Water body pollution treatment device with detection function
By installing precision instruments in the water pollution treatment device to detect and separate wastewater types, combined with a hydraulic rotary motor and automatic induction connection, accurate classification and efficient purification of wastewater are achieved, solving the problems of insufficient detection and poor adaptability of existing devices, and improving treatment efficiency and adaptability.
Patent Information
- Application Number
- CN202510669748.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2045-05-23
AI Technical Summary
Existing water pollution treatment devices lack effective detection functions, making it impossible to accurately determine the composition and extent of pollution in water sources. This results in poor treatment effects, poor adaptability to different types of polluted water sources, low treatment efficiency, and high costs.
Precision instruments are installed inside the separation tank to detect the chemical indicators of wastewater, separating it into domestic sewage, industrial wastewater and agricultural wastewater. The adsorption balls are driven to rotate by a hydraulic rotary motor. Automatic induction male and female connectors are used, along with micro pumps and negative pressure pumps, to achieve accurate classification and efficient collection of wastewater. Purification mechanisms A and B are set up, and appropriate purification paths and processes are selected.
It enables precise classification and efficient treatment of different types of wastewater, improves treatment capacity, meets the needs of complex mixed polluted water bodies, reduces costs, prevents cross-contamination, and ensures the targeted and effective treatment process.
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Figure CN120589816B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of water pollution treatment, in particular to a water pollution treatment device with detection function. BACKGROUND
[0002] Water pollution refers to the phenomenon that due to human activities or natural processes, a large amount of pollutants is discharged into water bodies, which exceeds the self-purification capacity of water bodies, causing changes in the physical, chemical, biological and other aspects of water bodies, thereby affecting the effective use of water, endangering human health or damaging the ecological environment.
[0003] At present, the existing water pollution treatment devices on the market have many defects. On the one hand, most of the treatment devices lack effective detection, and cannot accurately judge the specific composition and pollution degree of different polluted water sources, which leads to the use of a unified treatment method in the treatment process, and it is difficult to develop a targeted treatment scheme according to the actual pollution situation, so that the treatment effect is greatly discounted, and the removal effect of some special pollutants is not good, which cannot meet the increasingly strict environmental protection requirements. On the other hand, even if part of the device is equipped with detection function, the detection and treatment links are disconnected, the detection data cannot guide the treatment process in time and effectively, and these devices have poor adaptability to different types of polluted water sources, and cannot flexibly switch the treatment process, resulting in low treatment efficiency and high cost when treating complex mixed pollution water bodies.
[0004] Therefore, we propose a new water pollution treatment device with detection function to solve the problems raised in the background art. SUMMARY
[0005] The purpose of the present application is to provide a water pollution treatment device with detection function, which is provided with a separation mechanism, a precision instrument is arranged in the built-in groove of the separation tank, different chemical indicators of sewage are detected, sewage is divided into domestic sewage, industrial wastewater and agricultural sewage, appropriate purification path and treatment process are selected according to the type of sewage, and the treatment capacity of different types of sewage is improved, so as to solve the problems raised in the background art.
[0006] To achieve the above purpose, the present application provides the following technical scheme: a water pollution treatment device with detection function, comprising a circulating mechanism, the output end of the circulating mechanism is fixedly connected with a separation mechanism;
[0007] The separation mechanism includes a separation box, an internal frame and an adsorption ball; the inner wall of the separation box is fixedly installed with a partition plate, a group of sliding grooves are formed in one side of the outer wall of the partition plate, two automatic induction female heads A are fixedly inserted in the inside of the partition plate, sliding blocks are slidingly embedded in the inner walls of a group of the sliding grooves, support plates are fixedly connected between one side of the outer walls of a group of the sliding blocks, the top of the support plate is fixedly connected with a sealing plate, an air compressor is fixedly connected to the inside of the bottom of the separation box, a transverse partition plate is fixedly connected between the inner wall of the separation box and the partition plate, and an automatic induction male head B is fixedly inserted in the inside of the transverse partition plate.
[0008] The outer wall of the adsorption ball is fixedly connected with a group of micro pumps, the top of the adsorption ball is fixedly connected with a double-path negative pressure pump, the output end of the double-path negative pressure pump is fixedly connected with two bellows, and the output end of each of the two bellows is fixedly connected with an automatic induction male head.
