Mineralization-adjustable waterway structure and mineral spring mineralization water purifier

By adjusting the mineralization water path structure, the release of minerals from the mineralization filter element in the water purifier is regulated, solving the problem of insufficient or excessive mineral release and achieving stable control of mineral content.

CN223737798UActive Publication Date: 2025-12-30GUANGDONG LIZI TECH CO LTD
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Patent Information

Application Number
CN202423148307.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-12-30
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

Existing water purifiers have issues with insufficient or excessive mineral release, which can negatively impact human health.

Method used

Design a mineralization adjustable water circuit structure, including a mineralization water circuit, an inhibition water circuit, and a promotion water circuit. By setting up connecting water circuits and control valves, control the water flow direction and flow rate, and adjust the mineral release of the mineralization filter element.

Benefits of technology

It enables the release rate to be increased when the mineral release rate is below standard and decreased when the release rate is too high, ensuring that the mineral content in the water body is within a safe range and meeting different needs.

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Abstract

The utility model is applicable to the technical field of water purification, and discloses a mineralization-adjustable waterway structure and a mineral spring mineralization water purifier. The mineralization-adjustable water path structure comprises a mineralization water path, an inhibition water path and a promotion water path, the mineralization water path comprises a mineralization pipeline and a mineralization filter element, the inhibition water path comprises an inhibition pipeline and an inhibition filter element, and the promotion water path comprises a promotion pipeline and a promotion filter element. The waterway structure further comprises a first connecting waterway and a second connecting waterway; the first connecting water path is connected between the mineralizing water path and the inhibiting water path and used for allowing water flowing through the inhibiting filter element to enter the mineralizing water path. The second connecting water path is connected between the mineralizing water path and the promoting water path and used for allowing water flowing through the promoting filter element to enter the mineralizing water path. According to the waterway structure, the mineralization filter element can be inhibited from releasing minerals through the inhibiting substance to prevent the situation that the content of the minerals in the water body is too high, and the mineralization filter element can be promoted to release the minerals through the promoting substance to prevent the situation that the content of the minerals in the water body does not reach the standard.
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Description

TECHNICAL FIELD

[0001] The utility model relates to water purification technical field, especially relate to a mineralization adjustable waterway structure and including the waterway structure's mineral spring mineralization water purifier. BACKGROUND

[0002] With the improvement of life quality, people's demand for drinking water is higher and higher, and hope that the water purified by the water purification system can contain mineral substances beneficial to human body. Therefore, the product of mineralizing the purified water by a mineralization filter core is applied. Due to the design defects, the current product may have the situation that the mineral release amount is too high or the mineral release amount is not up to standard, especially in the scene of large flow, the mineral release amount cannot reach the standard range set. SUMMARY

[0003] The application provides a mineralization adjustable waterway structure and a mineral spring mineralization water purifier, which aims to solve the technical problem that the amount of mineral substances contained in the water provided by the water purifier is too high or not up to standard.

[0004] According to the first aspect of the application, a mineralization adjustable waterway structure is provided in an embodiment, comprising a mineralization waterway, an inhibition waterway and a promotion waterway, the mineralization waterway, the inhibition waterway and the promotion waterway are arranged in parallel and can simultaneously or separately discharge water;

[0005] The mineralization waterway comprises a mineralization pipeline and a mineralization filter core arranged in the mineralization pipeline, the inhibition waterway comprises an inhibition pipeline and an inhibition filter core arranged in the inhibition pipeline, and the promotion waterway comprises a promotion pipeline and a promotion filter core arranged in the promotion pipeline.

[0006] The mineralization adjustable waterway structure further comprises a first connecting waterway and a second connecting waterway; the first connecting waterway is connected between the mineralization waterway and the inhibition waterway, and is used for allowing the water flow passing through the inhibition filter core to enter the mineralization waterway; and the second connecting waterway is connected between the mineralization waterway and the promotion waterway, and is used for allowing the water flow passing through the promotion filter core to enter the mineralization waterway.

[0007] In an embodiment, the first connecting waterway comprises a first connecting pipeline and a first valve body arranged in the first connecting pipeline, and the first valve body is a switch valve or a one-way valve; and / or,

[0008] The second connecting waterway comprises a second connecting pipeline and a second valve body arranged in the second connecting pipeline, and the second valve body is a switch valve or a one-way valve.

[0009] In an embodiment, the mineralization waterway further comprises a first control valve for controlling the on-off of the mineralization pipeline, and the first control valve is arranged at the upstream end of the mineralization filter core.

[0010] One end of the first connecting water path is connected between the first control valve and the mineralization filter element, and one end of the second connecting water path is connected between the first control valve and the mineralization filter element.

