Integrated small household cellar water equipment
Through integrated small household cellar water equipment and multi-stage purification treatment of ultrafiltration membrane, activated carbon adsorbers and ultraviolet sterilizers, the problem of cellar water quality is solved, efficient purification and convenient maintenance of cellar water is achieved, and the safety and quality of drinking water is ensured.
Patent Information
- Application Number
- CN202521044577.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2035-05-26
AI Technical Summary
In rural areas, cellar well water has exceeded the standard due to surface source pollution, turbidity, colority and microorganisms. Long-term drinking has caused damage to human health, and lacks professional maintenance equipment and technology, so the purification efficiency is low.
The integrated integrated small household cellar water equipment is designed, including ultrafiltration membrane, activated carbon adsorber and ultraviolet sterilizer. Through multi-stage purification treatment, combined with the adsorption pump body, the pipe design is compact to save space, and the adsorption pump body is convenient for maintenance through removable fixed components.
Effectively remove suspended objects, turbidity and microorganisms in cellar water, improve purification efficiency, is suitable for small spaces, and is convenient for equipment maintenance, ensuring the safety and quality of drinking water.
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Figure CN223047386U_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the technical field of cellar water equipment, and more particularly, to an integrated small household cellar water equipment. Background Art
[0002] In some areas, the drinking water resources in rural areas are scarce, and rainwater collected in courtyards is used as drinking water in many places. However, livestock and poultry are often raised in the courtyards, which is very likely to cause non-point source pollution. That is, rainwater runoff is likely to carry livestock and poultry residues into the rural household cellars. However, due to the scarce local water resources, local residents have to use the most primitive method to draw water from the cellar well and then boil it directly for drinking. In fact, the suspended solids, turbidity, chromaticity, and Escherichia coli in the cellar water are still excessive. Drinking such water for a long time will inevitably cause certain damage to human health.
[0003] It should be noted that the information disclosed in the above background art section is only used to enhance the understanding of the background of the present disclosure, and thus may include information that does not constitute the prior art known to those of ordinary skill in the art. Utility Model Content
[0004] The purpose of the present disclosure is to overcome the above-mentioned deficiencies of the prior art and provide an integrated small household cellar water equipment to improve the purification quality of cellar water and the purification efficiency of the cellar water equipment for cellar water.
[0005] According to one aspect of the present disclosure, there is provided an integrated small household cellar water equipment, which includes an equipment frame, a partition frame, a first treatment component, a second treatment component, and a third treatment component;
[0006] The partition frame is arranged inside the equipment frame, and the partition frame divides the equipment frame into a first chamber and a second chamber;
[0007] The first treatment component, the second treatment component, and the third treatment component are all arranged in the first chamber, and the first treatment component, the second treatment component, and the third treatment component are connected in sequence;
[0008] The first treatment component is configured to perform a first purification treatment on water;
[0009] The second treatment component is configured to perform a secondary treatment on the water after the first purification treatment;
[0010] The third treatment component is configured to perform a further treatment on the water after the second purification treatment;
[0011] Wherein, an installation part is provided in the second chamber, and the installation part is used to connect with an adsorption pump body, and the adsorption pump body is used to introduce the cellar water to be purified into the first treatment component.
[0012] According to an embodiment of the present disclosure, the first processing component includes an ultrafiltration membrane device, and the ultrafiltration membrane device has a first water inlet, a first water outlet, and a second water outlet;
[0013] The second processing component includes an activated carbon adsorber, and the activated carbon adsorber has a second water inlet and a third water outlet;
[0014] The third processing component includes an ultraviolet sterilizer, and the ultraviolet sterilizer has a third water inlet and a fourth water outlet;
[0015] Wherein,
[0016] The first water inlet is connected to the liquid outlet of the adsorption pump body through a first pipeline, and the first water outlet is connected to the second water inlet through a second pipeline;
[0017] The third water outlet is connected to the third water inlet through a third pipeline;
[0018] The fourth water outlet extends out of the equipment housing through a fourth pipeline.
[0019] According to an embodiment of the present disclosure, the first pipeline includes a first section, a second section, a third section, and a fourth section;
[0020] Wherein, one end of the first section is connected to the liquid outlet of the adsorption pump body, and the axial direction of the first section is the same as the height direction of the equipment housing;
[0021] The second section is connected to the other end of the first section, and the axial direction of the second section is perpendicular to the axial direction of the first section;
[0022] The third section is connected to the end of the second section far from the first section, and the axial direction of the third section is perpendicular to the axial direction of the second section;
[0023] The fourth section is connected to the side of the third section far from the second section, and the axial direction of the fourth section is the same as the axial direction of the second section.
