Intelligent equipment for producing water from air

By designing an intelligent air-to-water generator, which utilizes heat exchangers and compressor condensate, combined with filtration and hydrogen enrichment, the problem of difficult filter replacement and large size of existing air-to-water generators is solved. This achieves efficient and convenient access to high-quality water sources, making it suitable for water-scarce areas.

CN224199967UActive Publication Date: 2026-05-05GUANGZHOU JIAYU ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU JIAYU ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
Filing Date
2025-04-21
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

Existing air-to-water generators have drawbacks such as inconvenient filter replacement, water leakage, difficulty in disassembling the water tank, and large structural size, and they cannot provide an efficient and sustainable water source.

Method used

An intelligent air-to-water device was designed, comprising a heat exchanger, a compressor, a raw water tank, a pure water tank, and a hydrogen-rich module. It achieves efficient water production through condensation, filtration, and hydrogen enrichment treatment, and is equipped with a detachable water receiving device and a UV sterilization lamp to ensure excellent water quality.

Benefits of technology

It provides an efficient and convenient way to obtain water, ensuring excellent water quality and meeting the needs of healthy drinking. It is suitable for water-scarce areas, and the equipment is easy to use and highly versatile.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses intelligent air water production equipment, which belongs to water production equipment in the technical field of air water production, and adopts the technical scheme that the intelligent air water production equipment comprises a heat exchanger, an air inlet end of the heat exchanger is arranged on one side of a box body; the compressor is connected with the heat exchanger through a pipeline group; the raw water tank is arranged below the heat exchanger, and the raw water tank is used for collecting raw water through a water collecting box arranged at the water outlet end of the heat exchanger; the pure water tank is communicated with the raw water tank through filtering equipment, and a water receiving device is arranged at the water outlet end of the pure water tank through a hydrogen-rich module; the intelligent air water-making equipment provided by the utility model does not need a water source, can obtain water after being plugged in, not only ensures the quality of the water, but also is convenient to use, and brings brand-new healthy drinking water to a user.
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Description

Technical Field

[0001] This utility model belongs to the field of air-to-water technology, specifically relating to an intelligent air-to-water device. Background Technology

[0002] As living standards improve, people have higher demands for quality of life. The lack of drinking water sources and pollution of drinking water have brought inconvenience to people's drinking water. With the reform of drinking water, air-to-water technology has gradually become familiar to people, and air-to-water generators are becoming more and more popular. However, traditional air-to-water generators on the market still have disadvantages such as inconvenient filter replacement, leakage during filter replacement, inconvenient disassembly of water tank, and large space occupied by the structure. Utility Model Content

[0003] The purpose of this invention is to provide an intelligent air-to-water device that collects air and condenses it to produce water through a heat exchanger and compressor. The water is then filtered and transported to a pure water tank for collection. Finally, the potable water is output through a hydrogen-rich module. No water source is required; water is available simply by plugging in electricity. This not only ensures water quality but also provides convenience, bringing users a brand-new healthy drinking water experience.

[0004] The purpose of this utility model is achieved as follows: an intelligent air-to-water device, comprising a housing, wherein the housing includes:

[0005] The heat exchanger has its air inlet located on one side of the housing.

[0006] A compressor, which is connected to a heat exchanger via a piping assembly;

[0007] A raw water tank is located below the heat exchanger, and the raw water is collected in the raw water tank through a water collection box installed at the outlet of the heat exchanger; and

[0008] It also includes a pure water tank, which is connected to the raw water tank through a filtration device, and the outlet of the pure water tank is equipped with a water receiving device through a hydrogen-rich module.

[0009] Through the synergistic action of heat exchangers and compressors, water can be efficiently condensed from the air, greatly improving water production efficiency. This is especially suitable for water-scarce areas, providing people with a sustainable way to obtain water.

[0010] Furthermore, the heat exchanger includes a main body, a fan wheel disposed on one side of the main body, and a condenser assembly disposed in the main body, with the water outlet of the condenser assembly located at the lower end of the main body.

[0011] Furthermore, the piping assembly includes a return pipe and a high-pressure pipe, both of which are connected and disposed between the compressor and the heat exchanger.

[0012] Furthermore, the water collection box is located directly below the condensate outlet of the heat exchanger, and the water collection box is connected to the raw water tank.

[0013] Furthermore, the filtration device includes a booster pump connected to the raw water tank and a filter element connected to the outlet of the booster pump, the filter element being connected to the pure water tank.

[0014] The installed filtration equipment can perform deep filtration of the collected raw water, effectively removing impurities, bacteria and other harmful substances from the water, ensuring that the produced pure water is of excellent quality and meets drinking standards.