[0011] In one embodiment, the inhibiting water path further comprises a second control valve for controlling the opening and closing of the inhibiting water path, the second control valve is arranged at the downstream end of the inhibiting filter element, and the other end of the first connecting water path is connected between the inhibiting filter element and the second control valve.

[0012] In one embodiment, the promoting water path further comprises a third control valve for controlling the opening and closing of the promoting water path, the third control valve is arranged at the downstream end of the promoting filter element, and the other end of the second connecting water path is connected between the promoting filter element and the third control valve.

[0013] In one embodiment, the mineralization-adjustable water path structure further comprises a water inlet path and a water outlet path, and the mineralization water path, the inhibiting water path and the promoting water path are connected in parallel between the water inlet path and the water outlet path.

[0014] In one embodiment, the mineralization-adjustable water path structure further comprises a flow detector for detecting the water flow; and / or,

[0015] The mineralization-adjustable water path structure further comprises a TDS detector for detecting the TDS value of the water flow.

[0016] In one embodiment, the mineralization filter element comprises a metasilicic acid filter material, the promoting filter element comprises an alkaline filter material, and the inhibiting filter element comprises a zeolite filter material.

[0017] In one embodiment, the mineralization filter element comprises a medical stone, the promoting filter element comprises a periclase, and the inhibiting filter element comprises a zeolite.

[0018] According to the second aspect of the present application, in one embodiment, a mineral spring mineralization water purifier is provided, comprising the mineralization-adjustable water path structure of the first aspect.

[0019] According to the mineralization-adjustable water path structure and the mineral spring mineralization water purifier of the above embodiments, by arranging the first connecting water path, the water containing the inhibiting substance can flow into the mineralization filter element through the first connecting water path, so that the inhibiting substance can inhibit the release of the mineral substance from the mineralization filter element, and the content of the mineral substance in the water can be reduced, thereby preventing the content of the mineral substance in the water from being too high. By arranging the second connecting water path, the water containing the promoting substance can flow into the mineralization filter element through the second connecting water path, so that the promoting substance can promote the release of the mineral substance from the mineralization filter element, and the content of the mineral substance in the water can be increased, thereby avoiding the situation that the content of the mineral substance in the water does not meet the standard. BRIEF DESCRIPTION OF DRAWINGS

[0020] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can also be obtained according to the structures shown in the drawings without creative labor for those skilled in the art.

[0021] Figure 1 is a structural schematic diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application;

[0022] Figure 2 is a water flow direction diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application when the mineralization waterway, the inhibition waterway and the promotion waterway simultaneously discharge water;

[0023] Figure 3 is a water flow direction diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application when the mineralization filter core is in a soaking state;

[0024] Figure 4 is a water flow direction diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application when the mineralization filter core is prevented from exceeding the mineral content due to soaking, and new mineral species is added to the water body;

[0025] Figure 5 is a water flow direction diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application when the mineralization filter core is in the middle and later stages of service life;

[0026] Figure 6 is a water flow direction diagram of the mineralization-adjustable waterway structure provided by the embodiments of the present application when a large flow is expected, and new mineral species is added to the water body.

[0027] Explanation of reference numerals:

[0028] 100, mineralization-adjustable waterway structure; 10, mineralization waterway; 11, mineralization pipeline; 12, mineralization filter core; 13, first control valve; 20, inhibition waterway; 21, inhibition pipeline; 22, inhibition filter core; 23, second control valve; 30, promotion waterway; 31, promotion pipeline; 32, promotion filter core; 33, third control valve; 40, water inlet waterway; 50, water outlet waterway; 60, first connection waterway; 61, first connection pipeline; 62, first valve body; 70, second connection waterway; 71, second connection pipeline; 72, second valve body.

[0029] The implementation, functional features and advantages of the present application will be further described with reference to the embodiments and the accompanying drawings. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described 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 other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.

[0031] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative position relationship, movement condition, etc. between components in a certain posture, and if the certain posture changes, the directional indications also change accordingly.

[0032] It should also be noted that when an element is referred to as being "fixed to" or "set on" another element, it can be directly on the other element or can have a middle element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or can have a middle element.

[0033] In addition, the description of "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features. In addition, the technical solutions of each embodiment can be combined with each other, but it must be based on the realization of the ordinary skilled in the art, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, and is not within the protection scope required by the present application.

[0034] The reverse osmosis membrane filtration technology used by the water purification equipment can filter all substances in the water, and the pure water without any beneficial elements is not healthy good water in a certain sense, and does not meet the latest concept of healthy good water. Therefore, the product application of mineralizing the purified water through the mineralization filter element is born. However, in the related art, there may be a situation that the amount of mineral release (dissolution) is small, the content of minerals in the water body is not up to standard, and the amount of mineral release is too much, and the content of minerals in the water body is too high, which affects human health.