[0024] According to an embodiment of the present disclosure, the second pipeline includes a fifth section, a sixth section, a seventh section, an eighth section, and a ninth section;
[0025] Wherein, one end of the fifth section is connected to the first water outlet, and the axial direction of the fifth section is the same as the height direction of the ultrafiltration membrane device;
[0026] The sixth section is connected to the other end of the fifth section, and the axial direction of the sixth section is perpendicular to the axial direction of the fifth section;
[0027] The seventh section is connected to the side of the sixth section away from the fifth section, and the axial direction of the seventh section is the same as that of the fifth section;
[0028] The eighth section is arranged on the side of the seventh section away from the sixth section, and the axial direction of the eighth section is the same as that of the sixth section;
[0029] The ninth section is arranged on the side of the eighth section away from the seventh section, and the axial direction of the ninth section is perpendicular to that of the eighth section.
[0030] According to an embodiment of the present disclosure, the third pipeline includes a tenth section, an eleventh section, and a twelfth section;
[0031] One end of the tenth section is connected to the third water outlet;
[0032] The eleventh section is connected to the other end of the tenth section, and the axial direction of the tenth section is the same as the height direction of the equipment housing;
[0033] The twelfth section is connected to the end of the eleventh section away from the tenth section, and the axial direction of the twelfth section is perpendicular to that of the eleventh section.
[0034] According to an embodiment of the present disclosure, a control valve is provided on the eleventh section.
[0035] According to an embodiment of the present disclosure, the cellar water equipment further includes a fixing component for detachably fixing the adsorption pump body to the second chamber;
[0036] The fixing component includes a fixing bracket and a clamping member;
[0037] The fixing bracket is arranged in the second chamber;
[0038] The adsorption pump body is slidably connected to the fixing bracket, and the clamping member is used to detachably fix the adsorption pump body to the fixing bracket.
[0039] According to an embodiment of the present disclosure, one side of the equipment housing has an outlet through which the adsorption pump body can be sent out;
[0040] The fixing bracket includes a fixed section and a telescopic section;
[0041] The telescopic section is slidably connected to the fixed section, and the telescopic section can extend out of the outlet;
[0042] Wherein, the fixing bracket has a first state and a second state;
[0043] In the first state, a part of the telescopic section coincides with the fixed section. The adsorption pump body is arranged on the telescopic section through the clamping member, and the adsorption pump body is located in the second chamber;
[0044] In the second state, the telescopic section extends out of the outlet, and the adsorption pump body is located outside the equipment housing.
[0045] According to an embodiment of the present disclosure, a holding portion is provided on one side of the telescopic section close to the outlet.
[0046] According to an embodiment of the present disclosure, the clamping member includes a clamping block, a plurality of clamping posts, a clamping spring, and a pulling rod;
[0047] The clamping block is arranged at the bottom of the adsorption pump body;
[0048] The plurality of clamping posts are slidably connected to the telescopic section through the clamping spring;
[0049] The clamping block is provided with clamping grooves corresponding to the clamping posts; wherein, when the adsorption pump body is clamped on the telescopic section, the clamping posts extend into the clamping grooves;
[0050] The pulling rod is connected to the plurality of clamping posts together and is slidably connected to the telescopic section, and the movement direction of the pulling rod is the same as the axial direction of the clamping spring.
[0051] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure.
[0052] Beneficial effects:
[0053] 1. The well cellar water is adsorbed into the first treatment component by the adsorption pump body, and the first treatment component performs the first purification treatment on the cellar water. After the first treatment component finishes treating the cellar water, the cellar water after the first treatment is sent into the second treatment component, and the second treatment component performs secondary treatment on the initially treated cellar water. After the secondary treatment of the cellar water is completed, the cellar water is sent into the third treatment component, and the third treatment component performs re-treatment on the secondary-treated cellar water, so as to achieve the purpose of treating and purifying the cellar water.
[0054] 2. By setting the first pipeline, the second pipeline, and the third pipeline as multi-section structures, a reasonable layout of the first pipeline, the second pipeline, and the third pipeline in the equipment housing can be realized, and thus the overall floor area of the cellar well equipment is relatively small, so as to be applicable to various scenarios (for example, it can be applicable to narrow spaces).
[0055] 3. The provided holding part facilitates the operator to quickly pull out the adsorption pump body in the second chamber, improving the cleaning or repair efficiency of the adsorption pump body, and thus, to a certain extent, enhancing the treatment efficiency of cellar water. BRIEF DESCRIPTION OF THE DRAWINGS
[0056] The accompanying drawings herein are incorporated into and constitute a part of this specification, showing embodiments consistent with the present disclosure, and are used together with the specification to explain the principles of the present disclosure. Obviously, the drawings in the following description are only some embodiments of the present disclosure, and those of ordinary skill in the art can obtain other drawings based on these drawings without creative efforts.
