Metasilicic acid mineral water preparation system
By constructing a metasilicic acid mineral water production system, and through the precise collaboration of the filtration module, metasilicate addition module, and control module, the system achieves accurate regulation of the metasilicic acid solution and water quality stability, solving the problem of insufficient natural water sources and meeting the industrial production needs of high-quality drinking water.
Patent Information
- Application Number
- CN202423198028.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-24
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2034-12-24
AI Technical Summary
Since naturally occurring water sources containing appropriate amounts of metasilicic acid are limited, how to artificially produce metasilicic acid mineral water that meets the standards has become an urgent problem to be solved.
A metasilicic acid mineral water production system was constructed, including a filtration module, a metasilicic acid addition module, a control module, and a water storage container. Through the combination of multiple valves and a stirrer, the valve opening ratio is monitored and controlled in real time by a concentration sensor to precisely regulate the concentration of metasilicic acid solution, and the water quality is ensured by a photochemical disinfection device.
It achieves efficient and stable production of high-quality metasilicic acid mineral water that meets market demands, satisfies diverse drinking needs, and possesses characteristics suitable for industrial production.
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Figure CN223705340U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to mineral water preparation technical field, concretely relates to a kind of metasilicic acid mineral water preparation system. BACKGROUND
[0002] With the improvement of people's living standards, the quality requirement of drinking water is higher and higher, metasilicic acid mineral water is favored because it is beneficial to human health. However, the water source containing appropriate metasilicic acid is limited, how to artificially prepare metasilicic acid mineral water meeting the standard becomes a problem to be solved. UTILITY MODEL CONTENT
[0003] The utility model aims at constructing a kind of metasilicic acid mineral water preparation system to realize the industrialized preparation of metasilicic acid mineral drinking water meeting market demand.
[0004] To achieve the above object, one technical scheme of the utility model is as follows:
[0005] A kind of metasilicic acid mineral water preparation system, including filter module, the filter module is used to filter raw water to drinking water standard, still including metasilicate addition module and first water storage container, the metasilicate addition module includes first valve, second valve, metasilicate dissolving unit, second water storage container and concentration sensor and third valve, the filter module, first valve and first water storage container are sequentially connected by pipeline, the filter module, second valve, metasilicate dissolving unit, second water storage container, concentration sensor, third valve and first water storage container are sequentially connected by pipeline.
[0006] Further, the metasilicic acid mineral water preparation system further includes a control module, the control module controls the opening ratio of the first valve and the third valve according to the metasilicic acid concentration monitored by the concentration sensor.
[0007] Further, the metasilicate addition module further includes a third water storage container, a fourth valve, a fifth valve, a sixth valve and a seventh valve, the metasilicate dissolving unit, the fourth valve, the third water storage container, the fifth valve and the concentration sensor are sequentially connected by the pipeline, the sixth valve is connected between the metasilicate dissolving unit and the second water storage container by the pipeline, and the seventh valve is connected between the second water storage container and the concentration sensor by the pipeline.
[0008] Further, the control module is further used to control the opening and closing of the fourth valve, the fifth valve, the sixth valve and the seventh valve.
[0009] Further, a second agitator is arranged in the second water storage container.
[0010] Further, the third water storage container is internally provided with a first agitator.
[0011] Further, the filter module comprises a water pool, a coarse filter device, a precision filter device and an ultrafiltration + reverse osmosis device connected in sequence through pipelines.
[0012] Further, the first water storage container is internally provided with a photochemical disinfection device.
[0013] Further, the photochemical disinfection device is an ultraviolet lamp.
[0014] Further, the first water storage container is internally provided with a third agitator.
[0015] The utility model discloses a kind of metasilicate mineral water preparation systems, by the precise cooperation between each module, such as filter module is flexibly adapted according to raw water condition, accurately purifies raw water to drinking water standard;Metasilicate addition module utilizes multiple valves and water storage container combination, cleverly controls metasilicate solution concentration;Control module real-time monitoring, intelligent control valve opening proportion and water storage path switching, guarantee solution accurate deployment;There is also photochemical disinfection device in the first water storage container and third agitator, and the agitator in the second and third water storage containers synergistic effect, all-round ensure water quality stable, sanitary and mixed evenly.The system can not only meet the diversified drinking needs of high-quality metasilicate mineral water on market, but also have efficient, stable production characteristics, provide reliable scheme for industrialization of metasilicate mineral water preparation, extremely have popularization and application value. BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide further understanding of the present application, and form part of the present application, the illustrative embodiment of the present application and its description are used to explain the present application, and do not constitute improper limitation to the present application.