[0035] Therefore, the present application provides a mineralization-adjustable waterway structure and a mineral spring mineralization water purifier, which can increase the release of minerals when the amount of mineral release (dissolution) is not up to standard, and reduce the release of minerals when the amount of mineral release is too high.

[0036] As Figure 1As shown, the mineralization-adjustable water path structure 100 provided by the embodiment of the utility model includes a mineralization water path 10, an inhibition water path 20 and a promotion water path 30. The mineralization water path 10 includes a mineralization pipeline 11 and a mineralization filter element 12 arranged in the mineralization pipeline 11. The inhibition water path 20 includes an inhibition pipeline 21 and an inhibition filter element 22 arranged in the inhibition pipeline 21. The promotion water path 30 includes a promotion pipeline 31 and a promotion filter element 32 arranged in the promotion pipeline 31.

[0037] The mineralization filter element 12 can release (dissolve) minerals into the water flowing therethrough, so that the water contains minerals, thereby meeting the requirement of people for mineralized drinking water. The inhibition filter element 22 can release inhibition substances into the water flowing therethrough. When the water containing the inhibition substances flows through the mineralization filter element 12, the inhibition substances can inhibit the mineralization filter element 12 from releasing minerals, thereby avoiding the case that the content of minerals in the water is too high. The promotion filter element 32 can release promotion substances into the water flowing therethrough. When the water containing the promotion substances flows through the mineralization filter element 12, the promotion substances can promote the mineralization filter element 12 to release minerals, thereby increasing the content of minerals in the water.

[0038] By arranging the mineralization water path 10 to include the mineralization pipeline 11 and the mineralization filter element 12 arranged in the mineralization pipeline 11, the water output by the mineralization pipeline 11 can contain minerals, i.e. the mineralization water path 10 can output water containing minerals. By arranging the inhibition water path 20 to include the inhibition pipeline 21 and the inhibition filter element 22 arranged in the inhibition pipeline 21, the water output by the inhibition pipeline 21 can contain inhibition substances, thereby providing the possibility of inhibiting the mineralization filter element 12 from releasing minerals. By arranging the promotion water path 30 to include the promotion pipeline 31 and the promotion filter element 32 arranged in the promotion pipeline 31, the water output by the promotion pipeline 31 can contain promotion substances, thereby providing the possibility of promoting the mineralization filter element 12 to release minerals.

[0039] The mineralization water path 10, the inhibition water path 20 and the promotion water path 30 are arranged in parallel and can output water at the same time. In this way, the water containing minerals in the mineralization water path 10, the water containing inhibition substances in the inhibition water path 20 and the water containing promotion substances in the promotion water path 30 can be mixed and then discharged. The mineralization water path 10, the inhibition water path 20 and the promotion water path 30 can also output water individually. People can obtain the water containing minerals from the mineralization water path 10, the water containing inhibition substances from the inhibition water path 20 and the water containing promotion substances from the promotion water path 30 according to requirements. Any two of the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 can also output water at the same time. Therefore, the mineralization-adjustable water path structure 100 of the embodiment can provide different water.

[0040] It can be understood that in other embodiments, the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 can also be connected to different water outlets respectively, so that the water in the mineralization water path 10, the water in the inhibition water path 20 and the water in the promotion water path 30 can also be discharged separately.

[0041] Referring to Figure 1 The mineralization-adjustable water path structure 100 further comprises a water inlet path 40 and a water outlet path 50, and the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 are connected in parallel between the water inlet path 40 and the water outlet path 50. In this way, the parallel arrangement of the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 is achieved. The water inlet path 40 can be connected to the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 through a multi-way valve or a distribution valve, and the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 can be connected to the water outlet path 50 through the multi-way valve. When the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 discharge water at the same time, the water discharged from the mineralization pipe 11, the inhibition pipe 21 and the promotion pipe 31 can be mixed and discharged through the water outlet path 50.

[0042] Referring to Figure 1 The mineralization-adjustable water path structure 100 further comprises a first connecting water path 60 connected between the mineralization water path 10 and the inhibition water path 20, for allowing the water flowing through the inhibition filter element 22 to enter the mineralization water path 10. In this way, the water containing the inhibition substance can flow into the mineralization filter element 12 through the first connecting water path 60, so that the inhibition substance can inhibit the mineralization filter element 12 from releasing the mineral substance, and reduce the content of the mineral substance in the water, thereby preventing the content of the mineral substance in the water from being too high. In particular, when the mineralization filter element 12 is in a soaking state, for example, when the water flow rate in the mineralization water path 10 is too slow, the water discharge is stopped or the water discharge is stopped for a set period of time, the content of the mineral substance in the water (especially in the mineralization filter element 12) can be too high. The water containing the inhibition substance can enter the mineralization filter element 12 through the first connecting water path 60, so that the inhibition substance can inhibit the mineralization filter element 12 in the soaking state from releasing the mineral substance, thereby preventing the content of the mineral substance in the water from being too high. The soaking state described in the embodiment refers to the case where the flow rate in the filter element is less than a design threshold, including the case where the water flow is stopped or the water flow rate is slow.