[0057] Figure 1 In one embodiment of the present disclosure, it is a schematic diagram of the overall structure of an integrated small household cellar water treatment device.
[0058] Figure 2 is Figure 1 an enlarged view of part A.
[0059] Figure 3 In one embodiment of the present disclosure, it is a schematic diagram of the structure of an integrated small household cellar water treatment device from another perspective.
[0060] Figure 4 In one embodiment of the present disclosure, it is a schematic diagram of the structure with the equipment frame hidden.
[0061] Explanation of Reference Numerals: 1. Equipment frame; 11. Partition frame; 12. Outlet; 13. First chamber; 14. Second chamber; 15. Shutter door; 16. Sealing door; 17. Installation part; 2. Adsorption pump body; 3. First treatment component; 31. Ultrafiltration membrane device; 311. First water inlet; 312. Second water outlet; 313. First water outlet; 4. Second treatment component; 41. Activated carbon adsorber; 411. Second water inlet; 412. Third water outlet; 5. Third treatment component; 51. Ultraviolet sterilizer; 511. Third water inlet; 512. Fourth water outlet; 6. First pipeline; 61. First section; 62. Second section; 63. Third section; 64. Fourth section; 7. Second pipeline; 71. Fifth section; 72. Sixth section; 73. Seventh section; 74. Eighth section; 75. Ninth section; 8. Third pipeline; 81. Tenth section; 82. Eleventh section; 83. Twelfth section; 9. Fixing component; 91. Fixing bracket; 911. Fixing section; 912. Telescopic section; 9121. Holding part; 92. Clamping part; 921. Clamping block; 9211. Clamping groove; 922. Clamping post; 923. Clamping spring; 924. Pulling rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0062] Example embodiments will now be described more fully with reference to the accompanying drawings. However, the example embodiments can be implemented in various forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the example embodiments to those skilled in the art. Like reference numerals in the figures denote like or similar structures, and thus their detailed description will be omitted. In addition, the drawings are only schematic illustrations of the present disclosure and are not necessarily drawn to scale.
[0063] Although relative terms such as "upper" and "lower" are used in this specification to describe the relative relationship of one component of an icon to another component, these terms are used in this specification only for convenience, for example, according to the directions of the examples described in the drawings. It can be understood that if the device of the icon is turned upside down, the component described as "upper" will become the component "lower". When a structure is "on" another structure, it may mean that a structure is integrally formed on another structure, or that a structure is "directly" disposed on another structure, or that a structure is "indirectly" disposed on another structure through another structure.
[0064] In the related art, the domestic water in some remote areas is mainly directly taken out from the cellar wells and boiled before drinking. The water in the cellar wells only undergoes natural sedimentation, and there are many water quality problems. For example: Excessive microorganisms: Although there is a certain natural filtration in the cellar wells, the water in the cellar wells may still have problems of microbial contamination. For example, microorganisms such as bacteria, viruses, and Escherichia coli may enter the cellar wells with rainwater, soil infiltration, etc., resulting in excessive microbial content in the water. Long-term drinking may cause health problems such as intestinal diseases and infectious diseases. Prone to pollution: The environmental factors around the cellar wells have a greater impact on water quality. If there are situations such as garbage stacking, breeding activities, agricultural fertilizers, and pesticide use around, pollutants may enter the cellar wells through surface runoff, soil infiltration, etc., polluting the well water and affecting water quality safety. Difficult to manage: The cellar wells need to be regularly cleaned, disinfected and other maintenance work. However, in rural areas, due to the lack of professional technical personnel and equipment, as well as the lack of knowledge of residents about maintenance, the maintenance of cellar wells is often difficult to be effectively guaranteed. If not cleaned for a long time, silt will accumulate at the bottom of the well and the water quality will deteriorate. If not disinfected, harmful microorganisms in the water cannot be effectively killed, thus affecting water use safety.
