拌,以免药剂结块,这种工作一般都是需要人工手动完成,为了解决人工搅拌的问题,有的采用在化学清洗罐内部添加搅拌装置,而电机以及联轴器、减速器等都安装在罐顶部,这样就会增加化学清洗罐的整体高度,由于井下巷道空间狭小,且化学清洗罐的上方还要铺设多种管道,这就使得添加搅拌装置的化学清洗罐难以适应狭小的巷道
(1)本实用新型通过在罐体底部设置曝气管和转动杆,实现了药剂与水的充分混合,有效避免了药剂结块的现象,提高了清洗效率和效果。
Smart Images

Figure CN224604707U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of water treatment technology, and in particular to a concentrated brine chemical cleaning tank. Background Technology
[0002] In the process of treating concentrated brine in underground coal mines, chemicals need to be added to chemical cleaning tanks to achieve better treatment results. However, the chemicals need to be stirred before being added to the chemical cleaning tanks to prevent them from clumping. This work usually needs to be done manually. To solve the problem of manual stirring, some manufacturers have added stirring devices inside the chemical cleaning tanks, with the motor, coupling, and reducer installed at the top of the tanks. This increases the overall height of the chemical cleaning tanks. Due to the narrow space in underground roadways and the need to lay various pipelines above the chemical cleaning tanks, it is difficult for chemical cleaning tanks with added stirring devices to adapt to the narrow roadways.
[0003] Therefore, it is necessary to provide a concentrated brine chemical cleaning tank to solve the above-mentioned technical problems. Utility Model Content
[0004] In view of the above situation and to overcome the defects of the existing technology, this utility model provides a concentrated brine chemical cleaning tank that can achieve full mixing of the agent and water, effectively avoid the phenomenon of agent clumping, and improve cleaning efficiency and effect.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A concentrated brine chemical cleaning tank includes: a tank body, with a dosing port on the top of the tank body. The dosing port is not located at the center of the top of the tank body because multiple holes need to be opened on the top of the tank body, each hole connecting to a different pipe. To avoid changing the original pipeline design, this device uses the dosing port of a traditional chemical cleaning tank. A cover plate is provided on the top of the dosing port, and a fixed pipe is fixedly installed at the bottom of the cover plate. Multiple rotating rods are rotatably installed at the bottom of the fixed pipe. When there is no support below the rotating rods, their free ends face downwards under the action of gravity. The tank also includes a flexible aeration pipe. A portion of the aeration pipe extends along the fixed pipe and is fixed to the fixed pipe, and a portion is fixed to the rotating rods. The aeration pipe is connected to an air source.
[0006] Preferably, the multiple rotating rods are arranged in a fan shape. The purpose of the fan-shaped arrangement of the rotating rods is to extend the aeration pipe more comprehensively to the bottom of the tank and increase the aeration effect.
[0007] Preferably, the portion of the aeration pipe located on the rotating rod is arranged in a meandering pattern.
[0008] Preferably, the rotating rod has a cavity inside, and a connecting hose is installed on the rotating rod, communicating with the cavity. An air ring is fixed at the bottom of the fixed tube, and multiple connecting hoses are all connected to the air ring. An air inlet pipe is installed at the top of the air ring, and the top end of the air inlet pipe extends to the top of the cover plate and is fixedly installed with an air nozzle. Air can be injected into the cavities of multiple rotating rods through the air nozzle, air inlet pipe, air ring, and connecting hose. A piston is slidably and sealed on the part of the cavity away from the fixed tube, and a spring is fixedly installed on one side of the piston. The spring is fixed to the cavity. A water inlet hole is also opened on the rotating rod, and a water inlet groove is opened inside the cavity.
[0009] Preferably, the length of the water inlet groove is longer than the length of the piston, so as to ensure that water completely fills the entire cavity through the water inlet groove.
[0010] Compared with the prior art, the present invention has the following beneficial effects: (1) By setting an aeration pipe and a rotating rod at the bottom of the tank, this utility model achieves full mixing of the agent and water, effectively avoids the phenomenon of agent clumping, and improves cleaning efficiency and effect.
[0011] (2) The medicine tank is compactly designed and does not increase the height of the tank, which can adapt to environments with limited space, such as tunnels, making the application range of the device wider.
