Multi-cavity deodorization spray bottle
By separating the spray bottle into multiple chambers and using the isolation plate and the spray assembly to realize the current mixing spray of deodorant, the problem of mutual influence during the storage of deodorant is solved, and efficient deodorization is achieved flexibly responding to different foul odor scenes.
Patent Information
- Application Number
- CN202422086592.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-08-27
AI Technical Summary
Existing deodorants are prone to influence each other during storage, and it is difficult to flexibly select and use suitable deodorants for different foul odor scenarios.
A multi-chamber spray bottle is designed, and the bottle body is separated into multiple independent accommodation chambers. Each chamber stores a different deodorant, and the chamber is isolated or connected through the isolation plate and the spray assembly, allowing for mixing spray deodorant to be applied.
It realizes independent storage of different deodorants, flexibly responds to different odor scenarios, improves the deodorization efficiency, and avoids mutual influence during storage.
Smart Images

Figure CN223059693U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of spray bottles, in particular to a multi-chamber deodorant spray bottle. Background Art
[0002] The main pollutants causing malodor can be roughly divided into nitrogen-containing compounds (mainly ammonia), sulfur-containing inorganic compounds (mainly hydrogen sulfide), and volatile organic compounds (mainly including volatile amine compounds, sulfur-containing organic compounds, aromatic compounds), etc. The components and proportions of the main malodor pollutants are different in different malodor scenarios.
[0003] The deodorization mechanism of biological deodorants mainly includes absorption, adsorption and dissolution, acid-base reaction, catalytic oxidation reaction, Lewis acid-base reaction, and oxidation-reduction reaction. The deodorization effect of the same deodorant varies greatly when facing different malodor pollutants. For example, alkaloids in plant extracts have good deodorization effects on hydrogen sulfide and some volatile organic compounds, but general deodorization effects on ammonia. Some organic acids have significantly higher deodorization effects on ammonia than on hydrogen sulfide, etc. In addition, some deodorants are prone to degradation of some effective substances when stored in a mixture for a long time, and are not suitable for long-term storage in a compound form. Summary of the Invention
[0004] In order to overcome the disadvantages and deficiencies existing in the prior art, the purpose of the utility model is to provide a multi-chamber deodorant spray bottle, which can store different deodorants at the same time, and can prepare and spray appropriate deodorants according to different malodor scenarios on-site, and is convenient and flexible to use.
[0005] The utility model adopts the following technical scheme: A multi-chamber deodorant spray bottle, comprising a bottle body, a bottle cap, a partitioning device, and a plurality of partition plates arranged in the inner cavity of the bottle body; the bottle body includes a bottle side wall and a base connected to the lower end of the bottle side wall, and a bottle mouth is arranged at the upper end of the bottle body; the plurality of partition plates are evenly distributed and are used to divide the inner cavity of the bottle body into a plurality of accommodating chambers with a fan-shaped or fan-shaped ring cross-section, and a vacuum plug that abuts against the inner wall of the accommodating chamber and can move up and down in the accommodating chamber is arranged in each accommodating chamber, and exhaust holes are correspondingly arranged in the areas of the base below each vacuum plug;
[0006] The bottle cap includes a cover body detachably connected to the upper end of the bottle body, an opening is arranged at the lower end of the cover body, and a spraying assembly is arranged on the cover body. The spraying assembly includes a pump head and a straw connected in sequence from top to bottom, and the nozzle protrudes upward from the top plate of the cover body;
[0007] The separation device includes a sealing ring disposed in the inner cavity of the cover body and a partition plate embedded in the lower opening of the sealing ring. The upper end of the sealing ring is connected to the top plate of the cover body, and the pump head and the suction pipe are disposed in the inner cavity of the sealing ring; the partition plate is used to shield or open the upper openings of one or more accommodating chambers so that the inner cavity of the sealing ring is isolated from or communicated with the corresponding accommodating chambers.