[0065] Based on this, see Figure 1, embodiments of the present disclosure provide an integrated small household cellar water treatment device. The cellar water treatment device includes a device frame 1, a partition frame 11, a first treatment component 3, a second treatment component 4, and a third treatment component 5; the partition frame 11 is disposed inside the device frame 1, and the partition frame 11 divides the device frame 1 into a first chamber 13 and a second chamber 14; the first treatment component 3, the second treatment component 4, and the third treatment component 5 are all disposed inside the first chamber 13, and the first treatment component 3, the second treatment component 4, and the third treatment component 5 are connected in sequence; the first treatment component 3 is configured to perform a first purification treatment on water; the second treatment component 4 is configured to perform a secondary treatment on the water after the first purification treatment; the third treatment component 5 is configured to perform a further treatment on the water after the second purification treatment; wherein, there is an installation part 17 inside the second chamber 14, and the installation part 17 is used to connect with the adsorption pump body 2, and the adsorption pump body 2 is used to introduce the cellar water to be purified into the first treatment component 3.
[0066] In the embodiments of the present disclosure, first, the cellar water is adsorbed into the first treatment component 3 by the adsorption pump body 2, and then the first treatment component 3 performs a first purification treatment on the cellar water. After the first treatment component 3 finishes treating the cellar water, the cellar water after the first treatment is sent into the second treatment component 4. The second treatment component 4 performs a secondary treatment on the cellar water after the primary treatment. After the secondary treatment of the cellar water is completed, the cellar water is sent into the third treatment component 5. The third treatment component 5 performs a further treatment on the cellar water after the secondary treatment, so as to achieve the purpose of purifying the cellar water treatment. At the same time, arranging the first treatment component 3, the second treatment component 4, and the third treatment component 5 inside the first chamber 13 can reduce the conveying path of the supports of the first treatment component 3, the second treatment component 4, and the third treatment component 5, and improve the treatment efficiency of the cellar water; arranging the adsorption pump body 2 (since there are many impurities in the water, which easily causes damage to the adsorption pump body 2) inside the second chamber 14 is convenient for repairing or cleaning the adsorption pump body 2 without affecting the first treatment component 3, the second treatment component 4, and the third treatment component 5, and ensuring the normal operation of the cellar water treatment device.
[0067] Further, in some areas, the installation location of the manhole is different from the water usage location. If the water intake height of the manhole is lower than the water usage height, when the water intake distance is 6 - 20 m and there is an adsorption pump body 2 in the manhole, connect the adsorption pump body 2 to the installation part 17 in the manhole water equipment, and then use the adsorption pump body 2 to suck the water in the manhole into the first treatment component 3. If the water intake distance < 6 m and there is no adsorption pump body 2 installed in the manhole, the adsorption pump body 2 can be installed in the equipment frame 1. The adsorption pump body 2 is connected to the installation part 17 and the manhole, and the adsorption pump body 2 is turned on to adsorb the well water in the manhole into the first treatment component 3. If the water intake height from the manhole is higher than the water usage height and the head of the flowing water is greater than or equal to 15 m, the well water is directly sent to the first treatment component 3 for purification treatment (in this case, the adsorption pump body 2 can not be set in the well water equipment, thus reducing the weight of the well water equipment and facilitating its handling). If the head of the flowing water is less than 15 m and there is no adsorption pump body 2 installed in the manhole, the adsorption pump body 2 can be installed inside the well water equipment, and the adsorption pump body 2 is used to pump the well water into the first treatment component 3. Such a design can better integrate and optimize the design structure of the well water equipment according to the actual water usage situation, and improve the efficiency of the water purification treatment.
[0068] See Figure 1 、 Figure 3 、 Figure 4 , in some embodiments of the present disclosure, the first treatment component 3 includes an ultrafiltration membrane device 31, and the ultrafiltration membrane device 31 has a first water inlet 311, a first water outlet 313 and a second water outlet 312; the second treatment component 4 includes an activated carbon adsorber 41, and the activated carbon adsorber 41 has a second water inlet 411 and a third water outlet 412; the third treatment component 5 includes an ultraviolet sterilizer 51, and the ultraviolet sterilizer 51 has a third water inlet 511 and a fourth water outlet 512; wherein, the first water inlet 311 is connected to the liquid outlet of the adsorption pump body 2 through a first pipeline 6, and the first water outlet 313 is connected to the second water inlet 411 through a second pipeline 7; the third water outlet 412 is connected to the third water inlet 511 through a third pipeline 8; the fourth water outlet 512 extends out of the equipment frame 1 through a fourth pipeline.
[0069] In the embodiments of the present disclosure, the first processing component 3 can be set as an ultrafiltration membrane device 31. The ultrafiltration membrane device 31 can effectively solve the problem of high suspended solids in the cellar water. At the same time, the waste water discharge of the ultrafiltration membrane device 31 is small, which has a certain protective effect on the usage environment around the cellar well equipment. The second processing component 4 can be set as an activated carbon adsorber 41. The set activated carbon adsorber 41 can efficiently adsorb the fine suspended solids, chromaticity, organic matters in the cellar water, inhibit the regeneration of bacteria to a certain extent, improve the filtration effect of the cellar well equipment, and at the same time can also correspondingly reduce the problem of water quality fluctuation caused by the decline of the ultrafiltration membrane performance. The third processing component 5 can be set as an ultraviolet sterilizer 51. Through the ultraviolet sterilizer 51, the problem of excessive total colony count and Escherichia coli in the cellar water can be effectively removed, ensuring the drinking water safety of residents.