[0017] Fig. 1 It is structure schematic view of an embodiment of the metasilicate mineral water preparation system of the utility model;
[0018] Fig. 2 It is structure schematic view of filter module in an embodiment of the metasilicate mineral water preparation system of the utility model;
[0019] Fig. 3 It is structure schematic view of metasilicate addition module in an embodiment of the metasilicate mineral water preparation system of the utility model.
[0020] The meaning of each reference sign in the drawings is as follows:
[0021] The filtration module 1, the water pool 11, the coarse filtration device 12, the precision filtration device 13, the ultrafiltration + reverse osmosis device 14, the metasilicate adding module 2, the first valve 21, the second valve 22, the metasilicate dissolving unit 23, the second water storage container 24, the sixth valve 241, the seventh valve 242, the concentration sensor 25, the third valve 26, the third water storage container 27, the fourth valve 271, the fifth valve 272, and the first water storage container 3. DETAILED DESCRIPTION
[0022] The utility model will be further described below with reference to the drawings.
[0023] Referring to Figs. 1-3 The metasilicate mineral water preparation system of the embodiment includes a filtration module 1, which is used to filter raw water to drinking water standards.
[0024] In the embodiment, the filtration module 1 specifically includes a water pool 11, a coarse filtration device 12, a precision filtration device 13, and an ultrafiltration + reverse osmosis device 14 connected in sequence through pipelines. The above filtration module 1 is only an example, and in actual production, it can be flexibly adjusted according to the water quality of raw water, the cost budget of the preparation system, and the strict requirements of the final product on water quality.
[0025] The metasilicate mineral water preparation system also includes a metasilicate adding module 2 and a first water storage container 3. The metasilicate adding module 2 includes a first valve 21, a second valve 22, a metasilicate dissolving unit 23, a second water storage container 24, a concentration sensor 25, and a third valve 26. The filtration module 1, the first valve 21, and the first water storage container 3 are connected in sequence through pipelines. The filtration module 1, the second valve 22, the metasilicate dissolving unit 23, the second water storage container 24, the concentration sensor 25, the third valve 26, and the first water storage container 3 are connected in sequence through pipelines.
[0026] When the system is working, raw water is first introduced into the filtration module 1. The raw water flows through the water pool 11, the coarse filtration device 12, the precision filtration device 13, and the ultrafiltration + reverse osmosis device 14 in sequence, removing impurities such as silt, colloid, bacteria, viruses, and most of the dissolved solids, so that the water quality reaches the drinking water standard.
[0027] When the purified water flows out of the filter module 1, two different paths are opened. On the one hand, part of the water flows along the pipeline and directly flows to the first water storage container 3 under the accurate control of the first valve 21. On the other hand, another part of the water flows into the metasilicate dissolving unit 23 under the opening guidance of the second valve 22, and the metasilicate will be dissolved with water. After the dissolution is completed, the metasilicate solution flows into the second water storage container 24 for temporary storage. Then, the concentration sensor 25 measures the metasilicate concentration of the solution flowing out of the second water storage container 24, and then the opening ratio of the third valve 26 and the first valve 21 can be controlled according to the metasilicate concentration data, so that the two water flows are mixed in proportion, thereby producing mineral water with a predetermined metasilicate concentration standard to meet the diversified drinking needs of the market.
[0028] It is worth mentioning that the concentration of the metasilicate solution flowing out of the metasilicate dissolving unit 23 often fluctuates greatly, because the dissolution rate of metasilicate is not the same at different times. The utility model prolongs the storage of the metasilicate solution in the second water storage container 24, so that metasilicate solutions with different concentrations can be mixed with each other to form a relatively stable metasilicate solution, providing a stable and reliable metasilicate solution source for subsequent accurate deployment, and ensuring that the entire preparation system can stably produce qualified metasilicate mineral water.
[0029] In the embodiment, the metasilicate mineral water preparation system further comprises a control module, which controls the opening ratio of the first valve 21 and the third valve 26 according to the metasilicate concentration monitored by the concentration sensor 25.
