Humidifier symbiotic with plants

By designing a humidifier with easily separable petri dishes and water storage chambers, the problem of inconvenient plant observation and transplanting in existing devices has been solved, realizing convenient plant care and air humidification functions, improving user experience and air quality.

CN223782978UActive Publication Date: 2026-01-09NANCHANG UNIV
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Patent Information

Application Number
CN202423262597.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2026-01-09
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

Existing devices make it difficult to easily remove plants for observation, fertilization, or replacement, and once plants have grown to a certain size, they are difficult to transplant smoothly to other environments.

Method used

A humidifier was designed, comprising a lower shell and a petri dish. The lower shell is divided into a water storage chamber, and the petri dish is separable for easy observation and transplanting of plants. Combined with drip irrigation and atomization components, it enables semi-automatic plant cultivation and air humidification.

Benefits of technology

It enhances the flexibility and convenience of plant care, simplifies user operations, improves the observation of plant growth status and transplanting efficiency, and also improves indoor air quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model particularly relates to a humidifier symbiotic with plants, and belongs to the technical field of household appliances, the humidifier comprises a lower shell and a culture dish, the lower shell is of a cavity structure with an opening in the top, and at least part of the outer surface of the lower shell is sunken inwards to form a culture cavity; the culture dish is at least partially contained in the culture cavity, the culture dish comprises a first dish body and a second dish body, and the second dish body is nested in the first dish body. The lower shell comprises a partition plate assembly and a drip irrigation assembly, the partition plate assembly is arranged at an opening in the top of the lower shell and divides the interior of the lower shell into a first water storage cavity and a second water storage cavity, and the drip irrigation assembly is installed on the partition plate assembly. The device integrates the functions of air humidification and plant planting, and meanwhile, the flexibility and convenience of plant maintenance and transplanting can be improved.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of household appliances, and particularly relates to a humidifier coexisting with plants. BACKGROUND

[0002] As a common household appliance, the humidifier is often used to improve indoor humidity and air quality, or to add artificial fragrance to achieve the effect of helping sleep or relieving stress. However, long-term use of artificial fragrance may reduce air quality. People often plant plants to improve indoor air quality, but they need to water them regularly, which increases their daily burden.

[0003] Although some devices integrating plant cultivation and air humidification functions exist, these devices have certain limitations in design, and users cannot conveniently take out the plants to observe their growth state, perform necessary nutrient fertilization, or replace the plants. When the plants grow to a certain size, users often have difficulty transplanting and cultivating them in other environments from the devices. CONTENT OF THE UTILITY MODEL

[0004] The present application aims to at least solve one of the problems in the prior art or related art.

[0005] To this end, the present application provides a humidifier coexisting with plants, which integrates the functions of air humidification and plant cultivation, and can improve the flexibility and convenience of plant maintenance and transplanting.

[0006] The humidifier coexisting with plants provided by the present application includes a lower shell and a culture dish. The lower shell is a cavity structure with an open top, and the outer surface of the lower shell is at least partially recessed inward to form a culture cavity. The culture dish is at least partially accommodated in the culture cavity. The culture dish includes a first dish body and a second dish body, and the second dish body is nested in the first dish body. The second dish body is used for plant cultivation or transplantation. The lower shell includes a partition assembly and a drip irrigation assembly. The partition assembly is arranged at the open top of the lower shell and divides the inside of the lower shell into a first water storage cavity and a second water storage cavity. The drip irrigation assembly is installed on the partition assembly.

[0007] In some embodiments that can be implemented, the humidifier further includes an upper shell, which is detachably connected with the lower shell. The upper shell includes at least one mist outlet and a misting assembly. The at least one mist outlet is arranged on the top surface of the upper shell. The misting assembly is arranged at the bottom of the mist outlet.

[0008] In some embodiments that can be implemented, the culture dish further includes a telescopic layer, a pressing and rebounding mechanism, and a button. The telescopic layer is arranged between the first dish body and the second dish body, and is used to separate the first dish body and the second dish body. The pressing and rebounding mechanism is arranged between the culture dish and the culture cavity. The button is arranged on the outer surface of the culture dish, and is used to provide a pressing point.

