Automatic spraying disinfection system

By introducing a combination of water tank, temperature sensor and electric heating element into the automatic spray disinfection system, the problem of sodium chloride solution crystallization is solved, ensuring normal operation and disinfection effect of the system under low temperature conditions.

CN223746738UActive Publication Date: 2026-01-02FOSHAN FEMAS NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202423323156.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2026-01-02
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In winter, when temperatures are low, the sodium chloride solution in the raw material tank of the existing automatic spray disinfection system may crystallize, affecting the normal use of the system.

Method used

The system employs a water tank and coil structure, combined with a temperature sensor and electric heating element. A circulating pump pumps warm water into the coil to heat and insulate the raw material tank, preventing sodium chloride solution from crystallizing.

Benefits of technology

This effectively prevents sodium chloride solution from crystallizing at low temperatures, ensuring the normal operation of the system and the disinfection effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an automatic spraying disinfection system which comprises two raw material tanks and a water tank, first temperature sensors and coil pipes are arranged in the two raw material tanks, a second temperature sensor and an electric heating pipe are arranged in the water tank, a circulating pump is arranged beside the water tank, the water inlet end of the circulating pump is connected to a water outlet in the bottom of the water tank, and the water inlet end of the circulating pump is connected to a water outlet in the bottom of the water tank. The water outlet end of the circulating pump is connected with a water inlet pipe, water inlets of the two coil pipes are both communicated with the water inlet pipe, two water inlets are formed in the top of the water tank, one water inlet is connected with a water drainage pipe, and water outlets of the two coil pipes are both communicated with the water drainage pipe. The second temperature sensor and the electric heating pipe are installed in the water tank, warm water can be provided, the circulating pump is connected with the water tank and the coil pipe, the warm water in the water tank can circularly flow in the coil pipe, and the coil pipe is installed in the raw material tank, so that the sodium chloride solution in the raw material tank can be heated and insulated; and crystallization of the sodium chloride solution is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to disinfectant spraying technical field, concretely relates to an automatic spraying disinfection system. BACKGROUND

[0002] The automatic spraying disinfection system is a kind of high-efficiency disinfection equipment, and space is disinfected comprehensively by spraying disinfectant, which is widely applied to disinfection and killing in the scenes such as livestock and poultry breeding industry, slaughterhouse and public place, and the automatic spraying disinfection system is mainly composed of spraying device and disinfectant supply system, and the specified area can be sprayed and disinfected by automatic spraying disinfection system through control system automatically, regularly or manually, the automatic spraying system of prior art mostly uses hypochlorous acid as disinfectant, hypochlorous acid is generated by electrolysis of sodium chloride solution in raw material tank into hypochlorous acid generator, then the generated hypochlorous acid is directly introduced or introduced after dilution into high-pressure spray host, to carry out spraying disinfection and sterilization, however, in the use process of the automatic spraying disinfection system of prior art, when the temperature is low in winter, the sodium chloride solution in the raw material tank can crystallize due to too low temperature, which affects the normal use of the automatic spraying disinfection system. SUMMARY

[0003] The utility model discloses to the deficiency of prior art, provide a kind of automatic spraying disinfection system, to solve the problem raised in background art.

[0004] To achieve this purpose, the utility model adopts the following technical scheme:

[0005] An automatic spraying disinfection system, comprising two raw material tanks and a water tank, the first temperature sensor and coil pipe are installed in the two raw material tanks, the inlet and outlet of coil pipe are arranged outside the raw material tank, and the first valve is installed on the inlet and outlet of coil pipe, the second temperature sensor and electric heating tube are installed in the water tank, the circulation pump is arranged beside the water tank, the inlet of circulation pump is connected to the outlet of water tank by pipeline, the outlet of circulation pump is connected to the inlet pipe, the inlet of two coil pipes is communicated with the inlet pipe, and the outlet of two coil pipes is communicated with the drain pipe.

[0006] As a preferred scheme of the automatic spraying disinfection system, the front of two raw material tanks is provided with hypochlorous acid generator, the inlet of two hypochlorous acid generators is connected with pipeline, and the pipeline is connected to the inside of two raw material tanks respectively, the hypochlorous acid solution pipe is arranged beside two hypochlorous acid generators, the hypochlorous acid solution pipe is provided with two inlets and an outlet, the outlet is provided with the second valve, and the outlet is provided with the second valve.

