Wastewater treatment device capable of detecting heavy ion concentration

By combining filtration and traction mechanisms in the wastewater treatment device, the particle impurities are automatically removed, which solves the problems of low detection accuracy and high cost of heavy ion concentration detector, and achieves efficient and low-cost heavy ion concentration detection.

CN223055179UActive Publication Date: 2025-07-04SUZHOU XINHELAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202421694719.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-07-04
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

When detecting wastewater, the existing heavy ion concentration detectors contain particulate impurities, which affects the accuracy of the detection result and requires additional pretreatment equipment, which is inconvenient to operate and high cost.

Method used

A wastewater treatment device including a filtering mechanism and a traction mechanism is designed. The traction mechanism is used to remove particulate impurities, the traction mechanism provides power, and a heavy ion concentration detector is used to detect. The automatic removal of impurities is achieved through the coordinated movement of the scraper and the impeller to avoid the use of additional equipment.

Benefits of technology

Improves the accuracy of wastewater purity and heavy ion concentration detection, simplifies the operation process, reduces costs, and achieves efficient detection without additional pretreatment equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wastewater treatment, and discloses a wastewater treatment device capable of detecting heavy ion concentration, which comprises a mounting rack, a filtering mechanism and a traction mechanism are fixedly mounted on the mounting rack, a heavy ion concentration detector is fixedly mounted on the filtering mechanism, and the traction mechanism is fixedly mounted on the heavy ion concentration detector. The filtering mechanism is used for filtering particle impurities in wastewater and storing the wastewater, the traction mechanism is used for providing power for operation of the filtering mechanism, and the heavy ion concentration detector is used for detecting the concentration of heavy ions in the wastewater. According to the design, the defects in the prior art are overcome, particle impurities in waste water can be effectively removed before the heavy ion concentration detector detects the heavy ion concentration of the waste water, the purity of the waste water is improved, meanwhile, the detection precision of the heavy ion concentration detector is also improved, and in the reciprocating motion process of the scraping plate, the waste water can be recycled. And particle impurities intercepted at the top of the filter plate can be scraped outwards from the two sides of the left side of the fixed shell.
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Description

Technical Field

[0001] The utility model relates to the technical field of wastewater treatment, and more specifically to a wastewater treatment device capable of detecting heavy ion concentration. Background Art

[0002] Wastewater treatment is to use physical, chemical and biological methods to treat wastewater, purify the wastewater, reduce pollution, so as to achieve wastewater recycling and reuse, and make full use of water resources.

[0003] Deficiencies of the prior art: Under the prior art, before treating wastewater, a heavy ion concentration detector is usually used to detect the heavy ion concentration of the wastewater, so as to better monitor the various data indexes of the wastewater. However, at present, when the heavy ion concentration detector detects the heavy ion concentration of the wastewater, the wastewater often contains some particulate impurities, which affect the purity of the wastewater and also affect the result of the heavy ion concentration detection. In order to remove these particulate impurities, the wastewater needs to be pretreated, but the pretreatment requires additional equipment, which is inconvenient to operate and has a high cost. Summary of the Utility Model

[0004] In order to overcome the above defects of the prior art, the utility model provides a wastewater treatment device capable of detecting heavy ion concentration to solve the problems existing in the above background art.

[0005] The utility model provides the following technical solution: A wastewater treatment device capable of detecting heavy ion concentration, including a mounting frame, on which a filtering mechanism and a traction mechanism are fixedly installed. A heavy ion concentration detector is fixedly installed on the filtering mechanism. The filtering mechanism is used to filter particulate impurities in the wastewater and store the wastewater. The traction mechanism is used to provide power for the operation of the filtering mechanism. The heavy ion concentration detector is used to detect the heavy ion concentration in the wastewater.

[0006] Preferably, the filtering mechanism includes a storage cylinder and a scraper. The heavy ion concentration detector is fixedly installed on the surface of the storage cylinder. The storage cylinder is divided into a filtering section and a storage section. The bottom of the filtering section and the top of the storage section are fixedly connected through a fixed shell. The fixed shell is a rectangular shell structure with openings on both left and right sides. A drain valve is fixedly installed at the bottom of the storage section. An inlet pipe is fixedly installed at the top of the filtering section. The bottom of the fixed shell is fixedly connected with a filter plate.

[0007] Preferably, a reciprocating lead screw and a guide rod are arranged at the top of the filter plate. A group of positioning frames are fixedly connected to the top of the fixed shell. Both ends of the reciprocating lead screw are rotatably connected with the positioning frames. Both ends of the guide rod are fixedly connected with the positioning frames. One end of the scraper is threadedly connected to the surface of the reciprocating lead screw. The other end of the scraper is slidably connected to the surface of the guide rod.

