Integrated oil-water residue treatment equipment

Through the integrated oil-water residue treatment equipment, the oil-slag separation structure is used to achieve separation and integrated treatment of oil-water residues in the main body of the equipment, solving the problem of equipment not integrated in the prior art, and improving the processing efficiency and environmental protection effect.

CN223254930UActive Publication Date: 2025-08-22CHINA SOUTHERN POWER GRID COMPREHENSIVE ENERGY
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Patent Information

Application Number
CN202421846178.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-08-22
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the prior art, the degree of integration of oil and water residue treatment equipment for kitchen waste is not high, resulting in high transportation costs, difficulty in cleaning and long time. The simple oil barrier net separation effect is poor, and it cannot effectively solve the problems of pipeline blockage and environmental pollution.

Method used

An integrated oil-water residue treatment equipment is designed, including the equipment main body, oil-to-connecting container and slag connection container. The oil-to-slag separation structure is used to achieve the separation of oil-to-water residues, and the residue is poured into the slag connection container through the rotating structure, which is integrated inside the equipment main body, reducing space and improving convenience.

Benefits of technology

It realizes effective separation of oil and water residues, improves the integration of garbage recycling equipment, simplifies the operation process, reduces the difficulty of transportation and cleaning, and reduces the risk of environmental pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of catering equipment, in particular to integrated oil-water residue treatment equipment, which comprises an equipment main body, an oil receiving container, a residue receiving container and an oil residue separation structure, and is characterized in that the oil receiving container and the residue receiving container are arranged in the equipment main body; the oil-residue separation structure separates oil water and residues in the oil-water residues through the oil separation part, so that the oil receiving container receives the separated oil water, and when the oil-residue separation structure rotates relative to the equipment main body, the separated residues can be poured into the residue receiving container. The integrated oil-water residue treatment equipment provided by the utility model can isolate oil-water residues, and the residue receiving container and the oil receiving container are arranged in the equipment main body, so that the garbage recycling equipment is more integrated, and the oil-water residues are convenient to recycle. The application is suitable for kitchen canteens such as institution canteens and enterprise and public institution canteens (hospitals, power supply bureau and schools).
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Description

Technical Field

[0001] The present application relates to the technical field of catering equipment, and in particular to an integrated oil-water residue treatment device. Background Art

[0002] With the rapid growth of the catering industry, a large amount of food waste is generated. If the food waste is not treated, it may cause serious problems such as pipe blockage and environmental pollution. Therefore, it is usually necessary to treat the food waste. In the related technology, most of the oil and water residues of the food waste are mixed in a container, or only a simple oil separator is used to perform preliminary separation of the oil and water residues. Further oil residue refinement and waste sorting are required later. The long-distance transportation and contamination of the channels during transportation all lead to high transportation costs, difficult cleaning, and long transportation time. Utility Model Content

[0003] The present application discloses an integrated oil and water residue treatment device, which can isolate the oil and water residue, making the waste recycling equipment more integrated and also facilitating the collection of the oil and water residue.

[0004] To achieve the above objectives, in a first aspect, the present application discloses an integrated oil-water residue treatment device, comprising:

[0005] A device body, wherein a first accommodating space with an upward opening is formed inside the device body;

[0006] an oil receiving container, the oil receiving container being arranged in the first accommodating space;

[0007] a slag receiving container, the slag receiving container being arranged in the first accommodating space, the oil receiving container and the slag receiving container being arranged in sequence along a first direction;

[0008] The oil-residue separation structure can be rotatably arranged on the equipment body and is located at the upward opening. The oil-residue separation structure has an oil separator, and the oil separator is configured to separate the oil and water in the oil-water residue from the residue. The oil receiving container is used to receive the separated oil and water. The oil-residue separation structure can be rotated relative to the equipment body to correspond to the residue receiving container so as to pour the separated residue into the residue receiving container.

