A livestock drinking water system using ultrafiltration technology

Through multi-layer filtration components and a livestock drinking water system designed with PH adjustment, the problem of pathogens in water affecting breeding safety is solved, and the water quality safety and equipment practicality are improved.

CN116439151BActive Publication Date: 2025-08-26GANSU AGRI UNIV
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Patent Information

Application Number
CN202310487073.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-04
Publication Date
2025-08-26
Estimated Expiration
2043-05-04

AI Technical Summary

Technical Problem

The existing livestock drinking water system has not been filtration and purification during the supply process, resulting in the presence of pathogenic bacteria such as E. coli and Salmonella in the water, affecting the safety of aquaculture.

Method used

An animal husbandry drinking water system that adopts filtration technology, including multi-layer filtration components, PH detection and regulation, collection components and leak control, ensures water quality safety and practicality through multi-layer filtration, PH detection and control, water quality collection and environmental protection design.

Benefits of technology

Through multi-layer filtration and pH adjustment, water quality safety is improved, livestock diseases are avoided, the practicality of the drinking water process and environmental dryness are ensured, and the convenience of cleaning of the equipment is improved.

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Abstract

The present invention relates to a livestock drinking water system using ultrafiltration technology, comprising a water source treatment box and a filter assembly, wherein a partition plate is connected to the middle portion of the inner upper wall of the water source treatment box, and a water inlet pipe is connected to the left end of the top wall of the water source treatment box, and the filter assembly is arranged on the inner left wall of the water source treatment box, and a pipe is connected to the bottom of the filter assembly. The beneficial effects of the present invention are as follows: the livestock drinking water system using ultrafiltration technology improves the safety of water quality by gradually refining the filtration through the multi-layer filter assembly, controls the pH value of water quality by setting the collection assembly to avoid affecting the health of livestock, and regularly releases water under the joint control of the discharge assembly and the float flow control switch to improve the practicality of the equipment. Under the protection of the pedal assembly, water released during the drinking process is collected to avoid affecting the dryness of the living environment, and the top is conveniently engaged by the cover assembly to improve the convenience of cleaning the equipment.
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Description

Technical Field

[0001] The invention relates to the technical field of animal husbandry, and in particular to an animal husbandry drinking water system adopting ultrafiltration technology. Background Art

[0002] Animal husbandry is a production sector that utilizes the physiological functions of domesticated animals such as livestock and poultry, or wild animals such as deer, musk deer, fox, mink, otter, and quail, to convert plant energy such as forage and feed into animal energy through artificial breeding and reproduction, in order to obtain livestock products such as meat, eggs, milk, wool, cashmere, hides, silk, and medicinal herbs. Different from self-sufficient livestock breeding, the main characteristics of animal husbandry are centralization, scale, and profit-making as the production purpose. Animal husbandry is an extremely important link in the material exchange between humans and nature. When breeding livestock, water needs to be provided to livestock through drinking water systems.

[0003] During the supply process, the existing drinking water system generally purifies the tap water simply and then directly puts it into the breeding trough for livestock drinking. If the drinking water is not strongly filtered and purified, the E. coli, Salmonella, etc. contained in it will induce the occurrence of diseases, thereby affecting the safety of breeding.

[0004] Therefore, it is necessary to design a livestock drinking water system using ultrafiltration technology to address the above problems. Summary of the Invention

[0005] The object of the present invention is to provide a livestock drinking water system using ultrafiltration technology to solve the problems raised in the above background technology.

[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solution: a livestock drinking water system using ultrafiltration technology, comprising a water source treatment box and a filter assembly, wherein a partition plate is connected to the middle of the inner upper wall of the water source treatment box, and a water inlet pipe is connected to the left end of the top wall of the water source treatment box, the filter assembly is arranged on the inner left wall of the water source treatment box, and a connecting pipe is connected to the bottom of the filter assembly.

[0007] Furthermore, the filter assembly includes an inclined sliding frame, a filter adsorption plate, a snap-fitting block and a through hole. The filter adsorption plate is arranged inside the inclined sliding frame, and snap-fitting blocks are arranged at both left and right ends of the bottom of the inclined sliding frame. The bottom wall of the inclined sliding frame is provided with a through hole.

[0008] Furthermore, a protective mounting block is provided in the middle of the bottom wall of the water source treatment box, and a collection component is provided inside the protective mounting block. The top of the protective mounting block is connected to a water pumping pipe with a pump. An adjustment component is provided at the lower end of the inner right wall of the water source treatment box, and the adjustment component includes an acid-base separation box and a flow control pipe. The bottom of the acid-base separation box is connected to the flow control pipe.