[0015] Furthermore, the hydrogen-rich module includes an inlet pump connected to the outlet of the pure water tank, a decomposition module connected to the inlet pump, and an outlet pump connected to the outlet of the decomposition module. The outlet pump is connected to a water receiving device.

[0016] The equipped hydrogen-rich module 9 can further convert pure water into hydrogen-rich water. Hydrogen-rich water has many beneficial effects on the human body, such as anti-oxidation and promoting metabolism, which increases the added value of the equipment and meets people's demand for healthy drinking water.

[0017] Furthermore, the water receiving device includes a kettle connector fixedly mounted on the top cover of the housing, and a kettle detachably connected to the kettle connector.

[0018] The design of the water receiving devices, such as the detachable connection between the kettle connector and the boiling kettle, and the cooperative use of the sterilizer connector and the sterilizer pot, makes it more convenient and faster for users to operate water, boil water and sterilize, thus improving the ease of use of the equipment.

[0019] Furthermore, the top cover is also provided with a sterilizer connector, which is detachably connected to a sterilizer pot.

[0020] Furthermore, the raw water tank is equipped with a small water tank UV sterilization lamp, the pure water tank is equipped with a large water tank UV sterilization lamp, and a transition UV sterilization lamp is installed between the water pump and the water receiving device.

[0021] Furthermore, the front panel of the enclosure is provided with a display panel.

[0022] The beneficial effects of this utility model are reflected in:

[0023] In this invention, the device uses a heat exchanger and compressor to obtain water from condensed air, a raw water tank, a pure water tank, and a water collection device on the platform of the unit. The water obtained by the heat exchanger is collected and filtered in the raw water tank, then sterilized before entering the pure water tank. The water in the pure water tank is sterilized and filtered before being discharged from the water circuit as tea brewing and drinking water. The heat exchanger for obtaining water from condensed air and the sterilization and filtration of the obtained water to form tea brewing and drinking water overcome the defects of existing tea bar machines and the difficulty of connecting to a water source. This makes the air-to-water generator no longer require bottled water or a water source. This technology does not require a water source and only requires electricity to produce water. It not only ensures the quality of the water but is also convenient to use, bringing users a brand-new healthy drinking water. Attached Figure Description

[0024] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0025] Figure 1 This is a schematic diagram of the exploded structure of the water purification equipment of this utility model;

[0026] Figure 2 This is a structural diagram of the present invention in its assembled state;

[0027] Figure 3 This is a schematic diagram of the internal structure of this utility model;

[0028] Figure 4 For the present utility model and Figure 3 Schematic diagrams of the internal structure from different perspectives.

[0029] In the attached diagram, 1-box body, 2-heat exchanger, 3-compressor, 4-pipeline assembly, 5-raw water tank, 6-water collection box, 7-pure water tank, 8-filtration equipment, 9-hydrogen-rich module, 10-water receiving device, 11-main body, 12-return gas pipe, 13-high pressure pipe, 14-booster pump, 15-filter element, 16-inlet pump, 17-decomposition module, 18-outlet pump, 19-top cover, 20-kettle connector, 21-boiling kettle, 22-sterilizer connector, 23-sterilizer, 24-small water tank UV sterilization lamp, 25-large water tank UV sterilization lamp, 26-transition UV sterilization lamp, 27-front panel, 28-display panel, 29-fan wheel. Detailed Implementation

[0030] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.

[0031] It should be noted that, unless otherwise stated, the technical or scientific terms used in this application shall have the ordinary meaning as understood by one of ordinary skill in the art to which this utility model pertains.

[0032] An intelligent air-to-water device includes a housing 1, wherein the housing 1 comprises:

[0033] Heat exchanger 2, the air inlet of which is located on one side of housing 1;

[0034] Compressor 3, which is connected to heat exchanger 2 via pipe assembly 4;

[0035] Raw water tank 5, located below heat exchanger 2, collects raw water through a water collection box 6 installed at the outlet of heat exchanger 2; and

[0036] It also includes a pure water tank 7, which is connected to the raw water tank 5 through a filtration device 8, and the outlet of the pure water tank 7 is equipped with a water receiving device 10 through a hydrogen-rich module 9.

[0037] By installing a heat exchanger 2 and a compressor 3 in the housing, and positioning the inlet end of the heat exchanger 2 on one side of the housing 1 to collect outside air, the collected air is condensed to collect moisture. The initially collected condensate drips from below the heat exchanger 2 into a water collection box 6 for centralized collection, thus forming raw water. Further, the raw water is transported from the water collection box 6 to the raw water tank 5, and then filtered by the filter device 8 before being transported to the pure water tank 7. The pure water in the pure water tank 7 undergoes a hydrogen enrichment reaction through the hydrogen enrichment module 9, and the resulting hydrogen-rich water is transported to the water receiving device 10 for drinking.