[0009] As an optional embodiment, the first accommodating space further has a side wall opening, the integrated oil-water residue processing equipment further includes a trolley, the trolley is movably arranged in the first accommodating space so as to be pushed out from the side wall opening relative to the equipment body, the slag receiving container is arranged on the trolley, and / or,

[0010] A supporting plate is provided on the wall surface of the first accommodating space, and the supporting plate is used to support the oil receiving container.

[0011] As an optional embodiment, the oil-residue separation structure includes a bottom wall portion and a side wall portion, wherein the side wall portion is connected to the periphery of the bottom wall portion, and the side wall portion and the bottom wall portion enclose a carrying space for carrying the oil-water residue;

[0012] The sidewall portion includes a first sub-sidewall, a second sub-sidewall and a third sub-sidewall, the first sub-sidewall and the second sub-sidewall are arranged opposite to each other, and the third sub-sidewall is connected between the first sub-sidewall and the second sub-sidewall;

[0013] The oil separator is provided on the bottom wall portion and / or at least one of the first sub-side wall, the second sub-side wall and the third sub-side wall.

[0014] As an optional embodiment, the equipment body includes a frame and a mounting seat, the frame has the first accommodating space, the mounting seat is arranged at the upper part of the frame, and the mounting seat is hollowed out to avoid the upper opening of the first accommodating space, and the oil residue separation structure can be rotatably connected to the mounting seat.

[0015] As an optional embodiment, the mounting seat includes a receiving portion and a side plate portion, the receiving portion is provided on the frame body, and the receiving portion is at least partially located in the first accommodating space, the receiving portion forms a receiving space, and the side plate portion surrounds and is connected to the periphery of the receiving portion and extends upward to be located on the upper portion of the frame body;

[0016] The receiving space is provided with a water receiving port and a slag receiving port, the water receiving port is provided corresponding to the oil receiving container, the water receiving port is configured to allow the separated oil and water to enter the oil receiving container, the slag receiving port corresponds to the slag receiving container, the slag receiving port is configured to allow the residue to enter the slag receiving container;

[0017] The oil residue separation structure can be rotatably connected to the supporting portion.

[0018] As an optional embodiment, the receiving space includes a liquid guiding part and a slag guiding part that are interconnected, the liquid guiding part is provided with the water receiving port, and the slag guiding part is provided with the slag receiving port;

[0019] The oil-residue separation structure includes a first end and a second end along the first direction, the first end being rotatably connected to a position of the supporting portion corresponding to the residue guiding portion, and the oil-residue separation structure being rotatable relative to the supporting portion until the first end is located in the residue receiving opening, so that the residue is dumped into the residue receiving container; or

[0020] The oil-residue separation structure can be rotated relative to the supporting portion until the second end is located in the water receiving port, so that the oil and water enter the oil receiving container.

[0021] As an optional embodiment, the liquid guiding portion has an inclined surface, the inclined surface connects the water receiving port and the slag receiving port, and the inclined surface is configured to guide the separated oil and water to be concentrated at the water receiving port.

[0022] As an optional embodiment, a through hole is provided on the side plate portion, and the through hole is used for installing a water inlet angle valve.

[0023] As an optional embodiment, the oil receiving container includes a container body, a filter basket and a baffle, a second accommodating space is formed inside the container body, the filter basket is located at the top of the second accommodating space, the filter basket is arranged corresponding to the water receiving port, the baffle is arranged on one side of the filter basket, and the baffle extends to the bottom of the second accommodating space, an oil filter port is provided on the baffle, and the oil filter port is configured to filter the oil and water after being filtered by the filter basket.

[0024] As an optional embodiment, the container body includes a first side and a second side opposite to each other, the filter basket and the baffle are located on the first side, and the second side is provided with a water outlet;

[0025] The oil receiving container further includes a first baffle and a second baffle, wherein the baffle, the first baffle, and the second baffle are sequentially spaced from the first side to the second side, the first baffle being disposed at the bottom of the second accommodating space, and the second baffle being disposed at the top of the second accommodating space;

[0026] A slag separation space is formed between the first baffle and the baffle, an oil separation space is formed between the second baffle and the first baffle, and the second baffle is arranged adjacent to the second side and forms a water separation space between the second side;

[0027] The container body is further provided with an oil outlet, the oil outlet is located in the oil-isolating space, and the water outlet is located in the water-isolating space.