[0070] It can be understood that the ultrafiltration membrane device 31 has an outside pressure type ultrafiltration membrane. At the same time, ultrafiltration is a pressure-driven membrane separation technology. That is, under a certain pressure, small molecule solutes and solvents pass through a special membrane with a certain pore size, while macromolecule solutes cannot pass through and are blocked on one side of the membrane, so that the macromolecule substances are partially purified. Ultrafiltration is one of the membrane separation technologies driven by pressure, mainly intercepting some bacteria, colloids, suspended solids and macromolecule organic matters in water. Among them, the outside pressure type ultrafiltration membrane has free space outside the membrane filaments, is not easy to be blocked, so it has high pollution resistance. And the pore size is uniform, the water permeability is high, it is resistant to oxidation, has high tensile strength, etc., and has a better treatment effect on the raw water with high suspended solids and high turbidity such as cellar water.
[0071] The activated carbon adsorber 41 has a T33 activated carbon filter element. The T33 activated carbon filter element has a highly developed pore structure and a large specific surface area, can efficiently adsorb organic matters, pigments, fine suspended solids, impurities and some heavy metal ions in water, make the taste of water better, make the drinking water more pure, and provide healthier water for users. And the adsorption performance of this filter element is stable, the iodine value is high, which ensures the filtration effect of the water purifier and reduces the water quality fluctuation caused by the decline of the ultrafiltration membrane performance. It can ensure that various microorganisms such as bacteria, viruses, Escherichia coli, and algae in the purified water are effectively killed, ensuring that users can obtain high-quality drinking water.
[0072] It should be noted that in the embodiments of the present disclosure, the disclosed ultrafiltration membrane device 31, activated carbon adsorber 41 and ultraviolet sterilizer 51 are technologies well-known to those skilled in the art, and the specific structures of which are not elaborated in this application.
[0073] In summary, the cellar water treatment equipment can effectively improve the quality of cellar water with high suspended solids, turbidity, chromaticity and microorganisms. Moreover, the equipment integrates the ultrafiltration membrane device 31, the activated carbon adsorber 41, and the ultraviolet sterilizer 51 to form an integrated water purification equipment, which is not only applicable to small-scale water purification treatment but also ensures the quality of purified water. At the same time, the cellar well equipment has the characteristics of high integration, convenient installation, simple cleaning and cartridge replacement, fresh and clean filtered drinking water, and extremely low wastewater discharge.
[0074] In some embodiments of the present disclosure, referring to Figure 4 , the first pipeline 6 includes a first section 61, a second section 62, a third section 63, and a fourth section 64; wherein, one end of the first section 61 is connected to the liquid outlet of the adsorption pump body 2, and the axial direction of the first section is the same as the height direction of the equipment frame 1; the second section 62 is connected to the other end of the first section 61, and the axial direction of the second section 62 is perpendicular to the axial direction of the first section 61; the third section 63 is connected to the end of the second section 62 away from the first section 61, and the axial direction of the third section 63 is perpendicular to the axial direction of the second section 62; the fourth section 64 is connected to the side of the third section 63 away from the second section 62, and the axial direction of the fourth section 64 is the same as the axial direction of the second section 62.
[0075] In some embodiments of the present disclosure, the second pipeline 7 includes a fifth section 71, a sixth section 72, a seventh section 73, an eighth section 74, and a ninth section 75; one end of the fifth section 71 is connected to the first water outlet, and the axial direction of the fifth section 71 is the same as the height direction of the ultrafiltration membrane device 31; the sixth section 72 is connected to the other end of the fifth section 71, and the axial direction of the sixth section 72 is perpendicular to the axial direction of the fifth section 71; the seventh section 73 is connected to the side of the sixth section 72 away from the fifth section 71, and the axial direction of the seventh section 73 is the same as the axial direction of the fifth section 71; the eighth section 74 is arranged on the side of the seventh section 73 away from the sixth section 72, and the axial direction of the eighth section 74 is the same as the axial direction of the sixth section 72; the ninth section 75 is arranged on the side of the eighth section 74 away from the seventh section 73, and the axial direction of the ninth section 75 is perpendicular to the axial direction of the eighth section 74.
