Multifunctional swill dry-wet separation device
By designing a multi-functional dry and wet separation device for slurry, the problem of inability to effectively treat slurry in the prior art is solved, dry and wet separation of slurry and oil-water extraction are realized, and treatment efficiency and environmental quality are improved.
Patent Information
- Application Number
- CN202510456214.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-06-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
There is a lack of treatment equipment specifically for slurry in the prior art, which makes it impossible to achieve effective separation, extraction and recycling of meal oil and water residues.
A multi-functional water-drying and wet separation device is designed, including a garbage can, an anti-odor liquid collector, a wet and dry separator and a separation mechanism. The triple filtration and oil-water separation are realized through the barrier part, the flow blocking plate and the liquid discharge part, and combined with the heating function to reduce grease solidification.
Effective dry and wet separation of slurry and oil and water extraction are achieved, reducing the difficulty and cost of subsequent processing, improving the working environment and improving the diner experience.
Smart Images

Figure CN120156793A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of swill treatment, and specifically provides a multifunctional swill dry-wet separation device. Background Art
[0002] Swill, also known as hogwash or sour water, is a mixture of various leftovers, such as leftover dishes, rice, fruit peels, and vegetable leaves, and water generated in the catering industry, food processing enterprises, and households in daily life.
[0003] In the prior art, although a variety of kitchen waste separation devices, such as kitchen oil-water separators (used in hot pot restaurants), have been introduced, there is still a market gap for equipment specifically designed for the refined treatment of swill, and there are many functional shortcomings. For example, the kitchen waste separation device is only designed for separating the dry and wet residues and cleaning waste liquid during the cleaning process of fruits and vegetables, and does not have the function of separating the oil, water, and residues after meals; the kitchen oil-water separator is only designed for the specific application scenario of hot pot waste liquid treatment, solely pursuing the oil-water separation effect, without paying attention to the dry-wet separation of pretreatment and the hierarchical extraction of oil and water in post-treatment. Moreover, its landfill or riveting fixing scheme is not conducive to the transfer application of the equipment. Most canteens, restaurants, and street vendors directly use polyethylene plastic chemical barrels or enzyme barrels, which do not have the functionality of swill treatment at all, and thus cannot effectively separate, extract, and recycle the oil, water, and residues of meals. Therefore, we propose a multifunctional swill dry-wet separation device. Summary of the Invention
[0004] (I) Technical Problems to be Solved
[0005] In view of the deficiencies of the prior art, the present invention provides a multifunctional swill dry-wet separation device, which solves the problem that the prior art does not have the functionality of swill treatment and thus cannot effectively separate, extract, and recycle the oil, water, and residues of meals.
[0006] (II) Technical Solutions
[0007] To achieve the above objectives, the present invention is realized through the following technical solutions: A multifunctional swill dry-wet separation device includes a trash can body, on the outer surface of which two trash can handles are installed. Above the trash can body, a trash can cover is threadedly connected. Above the trash can cover, a detachable anti-odor liquid collector and a dry-wet separator are sequentially arranged. Inside the wall of the trash can body, a separation mechanism is provided, and the separation mechanism includes a partition part arranged inside the trash can body. The partition part divides the inside of the trash can body into a first filtration area, a second filtration area, and a third filtration area. On the surface of the trash can body, multiple sets of liquid discharge parts are provided, and the multiple sets of liquid discharge parts are sequentially connected to the first filtration area, the second filtration area, and the third filtration area;
[0008] The anti-odor liquid collector includes a collector housing. An upper edge interface and a lower edge interface are respectively arranged at the upper and lower ends of the collector housing. The lower edge interface is sleeved on the trash can lid. A positioning plate is fixedly connected to the inner wall of the collector housing. A flow guide member is fixedly connected to the inner wall of the collector housing. A threaded pipe is fixedly connected below the flow guide member. An anti-odor sealing plug with automatic rebound and closing is installed on the threaded pipe. A through hole for the anti-odor sealing plug to pass through is opened on the surface of the trash can lid;
[0009] The dry-wet separator includes a separator adapter box inserted on the upper edge interface. A flow guide surface is opened above the separator adapter box. A separation part with a separation effect is inserted into the inner wall of the separator adapter box. Heating parts are arranged on both sides of the separator adapter box.
