Carbon silicon crystal moisture sheet water making device

CN120990205APending Publication Date: 2025-11-21SHANGHAI HYDRA MASCH MFG CO LTD
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Patent Information

Application Number
CN202511076026.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-01
Publication Date
2025-11-21

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Abstract

The invention relates to the technical field of air water making, in particular to a carbon silicon crystal humidifying sheet water making device which comprises a water making tank, carbon silicon crystal humidifying sheets are arranged in the water making tank, a through channel is formed between every two adjacent carbon silicon crystal humidifying sheets, the two ends of the water making tank are communicated and used for being communicated with external air, and a water collecting pool is arranged below the water making tank. The water producing tank is communicated with the water collecting tank through a water collecting pipe; and a refrigerating system is arranged in the water producing tank and is used for cooling the carbon silicon crystal moisture producing sheet. Through the cold and hot temperature difference effect of the refrigerating system and the carbon silicon crystal humidifying sheet, moisture in air is efficiently condensed, and the device adapts to the low-humidity environment.
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Description

Technical Field

[0001] This invention relates to the field of air-to-water technology, specifically to a carbon silicon crystal-based water-generating device. Background Technology

[0002] Currently, air-to-water technology mainly relies on condensation, which involves lowering the temperature of the condenser surface through a refrigeration system, causing water vapor in the air to condense into liquid water. Traditional condensation-based water generators experience a significant decrease in efficiency in low-humidity environments, making it difficult to produce water stably and limiting their application in arid regions. Furthermore, conventional metal or plastic condenser plates have limited heat exchange efficiency, and condensed water droplets easily adhere to the surface, resulting in slow water flow and affecting the water production rate.

[0003] Therefore, there is an urgent need for an efficient, energy-saving, and easy-to-maintain air-to-water device that can adapt to different humidity environments and is easy to maintain, in order to overcome the shortcomings of existing technologies. Summary of the Invention

[0004] The purpose of this invention is to provide a carbon silicon crystal-based water purification device to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] A water production device for silicon carbide crystal slabs includes a water production tank, in which silicon carbide crystal slabs are arranged, with through channels formed between adjacent slabs. Both ends of the water production tank are open to communicate with the outside air. A water collection pool is provided below the water production tank, and the water production tank is connected to the water collection pool through a water collection pipe. A refrigeration system is provided inside the water production tank to cool the silicon carbide crystal slabs.

[0007] Furthermore, silicon carbide crystal moisture-aiding sheets are arranged in the channels between the silicon carbide crystal moisture-aiding sheets, and the silicon carbide crystal moisture-aiding sheets are equipped with an overfrequency vibration mechanism.

[0008] Furthermore, the water collection tank is connected to the mineralization and sterilization treatment system via an outlet pipe.

[0009] Furthermore, a sewage pipe is provided at the bottom of the water collection tank, and the sewage pipe is connected to the sewage purification system.

[0010] Furthermore, both ends of the water tank are equipped with sand-proof nets, and the sand-proof nets are equipped with a vibration sand removal mechanism.

[0011] Furthermore, the cooling system uses a semiconductor cooling chip as a cooling device. The heat dissipation fins of the semiconductor cooling chip are parallel to the silicon carbide crystal moisture-absorbing sheet and the silicon carbide crystal moisture-absorbing sheet, and the interior of the heat dissipation fins is also a through channel.

[0012] Further, the water making tank is placed obliquely, and a water baffle is arranged at the lower end of the water making tank.

[0013] Further, a fan support is arranged at the higher end of the water making tank, and a fan is arranged on the fan support.

[0014] Further, a stainless steel surface layer is arranged on the inner surface of the tank wall.

[0015] Further, a heat insulation layer is arranged on the outer surface of the tank wall.

[0016] Compared with the prior art, the water making device has the following beneficial effects:

[0017] 1. The water making device can efficiently condense water in the air by the cold and hot temperature difference of the refrigeration system and the carbon-silicon crystal humidifying sheet, and is suitable for low humidity environments, such as desert areas, island cities, hilly areas and grasslands; the super frequency vibration mechanism accelerates the flow of water droplets, and the sand prevention net and the automatic sewage design ensure smooth air circulation and clean water quality, and the mineralization and sterilization system can output qualified water, so that stable and harmless operation is realized.

