Microorganism recycling device and recycling cleaning system
By designing a microbial recycling device, the problem of the difficulty in recycling and reusing microbial cleaning technology was solved, the recycling of microorganisms was achieved, and resource utilization and cleaning efficiency were improved.
Patent Information
- Application Number
- CN202411264473.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2044-09-10
AI Technical Summary
Existing microbial cleaning technologies make it difficult to recycle and reuse microorganisms, resulting in waste of resources.
A microbial recycling device is designed, which includes a recovery component, a generation component and a drive component. The recovered microorganisms are transported to the generation component by the drive component, and the microorganisms are wrapped by the wrapping parts in the generation component to generate microbial cleaning parts for recycling.
It realizes the recycling of microorganisms, reduces resource waste, and improves cleaning efficiency and resource utilization.
Smart Images

Figure CN119432543B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of microorganism recycling, in particular to a microorganism recycling device and a recycling cleaning system. BACKGROUND
[0002] With the development of microorganism technology, microorganism cleaning technology has gradually entered the vision of everyone. The basic principle of microorganism cleaning technology is to convert oil stains into harmless carbon dioxide, water and soluble fatty acids through the decomposition of microorganisms. Microorganism cleaning has high cleaning efficiency on oil stains, and is often used to clean equipment with more oil stains, such as range hoods. However, the current microorganism cleaning technology is difficult to recycle and reuse, resulting in a lot of waste. SUMMARY
[0003] The present application provides a microorganism recycling device and a recycling cleaning system, aiming to solve the problem that the current microorganism cleaning technology is difficult to recycle and reuse.
[0004] In a first aspect, the present application provides a microorganism recycling device applied to a recycling cleaning system, which comprises a recycling component, a generating component and a driving component; the recycling component is used for recycling microorganisms; the generating component is in communication with the recycling component and is provided with a wrapping part for wrapping the microorganisms; the driving component is used for driving the recycling component to transport the microorganisms into the generating component, and the driving component is also used for driving the wrapping part of the generating component to wrap the microorganisms to generate a microorganism cleaning part.
[0005] Further, the recycling component comprises a recycling bin for recycling the microorganisms; the recycling bin is arranged on the driving component, and a connecting passage is formed between the recycling bin and the generating component, which is used for the microorganisms to pass through; wherein the driving component can be upwardly jacked to extrude the recycling bin so that the microorganisms in the recycling bin pass through the connecting passage into the generating component.
[0006] Further, the recycling component further comprises a heating part arranged at the bottom of the recycling bin for heating the recycling bin to evaporate the moisture in the recycling bin.
[0007] Further, the driving component comprises a first jacking component; the first jacking component is arranged below the recycling bin and is used for jacking the recycling bin to extrude the recycling bin.
[0008] Further, the driving assembly further comprises a telescopic assembly and a blowing assembly; the telescopic assembly is arranged in the connecting passage and comprises a movable part and a driving part; the movable part is provided with an opening close to one side of the generating assembly; the driving part is used to drive the movable part to enter or leave the generating assembly; the blowing assembly is communicated with the connecting passage through the recycling bin; when the movable part is located in the generating assembly, the blowing assembly blows the microorganism in the recycling bin into the connecting passage.
[0009] Further, the generating assembly comprises a first containing bin for placing the wrapping piece and a second containing bin for placing the protective shell; the first containing bin and the second containing bin are arranged on the driving assembly, and the first containing bin and the second containing bin are communicated; the second containing bin is communicated with the recycling assembly; when the microorganism is located in the protective shell, the driving assembly jacks up the first containing bin to extrude the first containing bin so that the wrapping piece in the first containing bin enters the protective shell to generate the microorganism cleaning piece.
[0010] Further, the protective shell comprises an upper shell and a lower shell; the upper shell is arranged in the upper cover of the microorganism recycling device; and the lower shell is arranged in the second containing bin.
[0011] Further, the driving assembly comprises a second jacking assembly; the second jacking assembly is arranged at the bottom of the first containing bin and is used to jack up the first containing bin.
[0012] Further, the driving assembly further comprises a third jacking assembly; the third jacking assembly is arranged at the bottom of the second containing bin and is used to jack up the second containing bin to close the protective shell.
[0013] In the second aspect, the present application provides a circulating cleaning system, which comprises an oil-stained device, a cleaning device and the microorganism recycling device; the cleaning device is arranged on the oil-stained device, and the cleaning device is provided with a cleaning bin for mounting the microorganism cleaning piece generated by the microorganism recycling device.