[0009] Preferably, the outer wall of the double-path negative pressure pump is fixedly connected with two fixed plates, a micro cylinder is fixedly inserted in the inside of each of the two fixed plates, the outer wall of each of the two automatic induction male heads is fixedly connected with a linkage plate, and the telescopic ends of the two micro cylinders are fixedly connected with one side of the outer wall of the linkage plate.
[0010] Preferably, the outer wall of the adsorption ball is fixedly connected with two driving rods, a group of driving grooves are pre-set in the inside of the internal frame, and the two driving rods are respectively rotationally connected in the inside of the driving grooves.
[0011] Preferably, the outer wall of the internal frame is fixedly connected with a hydraulic rotary motor on one side, and the adjustment end of the hydraulic rotary motor is fixedly connected with one side of the outer wall of one of the two driving rods.
[0012] Preferably, the circulation mechanism includes a sewage pump, the input end of the sewage pump is fixedly connected with an input pipe, and the output end of the sewage pump is fixedly connected with a transmission pipe.
[0013] Preferably, the output end of the transmission pipe is fixedly connected with a check valve, and the output end of the check valve is in communication with the inside of the separation box.
[0014] Preferably, the outer wall of the separation mechanism is fixedly connected with a purification mechanism A.
[0015] The purification mechanism A includes a one-way valve A, the input end of the one-way valve A is in communication with the inside of the separation box, and the output end of the one-way valve A is fixedly connected with a filter A.
[0016] Preferably, the output end of the filter A is fixedly connected with a conveying pipe A, and the output end of the conveying pipe A is fixedly connected with a sewage purification device A.
[0017] Preferably, the outer wall of the separation mechanism is fixedly connected with a purification mechanism B;
[0018] The purification mechanism B comprises a one-way valve B, and the input end of the one-way valve B is connected with the interior of the separation tank.
[0019] Preferably, the output end of the filter B is fixedly connected with a conveying pipe B, and the output end of the conveying pipe B is fixedly connected with a sewage purification device B.
[0020] Compared with the prior art, the present application has the following advantages:
[0021] 1. In the present application, the device sets up precision instruments in the built-in groove of the separation tank to detect different chemical indicators of sewage, and divides the sewage into domestic sewage, industrial wastewater and agricultural wastewater, and stores them in different spaces respectively, so as to realize accurate classification. Then, the automatic inductive male head and female head on the adsorption ball are accurately connected by using the hydraulic rotary motor to drive the adsorption ball to rotate, and the micro pump, negative pressure pump and air compressor work in cooperation. The air compressor keeps the pressure storage tank at high pressure, pushes the sewage close to the micro pump, improves the sewage pumping efficiency, speeds up the processing process, and enhances the adaptability to different sewage. The purification mechanism A and the purification mechanism B are set up, different filters and sewage purification devices are connected, the appropriate purification path and processing technology can be selected according to the type of sewage, the processing capacity of different types of sewage is improved, and the processing demand of complex mixed pollution water body is met.
[0022] 2. In the present application, the sealing plate effectively prevents the sewage from penetrating into the pressure storage tank, guarantees the independence of different spaces in the equipment, prevents cross contamination between different types of sewage, and ensures the pertinence and effectiveness of the subsequent processing process. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a front view structural plan of the water body pollution treatment device with a detection function in the present application;
[0024] Figure 2 It is a main view structural perspective drawing of the water body pollution treatment device with a detection function in the present application;
[0025] Figure 3 It is a partial structure perspective drawing of the water body pollution treatment device with a detection function in the present application;
[0026] Figure 4 It is an A structure enlarged view of the water body pollution treatment device with a detection function in the present application;
[0027] Figure 5 It is a partial structure sectional perspective drawing of the water body pollution treatment device with a detection function in the present application;
[0028] Figure 6 isometric view of the separation mechanism in the water body pollution treatment device with detection function of the present application;
[0029] Figure 7 isometric view of the separation mechanism in the water body pollution treatment device with detection function of the present application;
[0030] Figure 8 isometric view of the separation mechanism in the water body pollution treatment device with detection function of the present application;
[0031] Figure 9 isometric view of the separation mechanism in the water body pollution treatment device with detection function of the present application.
