An environmental sterilization instrument with an acidic electrolytic water generating device
By designing an acidic electrolyzed water generation device in the disinfection device, and using an ion-exchange membrane to separate the yin and yang chambers, acidic electrolyzed water with hypochlorous acid as the main bactericidal component is generated. This solves the problems of sodium hypochlorite solution's damage to the human body and limited disinfection ability in existing disinfection devices, and achieves a highly efficient and safe disinfection effect.
Patent Information
- Application Number
- CN202211539406.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-02
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2042-12-02
AI Technical Summary
The sodium hypochlorite solution used in existing disinfection devices is alkaline, which can easily cause harm to the human body. It has limited disinfection capabilities and is also costly, making it difficult to effectively disinfect food or skin surfaces.
Design an environmental disinfection device with an acidic electrolyzed water generation unit. The device uses an ion exchange membrane to separate the ion exchange chambers and generates acidic electrolyzed water with hypochlorous acid as the main bactericidal component through an electrolysis component for disinfection.
The generated acidic electrolyzed water has a high bactericidal effect, is almost tasteless and odorless, and is suitable for disinfection of medical devices, utensils, food, and human skin surfaces, reducing maintenance and usage costs.
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Figure CN115789848B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of sterilization and disinfection instruments, and in particular to an environmental sterilization and disinfection instrument with an acidic electrolytic water generating device. BACKGROUND
[0002] With the improvement of people's awareness of health and safety, more and more people pay attention to regular disinfection and cleaning of home, office and other areas. General cleaning can keep the environment clean, but it cannot kill bacteria and viruses in the environment. Therefore, cleaners use a large amount of disinfectant to disinfect, but this disinfection method is high in cost.
[0003] Therefore, the market has launched an atomizing type environmental sterilization and disinfection instrument that can continuously release sterilization and disinfection liquid, such as the atomizing type environmental sterilization and disinfection instrument disclosed in patent No. CN202221238364.X. This sterilization and disinfection instrument uses an electrolysis assembly to electrolyze sodium chloride solution into sodium hypochlorite solution in a separate cavity, and then uses an ultrasonic atomizer to change the sodium hypochlorite solution into water mist and spray it into the environment air, thereby conveniently sterilizing and disinfecting the environment.
[0004] However, sodium hypochlorite solution is an alkaline solution that can easily cause damage to the human body and cannot be directly applied to food or the surface of the skin for sterilization and disinfection, and its sterilization and disinfection capacity is limited. Therefore, further improvement is needed. SUMMARY
[0005] The present application aims to at least solve one of the technical problems existing in the prior art. To this end, the present application proposes an environmental sterilization and disinfection instrument with an acidic electrolytic water generating device.
[0006] An embodiment of the present application adopts the technical solution to solve its technical problem: an environmental sterilization and disinfection instrument with an acidic electrolytic water generating device, comprising: a generating device base shell, an electrolysis assembly, a positive tank and a negative tank.
[0007] The generating device base shell can separate the negative tank and the positive tank. The generating device base shell is provided with a communication port, and the electrolysis assembly is installed in the communication port.
[0008] The electrolysis assembly comprises an ion separation membrane, an anode sheet and a cathode sheet. The ion separation membrane can block the communication port to separate the negative tank and the positive tank. The anode sheet is located on the side of the ion separation membrane close to the positive tank, and the cathode sheet is located on the side of the ion separation membrane close to the negative tank. The anode sheet and the cathode sheet are electrically connected to the control center through a control line.
[0009] Optionally, the electrolysis assembly further comprises an electrolysis shell seat, and the ion separation membrane, the anode sheet and the cathode sheet are installed in the electrolysis shell seat. The electrolysis shell seat is detachably installed in the communication port.
[0010] Optionally, the electrolytic shell seat is provided with a recess structure, and the ion diaphragm is placed in the recess structure; the electrolytic shell seat is detachably provided with a compression ring, and the compression ring can compress the ion diaphragm against the electrolytic shell seat.