[0009] In some embodiments, the partition assembly comprises a first partition, a second partition and a third partition, the first partition extends downward from the top opening of the lower shell to the top of the culture cavity, the second partition is connected to the first partition at both ends, and the outer side wall of the second partition is connected to the inner side wall of the top opening of the lower shell, and the third partition extends laterally from the lower end of the first partition to the lower end of the second partition to form the bottom of the partition assembly, thereby dividing the lower shell into a first water storage cavity and a second water storage cavity.

[0010] In some embodiments, the first partition is transparent, and the outer surface of the lower shell away from the culture cavity is provided with a water level observation window for observing the water level of the first water storage cavity and the second water storage cavity.

[0011] In some embodiments, the drip irrigation assembly comprises a drip irrigation inlet and a drip irrigation pipe, the drip irrigation inlet is arranged at the bottom of the partition assembly, the top of the drip irrigation pipe is connected to the drip irrigation inlet, and the top wall of the culture cavity is provided with an opening corresponding to the water dripping port of the drip irrigation pipe.

[0012] In some embodiments, the atomization assembly comprises an oscillator, a battery pack and a water inlet pipe, the oscillator is arranged at the bottom of the mist outlet, the battery pack is electrically connected to the oscillator, the top of the water inlet pipe is connected to the oscillator, and the bottom of the water inlet pipe extends to the bottom of the second water storage cavity.

[0013] In some embodiments, the upper shell is provided with a control panel, the control panel is electrically connected to the drip irrigation assembly and the atomization assembly, and the control panel comprises a display screen and a plurality of touch keys.

[0014] In some embodiments, the outer surface of the upper shell is provided with a power plug and a plurality of anti-slip protrusions.

[0015] In some embodiments, the lower shell is of a split structure and can be separated into two parts in the up-down direction.

[0016] Compared with the prior art, the above technical solution provided by the present application has at least the following technical effects:

[0017] The present application can add water to the first water storage cavity and the second water storage cavity through one water adding operation on the lower shell, the drip irrigation assembly eliminates the manual watering process, and the semi-automatic planting of plants is realized, the culture dish is used for planting plants, the user can conveniently take out the plants at any time to observe the growth state of the plants, perform necessary nutrient fertilization or replace the plants, etc., and the plants have a natural fragrance, which can improve the indoor air quality. The atomization assembly arranged on the upper shell can humidify the indoor air. The present application integrates the functions of air humidification and plant planting, and can improve the flexibility and convenience of plant maintenance and transplanting.

[0018] Additional aspects and advantages of the application will become apparent from the following description, or can be learned by practice of the application. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and / or additional aspects and advantages of the present application will become apparent and be readily appreciated from the following description, taken in conjunction with the accompanying drawings, in which:

[0020] Figure 1 is a structural diagram of a humidifier symbiotic with plants according to some embodiments of the present application;

[0021] Figure 2 is a structural diagram of a petri dish according to some embodiments of the present application;

[0022] Figure 3 is a structural diagram of a press rebound mechanism according to some embodiments of the present application;

[0023] Figure 4 is a structural diagram of a humidifier symbiotic with plants according to some embodiments of the present application;

[0024] Figure 5 is Figure 4 a structural diagram of region A in FIG. 1;

[0025] Figure 6 is a partial structural diagram of a lower housing according to some embodiments of the present application;

[0026] Figure 7 is a partial structural diagram of an upper housing according to some embodiments of the present application;

[0027] Figure 8 is a partial structural diagram of a humidifier symbiotic with plants according to some embodiments of the present application;

[0028] Figure 9 is an exploded diagram of a lower housing according to some embodiments of the present application;

[0029] Figure 10 is a diagram of a control panel according to some embodiments of the present application;

[0030] Figure 11 is a flow diagram of plant cultivation according to some embodiments of the present application.