[0018] 2. The water making device can maintain a continuous low temperature environment by adopting the semiconductor refrigeration sheet to save energy and reduce temperature, cooperating with the parallel heat dissipation fins and the fan to enhance heat dissipation; the inclined tank body and the water baffle design optimize water flow collection, and the fan promotes air circulation, further increases water vapor contact, and realizes an efficient and energy-saving water making process.

[0019] 3. The water making device combines the concrete tank wall and the stainless steel inner layer, and has structural strength and corrosion resistance, so that the service life of the device is prolonged; the external heat insulation layer effectively isolates external temperature interference, stabilizes the internal cold and hot temperature difference environment, and ensures the water making efficiency. DETAILED DESCRIPTION

[0020] Figure 1 Fig. 1 is a structural schematic view of the water making device and the water collecting pool;

[0021] Figure 2 Fig. 2 is an exploded structural schematic view of the water making device;

[0022] Figure 3 Fig. 3 is a structural schematic view of the higher end of the water making device;

[0023] Figure 4 Fig. 4 is a structural schematic view of the lower end of the water making device;

[0024] Figure 5 Fig. 5 is a longitudinal sectional view of the water making device;

[0025] Figure 6 Fig. 6 is a structural schematic view of the carbon-silicon crystal humidifying sheet, the carbon-silicon crystal humidifying auxiliary sheet and the semiconductor refrigeration sheet.

[0026] Figure 7 A structural diagram of a carbon-silicon crystal moisture tablet water production device.

[0027] In the figure: 1, water production tank; 2, fan support; 3, fan; 4, sand prevention net; 5, water collecting pipe; 6, carbon-silicon crystal moisture tablet; 7, carbon-silicon crystal moisture assisting tablet; 8, water baffle; 9, stainless steel surface layer; 10, tank wall; 11, heat insulation layer; 12, semiconductor refrigeration tablet; 13, heat dissipation fin; 14, water collecting pool; 15, water outlet pipe; 16, sewage pipe. DETAILED DESCRIPTION

[0028] 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 labor fall within the scope of protection of the present application.

[0029] Embodiment 1: A carbon-silicon crystal moisture tablet water production device, comprising a water production tank 1, the inside of the water production tank 1 is arranged with carbon-silicon crystal moisture tablets 6, through channels are formed between adjacent carbon-silicon crystal moisture tablets 6, the water production tank 1 is provided with through holes at both ends for communicating with external air, a water collecting pool 14 is arranged below the water production tank 1, and the water production tank 1 is communicated with the water collecting pool 14 through a water collecting pipe 5; a refrigeration system is arranged in the water production tank 1, and the refrigeration system is used for cooling the carbon-silicon crystal moisture tablets 6.

[0030] The channels between the carbon-silicon crystal moisture tablets 6 are arranged with carbon-silicon crystal moisture assisting tablets 7, and the carbon-silicon crystal moisture assisting tablets 7 are provided with an ultrahigh frequency vibration mechanism.

[0031] The water collecting pool 14 is connected with a mineralization and sterilization treatment system through a water outlet pipe 15.

[0032] The bottom of the water collecting pool 14 is provided with a sewage pipe 16, and the sewage pipe 16 is connected with a sewage purification system.

[0033] The both ends of the water production tank 1 are provided with sand prevention nets 4, and the sand prevention nets 4 are provided with vibration sand removing mechanisms.

[0034] Working principle of the embodiment:

[0035] As shown in Figure 5, during operation, silicon carbide crystal moisture-generating sheets 6 are arranged inside the water-generating tank 1. Adjacent silicon carbide crystal moisture-generating sheets 6 form through channels, and silicon carbide crystal moisture-aiding sheets 7 equipped with high-frequency vibration mechanisms are arranged within these channels. The water-generating tank 1 is equipped with a refrigeration system. Upon activation, the refrigeration pipes directly reach the silicon carbide crystal moisture-generating sheets 6, cooling them and creating a temperature difference with the surrounding air. Under this temperature difference, water vapor in the air condenses on the surface of the silicon carbide crystal moisture-generating sheets 6, producing a large amount of mist and water vapor. Subsequently, under the high-frequency vibration of the silicon carbide crystal moisture-aiding sheets 7, the condensed water droplets accelerate their flow and eventually flow down the channels. Figure 1 As shown, a water collection pool 14 is provided below the water production tank 1. The water production tank 1 is connected to the water collection pool 14 through the water collection pipe 5. Water flowing down from the silicon carbide crystal moisture-making sheet 6 and the silicon carbide crystal moisture-aiding sheet 7 enters the water collection pool 14 through the water collection pipe 5 and is collected.