[0011] Optionally, a plurality of connecting holes are arranged around the outer edge of the recess structure; a plurality of avoiding holes are formed in the ion diaphragm corresponding to the connecting holes; a plurality of locking mounting parts are formed in the compression ring corresponding to the connecting holes; a locking part can be mounted in the locking mounting part, pass through the avoiding hole and be locked in the connecting hole.
[0012] Optionally, the electrolytic shell seat is detachably provided with an electrolytic shell cover, and the electrolytic shell cover is sleeved outside the recess structure and can cover the ion diaphragm.
[0013] Optionally, the communication port is provided in a cylindrical structure, and a limiting protrusion is arranged outside; the electrolytic shell seat is provided with a cylindrical annular cylinder on the side facing the communication port; the annular cylinder is provided with a limiting groove;
[0014] The annular cylinder can be closely sleeved outside the communication port; the annular cylinder is rotated and approached to the generating device base shell, so that the limiting protrusion slides relative to the limiting groove and abuts against the end of the limiting groove;
[0015] A sealing gasket is arranged between the communication port and the electrolytic shell seat.
[0016] Optionally, the generating device base shell is provided in a long hollow cylindrical structure; a cover is detachably mounted on the top of the generating device base shell and can cover the inner cavity of the generating device base shell.
[0017] Optionally, the electrolytic shell seat is provided with an electrode mounting groove, which can be used for mounting an electrode connecting part; the electrode mounting groove can be subjected to potting treatment.
[0018] Optionally, the environmental disinfection instrument is further provided with a body; the body is provided with a water tank, a first water pump and an atomization chamber;
[0019] The generating device base shell is mounted on the water tank, so that the water tank is divided into the positive tank and the negative tank; the first water pump can pump the solution in the positive tank to the atomization chamber, and the atomization chamber is provided with an atomization assembly and a blowing assembly; the atomization chamber is connected with a mist outlet.
[0020] Optionally, the body is provided with a wastewater chamber, the wastewater chamber is communicated with the negative tank through a drain pipe, the solution in the negative tank can be pumped to the wastewater chamber, and the body is further provided with a second water pump, the second water pump is communicated with the inner cavity of the generating device base shell through a water supplement pipe, and the second water pump can pump the solution in the positive tank to the negative tank.
[0021] Please refer to the national standard "GB 28234-2020 / acidic electrolytic water generator health requirements" for definition and explanation. Acidic electrolytic water is an acidic water solution with hypochlorous acid as the main bactericidal component. The pH of acidic electrolytic water is 2-3, and the pH of slightly acidic electrolytic water is 5-6.5. Compared with sodium hypochlorite solution, the bactericidal effect is high, the solution is acidic, almost odorless and odorless, and can be widely used in medical treatment, instruments, food materials and surface disinfection of human skin.
[0022] Acidic electrolytic water is obtained by adding sodium chloride into an electrolytic cell with an ion separation membrane. The generation principle is as follows: a proper amount of low-concentration sodium chloride solution is added into an ion separation membrane electrolytic cell, and through electrolysis, chlorine ions generate chlorine gas at the anode side, and chlorine gas reacts with water to generate hypochlorous acid and hydrochloric acid. At the same time, water is electrolyzed at the anode to generate oxygen and hydrogen ions. By changing the ratio of sodium chloride solution and reaction time, the product can be changed into acidic electrolytic water or slightly acidic electrolytic water.