[0031] REFERENCE NUMERALS:

[0032] 100, lower housing; 110, culture cavity; 111, opening; 120, partition assembly; 121, first partition; 122, second partition; 123, third partition; 130, first water storage cavity; 140, second water storage cavity; 150, drip irrigation assembly; 151, drip irrigation inlet; 152, drip irrigation pipe; 160, water level observation window;

[0033] 200, culture dish; 210, first dish body; 220, second dish body; 230, telescopic layer; 240, press and rebound mechanism; 250, button;

[0034] 300, upper housing; 310, mist outlet; 320, atomization assembly; 321, oscillator; 322, battery pack; 323, water inlet pipe; 330, control panel; 340, plug-in port; 350, anti-slip protrusion. DETAILED DESCRIPTION

[0035] In order to enable a more complete understanding of the above-mentioned objects, features and advantages of the present application, the present application will be described in further detail below with reference to the accompanying drawings and specific embodiments. It should be noted that the embodiments of the present application and the features in the embodiments can be combined with each other without conflict.

[0036] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and therefore the scope of protection of the present application is not limited by the specific embodiments disclosed below.

[0037] The following refers to Figures 1 to 11 A humidifier for mycorrhizal symbiosis with plants is provided according to some embodiments of the present application.

[0038] In some embodiments, referring to Figure 1 The humidifier includes a lower housing 100 and a culture dish 200. The lower housing 100 is a cavity structure with a top opening, and the outer surface of the lower housing 100 is at least partially recessed inward to form a culture cavity 110. The culture dish 200 is at least partially accommodated in the culture cavity 110, and the culture dish 200 includes a first dish body 210 and a second dish body 220, with the second dish body 220 nested in the first dish body 210. The lower housing 300 includes a partition assembly 120 and a drip irrigation assembly 150. The partition assembly 120 is arranged at the top opening of the lower housing 100 and divides the interior of the lower housing 100 into a first water storage cavity 130 and a second water storage cavity 140. The drip irrigation assembly 150 is installed on the partition assembly 120.

[0039] In this embodiment, the lower shell 100 is inwardly recessed in the central region of the outer surface to form a culture cavity 110, and the culture dish 200 is at least partially accommodated in the culture cavity 110, so that the user can take out the culture dish 200 from the culture cavity 110 at any time to observe the growth state of the plant and perform necessary nutrient fertilization. The culture dish 200 includes a first dish body 210 and a second dish body 220, and the second dish body 220 is nested in the first dish body 210. The user can separate the first dish body 210 from the second dish body 220 to transplant or replace new plants in the second dish body 220. The baffle assembly 120 is arranged at the top opening of the lower shell 100 and separates the lower shell 100 into a first water storage cavity 130 and a second water storage cavity 140. The baffle assembly divides the circular opening at the top of the lower shell into two water filling openings, and the user only needs to fill water at the top to complete the water filling action of the first water storage cavity 130 and the second water storage cavity 140. The drip irrigation assembly 150 is installed on the baffle assembly 120 and communicates with the first water storage cavity 130 to irrigate the plants in the culture dish 200. Among them, the culture dish 200 can be used to contain soil and serve as a cultivation container for the initial growth of plants. Please refer to Figure 11 The user can lay soil in the second dish body 220 and pre-bury plant seeds, and use the drip irrigation assembly 150 to drip irrigate the plants to provide necessary water for the initial growth of the plants. When the plants grow to a certain extent in the second dish body 220, the user can conveniently take out the second dish body 220 for subsequent transplantation to a larger planting environment or outdoor soil.

[0040] In some embodiments, please refer to Figure 1 and Figure 7 The humidifier further includes an upper shell 300, which is detachably connected with the lower shell 100. The upper shell 300 includes at least one mist outlet 310 and an atomization assembly 320. The at least one mist outlet 310 is arranged on the top surface of the upper shell 300. The atomization assembly 320 is arranged at the bottom of the mist outlet 310.

[0041] In this embodiment, the upper shell 300 is detachably connected with the lower shell 100. It can be understood that the connection mode includes but is not limited to thread, buckle, sleeve or magnetic attraction, etc., which is not limited here. The upper shell 300 includes at least one mist outlet 310. It can be understood that the number of mist outlets can be one or even more. In addition, the setting position of the mist outlet, the distribution of the mist outlet, the size of the mist outlet, etc. can be set according to actual needs, which is not limited here.