[0032] Figure: 1, circulation mechanism; 11, sewage pump; 12, input pipe; 13, transmission pipe; 14, check valve; 2, separation mechanism; 21, separation tank; 22, mid-plate; 221, sliding groove; 222, automatic induction female head A; 223, sliding block; 23, sealing plate; 231, support plate; 24, air compressor; 25, built-in frame; 251, drive slot; 252, drive rod; 253, hydraulic rotary motor; 26, adsorption ball; 261, micro pump; 27, negative pressure pump; 271, fixed plate; 272, air cylinder; 273, bellows; 274, linkage plate; 28, automatic induction male head; 29, transverse partition plate; 291, automatic induction female head B; 3, purification mechanism A; 31, one-way valve A; 32, filter A; 33, conveying pipe A; 34, sewage purification device A; 4, purification mechanism B; 41, one-way valve B; 42, filter B; 43, conveying pipe B; 44, sewage purification device B. DETAILED DESCRIPTION
[0033] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.
[0034] Embodiment one: please refer to Figures 1-9 The present application provides a technical solution: a water body pollution treatment device with detection function, which comprises a circulation mechanism 1, and the output end of the circulation mechanism 1 is fixedly connected with a separation mechanism 2.
[0035] The separation mechanism 2 comprises a separation tank 21, a built-in frame 25 and an adsorption ball 26.
[0036] The inner surface wall of the separation box 21 is fixedly installed with a partition plate 22, a group of sliding grooves 221 are formed on one side of the outer wall of the partition plate 22, two automatic induction female heads A222 are fixedly inserted in the inner part of the partition plate 22, a group of sliding blocks 223 are slidingly embedded in the inner surface wall of the sliding grooves 221, a support plate 231 is fixedly connected between the outer wall of one side of the group of sliding blocks 223, a sealing plate 23 is fixedly connected to the top of the support plate 231, an air compressor 24 is fixedly connected to the inner bottom of the separation box 21, a transverse partition plate 29 is fixedly connected between the inner surface wall of the separation box 21 and the partition plate 22, and an automatic induction male head B291 is fixedly inserted in the inner part of the transverse partition plate 29.
[0037] The outer surface wall of the adsorption ball 26 is fixedly connected with a group of micro pumps 261, the top of the adsorption ball 26 is fixedly connected with a double-path negative pressure pump 27, the output ends of the two corrugated pipes 273 are fixedly connected with two automatic induction male heads 28, the outer surface wall of the double-path negative pressure pump 27 is fixedly connected with two fixed plates 271, the inner parts of the two fixed plates 271 are fixedly inserted with micro air cylinders 272, the outer surface walls of the two automatic induction male heads 28 are fixedly connected with linkage plates 274, and the telescopic ends of the two micro air cylinders 272 are fixedly connected with one side of the outer wall of the linkage plates 274, the outer surface wall of the adsorption ball 26 is fixedly connected with two drive rotating rods 252, a group of drive rotating grooves 251 are pre-set in the inner part of the built-in frame 25, and the two drive rotating rods 252 are respectively rotationally connected in the inner part of the drive rotating grooves 251, and the outer wall of one side of the built-in frame 25 is fixedly connected with a hydraulic rotary motor 253, and the adjusting end of the hydraulic rotary motor 253 is fixedly connected with one side of the outer wall of one of the two drive rotating rods 252.
[0038] The circulating mechanism 1 comprises a sewage pump 11, the input end of the sewage pump 11 is fixedly connected with an input pipe 12, the output end of the sewage pump 11 is fixedly connected with a transmission pipe 13, the output end of the transmission pipe 13 is fixedly connected with a check valve 14, and the output end of the check valve 14 is in communication with the inner part of the separation box 21.
[0039] In this embodiment, the sewage pump 11 is used as the power source during the transmission of sewage, and the input pipe 12 is used as the conveying medium, so that the sewage can finally be transmitted through the inner part of the transmission pipe 13 to the inner part of the separation mechanism 2.
[0040] In a specific scheme, referring to Figure 9As shown: in the cooperation of the separation tank 21, the partition plate 22, the transverse partition plate 29 and the sealing plate 23, the pressure accumulation groove, the built-in groove, the first storage space, the second storage space and the third storage space are effectively formed in the inside of the separation tank 21. First, in the cooperation of the circulating mechanism 1, the sewage is effectively delivered to the inside of the built-in groove. The built-in groove can effectively form the detection of the sewage. At the position of the built-in groove in the separation tank 21, a plurality of various precise instruments and equipment are arranged to analyze and detect the chemical oxygen demand (COD), ammonia nitrogen, heavy metal ions and pH value in the water sample, so as to divide the sewage into domestic sewage, industrial wastewater and agricultural wastewater. The sewage delivered each time is marked, and different types of sewage are delivered into the first storage space, the second storage space or the third storage space, so as to realize the classification of the sewage.