[0012] (3) The rotating rod has a cavity and a connecting hose inside. Air is filled into the cavity through the air ring and air inlet pipe. The buoyancy of the water makes the rotating rod float, which is convenient for arrangement and avoids the difficulty of arrangement caused by friction or obstacles. When it is necessary to fix the position of the rotating rod, the gas in the cavity is released, so that the rotating rod sinks to the bottom of the tank and remains stable, which simplifies the operation process.
[0013] (4) The rotating rods are distributed in a fan shape and the aeration pipes are arranged in a meandering manner, which increases the length of the aeration pipes at the bottom of the tank, thereby enhancing the aeration effect and further improving the uniformity of the mixing of the agent and water. Attached Figure Description
[0014] Figure 1 A schematic diagram of the structure of the concentrated brine chemical cleaning tank provided by this utility model; Figure 2 A cross-sectional view of the concentrated brine chemical cleaning tank provided by this utility model; Figure 3 An assembly drawing of multiple rotating rods and fixed tubes; Figure 4 for Figure 2 Enlarged view of section A; Figure 5 This is an assembly drawing of the air ring, connecting hose, and rotating rod; Figure 6 This is a cross-sectional view of the rotating rod. Figure 7 for Figure 2 Enlarged view of section B.
[0015] The corresponding names of the attached figures are as follows: 1. Tank body; 2. Dosing port; 3. Cover plate; 4. Fixed pipe; 5. Rotating rod; 6. Aeration pipe; 7. Connecting hose; 8. Air ring; 9. Air inlet pipe; 10. Air nozzle; 11. Piston; 12. Spring; 13. Water inlet hole; 14. Water inlet trough. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments. The embodiments of the present invention include, but are not limited to, the following embodiments. Example
[0017] like Figure 1-7 As shown, this utility model provides a concentrated brine chemical cleaning tank, comprising: a tank body 1, with a dosing port 2 at the top of the tank body 1. The dosing port 2 is not located at the center of the top of the tank body 1 because multiple holes need to be opened at the top of the tank body 1, each connecting to a different pipe. To avoid altering the original pipeline design, this device retains the dosing port of a traditional chemical cleaning tank. A cover plate 3 is provided at the top of the dosing port 2, and a fixing pipe 4 is fixedly installed at the bottom of the cover plate 3. Multiple rotating rods 5 are rotatably installed at the bottom of the fixing pipe 4. When there is no support below the rotating rods 5, they are free to move under gravity. The end faces downward and also includes a flexible aeration pipe 6. A portion of the aeration pipe 6 extends along and is fixed to the fixed pipe 4, and a portion is fixed to the rotating rod 5. The aeration pipe 6 is connected to an air source. In use, the cover plate 3 covers the top of the dosing port 2, and the free ends of the multiple rotating rods 5 contact the bottom interior of the tank 1. The aeration pipe 6 is arranged along the rotating rod 5, so that the bottom of the tank 1 is aerated. When the agent is added to the tank 1, the agent is fully mixed with water under the aeration of the aeration pipe 6, avoiding the phenomenon of agent clumping. At the same time, it does not increase the height of the tank and can adapt to narrow alleyways.
[0018] Furthermore, the multiple rotating rods 5 are arranged in a fan shape. The purpose of the fan-shaped distribution of the rotating rods is to extend the aeration pipes 6 more comprehensively to the bottom of the tank 1, thereby increasing the aeration effect.