[0008] Further, the partition plate includes a plurality of combined baffles distributed in an annular array, and the combined baffles are used to shield or open the upper openings of the corresponding accommodating chambers so that the inner cavity of the sealing ring is isolated from or communicated with the corresponding accommodating chambers.
[0009] Further, the partition plate includes a central column, and each combined baffle includes a fixed plate body and a rotating plate body that can rotate relative to the center of the central fixed column. The rotating plate body can be superposed with the fixed plate body; the inner ends of the fixed plate body and the rotating plate body are both connected to the central column, and the outer ends are both abutted against the inner ring wall of the sealing ring. The fixed plate body and the rotating plate body are both fan-shaped or fan-ring-shaped.
[0010] Further, the top plate of the cover body is provided with a plurality of arc-shaped tracks arranged at intervals and a plurality of buckles. The plurality of arc-shaped tracks are distributed in an annular array; the buckles are slidably connected to the corresponding arc-shaped tracks; the rotating plate body is provided with a fixed column, and the fixed column is fixedly connected to the lower end of the corresponding buckle.
[0011] Further, each rotating plate body is located between two fixed plate bodies.
[0012] Further, the deodorant spray bottle includes four partition plates, and the four partition plates are evenly distributed and used to divide the inner cavity of the bottle body into four accommodating chambers with a fan-shaped or fan-ring-shaped cross section; the partition plate includes four combined baffles.
[0013] Further, there is a spaced space between the outer ring wall of the sealing ring and the inner wall of the bottle cap, and the upper end of the bottle body is inserted into the spaced space and is detachably connected to the inner wall of the bottle cap.
[0014] Further, the outer wall of the upper end of the bottle body is provided with an external thread, and the inner wall of the bottle cap is provided with an internal thread. The bottle cap is used to be threadedly connected to the upper end of the bottle body.
[0015] Further, the deodorant spray bottle further includes an annular gasket, and the gasket is disposed between the sealing ring and the upper opening of the accommodating chamber. The partition plate is disposed on the upper end surface of the gasket; a solution chamber for placing the deodorant and an exhaust chamber are respectively formed above and below the vacuum plug in the accommodating chamber.
[0016] Further, the deodorant spray bottle further includes an outer cover, and the outer cover is sleeved on the bottle cap, and the nozzle is located inside the outer cover.
[0017] Advantages of the present utility model: The multi-chamber deodorant spray bottle of the present utility model divides the bottle body into multiple independent accommodation chambers, enabling the spray bottle to hold different deodorants simultaneously. By preparing the deodorant on-site according to different malodorous pollutants, the malodor problem can be solved more efficiently. At the same time, on-site preparation can also effectively solve the problem of mutual influence among some deodorants during storage. Description of the Drawings
[0018] Figure 1 It is a schematic structural view of the multi-chamber deodorant spray bottle of the present utility model.
[0019] Figure 2 It is a schematic internal structural view of the bottle body of the present utility model.
[0020] Figure 3 It is a top view of the bottle body of the present utility model.
[0021] Figure 4 It is a schematic structural view of the bottle cap of the present utility model.
[0022] Figure 5 It is a top view of the bottle cap of the present utility model.
[0023] Figure 6 It is a schematic structural view of the combined baffle when it is fully closed of the present utility model.
[0024] Figure 7 It is a schematic structural view of the combined baffle when it is fully open of the present utility model.
[0025] Reference numerals include:
[0026] 1. Outer cover; 2. Bottle cap; 21. Threaded interface; 22. Sealing ring; 23. Partition board; 231. Combined baffle; 2311. Rotating plate body; 2312. Fixed plate body; 24. Straw; 25. Pump head; 251. Nozzle; 26. Central column; 27. Fixed column; 28. Snap; 29. Arc track; 3. Bottle body; 31. Bottle side wall; 32. Base; 321. Exhaust hole; 4. Inner cavity of the bottle; 41. Bottle mouth; 42. Exhaust cavity; 43. Vacuum plug; 44. Accommodation chamber; 45. Solution chamber; 46. Deodorant; 47. Partition board; 48. Gasket; 5. Partition device. Detailed Embodiments
[0027] For the convenience of understanding by those skilled in the art, the present utility model will be further described below in conjunction with embodiments and the drawings. The content mentioned in the embodiments does not limit the present utility model.