[0041] And with the hydraulic rotary motor 253 as the driving force, and the two drive rods 252 rotate connected in the drive slot 251 inside the matching, can keep the adsorption ball 26 to rotate every time in ninety degrees, when the two automatic induction male head 28 with the rotation of the adsorption ball 26, keep with two automatic induction female head A 222 and an automatic induction female head B 291 in the state of alignment, the head cylinder 272 with the alignment start, and produce telescopic, the telescopic front end of the cylinder 272 keeps fixed installation of linkage plate 274, and linkage plate 274 is fixedly connected on the outer wall of the automatic induction male head 28, automatic induction male head 28 through the telescopic cylinder 272 movement, then keep automatic induction male head 28 can be inserted in the inside of three automatic induction female head A 222 or automatic induction female head B 291, when the male head close to the inside of the female head, bellows 273 can be adjusted according to the length of the movement of the automatic induction male head 28, after the connection of the coil in the male head into alternating current, produce alternating magnetic field, the coil in the female head will produce induced electromotive force in this alternating magnetic field, thus producing induced current, then keep automatic induction male head 28 and automatic induction female head A 222 form a kind of communication state between each other, and under the action of three micro pump 261, can take the sewage inside the built-in groove to the inside of the adsorption ball 26, and under the adsorption of the negative pressure pump 27, to the one end of the communication, and to the first storage space, the second storage space or the third storage space one of them, and in this kind of sewage adsorption process, the sewage inside the built-in groove will gradually reduce, air compressor 24 start at the same time, can take the outside gas to its inside, then filled in the inside of the accumulator tank, and keep its inside in a high pressure state, rely on this kind of high pressure effect, and under the cooperation of the sliding block 223 slidingly embedded in the inside of the sliding slot 221, rely on the support plate 231 to push the top of the sewage to move upwards, so as to always keep the sewage always close to the micro pump 261, improve the sewage, and the sealing plate 23 can keep effective sealing, avoid the sewage to the inside of the accumulator tank.
[0042] Embodiment two: according to Figures 4-8 As shown, the outer wall of the separation mechanism 2 is fixedly connected with the purification mechanism A 3;
[0043] The purification mechanism A 3 includes a one-way valve A 31, and the input end of the one-way valve A 31 is connected with the inside of the separation tank 21, the output end of the one-way valve A 31 is fixedly connected with the filter A 32, the output end of the filter A 32 is fixedly connected with the delivery pipe A 33, and the output end of the delivery pipe A 33 is fixedly connected with the sewage purification device A 34;
[0044] The outer wall of the separation mechanism 2 is fixedly connected with the purification mechanism B 4;
[0045] The purifying mechanism B4 comprises a one-way valve B41, an input end of the one-way valve B41 is communicated with the inside of the separation tank 21, an output end of the one-way valve B41 is fixedly communicated with a filter B42, an output end of the filter B42 is fixedly communicated with a conveying pipe B43, and an output end of the conveying pipe B43 is fixedly communicated with the sewage purifying device B44.
[0046] In the embodiment, when different types of sewage are respectively delivered into the first storage space, the second storage space and the third storage space, then under the action of the purifying mechanism A3 and the purifying mechanism B4, the sewage in the second storage space or the third storage space can be respectively delivered into the sewage purifying device A34 and the sewage purifying device B44, and the sewage purifying device A34 and the sewage purifying device B44 can perform corresponding purification treatment on different types of sewage.
[0047] The whole mechanism achieves the following effects and working principles: in the modern sewage treatment system, efficient treatment and classified purification of sewage are first realized. First, the sewage pump 11 serves as a power source in the whole sewage delivery process and provides power for the flow of sewage. The input pipe 12 serves as a medium for conveying sewage. Under the action of the sewage pump 11, the sewage can smoothly pass through the delivery pipe 13 and finally be delivered into the separation mechanism 2.