[0010] Preferably, the baffle part includes an oil baffle one and an oil baffle two fixed on the inner wall of the trash can body. Two flow blocking plates one and two are fixedly connected to the bottom inner wall of the trash can body. Through the above components, the oil baffle one and the oil baffle two cooperate with the flow blocking plates one and two to divide the trash can body into three filtering areas, and the oil content percentage of the residual liquid in the three areas decreases in turn.
[0011] Preferably, the oil baffle one, the oil baffle two, the flow blocking plate one and the flow blocking plate two are all made of polyethylene plates.
[0012] Preferably, the liquid discharge part includes an oil discharge port one, a water discharge port one, an oil discharge port two, a water discharge port two, an oil discharge port three and a water discharge port three fixed on the surface of the trash can body. Among them, the oil discharge port one and the water discharge port one correspond to the first filtering area, the oil discharge port two and the water discharge port two correspond to the second filtering area, and the oil discharge port three and the water discharge port three correspond to the third filtering area.
[0013] Preferably, the anti-odor sealing plug includes a sealing sleeve threadedly connected to the threaded pipe. Two sealing plug flaps are rotatably connected to the outer surface of the sealing sleeve. A driving rod is fixedly connected to the surface of the sealing plug flap. A top spring is installed between the driving rod and the sealing sleeve. An outlet magnet is fixedly connected to the inner wall of the sealing sleeve. A plurality of upper edge magnets and lower edge magnets are respectively fixedly connected to the surface of the sealing plug flap. The upper edge magnets are magnetically connected to the outlet magnet. Through the above components, during use, the top spring cooperates with the driving rod to control the two sealing plug flaps to fit with the sealing sleeve for sealing, and cooperate with the upper edge magnets, the outlet magnet and the lower edge magnets to improve the sealing stability.
[0014] Preferably, the flow guide member is designed with a 60-degree depression angle.
[0015] Preferably, a notch for the circuit to pass through is opened on the surface of the upper edge interface. A block for positioning the dry-wet separator is fixedly connected to the surface of the upper edge interface.
[0016] Preferably, the separation part includes a dry-wet separation drawer inserted into the inner wall of the separator adapter box. A filter bottom is provided at the bottom of the dry-wet separation drawer. A pull rod is fixedly connected to the surface of the dry-wet separation drawer. Two slide rails for assisting the dry-wet separation drawer are installed on the inner wall of the separator adapter box. The filter bottom of the separation drawer uses a common coarse-hole diameter of 5 mm. Since the wall thickness of the dry-wet separation adapter box and the dry-wet separation drawer is relatively thin, it is 3 mm.
[0017] Preferably, a partition is fixedly connected to the inner wall of the dry-wet separation drawer. Through the above components, when collecting swill, in order to reduce the overflow of oil and water along the seams due to capillary action, which affects the cleanliness outside the separator adapter box, a partition is set in the dry-wet separation drawer to block possible overflows.
[0018] Preferably, the heating part includes two PTC constant-temperature ceramic electric heating plates installed on the inner wall of the separator adapter box. Two side plates are installed on the surface of the separator adapter box.
[0019] In summary, the technical effects and advantages of the present invention are as follows:
[0020] 1. In the present invention, it has four functions of filtration, deodorization, oil-water separation, and convenient extraction, occupies a small area, and has low power consumption (200 W).
[0021] 2. In the present invention, by setting a dry-wet separator, the separator adapter of the device can cooperate with the dry-wet separation drawer to filter out, collect and extract solid residues in a timely and effective manner. Its attached heating function can reduce the blockage of filter bottom holes by solidified grease, which not only reduces the oil residue of solid residues, but also improves the extraction rate of swill oil and reduces the difficulty and cost of subsequent dry-wet separation treatment.
