Environment-friendly disinfectant fluid machine for preparing disinfectant fluid of livestock farm
By using a multi-electrolysis cell parallel structure and an intelligent monitoring system, the problems of manual adjustment and electrode scaling in disinfection water machines have been solved, achieving efficient, stable, and automated disinfection water preparation, which is suitable for the continuous disinfection needs of large-scale farms.
Patent Information
- Application Number
- CN202422953976.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing disinfection water machines require manual adjustment of the disinfectant solution ratio, which leads to problems such as electrode scaling and increased impedance, affecting equipment stability and efficiency, and also results in insufficient applicability to different devices.
It adopts a multi-electrolysis cell parallel structure, diaphragm electrolysis cell design, push-pull base and intelligent monitoring system to achieve automated control and high-efficiency electrolysis. Combined with citric acid solution backwashing to prevent scaling, it is equipped with water inlet and water outlet to ensure stable operation.
It improves electrolysis efficiency and production flexibility, simplifies maintenance procedures, ensures equipment stability and safety, is suitable for the continuous disinfection needs of large-scale farms, and reduces resource consumption and failure risk.
Smart Images

Figure CN223766160U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of environmental protection equipment for aquaculture, and more specifically, to an environmentally friendly disinfection water machine for preparing disinfectant water for aquaculture farms. Background Technology
[0002] With the continuous advancement of agricultural modernization, the proportion of large-scale, intensive livestock farms in the livestock and poultry breeding industry is gradually increasing. However, with the increase in breeding density, the spread of pathogenic microorganisms in farms also accelerates, easily triggering outbreaks of animal diseases and causing huge economic losses to breeding enterprises. At the same time, some pathogens have developed resistance to traditional drugs or antibiotics, further increasing the difficulty of disease control. Therefore, strengthening disinfection management in farms and reducing the spread of germs has become an important part of modern livestock and poultry breeding management.
[0003] Currently, common disinfection methods used in livestock farms include spraying disinfectant, fumigation, and ultraviolet (UV) disinfection. Spraying disinfectant is the most prevalent method, quickly covering the farming area and effectively killing most pathogens. However, in practice, traditional disinfection methods have several problems, such as high cost, low efficiency, and difficulty in achieving even coverage with manual spraying; fumigation requires a confined space and carries the risk of drug residues, potentially affecting livestock health; and UV disinfection is limited by light range and environmental conditions, making it difficult to implement in large-scale farms. Therefore, the market urgently needs a highly efficient, low-cost, and environmentally friendly disinfection solution.
[0004] In recent years, with the increasing awareness of environmental protection and the development of intelligent equipment, disinfection water machines have begun to emerge in the disinfection management of livestock farms. Disinfection water machines mainly use the principle of electrolysis to convert ordinary water and salt or other electrolyte solutions into highly effective disinfectants such as hypochlorous acid. This disinfectant has a strong bactericidal effect, is harmless to humans and the environment, and rapidly degrades into water and inorganic salts after use, leaving no drug residues. Therefore, hypochlorous acid disinfection water machines, as an emerging type of equipment, are gradually becoming an important disinfection tool in livestock farms.
[0005] The application of disinfection water machines not only simplifies the disinfection process but also improves its efficiency and accuracy. Intelligent disinfection water machines can achieve automated operation through sensors and control systems, automatically adjusting the concentration and spraying frequency of the disinfectant based on factors such as temperature, humidity, and pathogen concentration in the aquaculture environment. Furthermore, some advanced equipment also features timed disinfection, area-wide monitoring, and remote control, enabling managers to achieve refined epidemic prevention management.
[0006] However, some technical challenges exist in its widespread application. First, the stability and continuous operation of the disinfection machine directly affect the disinfection effect, especially in large-scale farms where long-term stable operation is crucial. Second, the concentration of the disinfectant solution needs strict control; too low a concentration will not effectively sterilize, while too high a concentration may harm livestock health. Therefore, the design of the equipment must fully consider parameter control during the electrolysis process and subsequent water quality management. Furthermore, different types of disinfection machines have varying applicability in actual operation, requiring customized configuration based on the specific needs of the farm. With the development of intelligent and IoT technologies, disinfection machines are evolving towards greater efficiency and intelligence.