[0043] Referring to Figure 1The mineralization-adjustable water path structure 100 further comprises a second connecting water path 70 connected between the mineralization water path 10 and the promoting water path 30 for allowing the water flowing through the promoting filter element 32 to flow into the mineralization water path 10. In this way, the water containing the promoting substance can flow into the mineralization filter element 12 through the second connecting water path 70, so that the promoting substance can promote the mineralization filter element 12 to release the mineral substance, increase the content of the mineral substance in the water, and thus avoid the situation that the content of the mineral substance in the water fails to meet the standard. In particular, when the water flow of the mineralization water path 10 exceeds the set flow (i.e. the water flow is large), or when the mineralization filter element 12 has been used for a certain period of time and reaches the middle or later period of the service life, the amount of the mineral substance released by the mineralization filter element 12 decreases, and the promoting substance can promote the mineralization filter element 12 to release the mineral substance, so as to effectively increase the content of the mineral substance in the water.

[0044] Therefore, the mineralization-adjustable water path structure 100 provided by the embodiment can prevent the situation that the content of the mineral substance in the water is too high by transporting the water containing the inhibiting substance to the mineralization filter element 12 to inhibit the mineralization filter element 12 from releasing the mineral substance, and can prevent the situation that the content of the mineral substance in the water fails to meet the standard by transporting the water containing the promoting substance to the mineralization filter element 12 to promote the mineralization filter element 12 to release the mineral substance.

[0045] Please refer to Figure 1 The first connecting water path 60 comprises a first connecting pipeline 61 and a first valve body 62 arranged in the first connecting pipeline 61. The first valve body 62 has a water flow passable state and a water flow impassable state, and in specific applications, the first valve body 62 can also be a flow valve.

[0046] By arranging the first valve body 62 in the first connecting pipeline 61, it can be controlled whether the water flow can pass through the first connecting pipeline 61 from the inhibiting filter element 22 to the mineralization filter element 12. For example, when the mineralization filter element 12 is in the soaking state, the first valve body 62 can be in the water flow passable state, so that the water flow can pass through the first connecting pipeline 61 from the inhibiting filter element 22 to the mineralization filter element 12, and thus the inhibiting substance can inhibit the mineralization filter element 12 from releasing the mineral substance, so as to reduce the content of the mineral substance in the water, prevent the content of the mineral substance from exceeding the set standard, and thus control the content of the mineral substance within the safe standard range. When the water flow of the mineralization water path 11 exceeds the set flow, and the concentration of the mineral substance in the water flowing through the mineralization filter element 12 does not exceed the set standard, the first valve body 62 can be in the water flow impassable state.

[0047] Please refer to Figure 1 The second connecting water path 70 comprises a second connecting pipeline 71 and a second valve body 72 arranged in the second connecting pipeline 71. The second valve body 72 has a water flow passable state and a water flow impassable state, and in specific applications, the second valve body 72 can also be a flow valve.

[0048] By setting the second valve body 72 in the second connecting pipeline 71, it can be controlled whether the water flow can pass through the second connecting pipeline 71 from the promoting filter core 32 to the mineralization filter core 12. For example, when the water flow of the mineralization water path 10 is large, or the mineralization filter core 12 has reached the middle or later period of service life, the second valve body 72 can be in the water flow passing state, so that the water flow can pass through the second connecting pipeline 71 from the promoting filter core 32 to the mineralization filter core 12, and the promoting substance can promote the mineralization filter core 12 to release mineral substances, so as to increase the content of mineral substances in the water body, prevent the content of mineral substances from being lower than the set standard, and control the content of mineral substances within a safe standard range. When the water flow of the mineralization water path 10 is lower than the set flow, or the mineralization filter core 12 is in the early period of service life, the concentration of mineral substances in the water body flowing through the mineralization filter core 12 will not be lower than the set standard, and the content of mineral substances in the water body meets the standard, so that the first valve body 62 can be in the water flow non-passing state.

