A drinking water quality detection device
By designing a drinking water detection device including buffering, storage, purification and circulation detection structures, the problem of difficulty in achieving multiple detections and error prevention in the prior art drinking water detection is solved, and a more accurate and reliable water quality detection is achieved.
Patent Information
- Application Number
- CN202310157333.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-02-23
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2043-02-23
AI Technical Summary
In the prior art, it is difficult to achieve multiple detections and error prevention during drinking water detection, which affects the accuracy and reliability of water quality detection.
A drinking water quality quality detection device is designed, including a cylinder, a buffer structure, a storage structure, a purification and drainage structure and a circulation detection structure. The device buffers the water flow through the buffer structure, stores the water samples in the storage structure, purifies the drainage structure, and purifies the drainage structure, and realizes multiple cycle detection of drinking water through the circulation detection structure.
Through multiple cycles, the device improves the accuracy and reliability of drinking water detection, ensures the continuity and stability of water quality detection, and reduces the occurrence of errors.
Smart Images

Figure CN116125025B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of drinking water quality detection, and particularly to a drinking water quality detection device. Background Art
[0002] In the process of implementing the present invention, the inventor found that there are at least the following problems in the prior art: Drinking water refers to water that can be directly supplied to the human body without treatment, so it is necessary to ensure the quality of drinking water to meet people's usage requirements. Therefore, it is necessary to frequently detect drinking water to ensure water quality. During the detection of drinking water, multiple detections can be carried out to prevent errors. Summary of the Invention
[0003] An embodiment of the present invention provides a drinking water quality detection device.
[0004] To achieve the above object, the technical solution of the present invention is a drinking water quality detection device, including a cylinder. A first strip-shaped through hole is provided on the side wall of the cylinder, and an observation glass is installed in the first strip-shaped through hole. It is characterized in that a buffer structure is provided on the cylinder, a storage structure is installed on the lower wall surface of the cylinder and below the buffer structure, a purification and drainage structure is installed on the right side of the cylinder, and a circulation detection structure is provided on the cylinder.
[0005] The circulation detection structure includes: a micro pump, a pH meter, a water hardness meter, a pesticide residue rapid detector, a residual chlorine and total chlorine detector, and a first collection bucket;
[0006] A first circular through hole is provided on the lower wall surface of the cylinder, a first water pipe is installed in the first circular through hole, the first collection bucket is placed on the first water pipe, the micro pump is placed in the first collection bucket, a second water pipe extending through the first collection bucket is installed on the micro pump, a "Y" - shaped pipe is installed on the second water pipe, one end of the "Y" - shaped pipe is installed with a first folded pipe, one end of the first folded pipe is inserted into the cylinder, the other end of the "Y" - shaped pipe is installed with a sixth drain pipe, and a plurality of installation holes are provided on the lower wall surface of the cylinder, and the pH meter, the water hardness meter, the pesticide residue rapid detector, and the residual chlorine and total chlorine detector are respectively placed in each installation hole.
[0007] The buffer structure includes: a first water inlet cylinder, a net, a water inlet pipe, and a second water inlet cylinder;
[0008] A water inlet is provided on the upper wall surface of the cylinder, a water inlet pipe is inserted into the water inlet, the first water inlet cylinder is placed on the water inlet pipe, the net is placed in the first water inlet cylinder, a second circular through hole is provided on the net, the second water inlet cylinder is installed in the second circular through hole, and a first control valve is installed on the water inlet pipe.
[0009] The described purification and drainage structure includes: a second collection bucket, filter cotton, activated carbon, and a second micro pump;
[0010] A second drain pipe is provided on the side wall of the cylinder. The second collection bucket is connected to the second drain pipe. A screen plate is installed in the second collection bucket. The filter cotton is laid on the screen plate. A screen cylinder is installed in the second collection bucket. The activated carbon is filled in the screen cylinder. A second micro pump is installed in the cylinder. One end of the second micro pump is provided with a second folded pipe. One end of the second folded pipe is inserted into the cylinder. A second control valve is installed on the second folded pipe. A third drain pipe is inserted into the second collection bucket. A fourth control valve is installed on the second drain pipe and the third drain pipe.