[0007] In the prior art, patent CN 219744631 U discloses a hypochlorous acid disinfectant mixing machine, including a base, a dilute hydrochloric acid conveying component, a tap water conveying component, and a mixing component. The dilute hydrochloric acid conveying component is located at one end of the base, and the tap water conveying component is located in the middle of the base. A support frame is mounted on the base, and the mixing component is mounted on the support frame. However, this application has a relatively complex structure, requiring manual adjustment of the disinfectant mixing ratio, and lacks a convenient maintenance structure. Furthermore, it is prone to electrode scaling and increased impedance during electrolysis, which can easily affect electrolysis efficiency and equipment lifespan. Utility Model Content
[0008] To overcome the shortcomings of the prior art, such as the need for manual adjustment of the disinfectant solution ratio, electrode scaling, and increased impedance, this invention provides an environmentally friendly disinfectant water machine for preparing disinfectant water for aquaculture farms.
[0009] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:
[0010] An environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms includes a machine body, and also includes an electrolytic cell, a storage unit, an electrical control module and a pump system disposed inside the machine body;
[0011] The electrolyte in the storage unit is transferred to the electrolytic cell for electrolysis; the electrolytic cell decomposes the brine in the storage unit into acidic water and alkaline water with different pH values, and stores the acidic water and alkaline water obtained by electrolysis in the storage unit;
[0012] The electronic control module is used to monitor the pH parameters during the electrolysis process of the electrolytic cell and control the electrolysis rate of the electrolytic cell; the pump system is used for solution transportation between the electrolytic cell and the storage unit.
[0013] Furthermore, the electrolytic cell is a diaphragm electrolytic cell, with an ion exchange membrane inside to separate the acidic water and alkaline water generated by the reactions at the anode and cathode, respectively, on both sides of the ion exchange membrane.
[0014] Furthermore, the storage unit also includes a brine storage tank for containing the raw solution to be electrolyzed, and an acid water storage tank and an alkaline water storage tank for storing the acidic water and alkaline water generated by electrolysis, respectively; both the acid water storage tank and the alkaline water storage tank are equipped with water level sensors for detecting the water level inside the tank; the electronic control module is electrically connected to the water level sensor.
[0015] Furthermore, the storage unit also includes a citric acid solution storage tank; the citric acid solution storage tank contains a citric acid solution for backwashing the electrolytic cell.
[0016] Furthermore, the environmentally friendly disinfectant water machine has at least two electrolytic cells, which are connected in parallel.
[0017] Furthermore, the pump system includes a pipeline for conveying liquid, a peristaltic pump, and a circulation pump. The peristaltic pump is used to convey the acidic water generated by electrolysis to the acidic water storage tank and the alkaline water generated by electrolysis to the alkaline water storage tank.
[0018] The circulation pump is used to draw citric acid solution from the citric acid solution storage tank into the electrolytic cell for internal circulation cleaning.
[0019] Furthermore, the lower part of the disinfection water machine is provided with a push-pull base for holding the brine storage tank and the citric acid solution storage tank; the bottom of the push-pull base is also fixed with several pulleys.
[0020] Furthermore, the push-pull base includes a base plate and side walls integrally formed and connected to the edge of the base plate. The left and right ends of the side walls extend along both sides of the base plate, forming an upward-opening box structure together with the base plate.
[0021] Furthermore, a pull handle is installed in the middle of the outer surface of the front side wall of the push-pull base, and the pull handle is connected to the base plate by means of hinge or bolt locking.
[0022] The front side wall of the push-pull base is also provided with a fixing member near the pull handle. The fixing member is used to lock the position when the push-pull base is pulled to a designated position. The fixing member includes a pin fixing member and a fixing pin that cooperates with the pin fixing member.
[0023] The lower part of the body is also provided with a base limiting groove for limiting the sliding base; the base limiting groove is I-shaped, and the base limiting groove extends from the two side walls near the sliding base to the groove ears that are connected to the sliding base for limiting.
[0024] Furthermore, the environmentally friendly disinfection water machine also includes a water inlet and a drain outlet on the back of the machine body; the water inlet is used to supply reaction water in the electrolytic cell, and the drain outlet is used to centrally discharge wastewater generated during the electrolysis process or overflow water from the storage unit.