[0048] Specifically, the operation principle of the separation mechanism 2 is described with reference to Figure 9As shown, the cooperation between the separation tank 21, the partition plate 22, the transverse partition plate 29 and the sealing plate 23 builds multiple spaces in the interior of the separation tank 21, including the pressure accumulation groove, the built-in groove, the first storage space, the second storage space and the third storage space. With the assistance of the circulating mechanism 1, the sewage is transported into the built-in groove which first serves as a temporary storage area for the sewage. Multiple instruments are installed in the interior of the built-in groove in the separation tank 21, which can conduct in-depth and detailed analysis and detection on multiple key indicators in the sewage sample, such as chemical oxygen demand (COD), ammonia nitrogen content, heavy metal ion concentration and pH value. Through comprehensive evaluation of these indicators, the sewage is accurately classified into three categories: domestic sewage, industrial wastewater and agricultural wastewater. In order to facilitate subsequent management and treatment, the incoming sewage will be labeled, and then according to the category, it will be delivered to the first storage space, the second storage space or the third storage space, thereby realizing precise classification of the sewage. Next, the rotation of the adsorption ball 26 and its connection process with the automatic sensing male head 28 and the female head, the hydraulic rotary motor 253 serves as the driving force and cooperates with the two rotationally connected driving rods 252 in the driving groove 251 to enable the adsorption ball 26 to rotate at an angle of ninety degrees each time. When the adsorption ball 26 rotates, the two automatic sensing male heads 28 installed thereon also rotate until they are aligned with the two automatic sensing female heads A222 and one automatic sensing female head B291. At this time, the cylinder 272 at the aligned position is quickly started and extends and retracts. The linkage plate 274 is fixedly installed at the extending and retracting front end of the cylinder 272, and the linkage plate 274 is fixedly connected with one side of the outer wall of the automatic sensing male head 28. Therefore, with the extension and retraction action of the cylinder 272, the automatic sensing male head 28 can move accordingly and finally be inserted into one of the three automatic sensing female heads A222 or the automatic sensing female head B291. In the process of the male head approaching the female head, the bellows 273 can flexibly adjust the length according to the movement of the automatic sensing male head 28 to ensure the stability of the connection. When the male head and the female head are successfully connected, the coil in the male head passes through an alternating current to generate an alternating magnetic field. The coil in the female head generates an induced electromotive force under the action of this alternating magnetic field, thereby generating an induced current, so that the automatic sensing male head 28 and the automatic sensing female head A222 form a stable communication state. Under the operation of the three miniature pumps 261, the sewage in the built-in groove is drawn into the interior of the adsorption ball 26. Subsequently, under the adsorption action of the negative pressure pump 27, the sewage is delivered to one end connected with the adsorption ball 26 and finally transported to one of the first storage space, the second storage space or the third storage space. In this process of sewage adsorption and transfer, the amount of sewage in the built-in groove gradually decreases. In order to ensure that the subsequent sewage can be continuously drawn, the air compressor 24 will be started at the same time. It draws the external air into its interior and then charges it into the pressure accumulation groove to maintain a high pressure state in the pressure accumulation groove.Under the action of such high pressure, the sliding block 223 is slidably fitted inside the sliding groove 221, and the support plate 231 pushes the sewage at the top thereof to move upward, thereby ensuring that the sewage is always close to the micro pump 261, greatly improving the pumping efficiency of the sewage. Meanwhile, the sealing plate 23 itself has a sealing effect, which can effectively prevent the sewage from penetrating into the pressure storage groove, thereby ensuring the sealing state of the entire device. After different types of sewage are respectively delivered into the first storage space, the second storage space and the third storage space, the purification mechanism A3 and the purification mechanism B4 play a role, which can respectively deliver the sewage in the second storage space or the third storage space into the sewage purification device A34 and the sewage purification device B44. The two sets of sewage purification devices will adopt corresponding purification treatment processes according to the type of the sewage, and perform deep purification on the sewage to meet the discharge standard or realize the recycling of water resources. Through the cooperation of the above components, the classification and purification of the sewage can be completed.