[0030] The control module and the concentration sensor 25 establish a stable data transmission channel through a wired connection mode, so as to ensure that the concentration data monitored by the concentration sensor 25 can be received in time and accurately. The concentration sensor 25 uses optical sensing technology to continuously monitor the metasilicate concentration of the solution flowing out of the second water storage container 24, and transmits the collected real-time concentration data to the control module every certain time interval, such as every 5 seconds.
[0031] The control module has a control program based on the standard concentration range of metasilicate mineral water. At present, the market requires that the metasilicate content of high-quality metasilicate mineral water should be stable at 20-50 milligrams per liter, and the control module operates based on this. Once the data from the concentration sensor 25 is received, the control module starts the internal comparison and analysis process.
[0032] If the measured concentration is below the preset lower limit of 20 mg / L, the control module quickly generates a control command to increase the opening angle of the third valve 26, allowing more metasilicic acid solution to flow into the first water storage container 3. Simultaneously, based on the system's preset flow balance algorithm and combined with the current water flow data of each pipeline, the control module accurately calculates the required reduction in the opening angle of the first valve 21 to reduce the amount of base water flowing directly into the first water storage container 3, thus gradually increasing the metasilicic acid concentration after mixing to the standard range. Conversely, if the measured concentration is above the preset upper limit of 50 mg / L, the control module performs the reverse operation, reducing the opening angle of the third valve 26 to limit the inflow of metasilicic acid solution, and correspondingly increasing the opening angle of the first valve 21 to allow more base water to participate in the mixing, thereby steadily reducing the metasilicic acid concentration to the standard range.
[0033] With this real-time, dynamic control mechanism, the control module can always maintain the opening ratio of the first valve 21 and the third valve 26 in an appropriate state, ensuring that the final output metasilicic acid mineral water concentration meets the standards and satisfies the market demand for high-quality drinking water.
[0034] In this embodiment, the metasilicate adding module 2 also includes a third water storage container 27, a fourth valve 271, a fifth valve 272, a sixth valve 241, and a seventh valve 242.
[0035] The metasilicate dissolving unit 23, the fourth valve 271, the third water storage container 27, the fifth valve 272, and the concentration sensor 25 are connected in sequence through pipes. The sixth valve 241 is connected between the metasilicate dissolving unit 23 and the second water storage container 24 through a pipe. The seventh valve 242 is connected between the second water storage container 24 and the concentration sensor 25 through a pipe. Thus, two temporary storage paths for metasilicate solution are formed between the metasilicate dissolving unit 23 and the concentration sensor 25. One temporary storage path consists of the fourth valve 271, the third water storage container 27, and the fifth valve 272, while the other temporary storage path consists of the sixth valve 241, the second water storage container 24, and the seventh valve 242.
[0036] During production, the two silicate solution storage paths are not used simultaneously. When the water storage container in one of the storage paths is filled with water, for example, when the storage path containing the second water storage container 24 is filled with water, the sixth valve 241 is in the open state and the seventh valve 242 is in the closed state. After the second water storage container 24 is full, the seventh valve 242 is opened and the sixth valve 241 is closed, allowing the second water storage container 24 to supply silicate solution. Since the silicate solutions in the second water storage container 24 have already mixed with each other before being discharged, the discharged concentration will not fluctuate significantly, thus outputting a relatively stable concentration to meet the strict requirements of metasilicic acid content in subsequent production stages. When the storage path containing the second water storage container 24 is draining water, the storage path containing the third water storage container 27 can be controlled to fill with water, that is, the fourth valve 271 and the fifth valve 272 are controlled to be in the open and closed states respectively. At this time, the solution produced by the metasilicate dissolution unit 23 will flow to the third water storage container 27. This alternating water storage and drainage mode not only stabilizes the concentration of the metasilicic acid solution supply but also ensures a continuous supply of the metasilicic acid solution, greatly improving the production quality of the entire metasilicic acid mineral water production system.
[0037] In this embodiment, the control module is also used to control the opening and closing of the fourth valve 271, the fifth valve 272, the sixth valve 241, and the seventh valve 242. Controlling these valves through the control module can effectively improve production efficiency.