[0028] As Figure 1-7As shown in the figure, a multi-chamber deodorant spray bottle includes a bottle body 3, a bottle cap 2, a partitioning device 5, and a plurality of partition plates 47 disposed in the inner cavity 4 of the bottle body; the bottle body 3 includes a bottle side wall 31 and a base 32 connected to the lower end of the bottle side wall 31, and the upper end of the bottle body 3 is provided with a bottle mouth 41; the plurality of partition plates 47 are evenly distributed and are used to divide the inner cavity 4 of the bottle body into a plurality of accommodating chambers 44 with a fan-shaped or fan-shaped ring cross-section. A vacuum plug 43 that abuts against the inner wall of the accommodating chamber 44 and can move up and down in the accommodating chamber 44 is disposed in each accommodating chamber 44. In the accommodating chamber 44, a solution chamber 45 for placing the deodorant 46 is formed above the vacuum plug 43, and an exhaust chamber 42 is formed below the vacuum plug 43; an exhaust hole 321 is correspondingly provided in the area of the base 32 below each vacuum plug 43.
[0029] The bottle cap 2 includes a cap body detachably connected to the upper end of the bottle body 3. An opening is provided at the lower end of the cap body. The cap body is provided with a spraying assembly. The spraying assembly includes a pump head 25 and a suction pipe 24 connected in sequence from top to bottom. A nozzle 251 is provided at the upper end of the pump head 25, and the nozzle 251 protrudes upward from the top plate of the cap body.
[0030] The partitioning device 5 includes a sealing ring 22 disposed in the inner cavity of the cap body and a partition plate 23 embedded in the lower opening of the sealing ring 22. The upper end of the sealing ring 22 is connected to the top plate of the cap body. The pump head 25 and the suction pipe 24 are disposed in the inner cavity of the sealing ring 22; the partition plate 23 is used to shield or open the upper openings of one or more accommodating chambers 44 so that the inner cavity of the sealing ring 22 is isolated or communicated with the corresponding accommodating chambers 44. The lower end of the suction pipe 24 extends to a position close to the upper end of the partition plate 23.
[0031] The multi-chamber deodorant spray bottle of the present utility model divides the inner cavity 4 of the bottle body into multiple accommodation chambers 44 by arranging a plurality of partition plates 47 extending from bottom to top in the cylindrical bottle body 3. The multiple accommodation chambers 44 are respectively used to place different deodorants 46; a sector-shaped columnar or sector-shaped ring-shaped vacuum plug 43 is installed in each accommodation chamber 44. The vacuum plug 43 divides the accommodation chamber 44 into upper and lower parts. An upper solution chamber 45 for placing the deodorant 46 is formed above the vacuum plug 43, and an exhaust chamber 42 is formed below the vacuum plug 43. The base 32 is provided with a plurality of exhaust holes 321 corresponding to the plurality of vacuum plugs 43 respectively, so that each exhaust chamber 42 can exhaust air during operation; the isolation plate 23 shields above the upper openings of the plurality of accommodation chambers 44, and is used to isolate the inner cavity of the sealing ring 22 with the pump head 25 and the suction pipe 24 from the plurality of accommodation chambers 44, that is, the sealing ring 22, the top plate of the bottle cap 2 and the isolation plate 23 enclose a cylindrical sealed space. When in use, the isolation plate 23 can be adjusted as needed to open the upper opening of the corresponding accommodation chamber 44, so that one or more accommodation chambers 44 communicate with the inner cavity of the sealing ring 22. After pressing the nozzle 251, the deodorant 46 in one opened accommodation chamber 44 can be sprayed out, or the deodorants 46 in multiple accommodation chambers 44 can be mixed in the suction pipe 24 and sprayed out. The multi-chamber deodorant spray bottle of the present utility model divides the bottle body 3 into multiple independent accommodation chambers 44, so that the spray bottle can hold different deodorants 46 at the same time. By preparing the deodorant 46 on-site according to different malodorous pollutants, the malodor problem can be solved more efficiently. At the same time, on-site preparation can also effectively solve the problem that some deodorants 46 affect each other during storage.