[0042] In some embodiments, please refer to Figure 2 and Figure 3The culture dish 200 further comprises a telescopic layer 230, a pressing and rebound mechanism 240 and a button 250. The telescopic layer 230 is arranged between the first dish body 210 and the second dish body 220 and is used to separate the first dish body 210 and the second dish body 230. The pressing and rebound mechanism 240 is arranged between the culture dish 200 and the culture cavity 110. The button 250 is arranged on the outer surface of the culture dish 200 and is used to provide a pressing point.

[0043] In this embodiment, the culture dish 200 has a hemispherical structure as a whole. The telescopic layer 230 of the culture dish 200 is arranged between the first dish body 210 and the second dish body 220. When a user wants to take out the second dish body 220 from the first dish body 210, please refer to Figure 11 The user can vertically place both hands on the telescopic layer 230 and apply a downward force to the telescopic layer 230. The telescopic layer 230 is compressed downward, and a gap is formed between the first dish body 210 and the second dish body 220. The user can easily take out the second dish body 220 through the gap. The pressing and rebound mechanism 240 is arranged between the culture dish 200 and the culture cavity 110. The impact head of the pressing and rebound mechanism 240 is embedded in the culture dish 200. The main body of the pressing and rebound mechanism 240, which is installed on the inner wall of the culture cavity 110 at a corresponding position, comprises a spring, a clamping mechanism and other structures. Through the pressing and rebound mechanism 240, the user applies a certain force to the culture dish 200 towards the inside of the culture cavity 110. The impact head further presses the main body. The main body releases the clamping and applies an outward pushing force to the impact head, so that the culture dish 200 is ejected from the culture cavity 110. When the user installs it, the culture dish 200 is pressed back into the culture cavity 110. The impact head can be clamped by the main body, so as to realize the fixed locking of the culture dish 200. The button 250 can be arranged on the other side of the outer surface of the culture dish 200, which is opposite to the front of the pressing and rebound mechanism 240. The user presses the culture dish 200 from this position, which can save more labor and make it easier to eject the culture dish 200.

[0044] In some embodiments, please refer to Figure 5 and Figure 6 The partition assembly 120 comprises a first partition 121, a second partition 122 and a third partition 123. The first partition 121 extends downward from the top opening of the lower shell 100 to the top of the culture cavity 110. The second partition 122 is connected at both ends to the first partition 121. The outer side wall of the second partition 122 is connected to the inner side wall of the top opening of the lower shell 100. The third partition 123 extends laterally from the lower end of the first partition 123 to the lower end of the second partition 122 to form the bottom of the partition assembly 120, so as to divide the inside of the lower shell 100 into the first water storage cavity 130 and the second water storage cavity 140.

[0045] In this embodiment, the space surrounded by the first partition 121, the second partition 122 and the third partition 123 is the first water storage cavity 130, and the space in the cavity of the lower shell 100 except the space surrounded by the partition assembly 120 is the second water storage cavity 140. The partition assembly 120 is similar to a semicircular structure. It can be understood that the structural shape of the partition assembly 120 can be adjusted adaptively according to the shape of the opening at the top of the lower shell 100, and the capacity of the first water storage cavity 130 can be changed by adjusting the geometric size parameters of the structure of the partition assembly 120, which is not limited herein.

[0046] In some embodiments, referring to Figure 5 and Figure 8 , the first partition 121 is a transparent partition; and the outer surface of the lower shell 100 away from the culture cavity 110 is provided with a water level observation window 160 for observing the water levels of the first water storage cavity 130 and the second water storage cavity 140.