[0023] The beneficial effects of the present application are as follows: the negative compartment and the positive compartment are separated by the generation device base shell, and one side of the generation device is provided with a communication port, and the communication port is integrally provided with an electrolysis device; the ion separation membrane has a positive compartment and a negative compartment on both sides, and an anode plate is arranged on one side of the positive compartment, and a cathode plate is arranged on one side of the negative compartment. The positive compartment and the negative compartment are filled with sodium chloride solution, and the electrolysis method of the separation membrane type electrolytic cell is used to form an acidic electrolytic water solution with hypochlorous acid as the main bactericidal component in the positive compartment. The user can take out the acidic electrolytic water solution of the positive compartment for disinfection, or match the atomization function of the environmental disinfection instrument to atomize and disinfect the environment. Compared with sodium hypochlorite solution, the bactericidal effect is high, the solution is acidic, almost odorless and odorless, and can be widely used in medical treatment, instruments, food materials and surface disinfection of human skin.
[0024] In order to make the above-mentioned purpose, features and advantages of the present application more obvious and easy to understand, the following preferred embodiments are described in detail below, and the accompanying drawings are described as follows. BRIEF DESCRIPTION OF DRAWINGS
[0025] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:
[0026] Figure 1 The structure diagram of the acidic electrolytic water generation device of one embodiment of the present application is shown in the figure.
[0027] Figure 2 The sectional view of the acidic electrolytic water generation device in the figure. Figure 1
[0028] Figure 3 The sectional view of the acidic electrolytic water generation device in the figure. Figure 1 Decomposition schematic view of the weakly acidic electrolyzed water generating device;
[0029] Figure 4 For Figure 1 Schematic view of the structure of the electrolysis assembly and the electrode connecting piece;
[0030] Figure 5 Schematic view of the structure of the environment sterilization instrument applying the weakly acidic electrolyzed water generating device according to one embodiment of the present application;
[0031] Figure 6 For Figure 5 Schematic view of the environment sterilization instrument according to one embodiment of the present application;
[0032] Figure 7 For Figure 5 Schematic view of the environment sterilization instrument according to one embodiment of the present application.
[0033] Main element symbol explanation:
[0034] 10, generating device base shell; 11, communication port; 111, limiting protrusion; 12, cover; 20, electrolysis assembly; 21, ion diaphragm; 211, avoiding hole; 22, anode sheet; 23, cathode sheet; 24, electrolysis shell seat; 241, recess structure; 242, connecting hole; 243, electrode installation groove; 244, installation protrusion; 25, pressing ring; 251, locking installation part; 26, electrolysis shell cover; 27, annular cylinder; 271, limiting groove; 28, sealing gasket; 30, positive storehouse; 40, negative storehouse; 50, machine body; 51, water tank; 52, first water pump; 53, atomization chamber; 54, mist outlet; 55, wastewater chamber; 56, drain pipe; 57, second water pump; 58, water replenishment pipe; 59, control line; 60, electrode connecting piece; 61, metal connecting sheet; 62, elastic gasket. DETAILED DESCRIPTION
[0035] This part will describe the specific embodiments of the present application in detail, the preferred embodiments of the present application are shown in the drawings, the role of the drawings is to supplement the description of the text part with graphics, so that people can intuitively and visually understand each technical feature and the overall technical scheme of the present application, but it cannot be understood as a limitation on the protection scope of the present application.
[0036] In the description of the present application, the meaning of multiple is two or more, greater than, less than, more than, etc. is not included in the number, above, below, etc. is included in the number. If it is described as first, second, it is only used for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or implicitly indicating the sequence of indicated technical features.
[0037] In the description of the present application, it should be understood that the orientation description, such as the orientation or position relationship indicated by the upper, lower, front, rear, left, right and the like, is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0038] In the present application, unless otherwise explicitly defined, the words "arrangement", "installation", "connection" and the like should be understood broadly, for example, they can be directly connected or indirectly connected through an intermediate medium; they can be fixedly connected or detachably connected, or they can be integrally formed; they can be mechanically connected; they can be the internal communication of two elements or the interaction relationship between two elements. The person skilled in the art can reasonably determine the specific meaning of the above words in the present application in combination with the specific content of the technical solution.