[0032] Further, the isolation plate 23 includes a plurality of combined baffles 231 distributed in an annular array. The combined baffles 231 are used to shield or open the upper openings of the corresponding accommodation chambers 44 so that the inner cavity of the sealing ring 22 is isolated from or communicated with the corresponding accommodation chambers 44.
[0033] Furthermore, the isolation plate 23 includes a central column 27, and each combined baffle 231 includes a fixed plate body 2312 and a rotating plate body 2311 that can rotate relative to the center of the central fixed column 27, and the rotating plate body 2311 can overlap with the fixed plate body 2312; the inner ends of the fixed plate body 2312 and the rotating plate body 2311 are connected to the central column 27 and the outer ends are abutted against the inner ring wall of the sealing ring 22, and the fixed plate body 2312 and the rotating plate body 2311 are both fan-shaped or fan-ring-shaped. The number of the rotating plate body 2311 and the fixed plate body 2312 of each combined baffle 231 can be one or more. Due to the arrangement of the above-mentioned structure, a fixed edge and a movable edge are formed on both sides of each combined baffle 231 respectively. When the corresponding accommodating chamber 44 needs to be opened, the rotating plate body 2311 is rotated to make the rotating plate body 2311 overlap with the fixed plate body 2312, and the upper end opening of the accommodating chamber 44 is exposed, thereby achieving communication with the inner cavity of the sealing ring 22.
[0034] Furthermore, the top plate of the cover body is provided with a plurality of arc tracks 29 and a plurality of buckles 28 arranged at intervals, and the arc tracks 29 are distributed in a circular array; the buckles 28 are slidably connected to the corresponding arc tracks 29; the rotating plate body 2311 is provided with a fixed column 27, and the fixed column 27 is fixedly connected to the lower end of the corresponding buckle 28. In this embodiment, the lower end of the fixed column 27 is fixedly connected to the upper end of the edge of one side of the rotating plate body 2311. When in use, the buckle 28 is moved in the arc track 29, and the fixed column 27 is controlled to drive the rotating plate body 2311 to rotate along the central column 27, so that the multiple plates overlap or spread out to form a complete fan shape, thereby connecting the different solution cavities 45 of the straw 24 and the inner cavity 4 of the bottle body. In this embodiment, the middle part of the top plate of the multiple cover bodies is provided with a spray hole for the nozzle 251 to pass through; the arc tracks 29 are distributed in a circular array around the spray hole.
[0035] Furthermore, each rotating plate 2311 is located between two fixed plates 2312 , so that the rotating plate 2311 can be easily rotated to overlap with the fixed plate 2312 .
[0036] In one embodiment of the utility model, the deodorant spray bottle includes four partition plates 47, which are evenly distributed and used to divide the inner cavity 4 of the bottle body into four accommodating chambers 44 with fan-shaped or fan-ring cross sections; the isolation plate 23 includes four combined baffles 231, and all the rotating plates 2311 and fixed plates 2312 of each combined baffle 231 are spread out to form a splicing plate that is combined to form a 90° fan-shaped splicing plate, and the cross section of the accommodating chamber 44 is in the shape of a 90° fan. The fixed plate 2312 and the rotating plate 2311 have the same shape and size. Each combined baffle 231 includes a fixed plate 2312 and a rotating plate 2311, and the fixed plate 2312 and the rotating plate 2311 are both in the shape of a 45° fan. Those skilled in the art can also set the number and fan angle of the fixed plate 2312 and the rotating plate 2311 in each combined baffle 231 as needed, and at least one rotating plate is provided with a fixed column 27.