[0049] Although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still make modifications to the technical solutions recorded in the foregoing embodiments or make equivalent replacements to part of the technical features, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A water pollution treatment device with detection function, comprising a circulation mechanism (1), characterized in that: The output end of the circulation mechanism (1) is fixedly connected to the separation mechanism (2); The separation mechanism (2) includes a separation box (21), an internal frame (25), and an adsorption ball (26). The separation box (21) is equipped with a pressure storage tank, an internal tank, a first storage space, a second storage space, and a third storage space. The internal tank is equipped with a detection instrument that can analyze and detect chemical oxygen demand, ammonia nitrogen content, heavy metal ion concentration, and pH index in wastewater. A partition plate (22) is fixedly installed on the inner wall of the separation box (21). A set of sliding grooves (221) is opened on one side of the outer wall of the partition plate (22). Two automatic sensing female heads A (222) are fixedly inserted inside the partition plate (22). A sliding block (223) is slidably embedded on the inner wall of the sliding groove (221). A set of sliding blocks (223) is slidably embedded in the inner wall of the sliding groove (221). A support plate (231) is fixedly connected to one side of the outer wall of the separation box (23). A sealing plate (23) is fixedly connected to the top of the support plate (231). An air compressor (24) is fixedly connected to the bottom of the separation box (21). The air compressor (24) is installed in the accumulator. A transverse partition (29) is fixedly connected between the middle partition (22) and the inner surface wall of the separation box (21). An automatic sensing female head B (291) is fixedly inserted inside the transverse partition (29). The adsorption ball (26) can rotate at a 90-degree angle each time. The automatic sensing male head (28) also rotates until it is aligned with two automatic sensing female heads A (222) and one automatic sensing female head B (291). A coil is provided inside the male and female heads. The outer wall of the adsorption ball (26) is fixedly connected to a set of micro pumps (261), and the top of the adsorption ball (26) is fixedly connected to a dual-channel negative pressure pump (27). The output end of the dual-channel negative pressure pump (27) is fixedly connected to two bellows (273), and the output ends of the two bellows (273) are fixedly connected to automatic sensing male connectors (28). The outer wall of the dual-channel negative pressure pump (27) is fixedly connected to two fixing plates (271), and micro cylinders (272) are fixedly inserted inside the two fixing plates (271). The outer walls of the two automatic sensing male connectors (28) are fixedly connected to two fixing plates (271). A linkage plate (274) is fixedly connected, and the extension ends of two micro cylinders (272) are respectively fixedly connected to one side of the outer wall of the linkage plate (274). Two drive rods (252) are fixedly connected to the outer wall of the adsorption ball (26). A set of drive grooves (251) is preset inside the built-in frame (25), and the two drive rods (252) are respectively rotatably connected inside the drive grooves (251). A hydraulic rotary motor (253) is fixedly connected to one side of the outer wall of the built-in frame (25), and the adjustment end of the hydraulic rotary motor (253) is fixedly connected to one side of the outer wall of one of the two drive rods (252).
2. The water pollution treatment device with detection function according to claim 1, characterized in that: The circulation mechanism (1) includes a sewage pump (11), the input end of which is fixedly connected to an input pipe (12), and the output end of which is fixedly connected to a transmission pipe (13).
3. A water pollution treatment device with detection function according to claim 2, characterized in that: The output end of the transfer pipe (13) is fixedly connected to a check valve (14), and the output end of the check valve (14) is connected to the interior of the separation box (21).
4. A water pollution treatment device with detection function according to claim 1, characterized in that: The outer wall of the separation mechanism (2) is fixedly connected to the purification mechanism A (3). The purification mechanism A (3) includes a one-way valve A (31), and the input end of the one-way valve A (31) is connected to the interior of the separation box (21). The output end of the one-way valve A (31) is fixedly connected to a filter A (32).
5. A water pollution treatment device with detection function according to claim 4, characterized in that: The output end of the filter A (32) is fixedly connected to the conveying pipe A (33), and the output end of the conveying pipe A (33) is fixedly connected to the sewage purification device A (34).
6. A water pollution treatment device with detection function according to claim 1, characterized in that: The outer wall of the separation mechanism (2) is fixedly connected to the purification mechanism B (4). The purification mechanism B (4) includes a one-way valve B (41), and the input end of the one-way valve B (41) is connected to the interior of the separation box (21). The output end of the one-way valve B (41) is fixedly connected to a filter B (42).
7. A water pollution treatment device with detection function according to claim 6, characterized in that: The output end of the filter B (42) is fixedly connected to the conveying pipe B (43), and the output end of the conveying pipe B (43) is fixedly connected to the sewage purification device B (44).
Citation Information
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