[0019] Furthermore, the portion of the aeration pipe 6 located on the rotating rod 5 is arranged in a meandering manner. The purpose of this is to increase the length of the aeration pipe 6 located at the bottom of the tank 1, thereby increasing the aeration effect. Example
[0020] like Figure 4-7As shown, the rotating rod 5 has a cavity inside, and a connecting hose 7 is installed on the rotating rod 5, communicating with the cavity. An air ring 8 is fixed to the bottom of the fixed pipe 4, and multiple connecting hoses 7 are connected to the air ring 8. An air inlet pipe 9 is installed on the top of the air ring 8, and the top of the air inlet pipe 9 extends to the top of the cover plate 3 and is fixedly fitted with an air nozzle 10. Air can be injected into the cavities of multiple rotating rods 5 through the air nozzle 10, air inlet pipe 9, air ring 8, and connecting hose 7. A piston 11 is slidably and sealed on the part of the cavity away from the fixed pipe 4. A spring 12 is fixedly installed on one side of the piston 11, and the spring 12 is fixed to the cavity. A water inlet hole 13 is also provided on the rotating rod 5, and a water inlet groove 14 is provided inside the cavity. When there is an appropriate amount of high-pressure gas inside the cavity, the state diagram of the piston 11 is shown below. Figure 6 As shown in (a), piston 11 blocks water inlet 13. In this case, water will not enter the cavity. Since the cavity is filled with air, when the entire device needs to be placed inside the tank 1, the rotating rod 5 will float due to the force of the tank 1. This helps the rotating rod 5 to be more easily distributed at the bottom of the tank 1. If the rotating rod 5 cannot float, its free end will contact the bottom of the tank 1, increasing friction and making it difficult to arrange the rotating rod 5. If there are obstacles at the bottom of the tank 1, it will be even more difficult to arrange the rotating rod 5. In this embodiment, the free end of the rotating rod 5 will float under the buoyancy of the water. When the water inside the tank 1 decreases, the rotating rod 5 will rotate downwards with the decrease in water volume until it is distributed in the designated position. After the rotating rod 5 is arranged, the air nozzle 10 is opened to release the high-pressure gas in the cavity. When the air pressure in the cavity decreases, the spring 12 will release its elasticity and push the piston 11 to move. When the piston 11 moves to a specific position (such as...), Figure 6 (b) As shown, water enters the cavity through the water inlet 13, and as the water volume increases, water enters the entire cavity through the water inlet 14, filling the cavity with water. This prevents the rotating rod 5 from floating up and keeps it stably at the bottom of the tank, which is more conducive to aeration. The above operation makes the arrangement of the rotating rod 5 more convenient and also makes the rotating rod 5 more stably arranged at the bottom of the tank 1.
[0021] Furthermore, the length of the water inlet trough 14 is longer than the length of the piston 11, which ensures that water completely fills the entire cavity through the water inlet trough 14.
[0022] Working principle: In use, first allow the rotating rod 5 to hang naturally under gravity. Then, insert the rotating rod 5 and the fixing pipe 4 into the tank 1, with the free end of the rotating rod 5 contacting the bottom of the tank and unfolding in a fan shape. Connect the aeration pipe 6 to an external air source and start the air source. The gas passes through the aeration pipe 6 and forms small bubbles at the bottom of the tank, ensuring thorough mixing of the agent and water and preventing clumping. During aeration, the air volume can be adjusted as needed to optimize the mixing effect.
Claims
1. A concentrated brine chemical cleaning tank, characterized in that, include: The tank (1) has a dosing port (2) at the top and a cover plate (3) at the top. A fixed pipe (4) is fixedly installed at the bottom of the cover plate (3). Multiple rotating rods (5) are rotatably installed at the bottom of the fixed pipe (4), with their free ends facing downwards under gravity. The tank also includes a flexible aeration pipe (6). A portion of the aeration pipe (6) extends along the fixed pipe (4) and is fixed to the fixed pipe (4), while a portion is fixed to the rotating rods (5). The aeration pipe (6) is connected to an air source.
2. The concentrated brine chemical cleaning tank according to claim 1, characterized in that, Multiple rotating rods (5) are arranged in a fan shape.
3. The concentrated brine chemical cleaning tank according to claim 1, characterized in that, The portion of the aeration pipe (6) located on the rotating rod (5) is arranged in a meandering manner.
4. The concentrated brine chemical cleaning tank according to claim 1, characterized in that, The rotating rod (5) has a cavity inside. A connecting hose (7) is installed on the rotating rod (5). The connecting hose (7) is connected to the cavity. An air ring (8) is fixed at the bottom of the fixed pipe (4). Multiple connecting hoses (7) are connected to the air ring (8). An air inlet pipe (9) is installed at the top of the air ring (8). The top of the air inlet pipe (9) extends to the top of the cover plate (3) and is fixedly installed with an air nozzle (10). A piston (11) is slidably sealed on the part of the cavity away from the fixed pipe (4). A spring (12) is fixedly installed on one side of the piston (11). The spring (12) is fixed to the cavity. A water inlet hole (13) is also opened on the rotating rod (5). A water inlet groove (14) is opened inside the cavity.
5. A concentrated brine chemical cleaning tank according to claim 4, characterized in that, The length of the water inlet tank (14) is longer than the length of the piston (11).