[0025] Compared with the prior art, the beneficial effects of this utility model's technical solution are:
[0026] ① Improved Electrolysis Efficiency and Production Flexibility: This environmentally friendly disinfection water machine achieves high-efficiency electrolysis through a multi-electrolysis cell parallel structure, ensuring that the system can flexibly adjust the output according to demand and stably generate acidic and alkaline water with different pH values. This design is particularly suitable for large-scale applications, meeting the needs of long-term continuous disinfection in scenarios such as farms or food processing plants; at the same time, the improved electrolysis efficiency reduces resource consumption and improves the economics of equipment operation.
[0027] ② Integrated and modular design optimizes operation: The push-pull base design, combined with pulleys and limiting grooves, facilitates the movement and replacement of brine and citric acid storage tanks, greatly simplifying daily maintenance procedures and reducing downtime. Furthermore, the equipment is equipped with independent inlet and outlet ports, ensuring a smooth supply of reaction water and centralized discharge of wastewater, effectively preventing overflow and water accumulation, and improving operational convenience and system continuity. Simultaneously, regular cleaning prevents clogging; citric acid solution is used to clean the electrolytic cell to prevent scaling, ensuring long-term efficient operation of the ion exchange membrane. The backwashing function of the citric acid solution effectively prevents precipitated ion membrane buildup during electrolysis. Combined with the pump system, the entire disinfectant production electrolysis process is more integrated and efficient.
[0028] ③ Intelligent monitoring and remote management enhance safety: The electrical control module integrates level and pH sensors, which are connected to the alarm system to monitor the tank's level and pH value in real time. It automatically triggers alarms in case of abnormal conditions and sends status information to the user terminal via the communication module, enabling remote monitoring and management. This design not only reduces manual intervention but also ensures efficient, safe, and stable operation of the equipment, lowers the risk of equipment failure, and improves resource utilization efficiency. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the structure of an environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms, according to an embodiment of this utility model.
[0030] Figure 2 This is a front view of an environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms, according to an embodiment of this utility model.
[0031] Figure 3 This is a schematic diagram of the back of an environmentally friendly disinfection water machine used to prepare disinfectant water for livestock farms, according to an embodiment of this utility model.
[0032] Figure 4 This is a side view of an environmentally friendly disinfection water machine used to prepare disinfectant water for livestock farms, according to an embodiment of this utility model.
[0033] Figure 5 This is a cross-sectional schematic diagram of an environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms, according to an embodiment of the present invention; 1. Electrolytic cell; 2. Storage unit; 201. Salt water storage tank; 202. Citric acid solution storage tank; 203. Acidic water storage tank; 2031. Acidic liquid outlet tap; 204. Alkaline water storage tank; 2041. Acidic liquid outlet tap;
[0034] 3. Electrical control module; 4. Pump system; 401. Peristaltic pump; 402. Circulating pump;
[0035] 5. Body; 501. Water inlet; 502. Drain outlet; 6. Push-pull base; 7. Base limiting groove. Detailed Implementation
[0036] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings of the embodiments of this application. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the described embodiments without creative effort are within the scope of protection of this application.
[0037] Unless otherwise defined, the technical or scientific terms used in this application shall have the ordinary meaning understood by one of ordinary skill in the art to which this application pertains. The terms "first," "second," and similar terms used in this application do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the elements or objects listed following the word and their equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. Terms such as "upper," "lower," "left," and "right" are used only to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0038] Example 1
[0039] This embodiment discloses an environmentally friendly disinfection water machine for preparing disinfectant water for aquaculture farms, including a body 5, and also including an electrolytic cell 1, a storage unit 2, an electronic control module 3 and a pump system 4 disposed inside the body 5;
[0040] The electrolyte in one of the containers of storage unit 2 is transferred to electrolytic cell 1 for electrolysis treatment; electrolytic cell 1 decomposes the brine in storage unit 2 into acidic water and alkaline water with different pH values, and stores the acidic water and alkaline water obtained by electrolysis in other containers of storage unit 2 respectively.
[0041] The electrical control module 3 is used to monitor the pH parameters during the electrolysis process of the electrolytic cell 1 and control the electrolysis rate of the electrolytic cell 1; the pump system 4 is used for the solution transport between the electrolytic cell 1 and the storage unit 2.