[0011] The described storage structure includes: a third collection bucket, a fourth drain pipe, a first one-way valve, and a fifth drain pipe;
[0012] A fourth circular through hole is provided on the lower wall surface of the cylinder. The fourth drain pipe is connected to the water inlet pipe, and one end of the fourth drain pipe extends out through the fourth circular through hole. The third collection bucket is connected to the fourth drain pipe. The fifth drain pipe is inserted into the side wall surface of the fourth drain pipe. The first one-way valve is respectively arranged in the fourth drain pipe and the fifth drain pipe. A flowing water pipe is inserted into the upper end of the side wall surface of the third collection bucket. A fifth control valve is installed on the flowing water pipe.
[0013] Brackets are installed at both ends of the lower wall surface of the cylinder. A plug is installed on the first water inlet cylinder.
[0014] Rectangular through holes are provided on both the third collection bucket and the second collection bucket. The third collection bucket and the second collection bucket are connected by hinges with sealing doors matching the rectangular through holes.
[0015] A first observation port is provided on the side wall surface of the second collection bucket. A first transparent glass is installed in the first observation port.
[0016] A sixth control valve is installed on the first folded pipe and the sixth drain pipe.
[0017] A first support frame matching the first water inlet cylinder is installed on the cylinder. A second observation port is provided on the first water inlet cylinder. A second transparent glass is installed in the second observation port.
[0018] The above technical solution has the following beneficial effects: a buffer structure, which is convenient for buffering when filling water into the cylinder. Then, through the storage structure, it is convenient for storing water. By statically storing and observing the precipitation in the water. Through the purification and drainage structure, the water is purified and discharged, and the drinking water can be cycled and filled into the cylinder again. Through the circulation detection structure, it is convenient for detecting the circulating flow of the drinking water. Description of the Drawings
[0019] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0020] Figure 1 is a schematic structural diagram of a drinking water quality detection device according to the present invention;
[0021] Figure 2 is a front view of a drinking water quality detection device according to the present invention;
[0022] Figure 3 is a top view of a net of a drinking water quality detection device according to the present invention;
[0023] Figure 4 is a top view of a second collection bucket of a drinking water quality detection device according to the present invention.
[0024] In the figure, 1, cylinder; 2, micro pump; 3, pH meter; 4, water quality hardness meter; 5, pesticide residue rapid detector; 6, residual chlorine and total chlorine detector; 7, first collection bucket; 8, first water pipe; 9, second water pipe; 10, "Y" - shaped pipe; 11, first folded pipe; 12, first water inlet cylinder; 13, net; 14, water inlet pipe; 15, second water inlet cylinder; 16, first control valve; 17, second collection bucket; 18, filter cotton; 19, second micro pump; 20, second drain pipe; 21, screen plate; 22, screen plate; 23, second folded pipe; 24, second control valve; 25, third drain pipe; 26, fourth control valve; 27, third collection bucket; 28, fourth drain pipe; 29, first one - way valve; 30, fifth drain pipe; 31, flowing water pipe; 32, bracket; 33, plug; 34, sealing door; 35, sixth control valve; 36, first support frame; 37, sixth drain pipe; 38, fifth control valve. Detailed implementation manners
[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0026] The following will specifically describe the present invention with reference to the drawings, as Figures 1-4As shown in the figure, it includes a cylinder 1. A first strip-shaped through hole is provided on the side wall surface of the cylinder 1, and an observation glass is installed in the first strip-shaped through hole. A buffer structure is provided on the cylinder 1. A storage structure is installed on the lower wall surface of the cylinder 1 and below the buffer structure. A purification and drainage structure is installed on the right side of the cylinder 1. A circulation detection structure is provided on the cylinder 1;
[0027] It should be noted that: the observation glass on the cylinder 1 facilitates observing the flow of water inside. And the buffer structure on the cylinder 1 has a buffering effect when filling water into the cylinder 1. Then, through the storage structure, it is convenient to store water. By statically storing, the precipitation in the water can be observed. Through the purification and drainage structure, the water is purified and discharged, and the drinking water can be circulated and filled into the cylinder again. Through the circulation detection structure, it is convenient to detect the circulating flow of the drinking water.