[0038] In this embodiment, a second stirrer and a first stirrer are respectively provided in the second water storage container 24 and the third water storage container 27. The second stirrer and the first stirrer can perform water storage and drainage operations in the second water storage container 24 and the third water storage container 27 to fully stir the metasilicic acid solution, so as to balance the metasilicic acid concentration of the solution in various parts of the water storage container, thereby further improving the production quality.
[0039] In this embodiment, a photochemical disinfection device is installed inside the first water storage container 3. This device disinfects the finished water using light. In this embodiment, the photochemical disinfection device is an array of ultraviolet lamps, controlling the wavelength of the ultraviolet light emitted by the lamps between 250-280 nanometers. This wavelength band has a strong killing effect on common bacteria and viruses, such as Escherichia coli, Staphylococcus aureus, and bacteriophages. It can destroy the DNA or RNA structure of microorganisms, rendering them unable to reproduce and survive. This provides reliable hygiene protection for the storage and subsequent use of metasilicic acid mineral water, meeting the stringent requirements for high-quality drinking water.
[0040] In this embodiment, a third stirrer is provided inside the first water storage container 3. The third stirrer can stir the finished water in the first water storage container 3 to further optimize the mixing uniformity of the metasilicic acid mineral water in the first water storage container 3 and ensure the consistency of water quality.
[0041] In summary, this utility model discloses a metasilicic acid mineral water production system. Through precise collaboration between its modules—such as the filtration module, which flexibly adapts to the raw water conditions to accurately purify the raw water to drinking water standards; the metasilicic acid addition module, which cleverly controls the concentration of the metasilicic acid solution using a combination of multiple valves and a water storage container; the control module, which monitors in real time and intelligently controls the valve opening ratio and water storage path switching to ensure precise solution mixing; and the photochemical disinfection device in the first water storage container, the third stirrer, and the stirrers in the second and third water storage containers working together to comprehensively ensure stable, hygienic, and uniformly mixed water quality. This system not only meets the diverse drinking water demands for high-quality metasilicic acid mineral water but also possesses efficient and stable production characteristics, providing a reliable solution for the industrial production of metasilicic acid mineral water and possessing significant promotional and application value.
[0042] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
Claims
1. A metasilicic acid mineral water production system, comprising a filtration module, wherein the filtration module is used to filter raw water to drinking water standards, characterized in that: It also includes a metasilicate addition module and a first water storage container. The metasilicate addition module includes a first valve, a second valve, a metasilicate dissolution unit, a second water storage container, a concentration sensor, and a third valve. The filtration module, the first valve, and the first water storage container are connected in sequence through pipes.
2. The metasilicic acid mineral water production system according to claim 1, characterized in that: It also includes a control module, which controls the opening ratio of the first valve and the third valve based on the metasilicic acid concentration monitored by the concentration sensor.
3. The metasilicic acid mineral water production system according to claim 2, characterized in that: The metasilicate addition module also includes a third water storage container, a fourth valve, a fifth valve, a sixth valve, and a seventh valve. The metasilicate dissolving unit, the fourth valve, the third water storage container, the fifth valve, and the concentration sensor are connected in sequence through pipes. The sixth valve is connected between the metasilicate dissolving unit and the second water storage container through a pipe, and the seventh valve is connected between the second water storage container and the concentration sensor through a pipe.
4. The metasilicic acid mineral water production system according to claim 3, characterized in that: The control module is also used to control the opening and closing of the fourth valve, the fifth valve, the sixth valve, and the seventh valve.
5. The metasilicic acid mineral water production system according to claim 3, characterized in that: The third water storage container is equipped with a first stirrer.
6. The metasilicic acid mineral water production system according to claim 2, characterized in that: The second water storage container is equipped with a second agitator.
7. The metasilicic acid mineral water production system according to claim 1, characterized in that: The filtration module includes a water tank, a coarse filtration device, a precision filtration device, and an ultrafiltration + reverse osmosis device connected in sequence by pipes.
8. The metasilicic acid mineral water production system according to claim 1, characterized in that: The first water storage container is equipped with a photochemical disinfection device.
9. The metasilicic acid mineral water production system according to claim 8, characterized in that: The photochemical disinfection device is an ultraviolet lamp.
10. The metasilicic acid mineral water production system according to claim 1, characterized in that: The first water storage container is equipped with a third stirrer.