[0042] Electrolytic cell 1 is a diaphragm electrolytic cell, with an ion exchange membrane inside to separate the acidic water and alkaline water generated by the reactions at the anode and cathode, respectively, on both sides of the ion exchange membrane 2.
[0043] Storage unit 2 also includes a brine storage tank 201 for containing the raw solution to be electrolyzed, and an acidic water storage tank 203 and an alkaline water storage tank 204 for storing acidic and alkaline water generated by electrolysis, respectively; both the acidic water storage tank 203 and the alkaline water storage tank 204 are equipped with water level sensors for detecting the water level inside the tanks; the electrical control module 3 is electrically connected to the water level sensors. Storage unit 2 also includes a citric acid solution storage tank 202; the citric acid solution storage tank 202 contains a citric acid solution for backwashing the electrolytic cell 1.
[0044] The pump system 4 includes a pipeline for conveying liquid, a peristaltic pump 401 and a circulation pump 402. The peristaltic pump 401 is used to convey the acidic water generated by electrolysis to the acidic water storage tank 203 and the alkaline water generated by electrolysis to the alkaline water storage tank 204. The circulation pump 402 is used to draw the citric acid solution in the citric acid solution storage tank 202 into the electrolytic cell 1 for internal circulation cleaning.
[0045] In the specific implementation process, firstly, brine (NaCl solution) is injected into the brine storage tank 201 through the inlet and then transported to the diaphragm electrolytic cell 1 by the peristaltic pump 401. Inside the electrolytic cell 1, the anode and cathode reactions are separated by an ion exchange membrane to ensure that the generated acidic and alkaline water do not mix.
[0046] The anodic reaction mainly produces hypochlorous acid (HOCl), hydrochloric acid (HCl), and oxygen (O2):
[0047] ① Water undergoes oxidation at the anode: 2H₂O → O₂ + 4H₂O + +4e -
[0048] ② Chloride ions lose electrons to form chlorine gas: 2Cl - →Cl2+2e -
[0049] ③ Chlorine dissolves in water and reacts with water to produce hypochlorous acid and hydrochloric acid: Cl2 + H2O → HOCl + HCl
[0050] On the cathode side, water molecules are reduced to hydroxide ions and hydrogen gas: 2H₂O + 2e⁻ - →2OH - +H2↑
[0051] The generated acidic water (pH 2.5-3.0) and alkaline water (pH 11.0-11.5) are pumped by peristaltic pump 401 to their respective storage tanks (acidic water storage tank 203 and alkaline water storage tank 204), and their liquid levels are monitored by a water level sensor to ensure that the water level in the storage tanks is within a safe range. The pH sensor monitors the pH value of the acidic and alkaline water. If it deviates from the set value, the electrical control module 3 adjusts the current or voltage of the electrolysis cell 1. By adjusting the salt concentration and electrolysis time in the electrolysis cell, the concentration of HOCl generated is controlled. The machine body 5 is also equipped with an acidic water outlet faucet 2031 connected to the acidic water storage tank 203 and an alkaline water outlet faucet 2041 connected to the alkaline water storage tank 204. The operator opens the acidic water outlet faucet 2031 or the alkaline water outlet faucet 2041 to draw detoxified water from the storage tank according to the actual amount required.
[0052] To ensure disinfection effectiveness, the generated HOCl solution concentration is typically between 10-30 ppm, with a pH value below 2.7 (ideally between 2.5-2.7), an oxidation-reduction potential above 1100 mV, and an effective chlorine concentration of 50-70 mg / L. Furthermore, pump system 4 periodically draws citric acid solution from citric acid solution storage tank 202 and injects it into electrolytic cell 1 via circulation pump 402 for cleaning. This prevents excessive calcium and magnesium ion deposition within electrolytic cell 1 and avoids the formation of an ion-exchange membrane that could affect electrolysis efficiency. The wastewater after electrolysis is discharged through the wastewater outlet.
[0053] Example 2
[0054] This embodiment discloses another environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms, similar to Embodiment 1, except that...
[0055] An environmentally friendly disinfection water machine has at least two electrolysis cells 1, which are connected in parallel to improve electrolysis efficiency and adjust the output of electrolyzed water as needed. This makes it suitable for continuous disinfection applications, such as farms. Multiple electrolysis cells 1 operating in parallel can simultaneously generate large quantities of both acidic and alkaline water to meet continuous disinfection requirements and improve production efficiency. The generated acidic and alkaline water are then separately transported to corresponding storage tanks (acidic water storage tank 203 and alkaline water storage tank 204) for storage and backup. The volumes of acidic water storage tank 203 and alkaline water storage tank 204 range from 100L to 300L; the specific volume selection for acidic water storage tank 203 and alkaline water storage tank 204 can be based on the actual application scenario.