[0049] Please refer to Figure 1 The mineralization water path 10 further comprises a first control valve 13 for controlling the on-off and / or flow of the mineralization pipeline 11, and the first control valve 13 is arranged at the upstream end of the mineralization filter core 12. By controlling the opening or closing of the first control valve 13, it can be realized whether to deliver water to the mineralization filter core 12. By setting the first control valve 13 to control the flow of the mineralization pipeline 11, the amount of mineral substances released by the mineralization filter core 12 in a unit volume of water can be controlled. Specifically, when the water flow of the mineralization pipeline 11 is greater than the set flow, the content of mineral substances in a unit volume of water will decrease, and when the water flow of the mineralization pipeline 11 is lower than the set flow, the content of mineral substances in a unit volume of water will increase. Therefore, the flow of the mineralization pipeline 11 can be adjusted by the first control valve 13, and the content of mineral substances in the water of the mineralization pipeline 11 can be adjusted.

[0050] Please refer to Figure 1 The inhibition water path 20 further comprises a second control valve 23 for controlling the on-off and / or flow of the inhibition pipeline 21, and the second control valve 23 is arranged at the downstream end of the inhibition filter core 22. By controlling the opening or closing of the second control valve 23, it can be realized whether to deliver water to the inhibition filter core 22. The promoting water path 30 further comprises a third control valve 33 for controlling the on-off and / or flow of the promoting pipeline 31, and the third control valve 33 is arranged at the downstream end of the promoting filter core 32. By controlling the opening or closing of the third control valve 33, it can be realized whether to deliver water to the promoting filter core 32.

[0051] The first connecting water path 60 is connected between the first control valve 13 and the mineralization filter 12 at one end, and connected between the inhibition filter 22 and the second control valve 23 at the other end. Since the first control valve 13 is arranged at the upstream end of the mineralization filter 12, and the second control valve 23 is arranged at the downstream end of the inhibition filter 22, the input end of the first connecting pipeline 61 is connected to the downstream end of the inhibition filter 22, and the output end of the first connecting pipeline 61 is connected to the upstream end of the mineralization filter 12. When the first control valve 13 and the second control valve 23 are controlled to be closed, and the first valve body 62 is in the water flow passable state, the water body containing the inhibition substance can flow to the first connecting pipeline 61, and then to the mineralization filter 12.

[0052] The second connecting water path 70 is connected between the first control valve 13 and the mineralization filter 12 at one end, and connected between the promotion filter 32 and the third control valve 33 at the other end. Since the first control valve 13 is arranged at the upstream end of the mineralization filter 12, and the third control valve 33 is arranged at the downstream end of the promotion filter 32, the input end of the second connecting pipeline 71 is connected to the downstream end of the promotion filter 32, and the output end of the second connecting pipeline 71 is connected to the upstream end of the mineralization filter 12. When the first control valve 13 and the third control valve 33 are controlled to be closed, and the second valve body 72 is in the water flow passable state, the water body containing the promotion substance can flow to the second connecting pipeline 71, and then to the mineralization filter 12.

[0053] By arranging the first control valve 13, the second control valve 23, the third control valve 33, the first valve body 62 and the second valve body 72, the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 can be simultaneously discharged, or individually discharged, or the water flow passing through the inhibition filter 22 can pass through the first connecting water path 60 to enter the mineralization filter 12, or the water flow passing through the promotion filter 32 can pass through the second connecting water path 70 to enter the mineralization filter 12, and so on, so that the water path structure meets different requirements.

[0054] For example, referring to Figure 2 When the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 need to be simultaneously discharged, the first control valve 13, the second control valve 23 and the third control valve 33 can be controlled to be opened, and the first valve body 62 and the second valve body 72 are both in the water flow impassable state. At this time, the first connecting water path 60 and the second connecting water path 70 are both disconnected, the mineralization water path 10, the inhibition water path 20 and the promotion water path 30 are connected between the water inlet path 40 and the water outlet path 50 and arranged in parallel, and the water body in the mineralization water path 10, the water body in the inhibition water path 20 and the water body in the promotion water path 30 are mixed in the water outlet path 50 and then discharged.

[0055] For example, referring to Figure 3When the mineralization filter 12 is in the soaking state, the first valve body 62 can be controlled to be in the water flow passable state, the second valve body 72 can be controlled to be in the water flow impassable state, and the first control valve 13, the second control valve 23 and the third control valve 33 can be controlled to be closed. At this time, the second connecting water path 70 and the promoting water path 30 are both disconnected, the inhibiting filter 22 and the mineralization filter 12 are connected through the first connecting water path 60, and the water containing the inhibiting substance can flow to the mineralization filter 12 through the first connecting water path 60, so that the water containing the inhibiting substance can enter and fill in the mineralization filter 12, and the mineralization filter 12 can be soaked by the water containing the inhibiting substance.