[0009] Furthermore, the collection component includes a protective frame, a clamping plate, a collection tube and a pH detector. The front and rear ends of the protective frame are provided with clamping plates, the inner lower end of the protective frame is provided with a collection tube, and the inner top of the protective frame is provided with a pH detector.

[0010] Furthermore, a water storage assembly is provided at the top right side of the interior of the water source treatment box, and the water storage assembly includes a water tank and a middle partition. A middle partition is provided at the middle end of the interior of the water tank. An electric skateboard is connected to the inner right wall of the water tank, and a discharge assembly passes through the interior of the electric skateboard. An arc pipe is connected to the right side of the discharge assembly, and a transfer box is provided at the bottom of the arc pipe. A float flow control switch is provided inside the transfer box, and a one-way pipe is connected to the right side of the float flow control switch.

[0011] Furthermore, the discharge assembly includes a water flow pipe and a collecting head, and the top of the water flow pipe is connected to the collecting head.

[0012] Furthermore, the right side of the one-way pipe is connected to a drinking trough, and the bottom of the drinking trough is connected to a movable plug plate, and the right side of the movable plug plate is connected to a pedal assembly.

[0013] Furthermore, the foot pedal assembly includes a foot pedal, an inclined slide groove and a water leakage hole. The top wall of the foot pedal is provided with an inclined slide groove, and the right wall of the foot pedal is provided with a water leakage hole.

[0014] Furthermore, a sealing cover assembly is provided on the top of the water source treatment box, and a clamping block is connected to the right end of the sealing cover assembly.

[0015] Furthermore, the cover assembly includes a top cover plate and a sealing gasket, and the sealing gasket is bonded to the inner bottom of the top cover plate.

[0016] Compared with the prior art, the beneficial effects of the present invention are: gradually refined filtration is arranged through the multi-layer filtering component to improve the safety of water quality, the pH value of the water quality is controlled by the collection component to avoid affecting the health of livestock, and under the joint control of the discharge component and the float flow control switch, water is regularly released to improve the practicality of the equipment. Under the protection of the foot pedal component, the water released during the drinking process can be collected to avoid affecting the dryness of the living environment, and the top is conveniently engaged through the sealing component to improve the convenience of cleaning the equipment.

[0017] 1. During use, the present invention connects tap water or mineral water through a water inlet pipe, and then sets a multi-level filter assembly inside the water source treatment box for multi-layer filtration. After being adsorbed by the filter adsorption plate inside the inclined sliding frame, it passes through the through hole and enters the next filtration level from the pipe. Then, the fixed block is snapped in for position adjustment and installation. In this way, the safety of water quality can be improved through gradually refined filtration during use, thereby preventing livestock diseases induced by unclean water.

[0018] 2. In the present invention, the filtered water source will be limited by a protective frame, and then the water source will touch the pH detector. The water source after detection will be used to neutralize the oxalic acid soda solution in the acid-base separation box through a flow control pipe. The mixed solution will be pumped into the water storage tank through a collection pipe and a pump pipe. This setting can control the pH value of the water quality to avoid affecting the health of livestock.

[0019] 3. The softened water source of the present invention can be put into the drinking water for livestock. By adjusting the position of the electric slide, the end of the collecting head can be placed on or below the water surface. When it is below the water surface, water can be injected into the arc tube through the water pipe and then flow into the transfer box. Then, the float flow control switch can control the position of the float through the water level inside the transfer box, and then push the switch inside the arc tube to allow the water source to flow, and then flow into the drinking trough through the one-way pipe for use. Through this dual control, water is regularly released, thereby improving the practicality of the equipment.

[0020] 4. When livestock drink water, the present invention can prevent water from splashing because cattle, sheep and other livestock usually drink water by rolling up their tongues. The movable plug-in plate can be clamped inside the drinking trough, and then the livestock stand on the foot pedal. The splashed water will be collected along the inclined chute and then leak out through the leakage hole for collection. In this way, the water splashed during the drinking process can be collected, thereby avoiding affecting the dryness of the livestock's living environment and eliminating a humid environment.