[0076] In some embodiments of the present disclosure, the third pipeline 8 includes a tenth section 81, an eleventh section 82, and a twelfth section 83; one end of the tenth section 81 is connected to the third water outlet 412; the eleventh section 82 is connected to the other end of the tenth section 81, and the axial direction of the tenth section 81 is the same as the height direction of the equipment frame 1; the twelfth section 83 is connected to the end of the eleventh section 82 away from the tenth section 81, and the axial direction of the twelfth section 83 is perpendicular to the axial direction of the eleventh section 82.
[0077] In summary, in the embodiments of the present disclosure, the first pipe 6, the second pipe 7, and the third pipe 8 are arranged in a multi-segment structure, which can realize the reasonable layout of the first pipe 6, the second pipe 7, and the third pipe 8 in the equipment housing 1, and further make the overall floor area of the manhole equipment smaller, so as to be applicable to various scenarios (for example, it can be applicable to narrow spaces).
[0078] In some embodiments of the present disclosure, a control valve is provided on the eleventh section 82. By setting the control valve, the flow rate of the water flowing into the activated carbon adsorber 41 can be adjusted, and the purification degree of the well water can be achieved by controlling the residence time of the well water in the activated carbon adsorber 41. For example, when the well water stays in the activated carbon adsorber 41 for a long time, the purification effect of the well water can be improved, and the purified well water can be used as domestic drinking water; when the well water stays in the activated carbon adsorber 41 for a short time, the purification effect of the well water is average, and the purified well water can be used as livestock water, etc.
[0079] Furthermore, in some embodiments, a manual ball valve can be installed on the second pipe 7. Of course, a solenoid valve can also be installed on the second pipe 7.
[0080] In some other embodiments, two activated carbon adsorbers 41 can be installed in parallel in the manhole equipment. Both activated carbon adsorbers 41 are connected to the ultrafiltration membrane device 31. When a solenoid valve is provided between the activated carbon adsorber 41 and the ultrafiltration membrane device 31, the well water purified by the ultrafiltration membrane device 31 can enter the activated carbon adsorber 41 through the solenoid valve. At this time, it is possible to select in real time whether to fully open the channel between the activated carbon adsorber 41 and the ultrafiltration membrane device 31 according to the water quality situation, so as to ensure that the loss of the filter element in the activated carbon adsorber 41 is reduced on the premise of improving the water purification efficiency.
[0081] In some embodiments of the present disclosure, refer to Figure 1 , Figure 2 and Figure 3 , the well water equipment further includes a fixing component 9 for detachably fixing the adsorption pump body 2 to the second chamber 14; the fixing component 9 includes a fixing bracket 91 and a clamping member 92; the fixing bracket 91 is arranged in the second chamber 14; the adsorption pump body 2 is slidably connected to the fixing bracket 91, and the clamping member 92 is used for detachably fixing the adsorption pump body 2 to the fixing bracket 91.
[0082] It can be understood that in some scenarios, the adsorption pump body 2 may not be provided in the manhole equipment. However, in some scenarios, the adsorption pump body 2 needs to be provided in the second chamber 14. This means that there are situations where the adsorption pump body 2 is provided and where it is not provided in the manhole equipment. When it is necessary to install the adsorption pump body 2 in the manhole equipment (one side of the equipment housing 1 has a blocking door 15, and the adsorption pump body 2 can be installed on the fixing bracket 91 by opening the blocking door 15), the adsorption pump body 2 is placed in the second chamber 14, and the adsorption pump body 2 is detachably fixed to the fixing bracket 91 through a clamping member 92.
[0083] In some embodiments of the present disclosure, one side of the equipment housing 1 has an outlet 12 through which the adsorption pump body 2 can be sent out; the fixing bracket 91 includes a fixed section 911 and a telescopic section 912; the fixed section 911 is fixedly connected inside the second chamber 14, the telescopic section 912 is slidably connected to the fixed section 911, and the telescopic section 912 can extend out of the outlet 12; wherein, the fixing bracket 91 has a first state and a second state. In the first state, a part of the telescopic section 912 coincides with the fixed section 911, the adsorption pump body 2 is provided on the telescopic section 912 through the clamping member 92, and the adsorption pump body 2 is located inside the second chamber 14; in the second state, the telescopic section 912 extends out of the outlet 12, and the adsorption pump body 2 is located outside the equipment housing 1.
[0084] It can be understood that in the first state, the adsorption pump body 2 is provided inside the second chamber 14; in the second state, the adsorption pump body 2 is sent out inside the equipment housing 1.
