Disinfection sprinkling can and mop
By designing a disinfection spray can to convert water into oxidized groups, the problems of low efficiency and irritating odors of traditional mops and chemical cleaners are solved, and efficient item cleaning and floor disinfection are achieved, suitable for homes and public places.
Patent Information
- Application Number
- CN202510642610.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-08-15
AI Technical Summary
Traditional mops and chemical cleaners have problems of inefficiency, irritating odors and unsuitable for home use during cleaning and disinfection, making it difficult to meet the high standard of hygiene needs of modern homes and public places.
A disinfection spray can is designed, which includes an outer shell, an oxidation group generation module and a water pump. The oxidation group generation module is converted into oxidation group water and is transported to the nozzle for disinfection. The oxidation group has sterilization properties and can be installed on a mop for floor cleaning and disinfection.
It realizes effective cleaning and deep sterilization of the surface of the item, avoids the irritating odor of chemical detergents, and improves the cleaning effect and hygiene and safety of the ground.
Smart Images

Figure CN120477668A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of ground disinfection. Background Art
[0002] As people's health awareness continues to improve, their demands for quality of life are becoming more diverse, especially the requirements for the cleanliness of the living environment are increasing. Traditional floor cleaning methods can no longer meet the high standards of hygiene in modern homes and public places.
[0003] The main structure of an existing mop includes a mop handle and a mop head, which rely on physical wiping and chemical detergents to clean the floor. When in use, the mop needs to be repeatedly soaked, wrung out, and then wiped. Physical wiping to remove surface stains has a poor cleaning effect. Alternatively, chemical detergents such as hypochlorous acid can be used for wiping. However, conventional chemical disinfectants are prone to produce irritating odors during use, which may cause respiratory discomfort to family members, especially infants and young children. Therefore, it is difficult to meet the needs of modern homes and commercial places. Summary of the Invention
[0004] Based on the above-mentioned problems, it is necessary to provide a kind of disinfection spray pot.
[0005] A disinfection spray pot, comprising an outer shell, an oxidizing radical generating module and a water pump;
[0006] The outer shell is provided with a nozzle;
[0007] The outer shell includes a water tank and a working chamber, and the oxidized group generating module and the water pump are arranged in the working chamber;
[0008] The water tank is connected to the water pump through a water suction pipe, the water pump is connected to the oxidizing group generating module, and the oxidizing group generating module is connected to the nozzle; or the water tank is connected to the oxidizing group generating module through a water suction pipe, the oxidizing group generating module is connected to the water pump, and the water pump is connected to the nozzle;
[0009] The oxidizing radical generating module is used to generate oxidizing radical water.
[0010] In one embodiment, the outer shell includes a first shell and a second shell, the first shell forms the working chamber, the second shell forms the water tank, and the first shell and the second shell are detachably connected.
[0011] In one embodiment, the first end of the water suction pipe is connected to a water pump or an oxidizing radical generating module, and the first shell is connected to the second shell so that the second end of the water suction pipe is disposed in the water tank.
[0012] In one embodiment, a gravity ball is provided at the second end of the water suction pipe. The gravity ball is provided with a water inlet hole, and the water inlet hole is communicated with the interior of the water suction pipe.
[0013] In one embodiment, the nozzle is rotatably disposed on the outer shell.
[0014] In one embodiment, the oxidizing radical generating module includes at least one of an ozone water generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidizing radical generator, and an acidic water generator.
[0015] In one embodiment, the oxidizing radical generating module includes a plurality of electrolysis units, each of which includes a first electrode, an electrolyte membrane, and a second electrode stacked in sequence. The electrolysis unit converts water into oxidizing radical-containing water through low-pressure electrolysis.
[0016] In one embodiment, the electrode material of the first electrode and / or the second electrode is conductive silicon, conductive diamond, or one of titanium, platinum, lead, tantalum, iridium, palladium, antimony or oxides thereof.
[0017] A mop comprises a mop body and any one of the above-mentioned disinfectant spray bottles, wherein the disinfectant spray bottle is detachably mounted on the mop body.
[0018] In one embodiment, the mop body includes a mop rod and a mop plate, one end of the mop rod is movably connected to the mop plate, a water outlet is provided on the mop plate, and the disinfectant spray bottle supplies oxidizing radical water to the water outlet.
[0019] In one embodiment, the disinfectant spray bottle is installed on the drag plate, and the nozzle is connected to the water outlet.