[0038] A filter screen is installed at the air inlet of the heat exchanger 2. The filter screen is installed on the housing 1 to ensure that the air undergoing condensation has better cleanliness. In the specific operation process in the heat exchanger 2, the air is cooled by the condenser to form a room temperature saturated liquid and enters the evaporator. It exchanges heat with the air to form evaporated gas. The gas evaporates and precipitates the water in the air, which then flows into the water collection box and enters the raw water tank 5 for collection.

[0039] In a preferred embodiment, the heat exchanger 2 includes a main body 11, a fan 29 disposed on one side of the main body 11, and a condenser assembly disposed in the main body 11. The water outlet of the condenser assembly is located at the lower end of the main body 11. The fan 29 is provided with an air inlet, and the condenser assembly is disposed at the air inlet. The suction force at the air inlet of the fan 29 can draw moisture in the air into the air inlet, and the condenser assembly disposed at the air inlet can condense and collect the moisture in the air.

[0040] Preferably, the pipeline group 4 includes a return gas pipe 12 and a high-pressure pipe 13, both of which are connected between the compressor 3 and the heat exchanger 2.

[0041] By setting up a pipeline group 4 to connect the compressor 3 and the heat exchanger 2, the cold air is transported and returned, thereby achieving a circulating condensation process. This enables temperature control of the air-to-water process, allowing for more precise temperature control, improving water production efficiency and stability, and ensuring that the equipment can operate efficiently under different environmental conditions.

[0042] Preferably, the water collection box 6 is located directly below the condensate outlet of the heat exchanger 2, and the water collection box 6 is connected to the raw water tank 5.

[0043] Because a water collection box 6 is installed to collect water from the outlet of heat exchanger 2, the condensate in heat exchanger 2 is transferred. This allows for timely and effective collection of condensate and its introduction into the raw water tank 5, preventing condensate from accumulating below the heat exchanger and thus preventing the growth of bacteria and odors. It also ensures that the raw water tank 5 can stably collect enough raw water, providing a guarantee for the subsequent filtration and water production process.

[0044] Preferably, the filtration device 8 includes a booster pump 14 connected to the raw water tank 5 and a filter element 15 connected to the outlet of the booster pump 14, wherein the filter element 15 is connected to the pure water tank 7.

[0045] The filtration device 8 filters the water in the raw water tank 5 to form initially drinkable water. In the specific operation, a booster pump 14 is set up to transport the water. On the one hand, it can better allow the water source that needs to be filtered to pass through the filter element 15 for infiltration filtration. On the other hand, it can also transport the filtered water to the pure water tank 7 for centralized collection.

[0046] Preferably, the hydrogen-rich module 9 includes an inlet pump 16 connected to the outlet of the pure water tank 7, a decomposition module 17 connected to the inlet pump 16, and an outlet pump 18 connected to the outlet of the decomposition module 17. The outlet pump 18 is connected to the water receiving device 10.

[0047] During the hydrogen enrichment process of the water in the pure water tank 7, the water source in the pure water tank 7 is transported to the decomposition module 17 by the water inlet pump 16 for hydrogen enrichment, and the power is provided by the water outlet pump 18 connected to the water outlet of the decomposition module 17, so as to output the potable water for better use.

[0048] The hydrogen-rich module 9 enables the equipment to convert ordinary pure water into hydrogen-rich water. Hydrogen-rich water has various beneficial properties for the human body, such as anti-oxidation, anti-fatigue, and metabolism promotion. Through the synergistic action of the inlet pump 16, the decomposition module 17, and the outlet pump 18, the efficient preparation and stable output of hydrogen-rich water are achieved, enhancing the functionality of the equipment and meeting people's higher demands for healthy drinking water.

[0049] Preferably, the water receiving device 10 includes a kettle connector 20 fixedly mounted on the top cover 19 in the housing 1, and a kettle 21 detachably connected to the kettle connector 20. The detachable connection design between the kettle connector 20 and the kettle 21 allows users to easily remove the kettle 21 for boiling water as needed, and then reinstall it on the connector after use, making the operation simple and convenient.

[0050] By providing a kettle connector 20 in the water receiving device 10, the kettle 21 can be detachably installed on the top cover 19 for water supply.

[0051] Preferably, the top cover 19 is also provided with a sterilizer connector 22, which is detachably connected to the sterilizer 23.