[0085] Specifically, after the adsorption pump body 2 has been used for a long time, there may be a phenomenon that a large amount of impurities accumulate inside, resulting in a malfunction of the adsorption pump body 2. In the disclosed embodiments, when the adsorption pump body 2 needs to be repaired or cleaned, first expose the outlet 12, then pull the telescopic section 912. The telescopic section 912 moves on the fixed section 911, and the movement of the telescopic section 912 drives the movement of the adsorption pump body 2, so that the adsorption pump body 2 is sent out to one side of the equipment housing 1. When the adsorption pump body 2 moves to one side of the equipment housing 1, adjust the clamping member 92, and the clamping member 92 separates the adsorption pump body 2 from the telescopic section 912, so as to quickly remove the adsorption pump body 2 for repair or cleaning.
[0086] In some embodiments of the present disclosure, one side of the telescopic section 912 close to the outlet 12 has a holding portion 9121. It can be understood that the provided holding portion 9121 can facilitate the operator to quickly pull out the adsorption pump body 2 inside the second chamber 14, improve the cleaning or repair efficiency of the adsorption pump body 2, and thus can improve the treatment efficiency of the well water to a certain extent.
[0087] In some embodiments of the present disclosure, refer to Figure 1 、 Figure 2 and Figure 3, the snap-in member 92 includes a snap-in block 921, a plurality of snap-in posts 922, a snap-in spring 923, and a pull rod 924; the snap-in block 921 is provided at the bottom of the adsorption pump body 2; the plurality of snap-in posts 922 are slidably connected to the telescopic section 912 through corresponding snap-in springs 923; the snap-in block 921 has snap-in grooves 9211 corresponding to the snap-in posts 922; wherein, when the adsorption pump body 2 is snap-connected to the telescopic section 912, the snap-in posts 922 extend into the snap-in grooves 9211; the pull rod 924 is commonly connected to the plurality of snap-in posts 922 and is slidably connected to the telescopic section 912, and the movement direction of the pull rod 924 is the same as the axial direction of the snap-in spring 923.
[0088] Specifically, when installing the adsorption pump body 2 on the telescopic section 912, move the adsorption pump body 2 close to the installation position of the telescopic section 912. The movement of the adsorption pump body 2 drives the movement of the snap-in block 921. At this time, the snap-in block 921 contacts the snap-in posts 922, and the snap-in posts 922 move. The movement of the snap-in posts 922 causes the snap-in spring 923 to be in a telescopic state. When the adsorption pump body 2 moves to the installation position, the snap-in posts 922 extend into the snap-in grooves 9211 under the action of the snap-in spring 923, achieving the purpose of installing the adsorption pump body 2 on the telescopic section 912.
[0089] Furthermore, when the adsorption pump body 2 is sent out of the outlet 12 and needs to be cleaned or repaired, operate the pull rod 924. The movement of the pull rod 924 drives the movement of the snap-in posts 922, and the snap-in posts 922 extend out of the snap-in grooves 9211, so that the adsorption pump body 2 can be removed from the telescopic section 912.
[0090] At the same time, in the embodiment of the present disclosure, a closing door 16 can be provided at the outlet 12. The closing door 16 can be closed during the operation of the manhole equipment to isolate the equipment housing 1 from the outside world and prevent foreign impurities from entering the equipment housing and damaging the first processing component 3, the second processing component 4, and the third processing component 5. When the adsorption pump body 2 needs to be sent out, the closing door 16 can be opened. After the adsorption pump body 2 is sent out, the closing door 16 can be closed.
[0091] Those skilled in the art will readily think of other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present disclosure, which follow the general principles of the present disclosure and include known common knowledge or conventional technical means in the technical field not disclosed in the present disclosure. The specification and examples are only regarded as exemplary, and the true scope and spirit of the present disclosure are pointed out by the appended claims.
Claims
1. An integrated small household cellar water equipment, characterized in that The cellar water treatment device includes a device housing, a partition frame, a first treatment component, a second treatment component, and a third treatment component; The partition frame is disposed within the device housing, and the partition frame divides the device housing into a first chamber and a second chamber; The first treatment component, the second treatment component, and the third treatment component are all disposed within the first chamber, and the first treatment component, the second treatment component, and the third treatment component are connected in sequence; The first treatment component is configured to perform a first purification treatment on water; The second treatment component is configured to perform a secondary treatment on the water after the first purification treatment; The third treatment component is configured to perform a further treatment on the water after the second purification treatment; Wherein, an installation portion is provided within the second chamber, and the installation portion is used to connect to an adsorption pump body, and the adsorption pump body is used to introduce the cellar water to be purified into the first treatment component.
