Acidic electrolyzed oxidizing water generator capable of monitoring flow of intermediate water production pipeline
By installing a flow meter and control device on the intermediate water production pipeline of the acidic oxidation potential water generator, the problem of insufficient flow monitoring in the intermediate water production pipeline is solved, enabling real-time equipment maintenance and water quality optimization, and extending the equipment's lifespan.
Patent Information
- Application Number
- CN202423282156.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing acidic oxidation electrolyzed water generators lack monitoring of the flow rate in the intermediate water production pipeline, which makes it impossible to detect problems such as blockages in the quartz sand tank, activated carbon tank, and resin tank in a timely manner. This affects the indicators of pure water and acid/alkaline water and may shorten the life of the electrolyzer.
Flow meters are installed on the outlet pipes of the quartz sand tank, activated carbon tank, resin tank, RO membrane module and electrolytic cell, and equipped with corresponding valves, variable frequency water pumps and pressure gauges to realize real-time monitoring and control of the flow rate of the intermediate water production pipeline.
It enables real-time damage assessment of quartz sand tanks, activated carbon tanks, and resin tanks, facilitating maintenance, improving equipment lifespan and water quality, and assessing the usage status of RO membrane modules, facilitating replacement, and optimizing equipment operation and water quality.
Smart Images

Figure CN223780100U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of potential water preparation, and specifically relates to an acidic oxidizing potential water generator capable of monitoring the flow of intermediate water production pipeline. BACKGROUND
[0002] The existing acidic oxidizing potential water generator usually sets flow monitoring devices on the water inlet pipeline (i.e. raw water inlet pipeline) and the water outlet pipeline (i.e. acid-base water outlet pipeline), rarely sets flow monitoring devices on the intermediate water production pipeline, which leads to the fact that the abnormality of the intermediate water production pipeline cannot be determined through flow monitoring, so that the user cannot accurately find the fault point and timely maintenance. In particular, there are rarely flow monitoring devices set on the water outlet pipelines of the quartz sand tank, the activated carbon tank and the resin tank. Once any one of the quartz sand tank, the activated carbon tank and the resin tank is blocked, the indicators of the produced pure water will not meet the standards, and the use of the pure water that does not meet the standards will not only affect the indicators of the produced acid-base water, but also affect the service life of the electrolytic cell. SUMMARY
[0003] The utility model aims at providing an acidic oxidizing potential water generator capable of monitoring the flow of intermediate water production pipeline, so as to solve the technical problems in the background art.
[0004] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0005] An acidic oxidizing potential water generator capable of monitoring the flow of intermediate water production pipeline comprises a coarse filter, a quartz sand tank, an activated carbon tank, a resin tank, a fine filter, an RO membrane group, a salt tank, a salt bucket and an electrolytic cell. The coarse filter is connected with the quartz sand tank, the quartz sand tank is connected with the activated carbon tank, the activated carbon tank is connected with the resin tank, the resin tank is connected with the fine filter and the salt tank, the fine filter is connected with the RO membrane group, the RO membrane group is connected with the salt bucket, and the salt bucket is connected with the electrolytic cell. A second flow meter is arranged on the water outlet pipeline of the quartz sand tank, a third flow meter is arranged on the water outlet pipeline of the activated carbon tank, a fourth flow meter is arranged on the water outlet pipeline of the resin tank, and a fifth flow meter is arranged on the water outlet pipeline of the RO membrane group.
[0006] Further, a first flow meter is arranged on the water inlet pipeline of the coarse filter.
[0007] Further, a sixth flow meter is arranged on the acid water outlet pipeline of the electrolytic cell, and a seventh flow meter is arranged on the alkali water outlet pipeline of the electrolytic cell.
[0008] Further, the first valve, the first variable frequency water pump and the first pressure gauge are sequentially installed on the pipeline connected between the coarse filter and the quartz sand tank.
[0009] Further, the second valve, the second variable frequency water pump and the second pressure gauge are sequentially installed on the pipeline connected between the fine filter and the RO membrane group.
[0010] Further, the third valve, the third variable frequency water pump and the third pressure gauge are sequentially installed on the pipeline connected between the salt tank and the electrolytic tank.