[0056] For example, referring to Figure 4 When the mineralization filter 12 is prevented from exceeding the standard content of the mineral substance due to soaking, and new mineral substance is added to the water, the first valve body 62 can be controlled to be in the water flow passable state, the second valve body 72 can be controlled to be in the water flow impassable state, the first control valve 13 and the second control valve 23 can be controlled to be closed, and the third control valve 33 can be controlled to be opened. At this time, the second connecting water path 70 is disconnected, the inhibiting filter 22 and the mineralization filter 12 are connected through the first connecting water path 60, the water containing the inhibiting substance can flow to the mineralization filter 12 through the first connecting water path 60, so that the mineralization filter 12 is inhibited from releasing the mineral substance, to prevent the water from exceeding the standard content of the mineral substance; the promoting water path 30 is connected, the water containing the promoting substance can flow to the water outlet path 50, and the promoting filter 32 can include a filter material for releasing the mineral substance, so that new mineral substance can be added to the water. For example, the promoting filter 32 includes the periclase filter material described below, the periclase filter material is an alkaline filter material, the released (dissolved) mineral substance periclase can adjust the pH value of the water, improve the taste of the drinking water, and maintain the health state of the human body.

[0057] For example, referring to Figure 5When the mineralization filter 12 is in the middle or later stage of its service life, the first valve body 62 can be controlled to be in the state of water flow being unable to pass through, the second valve body 72 can be controlled to be in the state of water flow being able to pass through, and the first control valve 13, the second control valve 23 and the third control valve 33 can be controlled to be closed. At this time, the first connecting water path 60 and the inhibition water path 20 are both disconnected, the promoting filter 32 and the mineralization filter 12 are connected through the second connecting water path 70, and the water containing the promoting substance can flow to the mineralization filter 12 through the second connecting water path 70, so as to promote the mineralization filter 12 to release the mineral substance, and the mineral substance in the water can reach the standard. Even if the mineralization filter 12 is in the middle or later stage of its service life (the mineral substance dissolution rate is reduced), the service life of the mineralization filter 12 can be prolonged by setting the promoting filter 32 to keep the mineral substance dissolution rate of the mineralization filter 12 in the set range interval. Alternatively, when a large flow is expected, the first valve body 62 can be controlled to be in the state of water flow being unable to pass through, the second valve body 72 can be controlled to be in the state of water flow being able to pass through, and the first control valve 13, the second control valve 23 and the third control valve 33 can be controlled to be closed, so that the mineral substance in the water can reach the standard when the flow is large.

[0058] Exemplarily, refer to Figure 6 When a large flow is expected and a new mineral substance is added to the water, the first valve body 62 can be controlled to be in the state of water flow being unable to pass through, the second valve body 72 can be controlled to be in the state of water flow being able to pass through, the first control valve 13 and the third control valve 33 can be controlled to be closed, and the second control valve 23 can be controlled to be opened. At this time, the first connecting water path 60 is disconnected; the promoting filter 32 and the mineralization filter 12 are connected through the second connecting water path 70, and the water containing the promoting substance can flow to the mineralization filter 12 through the second connecting water path 70, so as to promote the mineralization filter 12 to release the mineral substance, and the mineral substance in the water can reach the standard; the inhibition water path 20 is connected, and the water containing the inhibition substance can flow to the water outlet path 50, wherein the inhibition filter 22 can include a filter material for releasing the mineral substance, so as to add the new mineral substance to the water. For example, the inhibition filter 22 includes the zeolite filter material described below, the mineral substance zeolite released (dissolved) by the zeolite filter material can adsorb harmful substances such as heavy metals, ammonium and hydrogen compounds in the water, greatly improving the water quality, and in addition, the zeolite can adjust the pH value of the water and improve the taste of the drinking water, keeping the human body in a healthy state.

[0059] In an embodiment, the first valve body 62 is a switch valve. By controlling the opening or closing of the first valve body 62, the connection and disconnection of the first connecting water path 61 can be controlled.

[0060] It can be understood that in other embodiments, the first valve body 62 can also be a one-way valve. Specifically, when the inhibition waterway 20 is connected between the water inlet waterway 40 and the water outlet waterway 50, the second control valve 23 is opened, at this time, the water flowing through the inhibition filter element 22 has a smaller resistance along the inhibition pipeline 21 to the second control valve 23 than along the first connecting pipeline 61 to the one-way valve, so that the water flowing through the inhibition filter element 22 cannot flow along the first connecting pipeline 61 to the mineralization filter element 12 through the one-way valve (the first valve body 62), but flows along the inhibition pipeline 21 to the water outlet waterway 50; when the mineralization filter element 12 is in the soaking state, the second control valve 23 is closed, and the water flowing through the inhibition filter element 22 cannot flow along the inhibition pipeline 21 to the water outlet waterway 50, so that the water flows along the first connecting pipeline 61 to the mineralization filter element 12 through the one-way valve (the first valve body 62), thereby inhibiting the mineralization filter element 12 from releasing minerals.