[0056] The lower part of the disinfection water machine is provided with a push-pull base 6 for holding the brine storage tank 201 and the citric acid solution storage tank 202; the bottom of the push-pull base 6 is also fixed with several pulleys.
[0057] The push-pull base 6 includes a base plate and side walls integrally formed with the edge of the base plate. The left and right ends of the side walls extend along both sides of the base plate, forming an upward-opening box structure together with the base plate.
[0058] A pull handle is installed in the middle of the outer surface of the front side wall of the push-pull base 6. The pull handle is connected to the base plate by hinge or bolt locking.
[0059] The front side wall of the push-pull base 6 near the pull handle is also provided with a fixing component, which is used to lock the position of the push-pull base 6 when it is pulled to the designated position; the fixing component includes a pin fixing component and a fixing pin that cooperates with the pin fixing component;
[0060] The lower part of the body 5 is also provided with a base limiting groove 7 for limiting the sliding base 6; the base limiting groove 7 is I-shaped, and the base limiting groove 7 extends to the two side walls of the sliding base 6 near the sides of the sliding base 6 for limiting connection with the sliding base 6. The base limiting groove 7 is fixed to the lower part of the body 5 by screws, bolts or welding.
[0061] The top of rack 5 is also equipped with a cooling fan for dissipating heat and a three-color indicator light for indicating the working status of the equipment. Both the cooling fan and the three-color indicator light are electrically connected to the electrical control module.
[0062] In terms of system structure, the lower part of the disinfection water machine is designed with a push-pull base 6 for placing the brine storage tank 401 and the citric acid solution storage tank 402. The bottom of the push-pull base 6 is also equipped with casters for easy movement and replacement of the storage tanks. The machine body is also equipped with a base limiting groove 7 to limit and fix the push-pull base 6 during use, preventing slippage or tilting during operation. This design improves the system's ease of operation and maintenance efficiency.
[0063] Example 3
[0064] This embodiment discloses another environmentally friendly disinfection water machine for preparing disinfectant water for livestock farms, similar to Embodiment 1, except that...
[0065] The environmentally friendly disinfection water machine also includes a water inlet 501 and a drain outlet 502 on the back of the main body 5. The water inlet 501 is used to supply the reaction water in the electrolytic cell 1, and the drain outlet 502 is used to centrally discharge the wastewater generated during the electrolysis process or the overflow water in the storage unit 2. The water inlet 501 and the drain outlet 502 are set on the back of the main body 5: the water inlet 501 is used to transport the water required for the reaction to the electrolytic cell 1 to ensure the continuous electrolysis reaction; the drain outlet 502 is used to centrally discharge the wastewater generated during the electrolysis process and the overflow water in the storage unit, effectively avoiding malfunctions or leaks caused by excessive liquid accumulation.
[0066] The electrical control module 3 is also electrically connected to monitoring sensors and an alarm system. The monitoring sensors are installed in each container of storage unit 2. When a monitoring sensor in storage unit 2 detects an abnormality in the liquid level or pH value of any storage tank, the alarm system will issue an alarm and send the equipment status information to the user terminal via the communication module for remote monitoring. The monitoring sensors and alarm system achieve accurate liquid level and pH monitoring, and support remote operation via the communication module, making management more intelligent. Timely alarms and remote monitoring can detect potential problems in advance, reduce downtime, and improve the stability of equipment operation.
[0067] Throughout operation, the electrical control module 3 continuously adjusts the voltage, current, and flow rate to ensure electrolysis efficiency and product stability. When the pH value or water level deviates from the set range, the system will automatically alarm and make corresponding adjustments. To prevent scaling of the ion exchange membrane inside the electrolytic cell 1, the system periodically injects citric acid solution into the electrolytic cell 1 via the circulation pump 402 for internal circulation cleaning. Waste liquid is discharged through the outlet, supporting optional wastewater recycling systems to reduce resource waste and environmental pollution. The entire system has a compact structure and a high degree of automation, suitable for large-scale environmental disinfection needs in farms and other similar settings, ensuring convenient operation and stable disinfection effects.