[0052] To improve the effectiveness of the equipment, a sterilization pot connector 22 is also provided on the top cover 19. A sterilization pot 23 is installed on the top cover 19 via the sterilization pot connector 22. The sterilization pot 23 can hold the water in the kettle 21 and heat it for subsequent heating treatment. The water in the kettle 21 can be poured into the sterilization pot 23 for heating and sterilization treatment, ensuring the hygiene and safety of drinking water. This not only improves the versatility of the equipment, but also provides users with a more comprehensive and convenient drinking water treatment solution, especially suitable for occasions with high requirements for drinking water hygiene.

[0053] Preferably, the raw water tank 5 is equipped with a small water tank UV sterilization lamp 24, the pure water tank 7 is equipped with a large water tank UV sterilization lamp 25, and a transition UV sterilization lamp 26 is provided between the water pump 18 and the water receiving device 10.

[0054] By installing corresponding UV sterilization lamps in both the raw water tank 5 and the pure water tank 7, the centrally collected water source can be sterilized and disinfected.

[0055] Preferably, the front panel 27 of the housing 1 is provided with a display panel 28.

[0056] The display panel 28 can monitor and display the equipment's working status in real time, allowing users to intuitively understand the equipment's operating status, such as water production progress, water quality, and equipment malfunctions.

[0057] The working principle and process of this utility model:

[0058] The intelligent air-to-water device provided by this utility model, when in use, has a heat exchanger 2 and a compressor 3 installed in the housing, with the inlet end of the heat exchanger 2 located on one side of the housing 1 to collect outside air, thereby achieving condensation treatment of the collected air and collecting the moisture in the air. The initially collected condensate drips from below the heat exchanger 2 into the water collection box 6 for centralized collection, thus forming raw water. Further, the raw water is transported from the water collection box 6 to the raw water tank 5, and then filtered by the installed filtration device 8 before being transported to the pure water tank 7. The pure water in the pure water tank 7 undergoes a hydrogen enrichment reaction through the hydrogen enrichment module 9, and the resulting hydrogen-rich water is transported to the water receiving device 10 for drinking.

[0059] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model.

Claims

1. An intelligent air-to-water device, comprising a housing (1), characterized in that, The housing (1) includes: Heat exchanger (2), the air inlet of which is located on one side of the housing (1); The compressor (3) is connected to the heat exchanger (2) via a pipeline assembly (4); Raw water tank (5), the raw water tank (5) is located below the heat exchanger (2), and the raw water tank (5) collects raw water through a water collection box (6) provided at the outlet of the heat exchanger (2); and It also includes a pure water tank (7), which is connected to the raw water tank (5) through a filtration device (8), and the outlet of the pure water tank (7) is equipped with a water receiving device (10) through a hydrogen-rich module (9).

2. The intelligent air-to-water device according to claim 1, characterized in that, The heat exchanger (2) includes a main body (11), a fan (29) disposed on one side of the main body (11), and a condenser assembly disposed in the main body (11), with the water outlet of the condenser assembly located at the lower end of the main body (11).

3. The intelligent air-to-water device according to claim 1, characterized in that, The pipeline group (4) includes a return pipe (12) and a high-pressure pipe (13), which are connected between the compressor (3) and the heat exchanger (2).

4. The intelligent air-to-water device according to claim 1, characterized in that, The water collection box (6) is located directly below the condensate outlet of the heat exchanger (2), and the water collection box (6) is connected to the raw water tank (5).

5. The intelligent air-to-water device according to claim 1, characterized in that, The filtration device (8) includes a booster pump (14) connected to the raw water tank (5) and a filter element (15) connected to the outlet of the booster pump (14). The filter element (15) is connected to the pure water tank (7).

6. The intelligent air-to-water device according to claim 1, characterized in that, The hydrogen-rich module (9) includes an inlet pump (16) connected to the outlet of the pure water tank (7), a decomposition module (17) connected to the inlet pump (16), and an outlet pump (18) connected to the outlet of the decomposition module (17). The outlet pump (18) is connected to a water receiving device (10).

7. The intelligent air-to-water device according to claim 1, characterized in that, The water receiving device (10) includes a kettle connector (20) fixedly installed on the top cover (19) in the housing (1) and a kettle (21) detachably connected to the kettle connector (20).

8. The intelligent air-to-water device according to claim 7, characterized in that, The top cover (19) is also provided with a sterilizer connector (22), which is detachably connected to a sterilizer (23).

9. The intelligent air-to-water device according to claim 6, characterized in that, The raw water tank (5) is equipped with a small water tank UV sterilization lamp (24), the pure water tank (7) is equipped with a large water tank UV sterilization lamp (25), and a transition UV sterilization lamp (26) is provided between the water pump (18) and the water receiving device (10).

10. The intelligent air-to-water device according to any one of claims 1-9, characterized in that, The front panel (27) of the enclosure (1) is provided with a display panel (28).