[0037] Furthermore, a space is provided between the outer ring wall of the sealing ring 22 and the inner wall of the bottle cap 2, and the upper end of the bottle body 3 is inserted into the space and detachably connected to the inner wall of the bottle cap 2. The outer wall of the upper end of the bottle body 3 is provided with an external thread, and the inner wall of the bottle cap 2 is provided with an internal thread, forming a threaded interface 21; the bottle cap 2 is used to be threadedly connected to the upper end of the bottle body 3. Due to the above-mentioned structure, the bottle mouth 41 is inserted between the outer ring wall of the sealing ring 22 and the inner wall of the bottle cap 2, and is threadedly connected to the bottle cap 2, so that the bottle mouth 41 is easy to open and close.
[0038] Furthermore, the deodorizing spray bottle further comprises a ring-shaped gasket 48 , which is disposed between the sealing ring 22 and the upper end opening of the accommodating chamber 44 , and the isolation plate 23 is disposed on the upper end surface of the gasket 48 .
[0039] Further, the deodorant spray bottle further comprises an outer cover 1, the outer cover 1 is sleeved on the bottle cap 2, and the nozzle 251 is located inside the outer cover 1. The outer cover 1 can provide good protection for the nozzle 251 and the bottle cap 2.
[0040] During assembly, the solution cavity 45 inside the bottle body 3 is filled with deodorants 46 containing different ingredients, the gasket 48 is installed on the partition plate 47 inside the bottle body 3, and the threaded interface 21 of the bottle cap 2 is connected and tightened with the bottle mouth 41 of the bottle body 3. At this time, the fixed edge of the combined baffle 231 is connected with the upper edge of the gasket 48 and the partition plate 47, so that the solution cavity 45 can correspond to the combined baffle 231 one by one to form a channel.
[0041] Taking the multi-chamber deodorant spray bottle of the present utility model with four accommodating chambers 44 as an example, during use, when facing different malodorous scenarios, the deodorant 46 inside the bottle body 3 of the 44 can be selected according to its main pollutants. The buckle 28 corresponding to the directly above the selected one to four deodorants 46 is bent from position A to position B, as Figure 5 shown. Driven by the buckle 28, the fixed column 27 drives the rotating baffle 2311 to rotate around the central column 27. After the multiple fan-shaped or fan-ring-shaped plates of the combined baffle 231 are stacked on one side, the solution chamber 45 containing the deodorant 46 is communicated with the straw 24. By squeezing the space inside the pump head 25, the vacuum plug 43 of the solution chamber 45 containing different deodorants 46 in the communication moves upward, and the deodorant 46 in the solution chamber 45 is mixed and freshly prepared in the straw 24 to form a composite deodorant 46, which is sprayed on the malodorous scenario for deodorization.
[0042] When the multi-chamber deodorant spray bottle of the present utility model is used in certain working scenarios, the plant deodorant A rich in alkaloids, the plant deodorant B rich in organic acids, the plant C rich in aromatic oil, and the microbial deodorant D are respectively filled into the 4 solution chambers 45. In scenarios such as farms where the ammonia odor seriously exceeds the standard, the buckles 28 of the solution chambers containing deodorants B, C, and D are bent to position B, and the freshly prepared composite deodorant 46 is sprayed on the severely malodorous area by pressing the pump head 25. In scenarios such as sewers with a strong smell of rotten eggs, the channels of deodorants A, C, and D are opened, and the pump head 25 is pressed towards the malodorous area to spray the freshly prepared deodorant 46.
[0043] The above content is only the preferred embodiment of the present utility model. For those of ordinary skill in the art, based on the idea of the present utility model, there will be changes in the specific implementation manner and application scope. The content of this specification should not be construed as a limitation to the present utility model.