[0039] Embodiments
[0040] Reference Figures 1 to 7 The present application provides an environmental sterilization instrument with an acidic electrolytic water generating device, comprising: a generating device base shell 10, an electrolysis assembly 20, a positive tank 30 and a negative tank 40;
[0041] The generating device base shell 10 can separate the negative tank 40 and the positive tank 30; the generating device base shell 10 is provided with a communication port 11, and the electrolysis assembly 20 is installed in the communication port 11.
[0042] The electrolysis assembly 20 comprises an ion diaphragm 21, an anode sheet 22 and a cathode sheet 23; the ion diaphragm 21 can block the communication port 11 to separate the negative tank 40 and the positive tank 30; the anode sheet 22 is located on the side of the ion diaphragm 21 close to the positive tank 30, and the cathode sheet 23 is located on the side of the ion diaphragm 21 close to the negative tank 40; the anode sheet 22 and the cathode sheet 23 are electrically connected with the control center through a control line 59.
[0043] Please refer to the national standard "GB 28234-2020 / acidic electrolytic water generator health requirements" for definition and explanation. Acidic electrolytic water is an acidic aqueous solution with hypochlorous acid as the main bactericidal component, and the pH of acidic oxidative potential water is 2-3, and the pH of slightly acidic electrolytic water is 5-6.5. Compared with sodium hypochlorite solution, the bactericidal effect is high, the solution is acidic, almost odorless and odorless, and can be widely used in medical treatment, instruments, food materials and surface sterilization of human skin.
[0044] The acid electrolytic water is generated by adding sodium chloride into an electrolytic cell with an ion diaphragm 21, and the generation principle is that a proper amount of low-concentration sodium chloride solution is added into the electrolytic cell with the ion diaphragm 21, and through electrolysis, chlorine ions generate chlorine gas at the anode side, the chlorine gas reacts with water to generate hypochlorous acid and hydrochloric acid, and at the same time, water is electrolyzed at the anode to generate oxygen and hydrogen ions; by changing the ratio of the sodium chloride solution and the reaction time, the product can be changed into acidic electrolytic water or slightly acidic electrolytic water.
[0045] In the present application, the negative compartment 40 and the positive compartment 30 are separated by the generating device base shell 10, and one side of the generating device is provided with a communication port 11 which is integrally provided with an electrolytic device; the ion diaphragm 21 has the positive compartment 30 and the negative compartment 40 on both sides, and the anode sheet 22 is arranged on one side of the positive compartment 30, and the cathode sheet 23 is arranged on one side of the negative compartment 40. The positive compartment 30 and the negative compartment 40 are filled with sodium chloride solution, and the diaphragm type electrolytic cell electrolysis method is used to form an acidic electrolytic water solution with hypochlorous acid as the main bactericidal component in the positive compartment 30, so that the user can take out the acidic electrolytic water solution of the positive compartment 30 for sterilization, or match the atomization function of the environmental sterilization instrument to atomize and sterilize the environment. Compared with sodium hypochlorite solution, the sterilization effect is high, the solution is acidic, almost odorless and odorless, and can be widely used in medical treatment, instruments, food materials and surface sterilization of human skin.
[0046] The acidic electrolytic water generating device on the market is generally applied to industrial production or large-scale sterilization system. It is matched with a diaphragm type electrolytic cell, the electrolytic cell has an anode area and a cathode area on both sides, the input end continuously sends in sodium chloride solution, and after electrolysis, acidic electrolytic water and cathode waste water are output from the output end. This kind of acidic electrolytic water generating device is difficult to be converted and applied to household small-sized equipment for use, and the electrolytic cell diaphragm is also fixedly installed, and generally needs to be replaced as a whole after long-term use, so the maintenance and operation cost is high.