[0008] Preferably, the traction mechanism includes a mounting shell, the top of the mounting shell is fixedly connected to the bottom of the drain valve, a drain pipe is fixedly installed at the bottom of the mounting shell, a rotating rod is rotatably installed inside the mounting shell, an impeller is fixedly connected to the surface of the rotating rod, one end of the rotating rod passes through the inner wall of the mounting shell and extends outward, a limiting frame is fixedly connected to the top of the mounting shell, a connecting rod is rotatably installed on the limiting frame, and a first power transmission member is arranged between one end of the rotating rod and the connecting rod.

[0009] Preferably, one end of the reciprocating lead screw passes through a positioning frame and extends outward, a worm gear is fixedly connected to one end of the reciprocating lead screw, a support frame is fixedly installed on the fixed shell, a transmission rod is rotatably installed on the support frame, a worm is fixedly connected to the surface of the transmission rod, a second power transmission member is arranged between the transmission rod and the connecting rod, and the worm gear is meshed with the worm.

[0010] The technical effects and advantages of the present utility model are as follows:

[0011] 1. When the present utility model is in use, wastewater can enter the storage cylinder through the liquid inlet pipe. During the process of the wastewater entering the storage section of the storage cylinder from the filtration section of the storage cylinder, the wastewater passes through the filter plate, and the filter plate filters out the particulate impurities in the wastewater. The heavy ion concentration detector detects the heavy ion concentration of the wastewater in the storage section of the storage cylinder. After the detection is completed, the drain valve is opened, and the wastewater enters the mounting shell. The wastewater continuously impacts the impeller, driving the impeller and the rotating rod as a whole to rotate around the axis of the rotating rod. Then, the wastewater is output outward through the drain pipe. This design solves the deficiencies in the prior art. Before the heavy ion concentration detector detects the heavy ion concentration of the wastewater, the particulate impurities in the wastewater can be effectively removed, improving the purity of the wastewater and also the detection accuracy of the heavy ion concentration detector. Moreover, the treatment of particulate impurities in the wastewater does not require additional pretreatment equipment, with a high degree of integration, bringing great convenience to the operation of the staff and also reducing costs.

[0012] 2. While the rotating rod is rotating, it can drive the connecting rod to rotate around its own axis. While the connecting rod is rotating, it can drive the transmission rod to rotate around its own axis synchronously. The transmission rod rotates and drives the reciprocating lead screw to rotate around its own axis synchronously through the worm and the worm gear. The reciprocating lead screw rotates and drives the scraper to reciprocate synchronously along the guide rod. This design solves the deficiencies in the prior art. During the reciprocating movement of the scraper, the particulate impurities intercepted on the top of the filter plate can be scraped out from both sides on the left side of the fixed shell, effectively preventing the filter plate from being blocked. Moreover, the power for the movement of the scraper comes from the impact force of the wastewater on the impeller, without adding any motors and circuit systems, thus effectively reducing the costs and maintenance expenses brought by the electronic control. Description of the Drawings

[0013] Figure 1This is the overall structural schematic diagram of the present utility model.

[0014] Figure 2 This is the overall structural sectional view of the present utility model.

[0015] Figure 3 This is the Figure 2 enlarged view of the structure at position A in the present utility model.

[0016] Figure 4 This is the Figure 2 enlarged view of the structure at position B in the present utility model.

[0017] Figure 5 This is the sectional view of the filtering mechanism of the present utility model.

[0018] Figure 6 This is the sectional view of the traction mechanism of the present utility model.

[0019] The reference numerals are: 1, mounting frame; 2, filtering mechanism; 21, storage cylinder; 22, fixed shell; 221, positioning frame; 222, support frame; 23, drain valve; 24, liquid inlet pipe; 25, filter plate; 26, reciprocating lead screw; 261, worm gear; 27, guide rod; 28, scraper; 29, transfer rod; 291, worm; 3, traction mechanism; 31, mounting shell; 311, limiting frame; 32, rotating rod; 33, impeller; 34, drain pipe; 35, first power transmission member; 36, second power transmission member; 37, connecting rod; 4, heavy ion concentration detector. Detailed implementation manners

[0020] Next, the technical solutions in the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the present utility model. In addition, the forms of each structure described in the following implementation manners are only examples, and a wastewater treatment device capable of detecting the heavy ion concentration involved in the present utility model is not limited to the structures described in the following implementation manners. All other implementation manners obtained by those of ordinary skill in the art without creative efforts fall within the scope of protection of the present utility model.