[0020] In one embodiment, the tow bar has a water channel, and the disinfectant spray bottle is installed on the tow bar so that the nozzle is connected to a first end of the water channel, and a second end of the water channel is connected to the water outlet.
[0021] The beneficial effects of the present invention are:
[0022] The water in the water tank is converted into water containing oxidized groups through the oxidized group generation module. The oxidized group-containing water is rich in oxidized groups. The oxidized groups have oxidizing and bactericidal properties and can effectively kill bacteria, viruses and other microorganisms. The oxidized group-containing water is transported to the nozzle through a water pump and used externally or transported outward through the nozzle.
[0023] Among them, if the oxidizing group generating module is set at the rear end of the water pump, the water containing oxidizing groups can sterilize and disinfect the pipelines and the inside of the pump, prevent the growth of bacteria and viruses inside the pipelines and water pumps and contaminate the water body, and ensure the hygiene of the internal pipelines of the disinfection spray bottle.
[0024] The disinfecting spray bottle of the present application can be used directly by hand, spraying outwards through the nozzle to use on objects, or the disinfecting spray bottle can be installed in an external electrical appliance. While using the electrical appliance, the water containing oxidizing groups generated by the disinfecting spray bottle can be used for sterilization and disinfection, which can effectively clean and disinfect the surface of objects, achieving a synergistic effect of water cleaning and deep sterilization. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0026] Figure 1 This is a structural schematic diagram of a disinfectant spray bottle according to an embodiment of the present application.
[0027] Figure 2 This is a schematic structural diagram of a mop according to an embodiment of the present application.
[0028] Figure 3 Schematic diagram of the structure of an oxidized group generating module according to one embodiment of the present application. DETAILED DESCRIPTION
[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0030] like Figure 1-2 As shown, it is a disinfection spray bottle of a preferred embodiment of the present invention, specifically comprising: an outer shell 6, an oxidizing group generating module 3 and a water pump 8.
[0031] The outer shell 6 is provided with a nozzle 5 .
[0032] The outer shell 6 includes a water tank 72 and a working chamber 71 . The oxidizing radical generating module 3 and the water pump 8 are disposed in the working chamber 71 .
[0033] The water tank 72 is connected to the water pump 8 via a water suction pipe, the water pump 8 is connected to the oxidizing group generating module 3, and the oxidizing group generating module 3 is connected to the nozzle 5. Alternatively, the water tank 72 is connected to the oxidizing group generating module 3 via a water suction pipe, the oxidizing group generating module 3 is connected to the water pump 8, and the water pump 8 is connected to the nozzle 5. In other words, the water tank 72, the water pump 8, the oxidizing group generating module 3, and the nozzle 5 are connected in sequence, or the water tank 72, the oxidizing group generating module 3, the water pump 8, and the nozzle 5 are connected in sequence.
[0034] The oxidizing radical generating module 3 is used to generate oxidizing radical water.
[0035] The beneficial effects of this application are:
[0036] The water in the water tank 72 is converted into oxidizing group-containing water through the oxidizing group generating module 3. The oxidizing group-containing water is rich in oxidizing groups. The oxidizing groups have oxidizing and bactericidal properties and can effectively kill bacteria, viruses and other microorganisms. The oxidizing group-containing water is transported to the nozzle 5 through the water pump 8 and is used externally or transported outward through the nozzle 5.
[0037] Among them, if the oxidizing group generating module 3 is arranged at the rear end of the water pump 8, the oxidizing group-containing water can sterilize and disinfect the pipeline and the inside of the pump, prevent bacteria and viruses from breeding inside the pipeline and the water pump 8 and contaminating the water body, and ensure the sanitary condition of the internal pipeline of the disinfecting spray bottle 4.
[0038] The disinfecting spray bottle 4 of the present application can be used directly by hand, and sprayed outward through the nozzle 5 to be used on objects, or the disinfecting spray bottle 4 can be installed in an external electrical appliance, and the oxidizing group-containing water generated by the disinfecting spray bottle 4 can be used for sterilization while the electrical appliance is used, which can effectively clean and disinfect the surface of objects, and achieve the synergistic effect of water cleaning and deep sterilization.