[0047] In this embodiment, the first partition 121 is a transparent partition, and the outer surface of the lower shell 100 away from the culture cavity 110 is provided with a water level observation window 160. It can be understood that the transparent partition and the water level observation window 160 can be made of transparent materials such as glass and acrylic, and a water gauge or a water level line can be provided thereon. The water level observation window 160 can be provided from the opening at the neck of the lower shell 100 to the bottom of the lower shell 100, or the entire lower shell 100 can be made of transparent materials or the outer surface of the lower shell 100 away from the culture cavity 110, which is not limited herein. Through the above arrangement, the user can directly observe the water level inside the first water storage cavity 130 and the second water storage cavity 140, and more accurately determine when to add water.

[0048] In some embodiments, referring to Figure 4 and Figure 5 , the drip irrigation assembly 150 includes a drip irrigation inlet 151 and a drip irrigation pipe 152. The drip irrigation inlet 151 is arranged at the bottom of the partition assembly 120, and the top of the drip irrigation pipe 152 is connected to the drip irrigation inlet 151. The top wall of the culture cavity 110 is provided with an opening 111, and the position of the opening 111 corresponds to the water dripping port of the drip irrigation pipe 152.

[0049] In this embodiment, the drip irrigation inlet 151 is arranged at the bottom of the partition assembly 120, and the water in the first water storage cavity 130 can flow into the drip irrigation pipe 152 through the drip irrigation inlet 151 and uniformly drip into the culture dish 200 in the culture cavity 110 through the water dripping port of the drip irrigation pipe 152, which can be used for irrigating plants. The structure is relatively simple and easy to install and maintain.

[0050] In some embodiments, referring to Figure 7The atomization assembly 320 comprises an oscillator 321, a battery pack 322 and a water inlet pipe 323. The oscillator 321 is arranged at the bottom of the mist outlet 310. The battery pack 322 is electrically connected with the oscillator 321. The top of the water inlet pipe 323 is connected with the oscillator 321, and the bottom of the water inlet pipe 323 extends to the bottom of the second water storage cavity 140.

[0051] In this embodiment, the oscillator 321 is arranged at the bottom of the mist outlet 310. The water flowing from the water inlet pipe 323 is subjected to high-frequency oscillation by the piezoelectric ceramic sheet, so that the water molecules are dispersed and atomized, and the water molecules can directly enter the air through the mist outlet 310 to achieve the effect of humidifying the air, and the humidification efficiency is significantly improved. It can be understood that in addition to using a piezoelectric ceramic sheet for high-frequency oscillation, a microporous atomization sheet or the like can also be used for atomization according to actual needs, which is not limited herein.

[0052] In some embodiments, referring to Figure 7 and Figure 10 The upper shell 300 is provided with a control panel 330. The control panel 330 is electrically connected with the drip irrigation assembly 150 and the atomization assembly 320. The control panel 330 comprises a display screen and a plurality of touch buttons.

[0053] In this embodiment, the control panel 330 is electrically connected with the drip irrigation assembly 150 and the atomization assembly 320, and the humidifier is controlled through the touch buttons on the control panel 330. When the humidifier is started, the water inlet pipe 323 draws water from the bottom of the second water storage cavity 140 to the top. The water droplets contact the oscillator 321 and are atomized into small molecules, which are released into the air. At the same time, the drip irrigation inlet 151 is opened, and the plant in the culture dish 200 is regularly drip irrigated. It can be understood that the display screen can display the working state of the drip irrigation and atomization system in real time, and can also display the current humidity, temperature or time parameters, etc. The touch buttons can include but are not limited to total power supply, drip irrigation control switch, atomization control switch, drip irrigation adjustment, humidity adjustment, timing function, sleep mode and the like, which are not limited herein.

[0054] In some embodiments, referring to Figure 8 The outer surface of the upper shell 300 is provided with a power plug 340 and a plurality of anti-slip protrusions 350.

[0055] In this embodiment, the outer surface of the upper shell 300 is provided with a power plug 340, which can reduce the frequency and cost of replacing the battery. The outer surface of the upper shell 300 is provided with a plurality of anti-slip protrusions 350, which can facilitate the user to separate the upper shell 300 from the lower shell 100.

[0056] In some embodiments, referring to Figure 9 The lower shell 100 is of a split structure, and the lower shell 100 can be separated into two parts in the up-down direction.