[0014] The circulating cleaning system disclosed in the present invention includes oil pollution equipment, a cleaning device and a microbial recycling device. The microbial recycling device includes a recovery component, a generation component and a drive component. The recovery component is used to recycle used microorganisms. The generation component is connected to the recovery component and is used to generate a package that wraps the microorganisms. The drive component is used to transport the microorganisms in the recovery component to the generation component on the one hand, and to drive the generation component to generate a microbial cleaning component on the other hand. The microbial cleaning component is used to clean equipment such as range hoods, and is recycled into the recovery component after cleaning, thereby forming a recycling of microorganisms. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are 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.
[0016] Figure 1 This is a schematic structural diagram of a microbial recycling device provided by one embodiment of the present invention;
[0017] Figure 2 It is a structural diagram of a circulating cleaning system provided by one embodiment of the present invention;
[0018] Figure 3 Schematic diagram of the internal structure of a circulation cleaning system provided by one embodiment of the present invention;
[0019] Figure 4 It is a partial structural diagram of a cleaning device provided by one embodiment of the present invention;
[0020] Figure 5 This is a schematic structural diagram of a microbial recycling device in a first state provided by an embodiment of the present invention;
[0021] Figure 6 is a schematic structural diagram of a microbial recycling device in a second state provided by an embodiment of the present invention;
[0022] Figure 7 is a schematic structural diagram of a microbial recycling device in a third state provided by an embodiment of the present invention;
[0023] BRIEF DESCRIPTION OF DRAWINGS: 100, microbial recycling device; 10, recycling assembly; 11, recycling bin; 12, heating piece; 20, generating assembly; 21, wrapping piece; 22, first containing bin; 23, protective shell; 24, second containing bin; 25, upper shell; 26, lower shell; 30, driving assembly; 31, first jacking assembly; 32, telescopic assembly; 33, blowing assembly; 34, second jacking assembly; 35, third jacking assembly; 40, connecting passage; 50, upper cover; 200, cleaning device; 210, cleaning bin; 220, water guide pipe; 230, water injection port; 240, water pump; 300, oil stain device; 400, containing piece; 500, microbial cleaning piece. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0025] It should be understood that, when used in the specification and the appended claims, the terms "comprise" and "include" indicate the presence of described features, integers, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integers, operations, elements, components, and / or groups thereof.
[0026] It should also be understood that the terms used in the present application specification are only for the purpose of describing specific embodiments and are not intended to limit the present application. As used in the present application specification and the appended claims, the singular forms "a", "an" and "the" are intended to include the plural forms, unless the context clearly indicates otherwise. It should be further understood that the term "and / or" used in the present application specification and the appended claims means any combination of one or more of the associated listed items and all possible combinations thereof.
[0027] In addition, the direction terms mentioned in the present application, such as "up", "down", "front", "back", "left", "right", "inner", "outer", "side", etc., are only the directions of the attached drawings and the directions of the product in use. Therefore, the direction terms used are for the purpose of description and understanding of the present application, and are not intended to limit the present application. In addition, in the drawings, structures similar or identical in structure are denoted by the same reference numerals.
[0028] Reference Figures 1 to 7 , Figure 1 is a structural schematic diagram of a microbial recycling device 100 provided by an embodiment of the present application; Figure 2It is a structural diagram of a circulating cleaning system provided by one embodiment of the present invention; Figure 3 Schematic diagram of the internal structure of a circulation cleaning system provided by one embodiment of the present invention; Figure 4 is a partial structural diagram of a cleaning device 200 provided in one embodiment of the present invention; Figure 5 1 is a schematic structural diagram of a microbial recycling device 100 provided in a first state according to an embodiment of the present invention; Figure 6 1 is a schematic structural diagram of a microbial recycling device 100 in a second state according to an embodiment of the present invention; Figure 7 FIG. 1 is a schematic structural diagram of a microbial recycling device 100 provided in an embodiment of the present invention in a third state. Figure 1 As shown, the microorganism recycling device 100 includes a recovery component 10, a generation component 20 and a drive component 30; the recovery component 10 is used to recycle microorganisms; the generation component 20 is connected to the recovery component 10, and is provided with a wrapping member 21 for wrapping the microorganisms; the drive component 30 is used to drive the recovery component 10 to transport the microorganisms to the generation component 20, and the drive component 30 is also used to drive the wrapping member 21 of the generation component 20 to wrap the microorganisms to generate a microbial cleaning member 500.