[0039] In one embodiment, the outer shell 6 includes a first shell 61 and a second shell 62, wherein the first shell 61 forms the working chamber 71, and the second shell 62 forms the water tank 72, and the first shell 61 and the second shell 62 are detachably connected. For example, the first shell 61 is an upper shell, and the second shell 62 is a lower shell. For another example, the first shell 61 is a lower shell, and the second shell 62 is an upper shell. For another example, the first shell 61 is a left shell, and the second shell 62 is a right shell. In addition, the first shell 61 is a right shell, and the second shell 62 is a left shell. In this embodiment, they are not listed one by one. In this embodiment, the first shell 61 and the second shell 62 are detachably connected, that is, the water tank 72 is detachably mounted on the first shell 61, and the disassembly structure can be conveniently filled with water or cleaned. It should be understood that in this embodiment, the nozzle 5 is rotatably arranged on the first shell 61.
[0040] In order to transport the water in the water tank 72 forward, in one embodiment, the first end of the water suction pipe is connected to the water pump 8 or the oxidizing group generating module 3, and the first shell 61 and the second shell 62 are connected so that the second end of the water suction pipe is set in the water tank 72, that is, the second end of the water suction pipe extends out of the first shell 61, and when the first shell 61 and the second shell 62 are connected, the second end of the water suction pipe is set in the water tank 72, and the water in the water tank 72 enters the water pump 8 or the oxidizing group generating module 3 through the water inlet pipe and is transported forward.
[0041] To facilitate the forward flow of water from the water tank 72, in one embodiment, a gravity ball is provided at the second end of the water suction pipe. The gravity ball has a water inlet hole that communicates with the interior of the water suction pipe. The gravity ball allows the water suction pipe to adjust its position within the water tank 72, allowing water to enter the water suction pipe through the water inlet hole and be transported forward. For example, if the first housing 61 is positioned below the second housing 62 (i.e., the water tank 72 is positioned above the working chamber 71), the gravity ball allows the water suction pipe to adjust its position within the water tank 72, thus avoiding difficulty in water intake.
[0042] In one embodiment, the nozzle 5 is rotatably mounted on the outer shell 6, so that the nozzle 5 can be adjusted in direction for use. When the disinfectant spray bottle 4 is installed in an external appliance for use, the direction of the nozzle 5 can also be conveniently adjusted to supply the oxidizing radical water.
[0043] Regarding the oxidizing radical generating structure, in one embodiment, the oxidizing radical generating module includes at least one of an ozone water generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidizing radical generator, and an acidic water generator. This oxidizing radical generating module can generate oxidizing radicals such as smoke, hypochlorous acid, and hydrogen peroxide, effectively killing microorganisms such as bacteria and viruses, achieving a synergistic effect of water cleaning and deep sterilization.
[0044] For example, the oxidizing radical generation module includes an ozone water generator. Ozone has oxidative bactericidal properties, effectively killing bacteria, viruses, and other microorganisms. After sterilization, ozone water is converted into normal water, making it non-toxic and more environmentally friendly. The ozone generator can be a high-voltage ionization ozone generator, an electrolytic ozone generator, or other ozone generator. Furthermore, the oxidizing radicals are non-toxic.
[0045] Regarding the oxidizing group generating structure, in one embodiment, the oxidizing group generating module includes a plurality of electrolysis units, each of which includes a first electrode 31, an electrolyte membrane 32, and a second electrode 33 stacked in sequence. The electrolysis units convert water into oxidizing group-containing water through low-voltage electrolysis. The oxidizing group-containing water generated by the electrolysis units through low-voltage electrolysis of water is rich in oxidizing groups, such as ozone, oxygen atoms, and hydroxyl radicals, which can effectively kill microorganisms such as bacteria and viruses, achieving a synergistic effect of water cleaning and deep sterilization.
[0046] For example, the electrolyte membrane 32 is a proton exchange membrane (PEM), which functions to provide a hydrogen ion channel, that is, the H generated by the first electrode 31. + The ions migrate to the second electrode 33 through the proton exchange membrane, thereby increasing the reaction rate and the product generation rate.
[0047] Regarding the electrolytic cell, in one embodiment, the electrode material of the first electrode 31 and / or the second electrode 33 is conductive silicon, conductive diamond, or one of titanium, platinum, lead, tantalum, iridium, palladium, and antimony, or their oxides. For example, the electrode material of the first electrode 31 and / or the second electrode 33 is conductive silicon or conductive diamond. In another example, the electrode material of the first electrode 31 and / or the second electrode 33 is one of titanium, platinum, lead, tantalum, iridium, palladium, and antimony, or their oxides.