[0022] 3. In the present invention, by setting an anti-odor liquid collector, the anti-odor seal in the anti-odor liquid collector adopts a design of pre-tightening with a top spring and magnetic force of a magnet to assist the sealing valve flap of the seal, which strengthens the sealing effect, reduces the external volatilization amount of swill gas, improves the working environment of employees, and enhances the dining experience of diners.
[0023] 4. In the present invention, by setting a separation mechanism, the oil-water separation trash can uses a blocking part, a flow blocking plate 1, a flow blocking plate 2, an oil blocking plate 1 and an oil blocking plate 2 to achieve triple filtration of swill, and divides the trash can body into a first filtration area, a second filtration area and a bottom third filtration area, ensuring the effect of oil-water separation. At the same time, multiple liquid discharge parts provided on the trash can body are also helpful for effective collection and treatment of oil and water.
[0024] 5. The present invention uses two PTC constant-temperature ceramic electric heating plates (220V / 60ºC / 100W) as the constant-temperature heater, which can meet the requirements of oil removal and anti-blockage at low power consumption (200W), meeting the current concept of advocating energy conservation, environmental protection, circular economy and green development. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a schematic diagram of the overall structure of a multifunctional food waste dry-wet separator of the present invention;
[0026] Figure 2 is an exploded view of a multifunctional food waste dry-wet separator of the present invention;
[0027] Figure 3 is a schematic diagram of the trash can body of a multifunctional food waste dry-wet separator of the present invention;
[0028] Figure 4 is a sectional structural schematic diagram of the trash can body of a multifunctional food waste dry-wet separator of the present invention;
[0029] Figure 5 is an exploded structural schematic diagram of the dry-wet separator of a multifunctional food waste dry-wet separator of the present invention;
[0030] Figure 6 is an exploded structural schematic diagram of the odor-proof liquid collector of a multifunctional food waste dry-wet separator of the present invention;
[0031] Figure 7 is an exploded structural schematic diagram of the odor-proof sealing plug of a multifunctional food waste dry-wet separator of the present invention;
[0032] Figure 8 Partial sectional structural schematic diagram of the odor-proof liquid collector of a multifunctional food waste dry-wet separator of the present invention.
[0033] In the figure: 1. trash can body; 2. trash can lid; 3. anti-odor liquid collector; 31. collector housing; 32. deflector; 33. positioning plate; 34. threaded pipe; 35. sealing sleeve; 36. pressing spring; 37. sealing plug flap; 38. outlet magnet; 39. upper edge magnet; 310. lower edge magnet; 311. drive rod; 312. lower edge interface; 313. upper edge interface; 314. notch; 315. clamping block; 4. dry-wet separator; 41. separator adapter box; 42. deflector surface; 43. dry-wet separation drawer; 44. filter bottom of the separation drawer; 45. partition; 46. pull rod; 47. slide rail; 48. PTC constant temperature ceramic electric heating plate; 49. side plate; 5. trash can handle; 6. separation mechanism; 61. oil baffle one; 62. flow blocking plate one; 63. oil baffle two; 64. flow blocking plate two; 65. oil drain port one; 66. water drain port one; 67. oil drain port two; 68. water drain port two; 69. oil drain port three; 610. water drain port three. Detailed implementation mode
[0034] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0035] Refer to Figures 1-8 As shown in the figure, a multifunctional food waste dry-wet separation device, a multifunctional food waste dry-wet separation device, includes a trash can body 1. The trash can body 1 is composed of a polyethylene fermentation barrel with a capacity of 200L and is transformed by cutting and hot melt adhesive bonding processes. Two trash can handles 5 are installed on the outer surface of the trash can body 1. A trash can lid 2 is threadedly connected above the trash can body 1. An anti-odor liquid collector 3 and a dry-wet separator 4 are sequentially arranged above the trash can lid 2, and a separation mechanism 6 is arranged on the inner wall of the trash can body 1.