[0029] Specifically, the circulating cleaning system includes an oil pollution equipment 300, a microbial recycling device 100, and a cleaning device 200 for cleaning the oil pollution equipment 300. The oil pollution equipment 300 can be a device that is easily contaminated with oil pollution, such as a range hood. The cleaning device 200 is provided with a cleaning chamber 210 for installing the microbial cleaning piece 500 generated by the microbial recycling device 100. After the microbial cleaning piece 500 is installed in the cleaning chamber 210, the cleaning device 200 cleans the oil pollution equipment 300 and can recover the microorganisms into a receiving piece 400 after cleaning is completed. The microorganisms in the receiving piece 400 are then poured into the microbial recycling device 100, and the microbial recycling device 100 recovers the microorganisms and generates a microbial cleaning piece 500.
[0030] The microbial recycling device 100 may include a recovery component 10, a generation component 20 and a drive component 30. The recovery component 10 is used to recover microorganisms, and a grease concentration detector may be provided in the recovery component 10 to detect whether the microorganisms recovered by the recovery component 10 have completed the decomposition of grease. When the grease concentration of the recovered microorganisms reaches the standard, the process of generating the microbial cleaning element 500 is entered.
[0031] The generating assembly 20 is in communication with the recycling assembly 10, that is, a connecting loop can be provided between the generating assembly 20 and the recycling assembly 10, and the microorganisms in the recycling assembly 10 can enter the generating assembly 20 through the connecting loop. The generating assembly 20 is further provided with a wrapping member 21 for wrapping the microorganisms. The wrapping member 21 can be gelatin or other water-soluble gel. When the microorganisms enter the generating assembly 20, the wrapping member 21 can wrap the microorganisms to generate the microorganism cleaning member 500. The microorganism cleaning member 500 can be a capsule containing microorganisms.
[0032] The driving device can include a plurality of driving assemblies 30 for driving the recycling assembly 10 and the generating assembly 20, respectively. For example, the driving device can include two driving assemblies 30, one of which is used to drive the recycling assembly 10 to transport the microorganisms, and the other of which is used to drive the generating assembly 20 to generate the microorganism cleaning member 500. When the recycling assembly 10 completes the recycling of the microorganisms, the driving assembly 30 for driving the recycling assembly 10 can drive the microorganisms in the recycling assembly 10 to enter the generating assembly 20. When all the microorganisms in the recycling assembly 10 enter the generating assembly 20, the other driving assembly 30 drives the wrapping member 21 in the generating assembly 20 to wrap the microorganisms to generate the microorganism cleaning member 500.
[0033] The cleaning and recycling process of the circulating cleaning system is as follows: as shown in Figure 2 , the microorganism cleaning member 500 is placed in the cleaning bin 210 of the cleaning device 200, and then the cleaning device 200 is started to clean the oil-stained equipment 300. As shown in Figure 3 , when the cleaning device 200 is cleaning, it first dissolves the microorganism cleaning member 500 with clean water. The microorganism cleaning member 500 begins to dissolve under the action of water, and after dissolving, the microorganisms wrapped by the microorganism cleaning member 500 are released. Then, the cleaning device 200 guides the water containing the microorganisms into the oil-stained equipment 300 through the water guide port. Finally, the microorganisms enter the collection member 400 located at the bottom of the oil-stained equipment 300 along with the water flow in the oil-stained equipment 300. As shown in Figure 4 , clean water can be injected into the cleaning device 200 through the water injection port 230, and the water containing the microorganisms can be guided into the oil-stained equipment 300 from the water guide pipe 220 under the action of the water pump 240. When the cleaning of the oil-stained equipment 300 is completed, the collection member 400 also completes the recycling of the microorganisms. Then, the clean water containing the microorganisms in the collection member 400 is poured into the recycling assembly 10 to enter the process of generating the microorganism cleaning member 500.
[0034] As shown in Figure 5As shown, the microorganism recycling device 100 can include an upper cover 50. When it is needed to pour in microorganisms, the upper cover 50 can be opened, and then the clean water with microorganisms is poured into the recycling assembly 10, and then the upper cover 50 is covered.
[0035] As shown, when the recycling assembly 10 completes the treatment of the clean water with microorganisms, the driving assembly 30 upwardly lifts the recycling assembly 10 to press the recycling assembly 10, so that the microorganisms enter the generating assembly 20. When the microorganisms completely enter the generating assembly 20, the driving assembly 30 upwardly lifts the generating assembly 20 to press the generating assembly 20, so that the wrapping member 21 of the generating assembly 20 wraps the microorganisms to generate the microorganism cleaning member 500. Figure 6 As shown, when the microorganism cleaning member 500 is generated, the microorganism cleaning member 500 can be ejected from the microorganism recycling device 100, and then the microorganism cleaning member 500 is installed into the cleaning bin 210 of the cleaning device 200, so as to facilitate the cleaning of the oil-stained equipment 300 next time.