[0021] 5. During use of the present invention, the top right side is clamped through the top cover, and then the sealing gasket can provide sealing. The side clamping block is clamped with the right wall of the water source treatment box to improve the stability of the connection. When the interior needs to be cleaned, it is only necessary to separate the clamping block from the water source treatment box, and then lift up the top cover. This convenient clamping connection improves the switching efficiency of the equipment, and then improves the cleaning efficiency of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic front cross-sectional structural diagram of a livestock drinking water system using ultrafiltration technology according to the present invention;

[0023] Figure 2This is a schematic diagram of a partial three-dimensional structure of a filtering component of a livestock drinking water system using ultrafiltration technology according to the present invention;

[0024] Figure 3 This is a schematic diagram of a partial side cross-sectional structure of a collection component of a livestock drinking water system using ultrafiltration technology according to the present invention;

[0025] Figure 4 The present invention is a livestock drinking water system using ultrafiltration technology Figure 1 A in the middle is an enlarged structural diagram;

[0026] Figure 5 This is a partial three-dimensional structural diagram of a movable plug board and a pedal assembly of a livestock drinking water system using ultrafiltration technology according to the present invention;

[0027] Figure 6 The present invention is a livestock drinking water system using ultrafiltration technology Figure 1 Enlarged structural diagram at point B in the middle.

[0028] Figure: 1, water source treatment box; 2, partition plate; 3, filter assembly; 301, inclined sliding frame; 302, filter adsorption plate; 303, clamping fixing block; 304, through hole; 4, connecting pipe; 5, water inlet pipe; 6, protective mounting block; 7, collection assembly; 701, protective frame; 702, clamping plate; 703, collection pipe; 704, pH detector; 8, adjustment assembly; 801, acid-base separation box; 802, flow control pipe; 9, water pump pipe; 10, water storage assembly; 100 1. Water storage tank; 1002. Middle partition; 11. Electric skateboard; 12. Drain assembly; 1201. Water flow pipe; 1202. Collecting head; 13. Arc pipe; 14. Transfer box; 15. Float flow control switch; 16. One-way pipe; 17. Drinking trough; 18. Movable plug-in board; 19. Pedal assembly; 1901. Pedal; 1902. Inclined chute; 1903. Leakage hole; 20. Cover assembly; 2001. Top cover; 2002. Sealing gasket; 21. Connecting block. DETAILED DESCRIPTION

[0029] like Figure 1 and Figure 2As shown, the present invention provides a technical solution: a livestock drinking water system using ultrafiltration technology, comprising a water source treatment box 1 and a filter assembly 3, wherein a partition plate 2 is connected to the middle of the inner upper wall of the water source treatment box 1, and a water inlet pipe 5 is connected to the left end of the top wall of the water source treatment box 1, the filter assembly 3 is arranged on the inner left wall of the water source treatment box 1, and a pipe 4 is connected to the bottom of the filter assembly 3, the filter assembly 3 comprises an inclined sliding frame 301, a filter adsorption plate 302, a clamping fixing block 303 and a through hole 304, the filter adsorption plate 302 is arranged inside the inclined sliding frame 301, and clamping fixing blocks 303 are arranged at both left and right ends of the bottom of the inclined sliding frame 301, and a through hole 304 is opened on the bottom wall of the inclined sliding frame 301;

[0030] The specific operation is as follows: tap water or mineral water is connected through the water inlet pipe 5, and then a multi-level filter component 3 is set inside the water source treatment box 1 to perform multi-layer filtration. After adsorption by the filter adsorption plate 302 inside the inclined sliding frame 301, it passes through the through hole 304 and enters the next filtration level from the connecting pipe 4. Then, the fixed block 303 is snapped in for position adjustment and installation, and the filtration is gradually refined during use.

[0031] like Figure 1 and Figure 3 As shown, a protective mounting block 6 is provided in the middle of the bottom wall of the water source treatment box 1, and a collecting assembly 7 is provided inside the protective mounting block 6. A water pumping pipe 9 with a pump is connected to the top of the protective mounting block 6. An adjusting assembly 8 is provided at the lower end of the right wall of the water source treatment box 1, and the adjusting assembly 8 includes an acid-base separation box 801 and a flow control pipe 802. The bottom of the acid-base separation box 801 is connected to the flow control pipe 802. The collecting assembly 7 includes a protective frame 701, a clamping plate 702, a collecting pipe 703 and a pH detector 704. The front and rear ends of the protective frame 701 are both provided with clamping plates 702, and the inner lower end of the protective frame 701 is provided with a collecting pipe 703, and the inner top of the protective frame 701 is provided with a pH detector 704.