[0036] Among them, the odor-proof liquid collector 3 includes a collector housing 31. Upper and lower ends of the collector housing 31 are respectively provided with an upper edge interface 313 and a lower edge interface 312. The lower edge interface 312 is sleeved on the trash can lid 2. A positioning plate 33 is fixedly connected to the inner wall of the collector housing 31. A flow guide member 32 is fixedly connected to the inner wall of the collector housing 31. The flow guide member 32 is designed with a 60-degree depression angle. A threaded pipe 34 is fixedly connected below the flow guide member 32. An odor-proof sealing plug with automatic rebound and closing is installed on the threaded pipe 34. A through hole for the odor-proof sealing plug to pass through is opened on the surface of the trash can lid 2. The odor-proof sealing plug includes a sealing sleeve 35 threadedly connected to the threaded pipe 34. Two sealing plug flaps 37 are rotatably connected to the outer surface of the sealing sleeve 35. A driving rod 311 is fixedly connected to the surface of the sealing plug flap 37. A tension spring 36 is installed between the driving rod 311 and the sealing sleeve 35. An outlet magnet 38 is fixedly connected to the inner wall of the sealing sleeve 35. A plurality of upper edge magnets 39 and lower edge magnets 310 are respectively fixedly connected to the surface of the sealing plug flap 37. The upper edge magnet 39 is magnetically connected to the outlet magnet 38. A notch for a circuit to pass through is opened on the surface of the upper edge interface 313. A block for positioning the wet and dry separator 4 is fixedly connected to the surface of the upper edge interface 313.
[0037] In this embodiment: When the swill is poured, the lower edge of the sealing plug flap 37 is flushed open by the leaked liquid. As the liquid continuously descends, the opening becomes larger and larger. At the same time, the upper driving rod 311 of the sealing plug flap 37 also undergoes displacement, and the pre-tightening spring is gradually stretched, and its pre-tightening force also increases accordingly until the two forces are balanced and the opening is in the maximum state. As the amount and impact force of the swill gradually decrease, the force of the tension spring 36 begins to gradually become the driving force of the sealing plug flap 37. The tension spring 36 gradually retracts, driving the driving rod 311 of the sealing plug flap 37 to approach the original position. According to the lever principle, the sealing plug flap 37 also gradually approaches the sealing sleeve. When the upper edge magnet 39 is relatively close to the outlet magnet 38, the attraction increases for the first time, and the sealing plug flap 37 quickly approaches. As the degree of fitting strengthens, when the lower edge magnets 310 of the two sealing plug flaps 37 also continuously approach, when the distance is close to a certain extent, they quickly attract and adjust the positional relationship between the two flaps, and the piston completes the closing. During the entire process of pouring and stopping the swill, the flap experiences two processes of "fast opening - slow opening" and "slow closing - fast closing".
[0038] Among them, the wet-dry separator 4 includes a separator adapter box 41 inserted on the upper edge interface 313. A diversion surface 42 is provided above the separator adapter box 41. A separation part with a separation effect is inserted into the inner wall of the separator adapter box 41. Heating parts are arranged on both sides of the separator adapter box 41. The separation part includes a wet-dry separation drawer 43 inserted into the inner wall of the separator adapter box 41. A separation drawer filter bottom 44 is provided at the bottom of the wet-dry separation drawer 43. A pull rod 46 is fixedly connected to the surface of the wet-dry separation drawer 43. Two slide rails 47 for assisting the wet-dry separation drawer 43 are installed on the inner wall of the separator adapter box 41. A partition plate 45 is fixedly connected to the inner wall of the wet-dry separation drawer 43. The heating part includes two PTC constant temperature ceramic electric heating plates 48 installed in the inner wall of the separator adapter box 41. Two side plates 49 are installed on the surface of the separator adapter box 41.