[0047] The acidic electrolytic water generating device of the present application can be used flexibly. For example, it can be installed in a flowing water device, and the generating device base shell 10 is used to separate the positive compartment 30 or the negative compartment 40, and the electrolytic assembly 20 can continuously convert the flowing sodium chloride solution into acidic electrolytic water for use. For another example, in a stationary container, the generating device base shell 10 is installed in the container, the container cavity is divided into the positive compartment 30 or the negative compartment 40, and the electrolytic assembly 20 can convert the sodium chloride solution in the container into acidic electrolytic water for sterilization. Further, for another example, the container is upgraded to an environmental sterilization instrument with atomization function, and the generated acidic electrolytic water can be atomized and blown to the surrounding environment for sterilization, which has strong sterilization and disinfection capacity, the sodium chloride solution is easy to obtain, and the use is also convenient. The generating device base shell 10 and the electrolytic assembly 20 have simple overall structure and small size, so that the acidic electrolytic water can be applied to more application scenes.
[0048] In some embodiments, the electrolysis assembly 20 further comprises an electrolysis shell seat 24, the ion diaphragm 21, the anode sheet 22 and the cathode sheet 23 are installed on the electrolysis shell seat 24; the electrolysis shell seat 24 is detachably installed on the communication port 11. The electrolysis shell seat 24 is detachably installed on the communication port 11, which can facilitate the disassembly of the production device base shell and the electrolysis assembly 20 for cleaning and maintenance. When the electrolysis assembly 20 is damaged, only the ion diaphragm 21 and other single parts need to be replaced, or the entire electrolysis assembly 20 can be replaced, which effectively reduces the maintenance and use cost.
[0049] Specifically, the electrolysis shell seat 24 is provided with a recess structure 241, and the ion diaphragm 21 is placed in the recess structure 241; the electrolysis shell seat 24 is detachably installed with a compression ring 25, and the compression ring 25 can tightly press the ion diaphragm 21 against the electrolysis shell seat 24. The ion diaphragm 21 is tightly pressed by the compression ring 25, which is convenient to install and disassemble. At the same time, the ion diaphragm 21 is tightly pressed around the recess structure 241, and the sealing performance is good.
[0050] Further, a sealing ring can be further provided on the recess structure 241, which is matched with the compression ring 25, and can further maintain the tightness and sealing performance of the ion diaphragm 21.
[0051] In some embodiments, the outer edge of the recess structure 241 is provided with a plurality of connecting holes 242; the ion diaphragm 21 is provided with a plurality of avoiding holes 211 corresponding to the connecting holes 242; the compression ring 25 is provided around the outer edge of the recess structure 241, and is provided with a plurality of locking mounting parts 251 corresponding to the connecting holes 242; a locking part can be installed on the locking mounting part 251, passes through the avoiding hole 211 and is locked in the connecting hole 242. The locking part can be a bolt, a screw or other commonly used locking part in the prior art.
[0052] Further, the electrolysis shell seat 24 is detachably installed with an electrolysis shell cover 26, which is sleeved outside the recess structure 241 and can cover the ion diaphragm 21. The electrolysis shell cover 26 can protect the recess structure 241 and the installed ion diaphragm, the anode sheet 22 and the cathode sheet 23.
[0053] Specifically, a water passing groove is provided on the electrolysis shell cover 26; a plurality of water passing grooves are provided in pairs, which can make the solution outside form a convection flow and contact the electrode sheet more frequently, thereby improving the efficiency of generating acidic electrolytic water.
[0054] In the embodiment, the communication port 11 is provided in a cylindrical structure, and a limiting protrusion 111 is arranged outside; the electrolytic shell seat 24 is provided with a cylindrical annular cylinder 27 on the side facing the communication port 11; the annular cylinder 27 is provided with a limiting groove 271; the annular cylinder 27 can be closely sleeved on the outside of the communication port 11; the annular cylinder 27 rotates and approaches the generating device base shell 10, so that the limiting protrusion 111 slides relative to the limiting groove 271 and abuts against the end of the limiting groove 271. The limiting groove 271 is provided in a reverse hook structure, and when the limiting protrusion 111 moves to the reverse hook end of the limiting groove 271, it can abut against the limiting groove 271, thereby maintaining the locking and fixing of the electrolytic shell seat 24 and the communication port 11.