[0036] Figure 7 As a further embodiment, the recycling assembly 10 includes a recycling bin 11 for recycling the microorganisms. The recycling bin 11 is arranged on the driving assembly 30, and a connecting passage 40 is formed between the recycling bin 11 and the generating assembly 20, and the connecting passage 40 is used for the microorganisms to pass through. The driving assembly 30 can be upwardly lifted to press the recycling bin 11, so that the microorganisms in the recycling bin 11 enter the generating assembly 20 through the connecting passage 40.
[0037] The recycling assembly 10 can include a recycling bin 11 for recycling the microorganisms. The recycling bin 11 can be a space arranged in the shell of the microorganism recycling device 100. The inner wall of the shell serves as the bin wall of the recycling bin 11, and the driving assembly 30 serves as the bottom plate of the recycling bin 11. The driving assembly 30 can be moved up and down to increase or reduce the volume of the recycling bin 11. The recycling bin 11 can also be a telescopic container, which can adjust the size of the volume under the action of the driving assembly 30.
[0038] As shown, when the recycling bin 11 completes the treatment of the clean water with microorganisms, the upper cover 50 of the microorganism recycling device 100 is opened, and the solution in the collecting member 400 is poured into the recycling bin 11. The solution in the collecting member 400 is a mixture of microorganisms, water, oil, and other substances. After the solution is poured into the recycling bin 11, the upper cover 50 is covered, as shown.
[0039] As shown, when the recycling bin 11 completes the treatment of the clean water with microorganisms, the upper cover 50 of the microorganism recycling device 100 is opened, and the solution in the collecting member 400 is poured into the recycling bin 11. The solution in the collecting member 400 is a mixture of microorganisms, water, oil, and other substances. After the solution is poured into the recycling bin 11, the upper cover 50 is covered, as shown. Figure 1 Figure 2 Figure 3 In the embodiment, the driving assembly 30 is lifted upward to press the microorganisms in the recycling bin 11, so that the microorganisms move to the left side of the recycling bin 11 and enter the generating assembly 20. When the generating assembly 20 completes the generation of the microorganism cleaning element 500, the driving assembly 30 is reset, as shown in Figure 4
[0040] Referring to Figure 5 As a further embodiment, the recycling assembly 10 further comprises a heating element 12 arranged at the bottom of the recycling bin 11 for heating the recycling bin 11 to evaporate the moisture in the recycling bin 11.
[0041] In the embodiment, the recycling assembly 10 can comprise a heating element 12 arranged at the bottom of the recycling bin 11 for heating the microorganisms in the recycling bin 11. If the bottom of the recycling bin 11 is the driving assembly 30, the heating element 12 can be arranged on the driving assembly 30.
[0042] When the solution is poured into the recycling bin 11 by the containing element 400, the recycling bin 11 contains not only the microorganisms but also water, fat and other substances. The microorganisms need a certain time to decompose the fat and other substances. A fat concentration detector can be arranged in the recycling bin 11 to detect the concentration of fat in the solution in the recycling bin 11. When the concentration of fat decreases to a certain extent, it indicates that the decomposition is completed. The heating element 12 is used to raise the temperature in the recycling bin 11 to evaporate the moisture in the solution. When the concentration of fat in the solution is qualified and the moisture in the solution is evaporated, the driving assembly 30 is lifted to press the microorganisms and transport them to the generating assembly 20.
[0043] As a further embodiment, the driving assembly 30 comprises a first lifting assembly 31. The first lifting assembly 31 is arranged below the recycling bin 11 and is used to lift the recycling bin 11 to press the recycling bin 11.
[0044] In the embodiment, the driving assembly 30 can comprise a first lifting assembly 31. The lifting assembly is arranged below the recycling bin 11 and is connected with the recycling bin 11, and is used to drive the recycling bin 11 to lift and lower. The first lifting assembly 31 can comprise a telescopic rod and a driving motor. The top of the telescopic rod is provided with a platform for mounting the recycling bin 11. The driving motor can drive the telescopic rod to extend and retract to drive the recycling bin 11 to lift and lower. In addition, the platform at the top of the telescopic rod can also be used as the bottom of the recycling bin 11. When the telescopic rod extends and retracts, the volume of the recycling bin 11 can be directly changed.
[0045] As shown in Figure 6 and Figure 7 When the recycling bin 11 completes the treatment of the solution, the first lifting assembly 31 is lifted upward until it reaches the position shown in Figure 5 At this time, the volume of the recycling bin 11 is smaller thanFigure 6 The volume of the recovery bin 11 is greatly reduced, and thus the microorganisms in the recovery bin 11 move from the connection between the recovery bin 11 and the generating assembly 20 to the generating assembly 20. When the generating assembly 20 completes the generation of the microorganism cleaning piece 500, the first jacking assembly 31 is reset to Figure 6 the position shown.