[0028] The circulation detection structure includes: a micro pump 2, a pH meter 3, a water quality hardness meter 4, a pesticide residue rapid detector 5, a residual chlorine and total chlorine detector 6, and a first collection bucket 7;
[0029] A first circular through hole is provided on the lower wall surface of the cylinder 1, and a first water pipe 8 is installed in the first circular through hole. The first collection bucket 7 is placed on the first water pipe 8. The micro pump 2 is placed in the first collection bucket 7. A second water pipe 9 extending through the first collection bucket 7 is installed on the micro pump 2. A "Y" - shaped pipe 10 is installed on the second water pipe 9. One end of the "Y" - shaped pipe 10 is installed with a first folded pipe 11, and one end of the first folded pipe 11 is inserted into the cylinder 1. The other end of the "Y" - shaped pipe 10 is installed with a sixth drain pipe 37. A plurality of installation holes are provided on the lower wall surface of the cylinder 1, and the pH meter 3, the water quality hardness meter 4, the pesticide residue rapid detector 5, and the residual chlorine and total chlorine detector 6 are respectively placed in each installation hole;
[0030] It should be noted that: the inside of the cylinder 1 is a cavity structure, which is convenient for drinking water to enter through the buffer structure. When the drinking water flows, it sequentially passes through the pH meter 3, the water quality hardness meter 4, the pesticide residue rapid detector 5, and the residual chlorine and total chlorine detector 6 for detection of the drinking water, and then enters the first collection bucket 7. The detection equipment can adjust and replace suitable detection equipment or replace other water quality detection equipment during installation. The water in the first collection bucket 7 is sucked out by the micro pump 2 and transported back into the cylinder 1 through the first folded pipe 11 for repeated detection. The sixth drain pipe 37 is convenient for discharging after the water in the first collection bucket 7 is sucked out. When using the sixth drain pipe 37, the first control valve 16 on the first folded pipe 11 needs to be closed. When using the first folded pipe 11, the first control valve 16 on the sixth drain pipe 37 is closed.
[0031] The buffer structure includes: a first water inlet cylinder 12, a net 13, a water inlet pipe 14, and a second water inlet cylinder 15;
[0032] The upper wall surface of the cylinder 1 is provided with a water inlet, in which a water inlet pipe 14 is inserted. The first water inlet cylinder 12 is arranged on the water inlet pipe 14, and the net 13 is arranged in the first water inlet cylinder 12. The net 13 is provided with a second circular through hole, and the second water inlet cylinder 15 is installed in the second circular through hole. A first control valve 16 is installed on the water inlet pipe 14.
[0033] It should be noted that: the first water inlet cylinder 12 is installed on the water inlet pipe 14 of the cylinder 1. After the drinking water is poured into the first water inlet cylinder 12, it is buffered by the net 13 to facilitate reducing the falling speed of the water. Then, it is convenient for the water to directly fall into the water inlet pipe 14 through the second water inlet cylinder 15.
[0034] The purification and drainage structure includes: a second collection barrel 17, a filter cotton 18, activated carbon, and a second micro pump 19;
[0035] The side wall surface of the cylinder 1 is provided with a second drain pipe 20. The second collection barrel 17 is connected to the second drain pipe 20. A screen plate 21 is installed in the second collection barrel 17, and the filter cotton 18 is laid on the screen plate 21. A screen cylinder 22 is installed in the second collection barrel 17, and the activated carbon is filled in the screen cylinder 22. A second micro pump 19 is installed in the cylinder 1. One end of the second micro pump 19 is provided with a second folded pipe 23. One end of the second folded pipe 23 is inserted into the cylinder 1. A second control valve 24 is installed on the second folded pipe 23. A third drain pipe 25 is inserted into the second collection barrel 17. A fourth control valve 26 is installed on the second drain pipe 20 and the third drain pipe 25;
[0036] It should be noted that: the second drain pipe 20 is connected to the second collection barrel 17, which is convenient for the water in the cylinder 1 to enter the interior of the second collection barrel 17. After being filtered by the filter cotton 18 and the activated carbon in the second collection barrel 17, the water can be filtered and discharged. The water can be sucked out through the second micro pump 19 and discharged into the cylinder 1 through the second folded pipe 23, which is convenient for re - detection after filtering out impurities. The third drain pipe 25 is convenient for directly discharging the water.