[0021] The present utility model provides a wastewater treatment device capable of detecting the heavy ion concentration, including a mounting frame 1, a filtering mechanism 2 and a traction mechanism 3 are fixedly installed on the mounting frame 1, a heavy ion concentration detector 4 is fixedly installed on the filtering mechanism 2, the filtering mechanism 2 is used for filtering particulate impurities in the wastewater and storing the wastewater, the traction mechanism 3 is used to provide power for the operation of the filtering mechanism 2, and the heavy ion concentration detector 4 is used for detecting the heavy ion concentration in the wastewater.

[0022] Further, the filtering mechanism 2 includes a storage cylinder 21 and a scraping plate 28. The heavy ion concentration detector 4 is fixedly installed on the surface of the storage cylinder 21, and the detection probe of the heavy ion concentration detector 4 extends into the storage cylinder 21. The heavy ion concentration detector 4 is an existing heavy ion concentration detection technology and will not be elaborated here. The storage cylinder 21 is divided into a filtering section and a storage section. The bottom of the filtering section and the top of the storage section are fixedly connected through a fixed shell 22. The fixed shell 22 is a rectangular shell structure with openings on both left and right sides. A drain valve 23 is fixedly installed at the bottom of the storage section. The drain valve 23 is an existing electric control valve technology. A liquid inlet pipe 24 is fixedly installed at the top of the filtering section. The bottom of the fixed shell 22 is fixedly connected with a filter plate 25. The liquid inlet pipe 24 is used to introduce wastewater into the filtering section, and the filter plate 25 is used to filter out particulate impurities in the wastewater.

[0023] Further, a reciprocating lead screw 26 and a guide rod 27 are arranged at the top of the filter plate 25. A group of positioning brackets 221 are fixedly connected to the top of the fixed shell 22. The positioning brackets 221 are used to support the reciprocating lead screw 26 and the guide rod 27. Both ends of the reciprocating lead screw 26 are rotatably connected to the positioning brackets 221, and both ends of the guide rod 27 are fixedly connected to the positioning brackets 221. One end of the scraping plate 28 is threadedly connected to the surface of the reciprocating lead screw 26, and the other end of the scraping plate 28 is slidably connected to the surface of the guide rod 27. A sliding guiding fit along the axial direction of the guide rod 27 is formed between the scraping plate 28 and the guide rod 27. When the reciprocating lead screw 26 rotates around its own axis, the scraping plate 28 can reciprocate along the guide rod 27, and the scraping plate 28 can scrape off the particulate impurities accumulated on the top of the filter plate 25.

[0024] Further, the traction mechanism 3 includes a mounting shell 31. The top of the mounting shell 31 is fixedly connected to the bottom of the drain valve 23. A drain pipe 34 is fixedly installed at the bottom of the mounting shell 31. The drain pipe 34 is used to discharge the wastewater in the mounting shell 31 to the outside. A rotating rod 32 is rotatably installed inside the mounting shell 31. An impeller 33 is fixedly connected to the surface of the rotating rod 32. Under the impact of the wastewater, the impeller 33 and the rotating rod 32 as a whole can rotate around the axis of the rotating rod 32. One end of the rotating rod 32 passes through the inner wall of the mounting shell 31 and extends outward. A limiting frame 311 is fixedly connected to the top of the mounting shell 31. A connecting rod 37 is rotatably installed on the limiting frame 311. A first power transmission member 35 for power transmission between the two is provided between one end of the rotating rod 32 and the connecting rod 37. One end of the reciprocating lead screw 26 passes through a positioning frame 221 and extends outward. A worm gear 261 is fixedly connected to one end of the reciprocating lead screw 26. A support frame 222 is fixedly installed on the fixed shell 22. A transmission rod 29 is rotatably installed on the support frame 222. A worm 291 is fixedly connected to the surface of the transmission rod 29. The worm gear 261 is meshed with the worm 291. The worm gear 261 and the worm 291 cooperate with each other to transmit the power of the transmission rod 29 to the reciprocating lead screw 26. A second power transmission member 36 for power transmission between the two is provided between the transmission rod 29 and the connecting rod 37. Preferably, both the first power transmission member 35 and the second power transmission member 36 are belt drive structures. Since the surface of the reciprocating lead screw 26 is a double-thread structure, the reciprocating lead screw 26 can drive the scraping plate 28 to reciprocate along the axis of the reciprocating lead screw 26 by rotating in one direction.

[0025] Working principle of the utility model: During actual operation, the wastewater enters the storage cylinder 21 through the liquid inlet pipe 24. During the process of the wastewater entering the storage section of the storage cylinder 21 from the filtration section of the storage cylinder 21, the wastewater passes through the filter plate 25. The filter plate 25 filters out the particulate impurities in the wastewater. The heavy ion concentration detector 4 detects the heavy ion concentration of the wastewater in the storage section of the storage cylinder 21. After the detection is completed, the drain valve 23 is opened, and the wastewater enters the mounting shell 31. At this time, the wastewater continuously impacts the impeller 33, driving the impeller 33 and the rotating rod 32 as a whole to rotate around the axis of the rotating rod 32. Then the wastewater is output to the outside through the drain pipe 34.