[0032] The specific operation is as follows: the filtered water source will be limited by the protective frame 701, and then the water source will touch the pH detector 704. The tested water source will then be used to neutralize the oxalic acid soda solution in the acid-base separation box 801 through the flow control pipe 802. The mixed solution will then be pumped into the water storage tank 1001 through the collection pipe 703 and the pump pipe 9.

[0033] like Figure 1 and Figure 4As shown, a water storage assembly 10 is provided at the top right side of the water source treatment box 1, and the water storage assembly 10 includes a water tank 1001 and a middle partition 1002. The middle end of the water tank 1001 is provided with a middle partition 1002. The right wall of the water tank 1001 is connected to an electric slide 11, and a discharge assembly 12 is passed through the electric slide 11. The right side of the discharge assembly 12 is connected to an arc tube 13, and a transfer box 14 is provided at the bottom of the arc tube 13. A float flow control switch 15 is provided inside the transfer box 14, and a one-way pipe 16 is connected to the right side of the float flow control switch 15. The discharge assembly 12 includes a water pipe 1201 and a collecting head 1202, and the top of the water pipe 1201 is connected to the collecting head 1202.

[0034] The specific operation is as follows: the softened water source can be used for livestock drinking. By adjusting the position of the electric skateboard 11, the end of the collecting head 1202 can be placed on or below the water surface. When it is below the water surface, water can be injected into the arc tube 13 through the water pipe 1201, and then flow into the transfer box 14. Then, the float flow control switch 15 can control the position of the float through the water level inside the transfer box 14, and then push the switch inside the arc tube 13 to allow the water source to flow, and then flow into the drinking trough 17 through the one-way pipe 16 for use.

[0035] like Figure 1 and Figure 5 As shown, a drinking trough 17 is connected to the right side of the one-way pipe 16, and a movable plug plate 18 is connected to the bottom of the drinking trough 17. A foot pedal assembly 19 is connected to the right side of the movable plug plate 18. The foot pedal assembly 19 includes a foot pedal 1901, an inclined slide groove 1902 and a water leakage hole 1903. The top wall of the foot pedal 1901 is provided with an inclined slide groove 1902, and the right wall of the foot pedal 1901 is provided with a water leakage hole 1903.

[0036] The specific operation is as follows: when livestock drink water, because cattle, sheep and other livestock generally drink water by rolling up the water with their tongues, the water will splash. The movable plug-in plate 18 can be stuck in the inside of the drinking trough 17, and then the livestock stands on the foot pedal 1901. The splashed water will be collected along the inclined chute 1902, and then leak out through the leakage hole 1903 for collection. The water splashed during the drinking process is collected to prevent water turbulence from affecting the dryness of the livestock's living environment.

[0037] like Figure 1 and Figure 6 As shown, a cover assembly 20 is provided on the top of the water source treatment box 1, and a clamping block 21 is connected to the right end of the cover assembly 20. The cover assembly 20 includes a top cover plate 2001 and a sealing gasket 2002, and the sealing gasket 2002 is bonded to the inner bottom of the top cover plate 2001;

[0038] The specific operation is as follows: the top right side is clamped through the top cover 2001, and then the sealing gasket 2002 can provide sealing. The side clamping block 21 is clamped with the right wall of the water source treatment box 1 to improve the stability of the connection. When the interior needs to be cleaned, it is only necessary to separate the clamping block 21 from the water source treatment box 1, and then lift up the top cover 2001.