[0039] In this embodiment: To prevent the low-temperature condensation of animal fats remaining in the post-meal residues and strengthen the wet-dry separation effect of the residues, a PTC constant temperature ceramic electric heating plate 48 is installed in the wet-dry separation adapter box. This heating plate is of the 220V / 60ºC type. Considering the melting points of animal fats, beef fat: 40~46ºC, lard: 28~48ºC, cream: 30ºC, and the heat loss during the transfer process, the separation drawer filter bottom 44 uses a common coarse-hole aperture of 5mm, which basically meets the filtering requirements. Since the wall thicknesses of the separator adapter box 41 and the wet-dry separation drawer 43 are relatively thin, being 3mm, when collecting swill, to reduce the overflow of oil and water along the seams due to capillary action and affect the cleanliness outside the separator adapter box 41, a partition plate 45 is provided in the wet-dry separation drawer 43 to block possible overflows.
[0040] Among them, the separation mechanism 6 includes a partition part arranged in the trash can body 1. The partition part divides the inside of the trash can body 1 into a first filtration area, a second filtration area, and a third filtration area. Multiple groups of liquid discharge parts are arranged on the surface of the trash can body 1. The multiple groups of liquid discharge parts are sequentially connected to the first filtration area, the second filtration area, and the third filtration area. The partition part includes an oil baffle one 61 and an oil baffle two 63 fixed on the inner wall of the trash can body 1. Two flow blocking plates one 62 and flow blocking plates two 64 are fixedly connected to the bottom inner wall of the trash can body 1. The oil baffle one 61, the oil baffle two 63, the flow blocking plate one 62, and the flow blocking plate two 64 are all made of polyethylene plates. The liquid discharge parts include an oil discharge port one 65, a water discharge port one 66, an oil discharge port two 67, a water discharge port two 68, an oil discharge port three 69, and a water discharge port three 610 fixed on the surface of the trash can body 1. Among them, the oil discharge port one 65 and the water discharge port one 66 correspond to the first filtration area, the oil discharge port two 67 and the water discharge port two 68 correspond to the second filtration area, and the oil discharge port three 69 and the water discharge port three 610 correspond to the third filtration area.
[0041] In this embodiment: The separation device can separate oil from water, mainly by taking advantage of the density difference between water and oil and the principle of communicating vessels. The grease in the swill is mainly composed of edible vegetable oil and animal oil. Among them, the vegetable oil is composed of unsaturated fatty acids and glycerol compounds, with a density between 0.91 and 0.93 kg / L; the animal oil is mainly composed of saturated fatty acids, unsaturated fatty acids, cholesterol, fat-soluble vitamins, etc., and its density is generally also between 0.91 and 0.93 kg / L. However, the water in the swill generally belongs to brine, and its density is about 1.33 kg / L. When the swill is slowly poured into the trash can, the three filtration zones will gradually complete the oil-water separation and impurity sedimentation of the swill.
[0042] First of all, the first filtration zone will be filled first. Due to the lower density, most of the oil will float and be isolated on the left side of the oil baffle 61, and a small part will flow into the right side of the oil baffle 61 through the bottom channel; the flow blocking plate 62 effectively blocks the lateral flow of the swill in the first filtration zone, allowing the swill in the first filtration zone to complete the first sedimentation. Secondly, when the swill in the first filtration zone is full, the swill flowing into the left side of the oil baffle 63 already shows a state of "more water and less oil", and the right side of the oil baffle 63 is basically mainly brine; at this time, the flow blocking plate 64 blocks the lateral flow of the swill in the second filtration zone to complete the second sedimentation. Then, when the swill in the second filtration zone is full, the swill finally accumulates in the area on the right side of the flow blocking plate 64. The swill here has less oil content and less impurity content. Finally, when the swill poured into the right side of the flow blocking plate 64 exceeds the height of the flow blocking plate 64, the trash can body 1 forms a "three-chamber communicating vessel" with the oil baffle 61 and the oil baffle 63 as the intervals, and the oil-water separation function is not affected at all; at this time, the chamber partition function of the flow blocking plate 62 and the flow blocking plate 64 is weakened, and the swill components above the height of the flow blocking plate are the same, but still play a role in sedimentation.