[0055] Further, the communication port 11 and the electrolytic shell seat 24 are provided with a sealing gasket 28. The sealing gasket 28 has elasticity, and when the electrolytic shell seat 24 is pressed against the communication port 11, the sealing gasket 28 abuts between the communication port and the electrolytic shell seat 24, thereby improving the waterproof performance. Meanwhile, the elastic force of the sealing gasket 28 provides an axial force for the electrolytic shell seat 24 to separate from the communication port, and the force makes the limiting protrusion 111 abut firmly in the limiting groove 271.
[0056] In some embodiments, the generating device base shell 10 is provided in a long-strip hollow cylindrical structure; with this arrangement, only the bottom of the generating device needs to be locked in a container or a flowing water channel, and the outer wall of the generating device base shell 10 can be used to divide the inner cavity of the container into two cavities, which are used as the male chamber 30 and the female chamber 40 for electrolysis operation, respectively.
[0057] Further, the top of the generating device base shell 10 is detachably provided with a cover 12, which can cover the inner cavity of the generating device base shell 10. In the atomizer and other environmental disinfection instruments, the height of the cavity is generally higher than the height of the generating device base shell 10, so that the inner cavity can be covered by the cover 12, thereby preventing the male chamber 30 and the female chamber 40 from being communicated.
[0058] The preferred use of the acidic electrolytic water generating device is to be mounted on a disinfection instrument with atomization function.
[0059] In the embodiment, the electrolytic shell seat 24 is provided with an electrode mounting groove 243, which can be used to mount the electrode connecting piece 60; the electrode mounting groove 243 can be subjected to potting treatment. The electrode mounting groove 243 is filled with a filler such as silicone or epoxy resin, which effectively protects the electrode connecting piece 60 and effectively prevents the corrosion of the circuit by the sodium chloride solution and the acidic solution.
[0060] Specifically, the electrode connecting piece 60 is composed of a metal bolt, a screw and a metal connecting piece 61 locked between the bolt and the screw. An elastic gasket 62 can be added to keep the installation firm. Preferably, the elastic gasket 62 is a plastic gasket, which has strong corrosion resistance.
[0061] Further, in some embodiments, a mounting boss 244 structure is arranged at the bottom of the electrode mounting groove 243, and the inner and outer grooves of the mounting boss 244 structure are communicated; the mounting boss 244 enables the existence of the encapsulation filling at the bottom of the electrode mounting groove 243 after encapsulation, and the encapsulation filling can flow and fill below the elastic gasket 62, and can better wrap the electrode connecting piece 60.
[0062] In the embodiment, the environment sterilization instrument is further provided with a body 50; the body 50 is provided with a water tank 51, a first water pump 52 and an atomization chamber 53; the generating device base shell 10 is installed on the water tank 51, and the water tank 51 can be divided to form the positive tank 30 and the negative tank 40; the first water pump 52 can pump the solution in the positive tank 30 to the atomization chamber 53, and the atomization chamber 53 is provided with an atomization assembly and a blowing assembly; and the atomization chamber 53 is connected with a mist outlet 54. The generating device base shell 10 divides the water tank 51 to form the positive tank 30 and the negative tank 40; the user only needs to add the filling sodium chloride solution into the water tank 51, and then opens the electrolysis assembly 20 to work through the control center, so that the acidic electrolytic water solution is formed in the positive tank 30, and then the first water pump 52 is used to pump the acidic electrolytic water into the atomization chamber 53, so that the atomization assembly can convert the acidic electrolytic water solution in the atomization chamber 53 into water mist, and the blowing assembly can send the water mist out of the mist outlet 54 to the external environment to sterilize and disinfect the surrounding environment.