[0048] Among them, the first electrode 31 and the second electrode 33 are determined by the power supply / voltage electrically connected to them. For example, the electrode materials of the first electrode 31 and the second electrode 33 are the same. Electrode conversion can be achieved by adjusting the power supply / voltage connected to them, thereby reducing the problem of scale such as calcium carbonate adhering to the electrode surface.
[0049] It should be understood that the embodiments of the present application do not limit the arrangement direction of the electrolysis unit. For example, the electrolysis unit can be arranged vertically, or horizontally. In this embodiment, all of these are not listed here.
[0050] It should be understood that the embodiments of the present application do not limit the direction of water flow at the water inlet, for example, the direction of water flow at the water inlet is perpendicular to the electrolysis unit, or the direction of water flow at the water inlet is parallel to the electrolysis unit.
[0051] It should be understood that the working chamber 71 is also provided with other electronic components required for operating the disinfectant spray bottle 4. For example, the working chamber 71 is also provided with a power supply 9, to which the oxidizing radical generating module 3 and the water pump 8 are electrically connected. Furthermore, the working chamber 71 is also provided with a circuit board 10, to which the water pump 8, the oxidizing radical generating module 3, and the power supply are electrically connected.
[0052] Preferably, the present application provides a mop comprising a mop body and a disinfectant spray bottle 4 as described above, the disinfectant spray bottle 4 being detachably mounted on the mop body. Water produced by the disinfectant spray bottle 4 is supplied to the mop via a nozzle 5, achieving both floor cleaning and disinfection, thereby enhancing floor cleaning effectiveness. Furthermore, the mop does not need to be repeatedly soaked and rehydrated, saving time and effort.
[0053] Regarding the structure of the mop, in one embodiment, the mop body includes a mop rod 1 and a drag plate 2, one end of the mop rod 1 is movably connected to the drag plate 2, and a water outlet is provided on the drag plate 2. The disinfectant spray bottle 4 supplies oxidizing group water to the water outlet, so that the water generated by the disinfectant spray bottle 4 is supplied to the water outlet through the nozzle 5. When the mop is used, the water outlet of the drag plate 2 sprays out oxidizing group-containing water, thereby achieving dual treatment of floor cleaning and sterilization, thereby improving the floor cleaning effect.
[0054] Regarding the structure of the mop, based on the above embodiment, for example, the disinfectant spray bottle 4 is mounted on the drag plate 2, and the nozzle 5 is connected to the water outlet. For example, the drag plate 2 has a first connecting port, the disinfectant spray bottle 4 is connected to the drag plate 2 so that the nozzle 5 is disposed in the first connecting port, and the drag plate 2 has a water flow channel so that the first connecting port is connected to the water outlet, so that the oxidized group water is transported from the nozzle 5 to the water outlet for use. The oxidized group-containing water produced by the disinfectant spray bottle 4 is supplied to the water outlet through the nozzle 5. When the mop is used, the oxidized group-containing water is sprayed out from the water outlet of the drag plate 2, achieving a dual treatment of cleaning and sterilizing the floor, thereby improving the floor cleaning effect. The disinfectant spray bottle 4 can be easily installed and removed from the drag plate 2 for replacement and maintenance, and the water tank 72 can be removed separately for refilling.
[0055] Regarding the structure of the mop, based on the above-mentioned embodiments, for example, in one embodiment, the mop handle 1 has a water channel. The disinfectant sprayer 4 is mounted on the mop handle 1, with the nozzle 5 connected to the first end of the water channel, and the second end of the water channel connected to the water outlet. For example, the mop handle 1 has a second connecting port. The disinfectant sprayer 4 is connected to the mop deck 2, with the nozzle 5 disposed within the second connecting port. The second connecting port is connected to the water outlet via the water channel, allowing oxidized water to be transported from the nozzle 5 to the water outlet for use. The oxidized water produced by the disinfectant sprayer 4 is supplied to the water outlet via the nozzle 5. When the mop is in use, the oxidized water is sprayed from the water outlet of the mop deck 2, achieving a dual cleaning and disinfection effect on the floor, thereby improving the cleaning effect. The disinfectant sprayer 4 can be easily installed and removed from the mop deck 2 for replacement and maintenance, and the water tank 72 can be removed separately for refilling. In this embodiment, the water channel is formed in the mop. For example, a water flow channel is provided in the mop plate 2 to connect the water flow channel and the water outlet, so that water can be transported to the water outlet.