[0007] As a preferred scheme of the automatic spray disinfection system, the right side of the hypochlorous acid generator is provided with a tap water tank and a drinking water tank, the bottom of the tap water tank and the bottom of the drinking water tank are provided with water outlets, and the two water outlets are respectively connected with a tap water pipe and a drinking water pipe, and the end of the tap water pipe and the end of the drinking water pipe are respectively provided with a third valve and a fourth valve.

[0008] As a preferred scheme of the automatic spray disinfection system, the hypochlorous acid solution pipe and the tap water pipe are provided with a pipeline communication, and the pipeline is provided with a first fluidic device.

[0009] As a preferred scheme of the automatic spray disinfection system, the tap water pipe and the drinking water pipe are provided with a pipeline communication, and the pipeline is provided with a second fluidic device.

[0010] As a preferred scheme of the automatic spray disinfection system, the system further comprises a high-pressure spray host and a spray pipeline, the inlet end of the high-pressure spray host is connected with the hypochlorous acid solution pipe and the tap water pipe through a three-way pipe, and the outlet end of the high-pressure spray host is connected with the spray pipeline.

[0011] The automatic spray disinfection system has the following beneficial effects:

[0012] The automatic spray disinfection system has the following beneficial effects: BRIEF DESCRIPTION OF DRAWINGS

[0013] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments of the present application. Obviously, the drawings described below are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.

[0014] Fig. 1 is the overall structure schematic view of the automatic spray disinfection system.

[0015] Fig. 2 is the internal structure schematic view of the raw material tank.

[0016] Fig. 3 is the internal structure schematic view of the water tank.

[0017] In the drawings:

[0018] 1, raw material tank; 2, water tank; 3, first temperature sensor; 4, coil; 5, first valve; 6, second temperature sensor; 7, electric heating tube; 8, circulating pump; 9, water inlet pipe; 10, drain pipe; 11, hypochlorous acid generator; 12, tap water tank; 13, drinking water tank; 14, hypochlorous acid solution pipe; 15, tap water pipe; 16, drinking water pipe; 17, first jet; 18, second jet; 19, second valve; 20, third valve; 21, fourth valve; 22, high-pressure spray host; 23, spray pipeline. DETAILED DESCRIPTION

[0019] The technical solutions of the utility model are further illustrated below by specific embodiments in combination with the drawings.

[0020] Wherein, the drawings are only used for example description, and the representation is only schematic diagram, and not physical drawing, and cannot be understood as the limitation of the patent; in order to better illustrate the embodiment of the utility model, some components of the drawings can be omitted, enlarged or reduced, and the size of actual product is not represented; for those skilled in the art, some well-known structures and their description in the drawings can be omitted and understood.

[0021] The same or similar reference numerals in the drawings of the embodiments of the utility model correspond to the same or similar components; in the description of the utility model, it should be understood that if the terms such as 'upper', 'lower', 'left', 'right', 'inner', 'outer' etc. indicate the orientation or positional relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and not indicate or imply that the device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore the positional relationship description in the drawings is only used for example description, and cannot be understood as the limitation of the patent, for the ordinary skilled in the art, the specific meaning of the above terms can be understood according to the specific situation.

[0022] In the description of the utility model, unless otherwise explicitly specified and limited, if the connection relationship between components appears the term 'connection' etc., the term should be broadly understood, for example, can be fixedly connected, can be detachably connected, or integrated; can be mechanically connected, can be electrically connected; can be directly connected, can be indirectly connected through intermediate medium, can be the communication inside two components or the interaction relationship between two components. For the ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific situation.