[0068] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively describe all embodiments here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. An environmentally friendly disinfectant water machine for preparing a farm disinfectant water, comprising a machine body (5), characterized in that, The electrolytic tank (1), the storage unit (2), the electric control module (3) and the pump system (4) are arranged inside the machine body (5); The electrolyte in the storage unit (2) is transported into the electrolytic tank (1) for electrolysis treatment; the electrolytic tank (1) decomposes the brine in the storage unit (2) into acidic water and alkaline water with different pH values, and stores the obtained acidic water and alkaline water in different containers in the storage unit (2) respectively; The electric control module (3) is used for monitoring the pH parameter in the electrolysis process of the electrolytic tank (1) and controlling the electrolysis rate of the electrolytic tank (1); and the pump system (4) is used for solution transportation between the electrolytic tank (1) and the storage unit (2).
2. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 1, wherein The electrolytic tank (1) is a diaphragm type electrolytic tank, and an ion exchange membrane is arranged inside the electrolytic tank for separating the acidic water and the alkaline water generated by the anode and the cathode respectively on both sides of the ion exchange membrane.
3. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 1, wherein The storage unit (2) further comprises a brine storage tank (201) for containing the raw solution to be electrolyzed, and an acidic water storage barrel (203) and an alkaline water storage barrel (204) for storing the electrolytic acidic water and alkaline water respectively; the inside of the acidic water storage barrel (203) and the alkaline water storage barrel (204) is respectively provided with a water level sensor for detecting the water level height in the barrel; and the electric control module (3) is electrically connected with the water level sensor.
4. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 3, wherein The storage unit (2) further comprises a citric acid solution storage tank (202); the inside of the citric acid solution storage tank (202) is filled with citric acid solution for backwashing the electrolytic tank (1).
5. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 1, wherein The environment-friendly disinfectant water machine comprises at least two electrolytic tanks (1), and the electrolytic tanks (1) are connected in parallel.
6. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 4, wherein The pump system (4) comprises a pipeline for transporting liquid, a peristaltic pump (401) and a circulating pump (402); the peristaltic pump (401) is used for transporting the electrolytic acidic water into the acidic water storage barrel (203) and transporting the electrolytic alkaline water into the alkaline water storage barrel (204); The circulating pump (402) is used for pumping the citric acid solution in the citric acid solution storage tank (202) into the electrolytic tank (1) for internal circulation cleaning.
7. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 4, wherein The lower part of the disinfectant water machine is provided with a push-pull base (6) for containing the brine storage tank (201) and the citric acid solution storage tank (202); and a plurality of pulleys are fixedly arranged at the bottom of the push-pull base (6).
8. The eco-friendly disinfectant water machine for preparing farm disinfectant water according to claim 7, characterized in that, The push-pull base (6) comprises a bottom plate and a side wall integrally connected with the edge of the bottom plate; the side wall extends along the two sides of the bottom plate at the left and right ends, and forms a box-shaped structure with the bottom plate, and the opening of the box-shaped structure faces upward.
9. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 8, wherein A pull handle is mounted on the middle part of the outer surface of the front side wall of the push-pull base (6); and the pull handle is connected with the bottom plate by hinging or screw locking. The front side wall of the push-pull base (6) is also provided with a fixing part near the side of the pull handle, which is used to lock the position of the push-pull base (6) when it is pulled to the designated position; the fixing part includes a latch fixing part and a fixed latch matched with the latch fixing part; The lower part of the machine body (5) is also provided with a base limiting groove (7) for limiting the pulling of the push-pull base (6); the base limiting groove (7) is in the shape of an I-beam, and the two side walls of the base limiting groove (7) near the push-pull base (6) extend groove ears for limiting connection with the push-pull base (6).
10. The eco-friendly disinfectant water machine for preparing a farm disinfectant water according to claim 1, wherein The environmentally-friendly disinfection water machine also includes a water inlet (501) and a water outlet (502) on the back of the machine body (5); the water inlet (501) is used to supply the water used in the reaction in the electrolytic cell (1), and the water outlet (502) is used to concentrate and discharge the waste water generated in the electrolysis process or the overflow water in the storage unit (2).