[0063] The atomization assembly and the blowing assembly in the atomization chamber 53 can use the ultrasonic atomization sheet of the existing atomizer or other existing atomizer structures and the existing blowing structure, which are not regarded as the elements of the present application.
[0064] In some embodiments, the body 50 is provided with a wastewater chamber 55, the wastewater chamber 55 is communicated with the negative tank 40 through a drain pipe 56, and the solution in the negative tank 40 can be pumped to the wastewater chamber 55. After one round of electrolysis, the solution in the negative tank 40 is converted into waste liquid which cannot continue to be electrolyzed or whose electrolysis capacity is poor, and needs to be discharged and then replenished. The wastewater chamber 55 can pump out the waste water in the negative tank 40 through a water pump, and after the acidic electrolytic water solution in the positive tank 30 is consumed or mostly consumed, new filling sodium chloride solution can be supplemented into the positive tank 30 and the negative tank 40.
[0065] In some embodiments, the body 50 is further provided with a second water pump 57, the second water pump 57 is communicated with the inner cavity of the generating device base shell 10 through a water supplement pipe 58, and the second water pump 57 can pump the solution in the positive tank 30 to the negative tank 40. When new sodium chloride solution needs to be supplemented, the second water pump 57 can directly pump the sodium chloride solution in the positive tank 30 to the negative tank 40, so that the sodium chloride solution can be supplemented, and at the same time, the waste water in the negative tank 40 can be discharged to the wastewater chamber 55 through the drain pipe 56.
[0066] Specifically, the water outlet end of the water supplement pipe 58 extends into the bottom end of the female chamber 40, and the water inlet end of the drain pipe 56 is arranged near the top end of the female chamber 40. The water outlet end of the water supplement pipe 58 is provided with a one-way valve nozzle to prevent backflow of waste water in the chamber.
[0067] In specific use of the environment sterilization device, the water tank 51 is filled with sodium chloride solution and stored in the male chamber 30, and the second water pump 57 can pump part of the sodium chloride solution to the female chamber 40. Through the diaphragm electrolytic cell electrolysis method, the acid electrolytic water solution can be formed in the male chamber 30, and then sent to the atomization chamber 53 by the first water pump 52, and the atomization assembly and the air blowing assembly can form the water mist rich in acid electrolytic water and blow it to the environment for sterilization. After a round of work, the acid electrolytic water solution in the male chamber 30 is basically consumed, and the waste water with poor electrolytic capacity is formed in the female chamber 40. By supplementing the sodium chloride solution to the water tank 51, and opening the second water pump 57 again, the sodium chloride solution in the male chamber 30 can be supplemented to the female chamber 40, and the waste water in the female chamber 40 can be discharged through the drain pipe 56.
[0068] It should be understood that the male chamber 30 and the female chamber 40 of the present application can be replaced, and the circulation mode of the water pump and the waterway can be changed according to the use environment, and the positive and negative electrode plates can be switched, so that the male chamber 30 and the female chamber 40 can be used alternately.
[0069] Of course, the present application is not limited to the above-mentioned embodiments, and those skilled in the art can make equivalent modifications or replacements without departing from the spirit of the present application, and these equivalent modifications and replacements are all included in the scope defined by the claims of the present application.