[0039] Working principle: First, tap water or mineral water is connected through the water inlet pipe 5, and then a multi-level filter assembly 3 is set inside the water source treatment box 1 for multi-layer filtration. After being adsorbed by the filter adsorption plate 302 inside the inclined sliding frame 301, it passes through the through hole 304 and enters the next filtration level from the pipe 4. Then, the fixed block 303 is clamped and the position can be adjusted for installation. In this way, the filtered water can be filtered step by step during use. The filtered water will be limited by the protective frame 701, and then the water will touch the P The water source after testing is then neutralized by the flow control pipe 802 with the oxalic acid and sodium carbonate solution in the acid-base separation box 801. The mixed solution is then pumped into the water storage tank 1001 through the collection pipe 703 by the pump water pipe 9. The softened water source can be put into the water tank 1001 for livestock to drink. The position of the electric slide 11 can be adjusted to allow the end of the collection head 1202 to be above or below the water surface. When it is below the water surface, water can be injected into the arc tube 13 through the water pipe 1201, and then flow into the water tank 1001. Transfer box 14, then the float flow control switch 15 can control the position of the float by the water level inside the transfer box 14, and then push the switch inside the arc tube 13, so that the water source flows, and then flows into the drinking trough 17 through the one-way pipe 16 for use. When livestock drink water, because cattle and sheep generally drink water by rolling it up with their tongues, it will cause water to splash. The movable plug-in board 18 can be stuck in the inside of the drinking trough 17, and then the livestock stands on the foot pedal 1901, and the splashed water will flow along the inclined chute 1 902 is collected and then leaked out through the leakage hole 1903. This setting can collect water splashed during drinking to avoid affecting the dryness of the livestock living environment. The top right side is clamped through the top cover 2001, and then the sealing gasket 2002 can provide sealing. The side clamping block 21 is clamped with the right wall of the water source treatment box 1 to improve the stability of the connection. When the interior needs to be cleaned, it is only necessary to detach the clamping block 21 from the water source treatment box 1, and then lift the top cover 2001.

Claims

1. A livestock drinking water system using ultrafiltration technology, characterized in that: The invention comprises a water source treatment box (1) and a filter assembly (3), wherein a partition plate (2) is connected to the middle of the inner upper wall of the water source treatment box (1), and a water inlet pipe (5) is connected to the left end of the top wall of the water source treatment box (1); the filter assembly (3) is arranged on the inner left wall of the water source treatment box (1), and a pipe (4) is connected to the bottom of the filter assembly (3); The filter assembly (3) comprises an inclined sliding frame (301), a filter adsorption plate (302), a clamping fixing block (303) and a through hole (304); the filter adsorption plate (302) is provided inside the inclined sliding frame (301), and the clamping fixing blocks (303) are provided at both left and right ends of the bottom of the inclined sliding frame (301); and the bottom wall of the inclined sliding frame (301) is provided with a through hole (304); A water storage assembly (10) is provided at the top right side of the interior of the water source treatment box (1), and the water storage assembly (10) comprises a water storage tank (1001) and a middle partition (1002). The middle end of the interior of the water storage tank (1001) is provided with the middle partition (1002). The right wall of the interior of the water storage tank (1001) is connected to an electric slide (11), and a discharge assembly (12) is passed through the interior of the electric slide (11). The right side of the discharge assembly (12) is connected to an arc tube (13), and a transfer box (14) is provided at the bottom of the arc tube (13). A float flow control switch (15) is provided inside the transfer box (14), and a one-way pipe (16) is connected to the right side of the float flow control switch (15). A protective mounting block (6) is provided at the middle of the bottom wall of the water source treatment box (1), and a collecting assembly (7) is provided inside the protective mounting block (6). The collecting assembly (7) comprises a protective frame (701), a clamping plate (702), a collecting pipe (703) and a pH detector (704). The front and rear ends of the protective frame (701) are both provided with clamping plates (702), and the inner lower end of the protective frame (701) is provided with a collecting pipe (703). The inner top of the protective frame (701) is provided with a pH detector (704). The discharge assembly (12) comprises a water pipe (1201) and a collecting head (1202). ), and the top of the water pipe (1201) is connected to a collecting head (1202), the right side of the one-way pipe (16) is connected to a drinking trough (17), and the bottom of the drinking trough (17) is connected to a movable plug board (18), the right side of the movable plug board (18) is connected to a pedal assembly (19), the top of the protective mounting block (6) is connected to a water pipe with a pump (9), the lower end of the inner right wall of the water source treatment box (1) is provided with an adjustment assembly (8), and the adjustment assembly (8) includes an acid-base separation box (801) and a flow control pipe (802), and the bottom of the acid-base separation box (801) is connected to the flow control pipe (802); A cover assembly (20) is provided on the top of the water source treatment box (1), and a clamping block (21) is connected to the right end of the cover assembly (20); The foot pedal assembly (19) comprises a foot pedal (1901), an inclined chute (1902) and a water leakage hole (1903); the top wall of the foot pedal (1901) is provided with an inclined chute (1902), and the right wall of the foot pedal (1901) is provided with a water leakage hole (1903); The cover assembly (20) comprises a top cover plate (2001) and a sealing gasket (2002), and the sealing gasket (2002) is bonded to the inner bottom of the top cover plate (2001).

Citation Information

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