[0011] Further, the fourth valve is further installed on the acid water outlet pipeline of the electrolytic tank, and the fifth valve is further installed on the alkali water outlet pipeline of the electrolytic tank.
[0012] Further, the first liquid level gauge is arranged on the salt tank.
[0013] Further, the second liquid level gauge is arranged on the salt tank.
[0014] Compared with the prior art, the advantages of the utility model are as follows:
[0015] (1) by setting the corresponding flow meter on the water outlet pipeline of the quartz sand tank, the activated carbon tank and the resin tank in sequence, the damage condition (such as: blockage) of the quartz sand tank, the activated carbon tank and the resin tank can be judged in time, which is convenient for user maintenance, and the backwashing frequency of the quartz sand tank, the activated carbon tank and the resin tank can be adjusted according to the flow detection condition, thereby improving the service life of the quartz sand tank, the activated carbon tank, the resin tank, the electrolytic tank and the water quality of the pure water and the acid-alkali water prepared.
[0016] (2) by setting the flow meter on the water outlet pipeline of the RO membrane group, the pure water flow prepared by the RO membrane group can be monitored in real time, and the use condition of the RO membrane group can be judged according to the flow detection result, and the RO membrane core can be replaced in time. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments, the following will briefly introduce the drawings needed to be used in the embodiment description, and obviously, the drawings described below are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to these drawings without paying creative labor.
[0018] Figure 1 It is the schematic diagram of the acidic electrolytic water generator embodiment of the utility model that can monitor the flow of intermediate water pipeline;
[0019] Explanation of reference numerals: 1, coarse filter; 2, quartz sand tank; 3, activated carbon tank; 4, resin tank; 5, fine filter; 6, RO membrane group; 7, salt tank; 8, salt bucket; 9, electrolytic tank; 10, first flow meter; 11, second flow meter; 12, third flow meter; 13, fourth flow meter; 14, fifth flow meter; 15, sixth flow meter; 16, seventh flow meter; 17, first valve; 18, first variable frequency water pump; 19, first pressure gauge; 20, second valve; 21, second variable frequency water pump; 22, second pressure gauge; 23, third valve; 24, third variable frequency water pump; 25, third pressure gauge; 26, fourth valve; 27, fifth valve; 28, first liquid level meter; 29, second liquid level meter. DETAILED DESCRIPTION
[0020] In order to make the objectives, technical solutions and advantages of the present application clearer, the following will be a clear and complete description of the technical solutions in the embodiments of the present application in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. The components of the embodiments of the present application described and shown in the drawings can be arranged and designed in various different configurations.
[0021] Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the claimed present application, but only represents selected embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor are within the scope of protection of the present application.
[0022] In the description of the embodiments of the present application, it should be noted that if the terms "upper", "lower", "horizontal", "inner" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship of the product in use, they are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", etc. are only used for differentiation in description and cannot be understood as indicating or implying relative importance. In addition, if the term "horizontal" appears, it does not mean that the component must be absolutely horizontal, but can be slightly inclined. For example, "horizontal" only means that its direction is relatively more horizontal than "vertical", and does not mean that the structure must be completely horizontal, but can be slightly inclined.
[0023] In the description of the embodiments of the utility model, still need explaining, unless another explicit provision and limitation, if appearing term "arrangement", "installation", "link", "connection" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be direct connection, also can be indirectly connected through intermediate medium, can be two element internal communication. For ordinary skilled in the art, can understand the specific meaning of the above-mentioned term in the utility model according to specific circumstances.