[0026] While the rotating rod 32 rotates, it drives the connecting rod 37 to rotate around its own axis through the first power transmission member 35. The connecting rod 37 rotates and drives the transmission rod 29 to rotate around its own axis synchronously through the second power transmission member 36. The transmission rod 29 rotates and drives the reciprocating lead screw 26 to rotate around its own axis synchronously through the worm 291 and the worm gear 261. The reciprocating lead screw 26 rotates and drives the scraping plate 28 to reciprocate synchronously along the guide rod 27. During the movement of the scraping plate 28, the particulate impurities intercepted on the top of the filter plate 25 are scraped out from both sides on the left side of the fixed shell 22.

[0027] The following points should be noted: First, in the description of this application, it should be noted that unless otherwise specified and defined, the terms "installed", "connected", and "coupled" should be understood in a broad sense, which can be a mechanical connection or an electrical connection, or can be the internal communication of two components, and can be directly connected. The terms "upper", "lower", "left", "right", etc. are only used to represent relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may change;

[0028] Second, in the attached drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. For other structures, reference can be made to the usual designs. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;

[0029] Finally, the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A wastewater treatment device capable of detecting heavy ion concentration, comprising a mounting frame (1), characterized in that, A filter mechanism (2) and a traction mechanism (3) are fixedly installed on the mounting bracket (1). A heavy ion concentration detector (4) is fixedly installed on the filter mechanism (2). The filter mechanism (2) is used to filter particulate impurities in wastewater and store the wastewater. The traction mechanism (3) is used to provide power for the operation of the filter mechanism (2). The heavy ion concentration detector (4) is used to detect the heavy ion concentration in the wastewater.

2. The wastewater treatment device capable of detecting the concentration of heavy ions according to claim 1, characterized in that The filter mechanism (2) includes a storage cylinder (21) and a scraper (28). The heavy ion concentration detector (4) is fixedly installed on the surface of the storage cylinder (21). The storage cylinder (21) is divided into a filtering section and a storage section. The bottom of the filtering section and the top of the storage section are fixedly connected by a fixed shell (22). The fixed shell (22) is a rectangular shell structure with openings on both left and right sides. A drain valve (23) is fixedly installed at the bottom of the storage section. An inlet pipe (24) is fixedly installed at the top of the filtering section. A filter plate (25) is fixedly connected to the bottom of the fixed shell (22).

3. The wastewater treatment device capable of detecting the concentration of heavy ions according to claim 2, characterized in that, A reciprocating lead screw (26) and a guide rod (27) are arranged at the top of the filter plate (25). A set of positioning brackets (221) are fixedly connected to the top of the fixed shell (22). The two ends of the reciprocating lead screw (26) are rotatably connected to the positioning brackets (221). The two ends of the guide rod (27) are fixedly connected to the positioning brackets (221). One end of the scraper (28) is threadedly connected to the surface of the reciprocating lead screw (26). The other end of the scraper (28) is slidably connected to the surface of the guide rod (27).

4. The wastewater treatment device capable of detecting the concentration of heavy ions according to claim 1, wherein, The traction mechanism (3) includes a mounting shell (31). The top of the mounting shell (31) is fixedly connected to the bottom of the drain valve (23). A drain pipe (34) is fixedly installed at the bottom of the mounting shell (31). A rotating rod (32) is rotatably installed inside the mounting shell (31). An impeller (33) is fixedly connected to the surface of the rotating rod (32). One end of the rotating rod (32) passes through the inner wall of the mounting shell (31) and extends outward. A limiting bracket (311) is fixedly connected to the top of the mounting shell (31). A connecting rod (37) is rotatably installed on the limiting bracket (311). A first power transmission member (35) is arranged between one end of the rotating rod (32) and the connecting rod (37).

5. The wastewater treatment device capable of detecting the concentration of heavy ions according to claim 3, characterized in that, One end of the reciprocating lead screw (26) passes through a positioning bracket (221) and extends outward. A worm gear (261) is fixedly connected to one end of the reciprocating lead screw (26). A support frame (222) is fixedly installed on the fixed shell (22). A transmission rod (29) is rotatably installed on the support frame (222). A worm (291) is fixedly connected to the surface of the transmission rod (29). A second power transmission member (36) is arranged between the transmission rod (29) and the connecting rod (37). The worm gear (261) is meshed with the worm (291).