[0057] In this embodiment, the lower shell 100 can be detached, and the user can more conveniently check, clean and maintain the humidifier, avoid the influence of dust or limescale accumulated inside due to long-term use of the humidifier, and thus prolong the service life of the humidifier.

[0058] In the present application, it should be noted that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.

[0059] In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined with "first", "second" can include at least one of the features explicitly or implicitly. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.

[0060] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection" should be understood broadly, for example, it can be fixedly connected, or detachably connected, or integrally connected; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium. The term "plurality" refers to two or more, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0061] In the present application, the description of the terms "one embodiment", "some embodiments", "a specific embodiment" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present description, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0062] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A humidifier symbiotic with a plant, characterized by, The humidifier comprises: a lower shell, which is a top-open cavity structure, and an outer surface of which is at least partially recessed inward to form a culture cavity; a culture dish, which is at least partially accommodated in the culture cavity, and comprises a first dish body and a second dish body, the second dish body being nested in the first dish body; wherein the second dish body is used for plant cultivation or transplantation; the lower shell comprises: a partition plate assembly, which is arranged at the top opening of the lower shell and divides the interior of the lower shell into a first water storage cavity and a second water storage cavity; wherein the first water storage cavity is used for drip irrigation, and the second water storage cavity is used for humidification; a drip irrigation assembly, which is mounted on the partition plate assembly.

2. The humidifier for mycorrhizal symbiosis with plants according to claim 1, characterized by, The humidifier further comprises: an upper shell, which is detachably connected with the lower shell, and comprises: at least one mist outlet, which is arranged on the top surface of the upper shell; a atomization assembly, which is arranged at the bottom of the mist outlet.

3. The humidifier for mycorrhizal symbiosis with plants according to claim 1, characterized by, The culture dish further comprises: a telescopic layer, which is arranged between the first dish body and the second dish body, and is used for separating the first dish body and the second dish body; a pressing and rebounding mechanism, which is arranged between the culture dish and the culture cavity; a button, which is arranged on the outer surface of the culture dish and is used for providing a pressing point.

4. The humidifier for mycorrhizal symbiosis with plants according to claim 1, wherein The partition plate assembly comprises: a first partition plate, which extends downward from the top opening of the lower shell to the top of the culture cavity; a second partition plate, which is connected with the first partition plate at both ends, and whose outer side wall is connected with the inner side wall of the top opening of the lower shell; a third partition plate, which extends laterally from the lower end of the first partition plate to the lower end of the second partition plate to form the bottom of the partition plate assembly, so as to divide the interior of the lower shell into the first water storage cavity and the second water storage cavity.

5. The myco-humidifier according to claim 4, wherein: the first partition plate is a transparent partition plate; the outer surface of the lower shell, which faces away from the culture cavity, is provided with a water level observation window, which is used for observing the water level of the first water storage cavity and the second water storage cavity.

6. The myco-humidifier according to claim 1, wherein: the drip irrigation assembly comprises a drip irrigation inlet and a drip irrigation pipe, the drip irrigation inlet is arranged at the bottom of the partition plate assembly, and the top of the drip irrigation pipe is connected with the drip irrigation inlet; the top wall of the culture cavity is provided with an opening, and the position of the opening corresponds to the water dripping port of the drip irrigation pipe.

7. The humidifier for symbiosis with a plant according to claim 2, wherein The atomization assembly comprises: a vibrator, which is arranged at the bottom of the mist outlet; a battery pack, which is electrically connected with the vibrator; a water inlet pipe, the top of which is connected with the vibrator, and the bottom of which extends to the bottom of the second water storage cavity.

8. The humidifier for symbiosis with a plant according to claim 2, wherein The upper shell is provided with a control panel, which is electrically connected with the drip irrigation assembly and the atomization assembly; the control panel comprises a display screen and a plurality of touch keys.

9. The humidifier for symbiosis with a plant according to claim 2, wherein The outer surface of the upper shell is provided with a power plug and a plurality of anti-slip protrusions.

10. The humidifier for mycoremediation of claim 1, wherein, The lower shell is of a split structure, and can be separated into two parts in the up-down direction.