[0061] In an embodiment, the second valve body 72 is a switch valve. By controlling the opening or closing of the second valve body 72, the connection and disconnection of the second connecting pipeline 71 can be controlled.

[0062] It can be understood that in other embodiments, the second valve body 72 can also be a one-way valve. Specifically, when the promotion waterway 30 is connected between the water inlet waterway 40 and the water outlet waterway 50, the third control valve 33 is opened, at this time, the water flowing through the promotion filter element 32 has a smaller resistance along the promotion pipeline 31 to the third control valve 33 than along the second connecting pipeline 71 to the one-way valve (the second valve body 72), so that the water flowing through the promotion filter element 32 cannot flow along the second connecting pipeline 71 to the mineralization filter element 12 through the one-way valve (the second valve body 72), but flows along the promotion pipeline 31 to the water outlet waterway 50; when the mineralization filter element 12 is in the middle and late stage of service life, or in the case of large flow, the third control valve 33 is closed, at this time, the promotion waterway 30 is disconnected, the water flowing through the promotion filter element 32 cannot flow along the promotion pipeline 31 to the water outlet waterway 50, so as to flow along the second connecting pipeline 71 to the mineralization filter element 12, thereby promoting the mineralization filter element 12 to release minerals, ensuring that the mineral content in the water meets the standard.

[0063] In an embodiment, the mineralization-adjustable waterway structure 100 further comprises a controller (not shown in the figure), which is electrically connected with the first control valve 13, the second control valve 23, and the third control valve 33. In this way, the controller can control the opening and closing of the first control valve 13, the second control valve 23, and the third control valve 33, improving the intelligence of the waterway structure. When the first valve body 62 and the second valve body 72 are switch valves, the controller is also electrically connected with the switch valves to control the opening and closing of the switch valves.

[0064] In an embodiment, the first control valve 13, the second control valve 23, the third control valve 33 and the switch valve are all solenoid valves. Of course, in other embodiments, the first control valve 13, the second control valve 23, the third control valve 33 and the switch valve can also adopt other valves.

[0065] In an embodiment, the mineralization-adjustable waterway structure 100 further comprises a flow detector (not shown in the figure) for detecting the water flow. By detecting the water flow through the flow detector, it is determined whether it is a large flow, and then it is determined whether the second connecting pipeline 71 is connected.

[0066] In an embodiment, the flow detector is a flow meter. Of course, in specific applications, as an alternative embodiment, the flow detector can also adopt other detection devices, such as a flow rate sensor.

[0067] In an embodiment, the flow detector is electrically connected to the controller, and the flow detector can transmit the obtained water flow signal to the controller, and the controller can control the opening or closing of each valve body according to the water flow signal.

[0068] In an embodiment, the mineralization-adjustable waterway structure 100 further comprises a TDS detector (Total dissolved solids) for detecting the TDS value of the water flow. In specific applications, the controller is electrically connected to the TDS detector, and the TDS detector can transmit the obtained TDS value to the controller, and the controller controls the opening or closing of each valve body according to the TDS value.

[0069] In an embodiment, the mineralization filter element 12 comprises a filter material containing metasilicic acid, the promotion filter element 32 comprises an alkaline filter material, and the inhibition filter element 22 comprises a zeolite filter material.

[0070] Silicon is one of the essential trace elements for the human body, and silicon in the human body has a tendency to decrease significantly with age. Modern medicine shows that silicon affects the synthesis of bone tissue biology, is related to bone growth and structure, has a physiological role in the process of bone calcification, can promote bone development, and insufficient intake will reduce the calcium content of bone. Lack of silicon in the body will also cause growth retardation, cause bone abnormalities, deformities (especially the skull), and poor development of teeth or tooth enamel. Silicon can also enhance the strength of the elastic fibers of blood vessels, especially the intima elastic layer, thereby forming a barrier to effectively block lipid infiltration. This property makes silicon have the effect of resisting atherosclerosis, can maintain the integrity of elastic fibers and interstitium, and thus prevent the formation of atherosclerotic plaques. Silicon can also remove fat deposits on the inner wall of blood vessels, and this mechanism can alleviate arteriosclerosis, cardiovascular and heart disease.

[0071] The silicon required by the human body is generally derived from water, and the silicon stored in water is in the form of metasilicic acid, which is easily absorbed by the human body and the skin. Therefore, by providing the mineralization filter element 12 to include metasilicic acid-containing filter material, the mineralization filter element 12 can release metasilicic acid into the water body, which is beneficial to the health of the human body.

[0072] The water quality with a pH value between 7.0 and 9.0 is the best water quality suitable for the health of the human body. By providing the promoting filter element 32 to include alkaline filter material, it is beneficial to keep the water quality within the range of a pH value of 7.0 to 9.0, which is conducive to the health of the human body.