[0037] The storage structure includes: a third collection barrel 27, a fourth drain pipe 28, a first one - way valve 29, and a fifth drain pipe 30;
[0038] The lower wall surface of the cylinder 1 is provided with a fourth circular through hole. The fourth drain pipe 28 is connected to the water inlet pipe 14, and one end of the fourth drain pipe 28 extends out through the fourth circular through hole. The third collection barrel 27 is connected to the fourth drain pipe 28. The fifth drain pipe 30 is inserted into the side wall surface of the fourth drain pipe 28. The first one - way valve 29 is respectively arranged in the fourth drain pipe 28 and the fifth drain pipe 30. A flowing water pipe 31 is inserted into the upper end of the side wall surface of the third collection barrel 27, and a fifth control valve 38 is installed on the flowing water pipe 31.
[0039] It should be noted that: The fourth circular through-hole on the lower wall surface of the cylinder 1 facilitates the fourth drain pipe 28 to drain water into the third collection bucket 27. The fifth drain pipe 30 is connected to the fourth drain pipe 28. After storing water, the first one-way valve 29 of the fourth drain pipe 28 allows the water to be discharged through the fifth drain pipe 30, so as to drain the water into the interior of the cylinder 1 for detection. The third collection bucket 27 facilitates the static settlement of water, and the flowing water pipe 31 facilitates the discharge of the upper clear liquid in the third collection bucket 27.
[0040] As a preferred technical solution, further, brackets 32 are installed at both ends of the lower wall surface of the cylinder 1, and a plug 33 is installed on the first water inlet cylinder 12;
[0041] The bracket 32 is used to support the water inlet pipe 14.
[0042] As a preferred technical solution, further, rectangular through-holes are provided on both the third collection bucket 27 and the second collection bucket 17, and the third collection bucket 27 and the second collection bucket 17 are connected by hinges with a sealing door 34 that matches the rectangular through-holes;
[0043] Through the rectangular through-holes, it is convenient to clean the third collection bucket 27 and the second collection bucket 17.
[0044] As a preferred technical solution, further, a first observation port is provided on the side wall surface of the second collection bucket 17, and a first transparent glass is installed in the first observation port; Through the first transparent glass, it is used to penetrate the interior of the second collection bucket 17.
[0045] As a preferred technical solution, further, a sixth control valve 35 is installed on the first folded pipe 11 and the sixth drain pipe 37.
[0046] As a preferred technical solution, further, a first support frame 36 that matches the first water inlet cylinder 12 is installed on the cylinder 1, and a second observation port is provided on the first water inlet cylinder 12, and a second transparent glass is installed in the second observation port.