[0046] As a further embodiment, the driving assembly 30 further comprises a telescopic assembly 32 and a blowing assembly 33; the telescopic assembly 32 is arranged in the connection passage 40 and comprises a movable part and a driving part, the movable part is provided with an opening near one side of the generating assembly 20, and the driving part is used to drive the movable part to enter or leave the generating assembly 20; the blowing assembly 33 is in communication with the connection passage 40 through the recovery bin 11; wherein when the movable part is located in the generating assembly 20, the blowing assembly 33 blows the microorganisms in the recovery bin 11 into the connection passage 40.
[0047] The driving assembly 30 can further comprise a telescopic assembly 32 and a blowing assembly 33, both of which are used to assist the first jacking assembly 31 to transport the microorganisms to the generating assembly 20. As Figure 7 shown, a connection passage 40 is arranged between the recovery bin 11 and the generating assembly 20, and the telescopic assembly 32 is arranged in the connection passage 40.
[0048] The telescopic assembly 32 can comprise a movable part and a driving part, the movable part is arranged at one side of the generating assembly 20, and the driving part is used to drive the movable part to telescope. As Figure 1 shown, Figure 5 the telescopic assembly 32 is in a contracted state, as Figure 6 shown, Figure 6 the telescopic assembly 32 is in an extended state, when the telescopic assembly 32 is in the extended state, the movable part of the telescopic assembly 32 moves into the generating assembly 20, which facilitates the transportation of the microorganisms into the generating assembly 20. In addition, the movable part can be provided with a bent part, which is perpendicular to the horizontal direction, as Figure 5 shown, when the microorganisms enter the bent part, the microorganisms can drop from the bent part into the generating assembly 20.
[0049] The blowing assembly 33 can comprise a fan and an air duct, the fan is in communication with the recovery bin 11 through the air duct, and the air duct is in communication with the connection passage 40 through the recovery bin 11. As Figure 5 shown, when the first jacking assembly 31 jacks up the recovery bin 11 to Figure 5When the position shown, the fan of the blowing assembly 33 starts to work, the wind blown by the fan enters the connecting passage 40 through the air duct, and the microorganisms can also be blown to the connecting passage 40, thereby improving the transportation efficiency of the microorganisms. It should be noted that the air outlet of the air duct can be arranged opposite to the connecting passage 40, so that the wind blown out can directly enter the connecting passage 40.
[0050] The transportation process of the microorganisms is as follows: when the recovery bin 11 completes the cleaning of the solution, that is, the fat concentration in the recovery bin 11 reaches the standard, and the moisture is evaporated clean, the first lifting assembly 31 is lifted upward, and the recovery bin 11 is lifted to the position shown as Figure 5 The blowing assembly 33 starts to work, blows the wind to the connecting passage 40 through the air duct, and accelerates the transportation speed of the microorganisms from the recovery bin 11 to the generating assembly 20.
[0051] As a further embodiment, the generating assembly 20 includes a first containing bin 22 for placing the wrapping piece 21 and a second containing bin 24 for placing the protective shell 23; the first containing bin 22 and the second containing bin 24 are arranged on the driving assembly 30, and the first containing bin 22 and the second containing bin 24 are in communication, the second containing bin 24 is in communication with the recovery assembly 10; wherein, when the microorganisms are located in the protective shell 23, the driving assembly 30 lifts the first containing bin 22 to extrude the first containing bin 22 so that the wrapping piece 21 in the first containing bin 22 enters the protective shell 23 to generate the microbial cleaning piece 500.
[0052] The generating assembly 20 can include a first containing bin 22 and a second containing bin 24, the first containing bin 22 is provided with a wrapping piece 21, and the second containing bin 24 is provided with a protective shell 23; the wrapping piece 21 can be gelatin or other substances easily soluble in water, and the protective shell 23 can be a capsule shell, which is also easily soluble in water.
[0053] The first containing bin 22 and the second containing bin 24 are arranged on the driving assembly 30, and the first containing bin 22 and the second containing bin 24 are in communication, the wrapping piece 21 in the first containing bin 22 can be moved to the second containing bin 24 under the action of the driving assembly 30, and the microorganisms in the recovery assembly 10 can also be moved to the second containing bin 24 under the action of the driving assembly 30, that is, the second containing bin 24 is also used to generate the microbial cleaning piece 500.