Claims
1. An environmental disinfection instrument with an acidic electrolytic water generating device, characterized in that, The utility model relates to a generating device, including: Generating device base shell (10), electrolytic assembly (20), positive storehouse (30), female storehouse (40) and organism (50); The organism (50) is provided with water tank (51), first water pump (52) and atomization chamber (53), the generating device base shell (10) is installed in water tank (51), is used for separating water tank (51) and form positive storehouse (30) and female storehouse (40), the generating device base shell (10) is opened with the communicating port (11), electrolytic assembly (20) is installed in the communicating port (11); The electrolytic assembly (20) includes ion diaphragm (21), anode sheet (22) and cathode sheet (23), the ion diaphragm (21) is used for blocking the communicating port (11), to separate female storehouse (40) and positive storehouse (30), the anode sheet (22) is located in the ion diaphragm (21) near positive storehouse (30) one side, the cathode sheet (23) is located in the ion diaphragm (21) near female storehouse (40) one side, the anode sheet (22) and cathode sheet (23) are electrically connected with control center through control line (59); The electrolytic assembly (20) further includes electrolytic shell seat (24), the ion diaphragm (21), anode sheet (22) and cathode sheet (23) are installed in electrolytic shell seat (24), electrolytic shell seat (24) is detachably installed in the communicating port (11), electrolytic shell seat (24) is provided with electrode installation groove (243), is used for installing electrode connecting piece (60), electrode installation groove (243) is used for carrying out seal processing; The generating device base shell (10) is provided as a long hollow cylindrical structure, and a cover (12) is detachably mounted on the top of the generating device base shell (10) to cover the inner cavity of the generating device base shell (10).
2. The environmental disinfection apparatus with an acidic electrolyzed water generating device according to claim 1, characterized in that: The electrolytic shell seat (24) is provided with a recess structure (241), and the ion diaphragm (21) is placed in the recess structure (241). The electrolytic shell seat (24) is detachably provided with a compression ring (25), and the compression ring (25) is used to compress the ion diaphragm (21) against the electrolytic shell seat (24).
3. The environmental disinfection apparatus with acidic electrolyzed water generating device according to claim 2, characterized in that: The outer edge of the recess structure (241) is provided with a plurality of connecting holes (242) at intervals. The ion diaphragm (21) is provided with a plurality of avoiding holes (211) corresponding to the connecting holes (242). The compression ring (25) is provided around the outer edge of the recess structure (241) and is provided with a plurality of locking installation parts (251) corresponding to the connecting holes (242). A locking part is installed in the locking installation part (251), passes through the avoiding hole (211), and is locked in the connecting hole (242).
4. The environmental disinfection apparatus with acidic electrolyzed water generating device according to claim 2, characterized in that: The electrolytic shell seat (24) is detachably provided with an electrolytic shell cover (26), and the electrolytic shell cover (26) is sleeved outside the recess structure (241) to cover the ion diaphragm (21).
5. The environmental disinfection apparatus with acidic electrolyzed water generating device according to claim 1, characterized in that: The communication port (11) is provided in a cylindrical structure, and a limiting bump (111) is arranged outside; the electrolytic shell seat (24) is provided with a cylindrical annular cylinder (27) on the side facing the communication port (11); the annular cylinder (27) is provided with a limiting groove (271); The annular cylinder (27) is fitted outside the communication port (11); the annular cylinder (27) rotates and approaches the generating device base shell (10), so that the limiting bump (111) slides relative to the limiting groove (271) and abuts against the end of the limiting groove (271); The communication port (11) and the electrolytic shell seat (24) are provided with a sealing gasket (28) therebetween.
6. The environmental disinfection instrument with an acidic electrolytic water generating device according to any one of claims 1-5, characterized in that: The first water pump (52) is used to pump the solution in the positive tank (30) to the atomization chamber (53), the atomization chamber (53) is provided with an atomization assembly and a blowing assembly; the atomization chamber (53) is connected with a mist outlet (54).
7. The environmental disinfection apparatus with acidic electrolyzed water generating device according to claim 6, characterized in that: The machine body (50) is provided with a wastewater chamber (55), the wastewater chamber (55) is communicated with the negative tank (40) through a drain pipe (56), and the solution in the negative tank (40) can be pumped to the wastewater chamber (55); The machine body (50) is also provided with a second water pump (57), the second water pump (57) is communicated with the inner cavity of the generating device base shell (10) through a water supplement pipe (58), and the second water pump (57) is used to pump the solution in the positive tank (30) to the negative tank (40).
Citation Information
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