[0056] To mount the disinfectant spray bottle 4 on the mop, for example, the mop may include a mounting structure, through which the disinfectant spray bottle 4 is mounted on the mop handle 1 or the mop plate 2. Furthermore, for example, the mounting structure may be a snap-fit structure, allowing the disinfectant spray bottle 4 to be snapped onto the mop. Another example is a clamping structure, which secures the disinfectant spray bottle 4 to the mop. Another example is a secondary mounting structure mounted on the disinfectant spray bottle 4, which mates with the secondary mounting structure to connect, allowing the disinfectant spray bottle 4 to be mounted on the mop. This embodiment will not be described in detail.
[0057] It should be understood that the mounting structure can be provided not only on the drag rod 1 but also on the drag plate 2, and the mounting structure can also be provided on the drag rod 1 and the drag plate 2. It is only necessary that the drag plate 2 and the drag rod 1 are both provided with an internal flow channel structure connected to the disinfection spray bottle 4, so that the disinfection spray bottle 4 can be selectively installed on the drag rod 1 or the drag plate 2 as needed, or the two disinfection spray bottles 4 can be installed on the drag rod 1 and the drag plate 2 respectively. In this embodiment, they are not described one by one.
[0058] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0059] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.
Claims
1. A disinfectant spray bottle, characterized in that: It includes an outer shell, an oxidizing radical generating module and a water pump; The outer shell is provided with a nozzle; The outer shell includes a water tank and a working chamber, and the oxidized group generating module and the water pump are arranged in the working chamber; The water tank is connected to the water pump through a water suction pipe, the water pump is connected to the oxidizing group generating module, and the oxidizing group generating module is connected to the nozzle; or the water tank is connected to the oxidizing group generating module through a water suction pipe, the oxidizing group generating module is connected to the water pump, and the water pump is connected to the nozzle; The oxidizing radical generating module is used to generate oxidizing radical water.
2. The disinfectant spray bottle according to claim 1, characterized in that: The outer shell includes a first shell and a second shell, the first shell forms the working chamber, the second shell forms the water tank, and the first shell and the second shell are detachably connected.
3. The disinfectant spray bottle according to claim 2, characterized in that: The first end of the water suction pipe is connected to a water pump or an oxidizing radical generating module, and the first shell is connected to the second shell so that the second end of the water suction pipe is arranged in the water tank.
4. The disinfectant spray bottle according to claim 3, characterized in that: A gravity ball is provided at the second end of the water suction pipe. The gravity ball is provided with a water inlet hole, and the water inlet hole is communicated with the interior of the water suction pipe.
5. The disinfecting spray bottle according to claim 1, characterized in that: The nozzle is rotatably arranged on the outer shell.
6. The disinfectant spray bottle according to claim 1, characterized in that: The oxidizing radical generating module includes at least one of an ozone water generator, a hypochlorous acid generator, a hydrogen peroxide generator, a strong oxidizing radical generator, and an acidic water generator.
7. The disinfectant spray bottle according to claim 1, characterized in that: The oxidizing group generating module includes a plurality of electrolysis units, each of which includes a first electrode, an electrolyte membrane, and a second electrode stacked in sequence. The electrolysis unit converts water into water containing oxidizing groups through low-pressure electrolysis.
8. The disinfectant spray bottle according to claim 1, characterized in that: The electrode material of the first electrode and / or the second electrode is conductive silicon, conductive diamond, or one of titanium, platinum, lead, tantalum, iridium, palladium, antimony or oxides thereof.
9. A mop, characterized in that: The invention comprises a mop body and the disinfection spray bottle according to any one of claims 1 to 8, wherein the disinfection spray bottle is detachably mounted on the mop body.
10. The mop according to claim 9, characterized in that The mop body comprises a mop rod and a mop plate, one end of the mop rod is movably connected to the mop plate, a water outlet is provided on the mop plate, and the disinfectant spray bottle supplies oxidizing radical water to the water outlet.
11. The mop according to claim 9, characterized in that The disinfection spray bottle is installed on the drag plate, and the nozzle is connected to the water outlet.
12. The mop according to claim 9, characterized in that The drag rod has a water channel, and the disinfection spray bottle is installed on the drag rod so that the nozzle is connected to the first end of the water channel, and the second end of the water channel is connected to the water outlet.