[0047] The above-mentioned specific implementation manners have further elaborated in detail the purpose, technical solution and beneficial effects of the present invention. It should be understood that the above-mentioned are only the specific implementation manners of the present invention and are not used to limit the protection scope of the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A drinking water quality detection device, comprising a cylinder (1), wherein a first strip-shaped through hole is formed in the side wall surface of the cylinder (1), and an observation glass is installed in the first strip-shaped through hole, characterized in that, A buffer structure is provided on the cylinder (1), a storage structure is installed on the lower wall surface of the cylinder (1) and below the buffer structure, a purification and drainage structure is installed on the right side of the cylinder (1), and a circulation detection structure is provided on the cylinder (1); The buffer structure includes: a first water inlet cylinder (12), a net (13), a water inlet pipe (14), and a second water inlet cylinder (15); A water inlet is formed on the upper wall surface of the cylinder (1), the water inlet pipe (14) is inserted into the water inlet, the first water inlet cylinder (12) is placed on the water inlet pipe (14), the net (13) is placed in the first water inlet cylinder (12), a second circular through hole is formed in the net (13), the second water inlet cylinder (15) is installed in the second circular through hole, and a first control valve (16) is installed on the water inlet pipe (14); The circulation detection structure includes: a micro pump (2), a pH meter (3), a water quality hardness meter (4), a pesticide residue rapid detector (5), a total chlorine and residual chlorine analyzer (6), and a first collection bucket (7). A first circular through hole is formed in the lower wall surface of the cylinder (1), a first water pipe (8) is installed in the first circular through hole, the first collection bucket (7) is placed on the first water pipe (8), the micro pump (2) is placed in the first collection bucket (7), a second water pipe (9) extending through the first collection bucket (7) is installed on the micro pump (2), a "Y" - shaped pipe (10) is installed on the second water pipe (9). One end of the "Y" - shaped pipe (10) is installed with a first folded pipe (11), one end of the first folded pipe (11) is inserted into the cylinder (1), the other end of the "Y" - shaped pipe (10) is installed with a sixth drain pipe (37). A plurality of mounting holes are formed in the lower wall surface of the cylinder (1), and the pH meter (3), the water quality hardness meter (4), the pesticide residue rapid detector (5), and the total chlorine and residual chlorine analyzer (6) are respectively placed in each mounting hole; The purification and drainage structure includes: a second collection bucket (17), filter cotton (18), activated carbon, and a second micro pump (19). A second drain pipe (20) is formed on the side wall surface of the cylinder (1), the second collection bucket (17) is connected to the second drain pipe (20), a screen plate (21) is installed in the second collection bucket (17), the filter cotton (18) is laid on the screen plate (21), a screen cylinder (22) is installed in the second collection bucket (17), the activated carbon is filled in the screen cylinder (22), a second micro pump (19) is installed in the cylinder (1), one end of the second micro pump (19) is installed with a second folded pipe (23), one end of the second folded pipe (23) is inserted into the cylinder (1), a second control valve (24) is installed on the second folded pipe (23), a third drain pipe (25) is inserted into the second collection bucket (17), and a fourth control valve (26) is installed on the second drain pipe (20) and the third drain pipe (25).
2. The water quality detection device for drinking water according to claim 1, wherein The storage structure includes: a third collection bucket (27), a fourth drain pipe (28), a first check valve (29), and a fifth drain pipe (30); A fourth circular through-hole is provided on the lower wall surface of the cylinder (1). The fourth drain pipe (28) is connected to the water inlet pipe (14), and one end of the fourth drain pipe (28) extends out through the fourth circular through-hole. The third collection bucket (27) is connected to the fourth drain pipe (28). The fifth drain pipe (30) is inserted into the side wall surface of the fourth drain pipe (28). The first one-way valve (29) is respectively arranged in the fourth drain pipe (28) and the fifth drain pipe (30). A flowing water pipe (31) is inserted into the upper end of the side wall surface of the third collection bucket (27), and a fifth control valve (38) is installed on the flowing water pipe (31).
3. A drinking water quality detection device according to claim 1, characterized in that, Brackets (32) are installed at both ends of the lower wall surface of the cylinder (1), and a plug (33) is installed on the first water inlet cylinder (12).
4. The drinking water quality detection device according to claim 2, characterized in that, Rectangular through-holes are provided on both the third collection bucket (27) and the second collection bucket (17). The third collection bucket (27) and the second collection bucket (17) are connected by hinges to a sealing shutter (34) that matches the rectangular through-holes.
5. The water quality detection device for drinking water according to claim 1, wherein A first observation port is provided on the side wall surface of the second collection bucket (17), and a first transparent glass is installed in the first observation port.
6. The water quality detection device for drinking water according to claim 1, wherein, A sixth control valve (35) is installed on the first folded pipe (11) and the sixth drain pipe (37).
7. The water quality detection device for drinking water according to claim 1, characterized in that, A first support frame (36) that matches the first water inlet cylinder (12) is installed on the cylinder (1). A second observation port is provided on the first water inlet cylinder (12), and a second transparent glass is installed in the second observation port.
Citation Information
Patent Citations
Drinking water monitoring device
CN211877961U
Sub-control circulating type soft water filtering equipment
CN218454048U