[0054] As shown in Figure 5 and Figure 6As shown, after the microorganism enters the second containing bin 24, the driving assembly 30 located below the first containing bin 22 extrudes the first containing bin 22 upward to reduce the volume of the first containing bin 22, and then extrudes the wrapping member 21 in the first containing bin 22 into the second containing bin 24. At this time, the bottom of the second containing bin 24 is placed with the microorganism. After the wrapping member 21 enters the second containing bin 24, the wrapping member 21 mixes with the microorganism and wraps the microorganism. After the wrapping member 21 fully wraps the microorganism, the microorganism cleaning member 500 is generated. Then, the driving assembly 30 located below the second containing bin 24 extrudes the second containing bin 24 upward to reduce the volume of the second containing bin 24, and then lifts the microorganism cleaning member 500 upward until the microorganism cleaning member 500 is ejected from the upper cover 50.
[0055] As a further embodiment, the protective shell 23 includes an upper shell 25 and a lower shell 26. The upper shell 25 is arranged in the upper cover 50 of the microorganism recycling device 100, and the lower shell 26 is arranged in the second containing bin 24.
[0056] As shown in FIG. 5, the protective shell 23 can include an upper shell 25 and a lower shell 26, which can be a capsule. The upper shell 25 is arranged in the upper cover 50, and the lower shell 26 is arranged in the second containing bin 24. The upper shell 25 and the lower shell 26 are in a separated state. The microorganism and the wrapping member 21 can enter the lower shell 26 through the opening of the lower shell 26.
[0057] After the microorganism enters the lower shell 26, the driving assembly 30 extrudes the first containing bin 22, so that the wrapping member 21 in the first containing bin 22 enters the lower shell 26. After the wrapping member 21 enters the lower shell 26, the microorganism is wrapped. Finally, the driving assembly 30 drives the lower shell 26 to lift upward until the lower shell 26 is connected with the upper shell 25 to form the microorganism cleaning member 500.
[0058] As a further embodiment, the driving assembly 30 includes a second lifting assembly 34. The second lifting assembly 34 is arranged at the bottom of the first containing bin 22 and is used to lift the first containing bin 22.
[0059] The driving assembly 30 can include a second lifting assembly 34. The second lifting assembly 34 is arranged below the first containing bin 22 and is used to lift the first containing bin 22. When the second lifting assembly 34 moves upward, the volume of the first containing bin 22 is reduced, thereby extruding the wrapping member 21 in the first containing bin 22 and forcing the wrapping member 21 to flow into the second containing bin 24 from the side.
[0060] As a further embodiment, the driving assembly 30 further includes a third lifting assembly 35 ; the third lifting assembly 35 is disposed at the bottom of the second accommodating bin 24 and is used to lift the second accommodating bin 24 to close the protective shell 23 .
[0061] Among them, the driving assembly 30 can also include a third lifting assembly 35, which is arranged at the bottom of the second accommodating chamber 24 and is used to lift the second accommodating chamber 24. When the third lifting assembly 35 is lifted upward, the lower shell 26 moves upward until it is connected to the upper shell 25 into a whole to form a microbial cleaning part 500.
[0062] The process of the microbial recycling device 100 to generate the microbial cleaning element 500 is as follows: Figure 6 As shown, first pour the solution in the receiving part 400 into the recovery chamber 11, then cover the upper cover 50, start the heating element 12 in the recovery chamber 11 to heat, and when the water in the recovery chamber 11 evaporates completely and the fat concentration reaches the standard, the first lifting component 31 is lifted upward to Figure 5 In the position shown, the telescopic component 32 and the blowing component 33 start to work, and the movable part of the telescopic component 32 enters the second accommodating chamber 24. The microorganisms flow into the lower shell 26 under the action of the blowing component 33 and the squeezing of the first lifting component 31. When all the microorganisms in the recovery chamber 11 flow into the lower shell 26, the second lifting component 34 lifts the first accommodating chamber 22, forcing the package 21 in the first accommodating chamber 22 to flow into the lower shell 26. When the package 21 completes the wrapping of the microorganisms, the third lifting component 35 lifts the lower shell 26, so that the lower shell 26 and the upper shell 25 are connected into a whole to form a microorganism cleaning member 500, and finally the microorganism cleaning member 500 is ejected from the upper cover 50, as shown in FIG. Figure 6 When the oil-stained equipment 300 needs to be cleaned, the microbial cleaning member 500 is placed in the cleaning chamber 210 of the cleaning device 200 and clean water is injected to start cleaning the oil-stained equipment 300.