[0023] As Figs. 1 to 3The utility model provides an automatic spray disinfection system, including two raw material tanks 1 and a water tank 2, two first temperature sensor 3 and coil pipe 4 are installed in the raw material tank 1, and the first temperature sensor 3 is used for real -time monitoring the sodium chloride solution temperature in the raw material tank 1, and the coil pipe 4 adopts the metal pipe of good heat conductivity, and the surface of coil pipe 4 can be coated with a layer of protective coating or wrapped with a layer of polyethylene plastic, so as to avoid that coil pipe 4 is corroded by sodium chloride, and the inlet and outlet of coil pipe 4 are all arranged at the outside of raw material tank 1, and first valve 5 is installed on the inlet and outlet of coil pipe 4, second temperature sensor 6 and electric heating tube 7 are installed in the inside of water tank 2, and the second temperature sensor 6 is used for real -time monitoring the water temperature in water tank 2, and the electric heating tube 7 is used for heating the water in water tank 2, and the circulation pump 8 is arranged beside water tank 2, and the water inlet end of circulation pump 8 is connected on the bottom water outlet of water tank 2 through pipeline, and the water outlet end of circulation pump 8 is connected with water inlet pipe 9, and the water inlets of two coil pipes 4 are all communicated with water inlet pipe 9, and the top of water tank 2 is provided with two water inlets, and one water inlet is connected with drain pipe 10, and the water outlets of two coil pipes 4 are all communicated with drain pipe 10, and the water in water tank 2 can be pumped into coil pipe 4 for circulation through circulation pump 8, and the first temperature sensor 3, second temperature sensor 6, electric heating tube 7 and circulation pump 8 are all connected with the control system of automatic spray disinfection system, when using the automatic spray disinfection system in winter, the minimum temperature of sodium chloride solution, the minimum temperature and high temperature of water are set on the control system, and the maximum temperature of water should not be set too high, otherwise the concentration of sodium chloride solution will be affected, when the first temperature sensor 3 detects that the sodium chloride solution temperature in raw material tank 1 reduces to the set minimum temperature, the electric heating tube 7 is automatically opened, and the water in water tank 2 is rapidly heated, when the second temperature sensor 6 detects that the water temperature reaches the set maximum temperature, the electric heating tube 7 is automatically closed, and circulation pump 8 is started, and the water is pumped into coil pipe 4 for circulation, so as to help the sodium chloride solution in raw material tank 1 to heat and keep warm, when the water temperature reduces to the set minimum temperature, the electric heating tube 7 is opened again, and the water is heated.

[0024] The front of two raw material tanks 1 is provided with hypochlorous acid generator 11, and the liquid inlet of two hypochlorous acid generators 11 is connected with pipeline, and the pipeline is respectively connected into the inside of two raw material tanks 1, and the function of hypochlorous acid generator 11 is to electrolyze sodium chloride, and generate hypochlorous acid, and the side of two hypochlorous acid generators 11 is provided with hypochlorous acid solution pipe 14, and hypochlorous acid solution pipe 14 is provided with two inlets and an outlet, two inlets are connected with the liquid outlet of two hypochlorous acid generators 11, and the outlet is provided with second valve 19, and the high concentration hypochlorous acid generated by hypochlorous acid generator 11 can be discharged into hypochlorous acid solution pipe 14.

[0025] The right side of the hypochlorous acid generator 11 is provided with a tap water tank 12 and a drinking water tank 13, the bottom of the tap water tank 12 and the bottom of the drinking water tank 13 are provided with water outlets, and the two water outlets are respectively connected with a tap water pipe 15 and a drinking water pipe 16, the tail end of the tap water pipe 15 and the tail end of the drinking water pipe 16 are respectively provided with a third valve 20 and a fourth valve 21, a pipeline communication is arranged between the hypochlorous acid solution pipe 14 and the tap water pipe 15, and a first jet device 17 is arranged on the pipeline, a pipeline communication is arranged between the tap water pipe 15 and the drinking water pipe 16, and a second jet device 18 is arranged on the pipeline, when the second valve 19 is opened and the third valve 20 and the fourth valve 21 are closed, the generated high-concentration hypochlorous acid can be directly discharged from the hypochlorous acid solution pipe 14 and used for disease sterilization, when the third valve 20 is opened and the second valve 19 and the fourth valve 21 are closed, the generated high-concentration hypochlorous acid is mixed and diluted with tap water and then discharged from the tap water pipe 15 and used for environmental disinfection, and when the fourth valve 21 is opened and the second valve 19 and the third valve 20 are closed, the generated high-concentration hypochlorous acid is mixed and diluted with tap water and drinking water and then discharged from the drinking water pipe 16 and used for generating chlorine-containing drinking water.

[0026] The system further comprises a high-pressure spray host 22 and a spraying pipeline 23, the inlet end of the high-pressure spray host 22 is connected with the hypochlorous acid solution pipe 14 and the tap water pipe 15 through a three-way pipe, and the outlet end of the high-pressure spray host 22 is connected with the spraying pipeline 23, the high-concentration hypochlorous acid from the hypochlorous acid solution pipe 14 and the low-concentration hypochlorous acid from the tap water pipe 15 can be introduced into the high-pressure spray host 22, and then pumped into the spraying pipeline 23 through the high-pressure spray host 22, so that the specified area is sprayed and disinfected.