[0024] The utility model makes further explanation in combination with the drawings:
[0025] As Figure 1 Indicated, the utility model embodiment provides a kind of acid electrolyzed oxidizing water generator that can monitor intermediate water production pipeline flow, including coarse filter 1, quartz sand tank 2, activated carbon tank 3, resin tank 4, fine filter 5, RO membrane group 6, salt tank 7, salt bucket 8 and electrolytic cell 9, coarse filter 1 is connected with quartz sand tank 2, quartz sand tank 2 is connected with activated carbon tank 3, activated carbon tank 3 is connected with resin tank 4, resin tank 4 is connected with fine filter 5 and salt tank 7, fine filter 5 is connected with RO membrane group 6, RO membrane group 6 is connected with salt bucket 8, and salt bucket 8 is connected with electrolytic cell 9;Wherein, second flow meter 11 is arranged on the water outlet pipeline of quartz sand tank 2, for monitoring the water flow of quartz sand tank 2;Third flow meter 12 is arranged on the water outlet pipeline of activated carbon tank 3, for monitoring the water flow of activated carbon tank 3;Fourth flow meter 13 is arranged on the water outlet pipeline of resin tank 4, for monitoring the water flow of resin tank 4, fifth flow meter 14 is arranged on the water outlet pipeline of RO membrane group 6, for monitoring the water flow of RO membrane group 6.
[0026] Specifically, the utility model embodiment can judge the damage situation (such as: blockage) of quartz sand tank 2, activated carbon tank 3 and resin tank 4 in time by sequentially arranging second flow meter 11, third flow meter 12 and fourth flow meter 13 on the water outlet pipeline of quartz sand tank 2, activated carbon tank 3 and resin tank 4, convenient for user to overhaul, and convenient for user to adjust the backwashing frequency of quartz sand tank 2, activated carbon tank 3 and resin tank 4 according to flow detection result, to improve the service life of quartz sand tank 2, activated carbon tank 3, resin tank 4, electrolytic cell 9 and other equipment and the water quality of pure water and acid-base water prepared. The fifth flow meter 14 arranged on the water outlet pipeline of RO membrane group 6 can monitor the pure water flow prepared by RO membrane group 6 in real time, and it is convenient for RO membrane group 6 to judge the use condition of RO membrane group 6 according to flow detection result, to replace RO membrane core in time.
[0027] As a further improvement of the utility model, the first flow meter 10 is arranged on the water inlet pipeline of the coarse filter 1, which is used for monitoring the water inlet flow in real time, and is convenient for the user to calculate the water production efficiency and cost, and provides support for the user to optimize the equipment application.
[0028] As a further improvement of the utility model, the sixth flow meter 15 is arranged on the acid water outlet pipeline of the electrolytic cell 9, which is used for monitoring the acid water production in real time; the seventh flow meter 16 is arranged on the alkali water outlet pipeline of the electrolytic cell 9, which is used for monitoring the alkali water production in real time; through the arrangement of the sixth flow meter 15 and the seventh flow meter 16, the user can conveniently count the acid and alkali water flow data, and optimize the disinfection process.
[0029] As a further improvement of the utility model, the first valve 16, the first variable frequency water pump 17 and the first pressure gauge 18 are sequentially arranged on the pipeline connected between the coarse filter 1 and the quartz sand tank 2. Through the arrangement of the first valve 16, the pipeline between the coarse filter 1 and the quartz sand tank 2 can be conveniently controlled; through the arrangement of the first variable frequency water pump 17, the water in the external water inlet pipeline can be quickly pumped into the quartz sand tank 2 through the coarse filter 1. Through the arrangement of the first pressure gauge 18, the water pressure of the pipeline between the coarse filter 1 and the quartz sand tank 2 can be conveniently understood.
[0030] Specifically, the first valve 16 can be a manual valve or an electric valve.
[0031] As a further improvement of the utility model, the second valve 19, the second variable frequency water pump 20 and the second pressure gauge 21 are sequentially arranged on the pipeline connected between the fine filter 5 and the RO membrane group 6. Through the arrangement of the second valve 19, the pipeline between the fine filter 5 and the RO membrane group 6 can be conveniently controlled; through the arrangement of the second variable frequency water pump 20, the water pressure of the pipeline between the fine filter 5 and the RO membrane group 6 can be conveniently adjusted; through the arrangement of the second pressure gauge 21, the water pressure of the pipeline between the fine filter 5 and the RO membrane group 6 can be conveniently understood.
[0032] Specifically, the second valve 19 can be a manual valve or an electric valve.