[0063] The application further provides a circulating cleaning system, which comprises the oil-stained equipment 300, the cleaning device 200 and the microbial recycling device 100 according to any one of the above embodiments; the cleaning device 200 is arranged on the oil-stained equipment 300, and the cleaning device 200 is provided with a cleaning bin 210 for mounting the microbial cleaning element 500 generated by the microbial recycling device 100; the microbial recycling device 100 comprises a recycling assembly 10, a generating assembly 20 and a driving assembly 30; the recycling assembly 10 is used for recycling the microorganisms; the generating assembly 20 is in communication with the recycling assembly 10 and is provided with a wrapping element 21 for wrapping the microorganisms; the driving assembly 30 is used for driving the recycling assembly 10 to transport the microorganisms into the generating assembly 20, and the driving assembly 30 is also used for driving the wrapping element 21 of the generating assembly 20 to wrap the microorganisms to generate the microbial cleaning element 500.
[0064] Specifically, the circulating cleaning system comprises the oil-stained equipment 300, the microbial recycling device 100 and the cleaning device 200 for cleaning the oil-stained equipment 300, the oil-stained equipment 300 can be an oil fume exhauster or other equipment that is easy to be stained with oil, the cleaning device 200 is provided with the cleaning bin 210 for mounting the microbial cleaning element 500 generated by the microbial recycling device 100, when the microbial cleaning element 500 is mounted in the cleaning bin 210, the cleaning device 200 cleans the oil-stained equipment 300, and the microorganisms can be recycled into a containing element 400 after the cleaning is completed, and then the microorganisms in the containing element 400 are poured into the microbial recycling device 100, the microorganisms are recycled and the microbial cleaning element 500 is generated by the microbial recycling device 100.
[0065] The microbial recycling device 100 can comprise the recycling assembly 10, the generating assembly 20 and the driving assembly 30, the recycling assembly 10 is used for recycling the microorganisms, and an oil concentration detector can be arranged in the recycling assembly 10, which is used for detecting whether the microorganisms recycled by the recycling assembly 10 complete the decomposition of oil, and when the oil concentration of the recycled microorganisms meets the standard, the microorganisms enter the process of generating the microbial cleaning element 500.
[0066] The generating assembly 20 is in communication with the recycling assembly 10, that is, a connecting loop can be arranged between the generating assembly 20 and the recycling assembly 10, and the microorganisms in the recycling assembly 10 can enter the generating assembly 20 through the connecting loop. The generating assembly 20 is further provided with the wrapping element 21 for wrapping the microorganisms, the wrapping element 21 can be gelatin or other gel-like substances that are easy to dissolve in water, when the microorganisms enter the generating assembly 20, the wrapping element 21 can wrap the microorganisms to generate the microbial cleaning element 500, and the microbial cleaning element 500 can be a capsule containing microorganisms.
[0067] The driving device can include a plurality of driving assemblies 30 respectively used for driving the recycling assembly 10 and the generating assembly 20. For example, the driving device can include two driving assemblies 30, one of which is used for driving the recycling assembly 10 to transport the microorganisms, and the other of which is used for driving the generating assembly 20 to generate the biological cleaning piece 500. When the recycling assembly 10 completes the recycling of the microorganisms, the driving assembly 30 used for driving the recycling assembly 10 can drive the microorganisms in the recycling assembly 10 into the generating assembly 20, and when all the microorganisms in the recycling assembly 10 enter the generating assembly 20, the other driving assembly 30 drives the wrapping piece 21 in the generating assembly 20 to wrap the microorganisms to generate the biological cleaning piece 500.
[0068] The cleaning and recycling process of the recycling cleaning system is as follows: as shown in Figure 6 , the biological cleaning piece 500 is placed in the cleaning bin 210 of the cleaning device 200, and then the cleaning device 200 is started to clean the oil-stained equipment 300. As shown in Figure 6 , when the cleaning device 200 is cleaning, the microorganism cleaning piece 500 is first dissolved by clean water, the microorganism cleaning piece 500 starts to dissolve under the action of water, and the microorganisms wrapped by the microorganism cleaning piece are released after dissolution, and then the water with the microorganisms is guided into the place needing cleaning in the oil-stained equipment 300 through the water guide of the cleaning device 200, and finally the microorganisms enter the accommodation piece 400 located at the bottom of the oil-stained equipment 300 along with the water flow in the oil-stained equipment 300. As shown in Figure 6 , clean water can be injected into the cleaning device 200 through the water injection port, and the clean water with the microorganisms is guided into the oil-stained equipment 300 under the action of the water pump. When the cleaning of the oil-stained equipment 300 is completed, the recycling of the microorganisms by the accommodation piece 400 is also completed, and then the clean water with the microorganisms in the accommodation piece 400 is poured into the recycling assembly 10 to enter the process of generating the microorganism cleaning piece 500.
[0069] As shown in Figure 7 , the microorganism recycling device 100 can include an upper cover 50, which can be opened when the microorganisms need to be poured, and then the clean water with the microorganisms is poured into the recycling assembly 10, and then the upper cover 50 is covered.