[0043] Working principle of the present invention: During the processing, first, the swill is poured into the separator adapter box 41 through the diversion surface 42. Subsequently, the dry-wet separation drawer 43 performs dry-wet separation. The partition plate 45 blocks possible overflows. The PTC constant-temperature ceramic electric heating plate 48 can heat the grease to separate the oil and water. Then, the liquid and the oil-water mixture are discharged into the diversion member 32. The lower edge of the sealing plug flap 37 is washed open by the leaked liquid. As the liquid continuously descends, the opening becomes larger and larger. At the same time, the upper driving rod 311 of the sealing plug flap 37 also undergoes displacement, and the pre-tightening spring is gradually stretched, and its pre-tightening force also increases accordingly until the two forces are balanced and the opening is in the maximum state. As the amount and impact force of the swill gradually decrease, the force of the top-tightening spring 36 begins to gradually become the driving force of the sealing plug flap 37. The top-tightening spring 36 gradually retracts, driving the driving rod 311 of the sealing plug flap 37 to approach the original position. According to the lever principle, the sealing plug flap 37 also gradually approaches the sealing sleeve. When the upper-edge magnet 39 is relatively close to the water outlet magnet 38, the attraction increases for the first time, and the sealing plug flap 37 quickly approaches. As the degree of fitting strengthens, when the lower-edge magnets 310 of the two sealing plug flaps 37 also continuously approach, when the distance is close to a certain extent, they quickly attract and adjust the positional relationship of the two flaps, and the piston completes the sealing. Then, the oil-water mixture enters the trash can body 1. First, the first filtration area will be filled first. Since the oil liquid has a lower density, most of it will float and be isolated on the left side of the oil baffle 61, and a small part flows into the right side of the oil baffle 61 through the bottom channel; the flow-blocking baffle 62 effectively blocks the lateral flow of the swill in the first filtration area, allowing the swill in the first filtration area to complete the first sedimentation; secondly, when the swill in the first filtration area is full, the swill flowing into the left side of the oil baffle 63 already shows a state of "more water and less oil", and the right side of the oil baffle 63 is basically mainly brine; at this time, the flow-blocking baffle 64 blocks the lateral flow of the swill in the second filtration area to complete the second sedimentation; furthermore, when the swill in the second filtration area is full, the swill finally accumulates in the area on the right side of the flow-blocking baffle 64, where the swill has less oil content and less impurity content; finally, when the swill poured into the right side of the flow-blocking baffle 64 exceeds the height of the flow-blocking baffle 64, the trash can body 1 forms a "three-chamber communicating vessel" with the oil baffle 61 and the oil baffle 63 as intervals, and the function of oil-water separation is not affected at all; at this time, the chamber partition function of the flow-blocking baffle 62 and the flow-blocking baffle 64 is weakened, and the swill components above the height of the flow-blocking baffle are the same, but still play a role in sedimentation. Subsequently, they can be discharged through the oil discharge port 65, the water discharge port 66, the oil discharge port 67, the water discharge port 68, the oil discharge port 69 and the water discharge port 610 in sequence.
[0044] All the electrical components mentioned in this article are connected to the external main controller and 220V mains electricity, and the main controller can be a conventional known device such as a computer for control.