[0073] By providing the inhibiting filter element 22 to include zeolite filter material, zeolite can be released (dissolved), which is a porous mineral. In addition to being able to inhibit the dissolution of metasilicic acid, it also has excellent adsorption performance, which can adsorb impurities and pollutants in water, such as heavy metal ions, chlorine, fluorine, organic matter, and bacteria, etc. It is helpful to improve the quality of drinking water and reduce the potential harm to the human body. In addition, zeolite can also remove odors and bad tastes in water, and improve the taste of drinking water.

[0074] It can be understood that in other embodiments, the mineralization filter element 12 can also include filter material containing other minerals, such as copper, calcium, magnesium, potassium, strontium, zinc, etc. It should be noted that when the mineralization filter element 12 includes filter material containing other minerals, the corresponding promoting filter material should be matched in the promoting filter element 32, and the corresponding inhibiting filter material should be matched in the inhibiting filter element 22.

[0075] In an embodiment, the mineralization filter element 12 includes rhyolite, the promoting filter element 32 includes periclase, and the inhibiting filter element 22 includes zeolite.

[0076] The utility model embodiment further provides a mineral spring mineralization water purifier, including above mineralization adjustable waterway structure 100. Through using above mineralization adjustable waterway structure 100, can effectively prevent the situation that mineral matter content is too high in water body occurs, and mineral matter content is not up to standard or uses large flow in water body, promotes mineralization filter element 12 and releases mineral matter.

[0077] The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made under the utility model concept of the utility model, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.

Claims

1. A waterway structure with adjustable mineralization, characterized in that, The mineralization water path, the inhibition water path and the promotion water path are arranged in parallel and can output water simultaneously or separately; The mineralization water path comprises a mineralization pipeline and a mineralization filter element arranged in the mineralization pipeline, the inhibition water path comprises an inhibition pipeline and an inhibition filter element arranged in the inhibition pipeline, and the promotion water path comprises a promotion pipeline and a promotion filter element arranged in the promotion pipeline; The first connecting water path is connected between the mineralization water path and the inhibition water path, and is used for allowing water flowing through the inhibition filter element to enter the mineralization water path; and the second connecting water path is connected between the mineralization water path and the promotion water path, and is used for allowing water flowing through the promotion filter element to enter the mineralization water path.

2. The mineralization-adjustable waterway structure according to claim 1, wherein The first connecting water path comprises a first connecting pipeline and a first valve body arranged in the first connecting pipeline, and the first valve body is a switch valve or a one-way valve; and / or The second connecting water path comprises a second connecting pipeline and a second valve body arranged in the second connecting pipeline, and the second valve body is a switch valve or a one-way valve.

3. The mineable adjustable waterway structure of claim 1, wherein, The mineralization water path further comprises a first control valve used for controlling the mineralization pipeline, and the first control valve is arranged at an upstream end of the mineralization filter element; One end of the first connecting water path is connected between the first control valve and the mineralization filter element, and one end of the second connecting water path is connected between the first control valve and the mineralization filter element.

4. The mineralization-adjustable waterway structure according to claim 1, wherein The inhibition water path further comprises a second control valve used for controlling the inhibition pipeline, and the second control valve is arranged at a downstream end of the inhibition filter element; and the other end of the first connecting water path is connected between the inhibition filter element and the second control valve.

5. The mineralization-adjustable waterway structure according to claim 1, wherein The promotion water path further comprises a third control valve used for controlling the promotion pipeline, and the third control valve is arranged at a downstream end of the promotion filter element; and the other end of the second connecting water path is connected between the promotion filter element and the third control valve.

6. The mineralization-adjustable waterway structure according to claim 1, wherein The mineralization adjustable water path structure further comprises a water inlet water path and a water outlet water path, and the mineralization water path, the inhibition water path and the promotion water path are connected in parallel between the water inlet water path and the water outlet water path.

7. The mineralization-adjustable waterway structure according to claim 1, wherein The mineralization adjustable water path structure further comprises a flow detector used for detecting water flow; and / or The mineralization adjustable water path structure further comprises a TDS detector used for detecting TDS value of water flow.

8. The mineralization-adjustable waterway structure according to any one of claims 1 to 7, wherein The mineralization filter element comprises a metasilicic acid filter material, the promotion filter element comprises an alkaline filter material, and the inhibition filter element comprises a zeolite filter material.

9. The mineralization-adjustable waterway structure according to claim 8, wherein The mineralization filter element comprises a medical stone, the promotion filter element comprises a periclase, and the inhibition filter element comprises a zeolite.

10. A mineral spring mineralization water purifier, characterized in that, The mineralization adjustable water path structure comprises the mineralization adjustable water path structure according to any one of claims 1 to 9.