[0070] As shown in Figure 5 , when the recycling assembly 10 completes the treatment of the clean water with the microorganisms, the driving assembly 30 upwardly lifts the recycling assembly 10 to press the recycling assembly 10, so that the microorganisms enter the generating assembly 20. When all the microorganisms enter the generating assembly 20, the driving assembly 30 upwardly lifts the generating assembly 20 to press the generating assembly 20, so that the wrapping piece 21 of the generating assembly 20 wraps the microorganisms to generate the microorganism cleaning piece 500.
[0071] As shown inFigure 6 Figure 7 Figure 2 Figure 3 Figure 4 Figure 5 Figure 6 Figure 7 As shown, after the microbial cleaning piece 500 is generated, the microbial cleaning piece 500 can be ejected from the microbial recycling device 100, and then the microbial cleaning piece 500 is installed into the cleaning bin 210 of the cleaning device 200, so as to facilitate the next cleaning of the oil-stained equipment 300.
[0072] The microbial recycling device and the recycling cleaning system disclosed by the application confirm whether the drain pipe needs to be dredged through the detection module, and when dredging is needed, the pollutants in the drain pipe can be stirred through the bubbles generated by the foaming piece to make the pollutants discharged through the water outlet of the drain pipe.
[0073] The above is only a specific embodiment of the application, but the protection scope of the application is not limited to this. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical range disclosed by the application, and these modifications or replacements should be covered within the protection scope of the application. Therefore, the protection scope of the application should be subject to the protection scope of the claims.
Claims
1. A microorganism recycling device, characterized by comprising: The application relates to a device for recycling and generating microorganisms, which is applied to a circulating cleaning system and comprises the following components: a recycling component for recycling the microorganisms; a generating component in communication with the recycling component, which is provided with a wrapping member for wrapping the microorganisms, wherein the wrapping member is a water-soluble glue; a driving component for driving the recycling component to transport the microorganisms into the generating component, and for driving the wrapping member of the generating component to wrap the microorganisms to generate a microorganism cleaning member; the recycling component comprises a recycling bin for recycling the microorganisms; the recycling bin is arranged on the driving component, and a connecting passage is formed between the recycling bin and the generating component, which is used for the microorganisms to pass through; the driving component is upwardly lifted to extrude the recycling bin, so that the microorganisms in the recycling bin pass through the connecting passage into the generating component; the driving component comprises a first lifting component; the first lifting component is arranged below the recycling bin and is used for lifting the recycling bin to extrude the recycling bin; the generating component comprises a first containing bin for placing the wrapping member and a second containing bin for placing a protective shell; the first containing bin and the second containing bin are both arranged on the driving component, and the first containing bin and the second containing bin are in communication, and the second containing bin is in communication with the recycling component; when the microorganisms are in the protective shell, the driving component lifts the first containing bin to extrude the first containing bin, so that the wrapping member in the first containing bin enters the protective shell to generate the microorganism cleaning member; the driving component comprises a second lifting component; and the second lifting component is arranged at the bottom of the first containing bin and is used for lifting the first containing bin.
2. The microorganism recycling device according to claim 1, wherein the recycling component further comprises a heating member arranged at the bottom of the recycling bin and used for heating the recycling bin to evaporate the moisture in the recycling bin.
3. The microorganism recycling device according to claim 1, wherein the driving component further comprises a telescopic component and a blowing component; the telescopic component is arranged in the connecting passage and comprises a movable part and a driving part; the movable part is provided with an opening close to one side of the generating component; and the driving part is used for driving the movable part to enter or leave the generating component; the blowing component is in communication with the recycling bin and the connecting passage; when the movable part is in the generating component, the blowing component blows the microorganisms in the recycling bin into the connecting passage.
4. The microorganism recycling device according to claim 1, wherein the protective shell comprises an upper shell and a lower shell; the upper shell is arranged in the upper cover of the microorganism recycling device; and the lower shell is arranged in the second containing bin.
5. The microorganism recycling device according to claim 1, wherein the driving component further comprises a third lifting component; the third lifting component is arranged at the bottom of the second containing bin and is used for lifting the second containing bin to close the protective shell.
6. A recirculating cleaning system characterized by, the device comprises an oil-stained equipment, a cleaning device and the microorganism recycling device according to any one of claims 1-5. The cleaning device is arranged on the oil-contaminated equipment, and the cleaning device is provided with a cleaning bin for mounting the microbial cleaning element generated by the microbial recycling device.
Citation Information
Patent Citations
Oil stain cleaning device, oil stain cleaning method and range hood
CN118935489A