[0036] like Figure 1 As shown, a sewage pipe 16 is installed at the bottom of the water collection tank 14, which is connected to the sewage purification system. The bottom of the water collection tank 14 has an automatic sewage discharge function, which can automatically start discharging sewage at set times to remove dirt and other impurities settled at the bottom of the water collection tank 14 through the sewage pipe 16 into the sewage purification system for treatment, achieving harmless operation. The water collection tank 14 is connected to the mineralization and sterilization treatment system through an outlet pipe 15. After sedimentation, the water is pumped through the outlet pipe 15 into the mineralization and sterilization treatment system, where it undergoes mineralization and sterilization operations to ensure the water quality meets usage standards before being output for use.

[0037] like Figure 3 As shown, the water tank 1 is open at both ends and equipped with sand-proof nets 4 at each port. The sand-proof nets 4 are equipped with a vibration sand removal mechanism. External air can freely circulate through both ends of the water tank 1 and enter the interior of the water tank 1. At the same time, the sand-proof nets 4 can effectively block sand particles and other impurities in the air from entering the water tank 1, and the vibration sand removal mechanism can periodically vibrate the sand-proof nets 4 to prevent sand particles from clogging the sand-proof nets 4 and ensure smooth air circulation.

[0038] This embodiment uses a cooling system to cool the silicon carbide crystal sheet 6, creating a temperature difference that causes water vapor in the air to condense into water. Even when the air humidity is low, water can be effectively produced using the temperature difference principle, solving the problem of insufficient water production caused by the ambient air humidity. The high-frequency vibration can accelerate the formation and flow of water droplets, allowing the condensed water to flow down into the water collection tank 14 more quickly, thus improving the water production efficiency.

[0039] Example 2: A silicon carbide crystal tidal sheet water production device, which differs from Example 1 in that the refrigeration system uses a semiconductor refrigeration chip 12 as the refrigeration device. The heat dissipation fins 13 of the semiconductor refrigeration chip 12 are parallel to the silicon carbide crystal tidal sheet 6 and the silicon carbide crystal tidal sheet 7, and the interior of the heat dissipation fins 13 is also a through channel.

[0040] The water tank 1 is placed at an angle, and a baffle plate 8 is provided at the lower end of the water tank 1. The end of the water collection pipe 5 away from the water collection pool 14 is connected to the water tank 1 near the baffle plate 8.

[0041] A fan bracket 2 is provided at the higher end of the water tank 1, and a fan 3 is installed on the fan bracket 2.

[0042] Working principle of this embodiment:

[0043] like Figure 7 As shown, the thermoelectric cooler 12 operates based on the Peltier effect. When direct current passes through a closed circuit composed of two different conductors or semiconductors, a significant temperature difference is generated at the junction of the two conductors; one junction experiences a decrease in temperature, becoming the cold end, while the other junction experiences a rise in temperature, becoming the hot end. In this water purification device, the cold end of the thermoelectric cooler 12 is connected to the silicon carbide crystal damping plate 6, and the cold end absorbs heat, cooling the silicon carbide crystal damping plate 6. The heat dissipation fins 13 are connected to the hot end of the thermoelectric cooler 12, and their function is to dissipate the heat generated by the hot end of the thermoelectric cooler 12. Figure 2 and Figure 3 As shown, since the heat dissipation fins 13 are parallel to the silicon carbide crystal moisture-generating plates 6 and 7, and the interior of the heat dissipation fins 13 has a through-channel, when the fan 3 is working, it accelerates the airflow within the through-channels of the heat dissipation fins 13, carrying away the heat from the heat dissipation fins 13 more quickly. This ensures that the semiconductor cooling chip 12 can operate continuously and stably, maintaining the low-temperature environment required by the silicon carbide crystal moisture-generating plates 6, thereby continuously generating a temperature difference between hot and cold, and promoting the condensation of water vapor in the air onto the silicon carbide crystal moisture-generating plates 6. At the same time, the fan 3 can improve the efficiency of air entering the water production tank 1, thereby improving the water production efficiency of the silicon carbide crystal moisture-generating plates 6.