2. The integrated small household cellar water treatment device according to claim 1, wherein The first treatment component includes an ultrafiltration membrane device, and the ultrafiltration membrane device has a first water inlet, a first water outlet, and a second water outlet; The second treatment component includes an activated carbon adsorber, and the activated carbon adsorber has a second water inlet and a third water outlet; The third treatment component includes an ultraviolet sterilizer, and the ultraviolet sterilizer has a third water inlet and a fourth water outlet; Wherein, The first water inlet is connected to the liquid outlet of the adsorption pump body through a first pipeline, and the first water outlet is connected to the second water inlet through a second pipeline; The third water outlet is connected to the third water inlet through a third pipeline; The fourth water outlet extends out of the device housing through a fourth pipeline.
3. The integrated small household cellar water equipment according to claim 2, characterized in that The first pipeline includes a first section, a second section, a third section, and a fourth section; Wherein, one end of the first section is connected to the liquid outlet of the adsorption pump body, and the axial direction of the first section is the same as the height direction of the device housing; The second section is connected to the other end of the first section, and the axial direction of the second section is perpendicular to the axial direction of the first section; The third section is connected to the end of the second section away from the first section, and the axial direction of the third section is perpendicular to the axial direction of the second section; The fourth section is connected to the side of the third section away from the second section, and the axial direction of the fourth section is the same as the axial direction of the second section.
4. The integrated and miniaturized household cellar water equipment according to claim 2, characterized in that, The second pipeline includes a fifth section, a sixth section, a seventh section, an eighth section, and a ninth section; Wherein, one end of the fifth section is connected to the first water outlet, and the axial direction of the fifth section is the same as the height direction of the ultrafiltration membrane device; The sixth section is connected to the other end of the fifth section, and the axial direction of the sixth section is perpendicular to the axial direction of the fifth section; The seventh section is connected to the side of the sixth section away from the fifth section, and the axial direction of the seventh section is the same as the axial direction of the fifth section; The eighth section is disposed on the side of the seventh section away from the sixth section, and the axial direction of the eighth section is the same as the axial direction of the sixth section; The ninth section is disposed on the side of the eighth section away from the seventh section, and the axial direction of the ninth section is perpendicular to the axial direction of the eighth section.
5. The integrated and miniaturized household cellar water equipment according to claim 3, wherein, The third pipeline includes a tenth section, an eleventh section, and a twelfth section; One end of the tenth section is connected to the third water outlet; The eleventh section is connected to the other end of the tenth section, and the axial direction of the tenth section is the same as the height direction of the equipment housing; The twelfth section is connected to one end of the eleventh section away from the tenth section, and the axial direction of the twelfth section is perpendicular to the axial direction of the eleventh section.
6. The integrated and miniaturized household cellar water equipment according to claim 5, wherein A control valve is provided on the eleventh section.
7. The integrated small household cellar water equipment according to any one of claims 1 to 6, characterized in that The cellar water equipment further includes a fixing component for detachably fixing the adsorption pump body to the second chamber; The fixing component includes a fixing bracket and a clamping member; The fixing bracket is provided in the second chamber; The adsorption pump body is slidably connected to the fixing bracket, and the clamping member is used to detachably fix the adsorption pump body to the fixing bracket.
8. The integrated small household cellar water equipment according to claim 7, characterized in that One side of the equipment housing has an outlet through which the adsorption pump body can be sent out; The fixing bracket includes a fixed section and a telescopic section; The telescopic section is slidably connected to the fixed section, and the telescopic section can extend out of the outlet; Wherein, the fixing bracket has a first state and a second state; In the first state, a part of the telescopic section coincides with the fixed section, the adsorption pump body is arranged on the telescopic section through the clamping member, and the adsorption pump body is located in the second chamber; In the second state, the telescopic section extends out of the outlet, and the adsorption pump body is located outside the equipment housing.
9. The integrated small household cellar water equipment according to claim 8, characterized in that The side of the telescopic section close to the outlet has a holding portion.
10. The integrated and miniaturized household cellar water equipment according to claim 8, characterized in that, The clamping member includes a clamping block, a plurality of clamping columns, a clamping spring, and a pulling rod; The clamping block is arranged at the bottom of the adsorption pump body; The plurality of clamping columns are slidably connected to the telescopic section through the clamping spring; The clamping block has a clamping groove corresponding to the clamping column; wherein, when the adsorption pump body is clamped on the telescopic section, the clamping column extends into the clamping groove; The pulling rod is commonly connected to the plurality of clamping columns and is slidably connected to the telescopic section, and the movement direction of the pulling rod is the same as the axial direction of the clamping spring.