[0045] Finally, it should be noted that the above are only preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A multifunctional swill dry and wet separation device, comprising a garbage can body (1), characterized in that: Two trash can handles (5) are installed on the outer surface of the trash can body (1); a trash can cover (2) is threadedly connected to the top of the trash can body (1); a detachable deodorizing liquid collector (3) and a wet-dry separator (4) are arranged in sequence on the top of the trash can cover (2); a separation mechanism (6) is arranged on the inner wall of the trash can body (1); the separation mechanism (6) comprises a blocking portion arranged in the trash can body (1); the blocking portion divides the trash can body (1) into a first filter area, a second filter area and a third filter area; a plurality of drainage portions are arranged on the surface of the trash can body (1); the plurality of drainage portions are connected to the first filter area, the second filter area and the third filter area in sequence; The deodorizing liquid collector (3) comprises a collector shell (31), the upper and lower ends of the collector shell (31) are respectively provided with an upper edge interface (313) and a lower edge interface (312), the lower edge interface (312) is sleeved on the trash can cover (2), the inner wall of the collector shell (31) is fixedly connected to a positioning plate (33), the inner wall of the collector shell (31) is fixedly connected to a flow guide (32), the lower part of the flow guide (32) is fixedly connected to a threaded tube (34), an automatically rebounding and closing deodorizing sealing plug is installed on the threaded tube (34), and a through hole for the deodorizing sealing plug to pass through is opened on the surface of the trash can cover (2); The dry-wet separator (4) comprises a separator adapter box (41) inserted on the upper edge interface (313), a flow guide surface (42) is provided on the top of the separator adapter box (41), a separation portion with a separation effect is inserted into the inner wall of the separator adapter box (41), and heating portions are provided on both sides of the separator adapter box (41).
2. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: The blocking portion comprises an oil baffle plate 1 (61) and an oil baffle plate 2 (63) fixed on the inner wall of the trash can body (1), and the bottom inner wall of the trash can body (1) is fixedly connected with two baffle plates 1 (62) and two baffle plates 2 (64).
3. The multifunctional swill dry-wet separation device according to claim 2, characterized in that: The oil baffle plate 1 (61), the oil baffle plate 2 (63), the flow baffle plate 1 (62) and the flow baffle plate 2 (64) are all made of polyethylene sheets.
4. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: The liquid discharge portion comprises an oil discharge port 1 (65), a water discharge port 1 (66), an oil discharge port 2 (67), a water discharge port 2 (68), an oil discharge port 3 (69) and a water discharge port 3 (610) fixed on the surface of the trash can body (1), wherein the oil discharge port 1 (65) and the water discharge port 1 (66) correspond to the first filter area, the oil discharge port 2 (67) and the water discharge port 2 (68) correspond to the second filter area, and the oil discharge port 3 (69) and the water discharge port 3 (610) correspond to the third filter area.
5. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: The deodorizing sealing plug comprises a sealing sleeve (35) threadedly connected to a threaded tube (34); the outer surface of the sealing sleeve (35) is rotatably connected to two sealing plug valves (37); the surface of the sealing plug valve (37) is fixedly connected to a driving rod (311); a tightening spring (36) is installed between the driving rod (311) and the sealing sleeve (35); the inner wall of the sealing sleeve (35) is fixedly connected to a water outlet magnet (38); the surface of the sealing plug valve (37) is respectively fixedly connected to a plurality of upper edge magnets (39) and lower edge magnets (310); the upper edge magnet (39) is magnetically connected to the water outlet magnet (38).
6. The multifunctional swill dry-wet separation device according to claim 5, characterized in that: The flow guide (32) is designed with a depression angle of 60 degrees.
7. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: A notch (314) for the line to pass through is provided on the surface of the upper edge interface (313), and a clamping block (315) capable of positioning the dry-wet separator (4) is fixedly connected to the surface of the upper edge interface (313).
8. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: The separation part comprises a dry-wet separation drawer (43) inserted into the inner wall of the separator adapter box (41), a separation drawer filter bottom (44) is provided at the bottom of the dry-wet separation drawer (43), a pull rod (46) is fixedly connected to the surface of the dry-wet separation drawer (43), and two slide rails (47) for assisting the dry-wet separation drawer (43) are installed on the inner wall of the separator adapter box (41).
9. The multifunctional swill dry-wet separation device according to claim 8, characterized in that: A partition plate (45) is fixedly connected to the inner wall of the dry-wet separation drawer (43).
10. The multifunctional swill dry-wet separation device according to claim 1, characterized in that: The heating unit comprises two PTC constant temperature ceramic electric heating plates (48) installed in the inner wall of the separator adapter box (41), and two side plates (49) are installed on the surface of the separator adapter box (41).