[0044] like Figure 1 As shown, the water tank 1 is placed at an angle, and a baffle plate 8 is installed at the lower end of the water tank 1. When the water condensed on the silicon carbide crystal moisture-generating sheet 6 and the silicon carbide crystal moisture-aiding sheet 7 flows downward along the inclined water tank 1 under the action of gravity, the baffle plate 8 plays the role of blocking and converging the water flow.

[0045] Example 3: A carbon silicon crystal water making device, which differs from Example 1 in that it includes a concrete tank wall 10, and the inner surface of the tank wall 10 is provided with a stainless steel surface layer 9.

[0046] A thermal insulation layer 11 is provided on the outer surface of the box wall 10.

[0047] like Figure 7As shown, the concrete box wall 10 in this embodiment serves as the main structure, providing solid support and a base frame to ensure the overall stability of the device. The inner surface of the box wall 10 is provided with a stainless steel surface layer 9, which has corrosion-resistant properties and can prevent water vapor, impurities, and other substances generated during water production from eroding the box wall, prolonging the service life of the box wall, ensuring the stability of the internal environment, and facilitating the continuous operation of the water production process. The outer surface of the box wall 10 is provided with a thermal insulation layer 11, which can effectively block the interference of external environmental temperature on the temperature inside the water production tank 1, reduce heat transfer, maintain the cold and hot temperature difference environment created by the refrigeration system inside the water production tank 1, and improve the water production efficiency.

Claims

1. A carbon-silicon crystal-based water purification device, characterized in that, The application relates to a water making tank (1) comprising: The water making tank (1) is internally arranged with carbon-silicon crystal moisture making sheets (6), adjacent carbon-silicon crystal moisture making sheets (6) form through channels, the water making tank (1) is provided with water collecting pools (14) at the lower part, and the water making tank (1) is communicated with the water collecting pools (14) through water collecting pipes (5). The water making tank (1) is internally arranged with a refrigeration system for cooling the carbon-silicon crystal moisture making sheets (6).

2. A carbon-silicon crystal moisture sheet water production device according to claim 1, characterized in that: The channels between the carbon-silicon crystal moisture making sheets (6) are arranged with carbon-silicon crystal moisture assisting sheets (7), and the carbon-silicon crystal moisture assisting sheets (7) are provided with super-frequency vibration mechanisms.

3. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized in that: The water collecting pools (14) are communicated with a mineralization and sterilization treatment system through water outlet pipes (15).

4. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized in that: The water collecting pools (14) are provided with sewage pipes (16) at the bottom, and the sewage pipes (16) are communicated with a sewage purification system.

5. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized in that: The water making tank (1) is provided with sand preventing nets (4) at the two ports, and the sand preventing nets (4) are provided with vibration sand removing mechanisms.

6. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized by: The refrigeration system adopts semiconductor refrigeration sheets (12) as refrigeration devices, the radiating fins (13) of the semiconductor refrigeration sheets (12) are parallel to the carbon-silicon crystal moisture making sheets (6) and the carbon-silicon crystal moisture assisting sheets (7), and the radiating fins (13) are also through channels.

7. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized by: The water making tank (1) is placed obliquely, the lower end of the water making tank (1) is provided with a water baffle (8), and one end of the water collecting pipe (5) far from the water collecting pool (14) is connected to the position of the water making tank (1) close to the water baffle (8).

8. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 7, characterized by: The higher end of the water making tank (1) is provided with a fan support (2), and the fan support (2) is installed with a fan (3).

9. A carbon-silicon crystal hygroscopic sheet water producing apparatus according to claim 1, characterized by: The water making tank (1) is provided with mixed tank walls (10), and the inner surfaces of the tank walls (10) are provided with stainless steel surfaces (9).

10. A carbon-silica hygroscopic sheet water producing apparatus according to claim 9, wherein: The outer surfaces of the tank walls (10) are provided with heat insulation layers (11).