[0027] The working principle and use process of the utility model are as follows:

[0028] When the automatic spraying disinfection system is used, firstly, the hypochlorous acid generator 11 will suck the sodium chloride solution in the raw material tank 1, and electrolysis generates high-concentration hypochlorous acid solution, then the high-concentration hypochlorous acid solution directly enters the high-pressure spray host 22, or is diluted into low-concentration hypochlorous acid solution after being diluted with tap water and then enters the high-pressure spray host 22, finally, the high-pressure spray host 22 is pumped into the spraying pipeline 23, the specified area is sprayed and disinfected, when the first temperature sensor 3 monitors that the temperature of the sodium chloride solution in the raw material tank 1 is reduced to the set minimum temperature in winter, the electric heating tube 7 is automatically opened, the water in the water tank 2 is quickly heated, when the second temperature sensor 6 monitors that the water temperature reaches the set maximum temperature, the electric heating tube 7 is automatically closed, and the circulating pump 8 is started, the heated warm water is pumped into the coil pipe 4 for circulation, so as to help the sodium chloride solution in the raw material tank 1 to heat and keep warm.

[0029] It should be noted that the above specific embodiments are only the preferred embodiments of the utility model and the applied technical principles. Those skilled in the art should understand that various modifications, equivalent replacements, changes and the like can be made to the utility model. However, as long as these changes do not deviate from the spirit of the utility model, they should be within the protection scope of the utility model. In addition, some terms used in the application specification and claims are not limited, but only for the convenience of description.

Claims

1. An automatic spray disinfecting system, characterized in that, Including two raw material tanks (1) and a water tank (2), the first temperature sensor (3) and the coil pipe (4) are installed in each of the two raw material tanks (1), the inlet and outlet of the coil pipe (4) are arranged outside the raw material tank (1), and the first valve (5) is arranged on the inlet and outlet of the coil pipe (4), the second temperature sensor (6) and the electric heating pipe (7) are arranged in the water tank (2), the circulating pump (8) is arranged beside the water tank (2), the water inlet end of the circulating pump (8) is connected to the water outlet at the bottom of the water tank (2) through a pipeline, the water outlet end of the circulating pump (8) is connected with the water inlet pipe (9), the water inlets of the two coil pipes (4) are communicated with the water inlet pipe (9), and the top of the water tank (2) is provided with two water inlets, one of which is connected with the drain pipe (10), and the water outlets of the two coil pipes (4) are communicated with the drain pipe (10).

2. The automatic spray disinfecting system of claim 1, wherein, The front of each of the two raw material tanks (1) is provided with a hypochlorous acid generator (11), the liquid inlet of each of the two hypochlorous acid generators (11) is connected with a pipeline, and the pipeline is respectively connected to the inside of the two raw material tanks (1), the hypochlorous acid solution pipe (14) is arranged beside the two hypochlorous acid generators (11), the hypochlorous acid solution pipe (14) is provided with two inlets and an outlet, the two inlets are respectively connected to the liquid outlets of the two hypochlorous acid generators (11), and the outlet is provided with the second valve (19).

3. The automatic spray disinfecting system of claim 2, wherein, The right side of the hypochlorous acid generator (11) is provided with a tap water tank (12) and a drinking water tank (13), the bottom of the tap water tank (12) and the bottom of the drinking water tank (13) are provided with water outlets, and the two water outlets are respectively connected with the tap water pipe (15) and the drinking water pipe (16), and the ends of the tap water pipe (15) and the drinking water pipe (16) are respectively provided with the third valve (20) and the fourth valve (21).

4. The automatic spray disinfecting system of claim 3, wherein, The hypochlorous acid solution pipe (14) and the tap water pipe (15) are connected by a pipeline, and the first fluidic device (17) is arranged on the pipeline.

5. The automatic spray disinfecting system of claim 3, wherein, The tap water pipe (15) and the drinking water pipe (16) are connected by a pipeline, and the second fluidic device (18) is arranged on the pipeline.

6. The automatic spray disinfecting system of claim 3, wherein, The system further comprises a high-pressure spray main machine (22) and a spray pipeline (23), the inlet end of the high-pressure spray main machine (22) is connected to the hypochlorous acid solution pipe (14) and the tap water pipe (15) through a three-way pipe, and the outlet end of the high-pressure spray main machine (22) is connected to the spray pipeline (23).