[0033] As the further improvement of the utility model, still contain third valve 22, third frequency conversion water pump 23 and third pressure gauge 24, and third valve 22, third frequency conversion water pump 23 and third pressure gauge 24 are installed on the pipeline that salt bucket 8 and electrolytic cell 9 are connected in proper order. Among them, the setting of third valve 22 helps to control the on-off of the pipeline between salt bucket 8 and electrolytic cell 9;The setting of third frequency conversion water pump 23 helps to adjust the water pressure of the pipeline between salt bucket 8 and electrolytic cell 9;The setting of third pressure gauge 24 helps to intuitively understand the water pressure of the pipeline between salt bucket 8 and electrolytic cell 9.
[0034] Specifically, third valve 22 can be a manual valve or an electric valve.
[0035] As the further improvement of the utility model, fourth valve 25 is further installed on the acid water outlet pipeline of electrolytic cell 9, and fifth valve 26 is further installed on the alkali water outlet pipeline of electrolytic cell 9. Among them, the setting of fourth valve 25 helps to control the on-off of the acid water outlet pipeline of electrolytic cell 9;The setting of fifth valve 265 helps to control the on-off of the alkali water outlet pipeline of electrolytic cell 9.
[0036] Specifically, fourth valve 25 and fifth valve 26 can be a manual valve or an electric valve.
[0037] As the further improvement of the utility model, first liquid level gauge 27 is arranged on salt tank 7, which is used for monitoring the water level in salt tank 7, so as to timely remind the user to replenish water.
[0038] As the further improvement of the utility model, second liquid level gauge 28 is arranged on salt bucket 8, which is used for monitoring the water level in salt bucket 8, so as to timely remind the user to replenish electrolyte.
[0039] Finally, the above-mentioned is only the embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process conversion using the contents of the utility model specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection range of the utility model.
Claims
1. An acid electrolyzed water generator capable of monitoring the flow of intermediate water pipeline, comprising a coarse filter (1), a quartz sand tank (2), an activated carbon tank (3), a resin tank (4), a fine filter (5), an RO membrane group (6), a salt tank (7), a salt bucket (8) and an electrolytic tank (9), the coarse filter (1) is connected with the quartz sand tank (2), the quartz sand tank (2) is connected with the activated carbon tank (3), the activated carbon tank (3) is connected with the resin tank (4), the resin tank (4) is connected with the fine filter (5) and the salt tank (7), the fine filter (5) is connected with the RO membrane group (6), the RO membrane group (6) is connected with the salt bucket (8), and the salt bucket (8) is connected with the electrolytic tank (9), characterized in that: A second flow meter (11) is arranged on the water outlet pipeline of the quartz sand tank (2), a third flow meter (12) is arranged on the water outlet pipeline of the activated carbon tank (3), a fourth flow meter (13) is arranged on the water outlet pipeline of the resin tank (4), and a fifth flow meter (14) is arranged on the water outlet pipeline of the RO membrane group (6).
2. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A first flow meter (10) is arranged on the water inlet pipeline of the coarse filter (1).
3. The generator of acidic electrolyzed oxidizing water capable of monitoring the flow of an intermediate water pipeline according to claim 1 or 2, characterized by: A sixth flow meter (15) is arranged on the acid water outlet pipeline of the electrolytic tank (9), and a seventh flow meter (16) is arranged on the alkali water outlet pipeline of the electrolytic tank (9).
4. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A first valve (17), a first variable frequency water pump (18) and a first pressure gauge (19) are sequentially installed on the pipeline connecting the coarse filter (1) and the quartz sand tank (2).
5. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A second valve (20), a second variable frequency water pump (21) and a second pressure gauge (22) are sequentially installed on the pipeline connecting the fine filter (5) and the RO membrane group (6).
6. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A third valve (23), a third variable frequency water pump (24) and a third pressure gauge (25) are sequentially installed on the pipeline connecting the salt bucket (8) and the electrolytic tank (9).
7. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 3, wherein: A fourth valve (26) is further installed on the acid water outlet pipeline of the electrolytic tank (9), and a fifth valve (27) is further installed on the alkali water outlet pipeline of the electrolytic tank (9).
8. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A first liquid level gauge (28) is arranged on the salt tank (7).
9. The acid electrolyzed water generator capable of monitoring the flow of the intermediate water conduit according to claim 1, wherein: A second liquid level gauge (29) is arranged on the salt bucket (8).