Claims
1. A multi-chamber deodorant spray bottle, characterized in that: It includes a bottle body, a bottle cap, a partition device, and a plurality of partition plates disposed in the inner cavity of the bottle body; the bottle body includes a bottle side wall and a base connected to the lower end of the bottle side wall, and the upper end of the bottle body is provided with a bottle mouth; the plurality of partition plates are evenly distributed and are used to divide the inner cavity of the bottle body into a plurality of accommodating chambers with a fan-shaped or fan-ring-shaped cross-section. A vacuum plug that abuts against the inner wall of the accommodating chamber and can move up and down in the accommodating chamber is provided in each accommodating chamber, and exhaust holes are correspondingly provided in the area of the base below each vacuum plug. The bottle cap includes a cap body detachably connected to the upper end of the bottle body. An opening is provided at the lower end of the cap body. The cap body is provided with a spraying assembly. The spraying assembly includes a pump head and a straw connected in sequence from top to bottom. A nozzle is provided at the upper end of the pump head, and the nozzle protrudes upward from the top plate of the cap body. The partition device includes a sealing ring disposed in the inner cavity of the cap body and a partition plate embedded in the lower opening of the sealing ring. The upper end of the sealing ring is connected to the top plate of the cap body, and the pump head and the straw are disposed in the inner cavity of the sealing ring; the partition plate is used to shield or open the upper openings of one or more accommodating chambers so that the inner cavity of the sealing ring is isolated or communicated with the corresponding accommodating chambers.
2. The multi-chamber deodorant spray bottle according to claim 1, wherein: The partition plate includes a plurality of combined baffles distributed in a circular array. The combined baffles are used to shield or open the upper openings of the corresponding accommodating chambers so that the inner cavity of the sealing ring is isolated or communicated with the corresponding accommodating chambers.
3. The multi-chamber deodorant spray bottle according to claim 2, characterized in that: The partition plate includes a central column. Each combined baffle includes a fixed plate body and a rotating plate body that can rotate relative to the center of the central fixed column. The rotating plate body can be superposed with the fixed plate body; the inner ends of the fixed plate body and the rotating plate body are both connected to the central column, and the outer ends are both abutted against the inner ring wall of the sealing ring. The fixed plate body and the rotating plate body are both fan-shaped or fan-ring-shaped.
4. The multi-chamber deodorant spray bottle according to claim 3, characterized in that: The top plate of the cap body is provided with a plurality of spaced arc-shaped tracks and a plurality of buckles. The plurality of arc-shaped tracks are distributed in a circular array; the buckles are slidably connected to the corresponding arc-shaped tracks; the rotating plate body is provided with a fixed column, and the fixed column is fixedly connected to the lower end of the corresponding buckle.
5. The multi-chamber deodorant spray bottle according to claim 3, wherein: Each rotating plate body is located between two fixed plate bodies.
6. The multi-chamber deodorant spray bottle according to claim 3, characterized in that: The deodorant spray bottle includes four partition plates. The four partition plates are evenly distributed and are used to divide the inner cavity of the bottle body into four accommodating chambers with a fan-shaped or fan-ring-shaped cross-section; the partition plate includes four combined baffles.
7. The multi-chamber deodorant spray bottle according to claim 1, characterized in that: A spaced space is provided between the outer ring wall of the sealing ring and the inner wall of the bottle cap. The upper end of the bottle body is inserted into the spaced space and is detachably connected to the inner wall of the bottle cap.
8. The multi-chamber deodorant spray bottle according to claim 7, characterized in that: External threads are provided on the outer wall of the upper end of the bottle body, and internal threads are provided on the inner wall of the bottle cap. The bottle cap is used for threaded connection with the upper end of the bottle body.
9. The multi-chamber deodorant spray bottle according to claim 4, characterized in that: The deodorant spray bottle further includes an annular gasket. The gasket is disposed between the sealing ring and the upper opening of the accommodating chamber. The partition plate is disposed on the upper surface of the gasket; a solution chamber and an exhaust chamber are respectively formed above and below the vacuum plug in the accommodating chamber.
10. The multi-chamber deodorant spray bottle according to claim 1, characterized in that: The deodorant spray bottle further includes an outer cap. The outer cap is sleeved on the bottle cap, and the nozzle is located inside the outer cap.