[0028] Compared with the prior art, the present invention has the following advantages:

[0029] The present application provides an integrated oil-water residue treatment device, which includes an equipment body, an oil receiving container, a residue receiving container, and an oil-residue separation structure. By arranging the oil receiving container and the residue receiving container inside the equipment body, the oil-residue separation structure can separate the oil, water, and residue in the oil-water residue through the oil separator, so that the oil receiving container can receive the separated oil and water, and the oil-residue separation structure can be rotated to allow the separated residue to be dumped into the residue receiving container. It can be seen that the integrated oil-water residue treatment device of the present application can, on the one hand, isolate the oil-water residue, and on the other hand, because the residue receiving container and the oil receiving container are both arranged inside the equipment body, the garbage recycling equipment is more integrated, and it is also convenient for the collection of oil-water residue. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0031] Figure 1 This is a schematic diagram of the internal structure of the integrated oil-water residue treatment equipment disclosed in the embodiment of this application;

[0032] Figure 2 A side view of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application;

[0033] Figure 3 This is a three-dimensional diagram of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application.

[0034] Figure 4 This is a schematic diagram of the internal structure of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application when it is in a residue dumping state;

[0035] Figure 5 This is a structural schematic diagram of the oil receiving container of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application.

[0036] Description of reference numerals:

[0037] 100-Integrated oil-water residue treatment equipment;

[0038] 1 - Equipment body; 1a - First accommodating space; 11 - Upward opening; 12 - Side wall opening; 1b - Frame; 1c - Mounting seat; 13 - Supporting portion; 131 - Supporting space; 1311 - Water inlet; 1311a - Sealing ring; 1311b - Inclined surface; 1312 - Slag inlet; 1313 - Liquid guide portion; 1314 - Slag guide portion; 14 - Side panel; 141 - Through hole; 15 - Support plate;

[0039] 2 - Oil receiving container; 21 - Container body; 211 - Second accommodating space; 2111 - Slag separation space; 2112 - Oil separation space; 2113 - Oil outlet; 212 - First side; 213 - Second side; 2131 - Water outlet; 2114 - Water separation space; 22 - Filter basket; 23 - Baffle; 24 - First baffle; 25 - Second baffle; 26 - Cover; 261 - Second handle;

[0040] 3- slag receiving container;

[0041] 4 - oil-residue separation structure; 41 - bottom wall portion; 42 - side wall portion; 421 - first sub-side wall; 422 - second sub-side wall; 423 - third sub-side wall; 43 - oil separator; 44 - first end; 45 - second end; 46 - first handle; 47 - carrying space;

[0042] 5-trolley; 51-universal wheel; 6-catheter; F1-first direction. DETAILED DESCRIPTION

[0043] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0044] In this application, terms such as "upper," "lower," "top," "bottom," "inner," and "outer" indicate positions or locations based on those shown in the accompanying drawings. These terms are intended to better describe this application and its embodiments and are not intended to limit the devices, elements, or components indicated to having a specific orientation, or to being constructed or operated in a specific orientation.

[0045] Furthermore, some of the above terms may be used to express other meanings besides indicating a position or location. For example, the term "on" may also be used to indicate a dependency or connection in certain circumstances. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0046] Furthermore, the terms "installed," "disposed," "equipped with," and "connected" should be interpreted broadly. For example, they can refer to fixed connections, removable connections, or integral structures; mechanical connections or electrical connections; direct connections, indirect connections through an intermediary, or internal communication between two devices, elements, or components. Those skilled in the art will understand the specific meanings of these terms in this application based on the specific circumstances.

[0047] Furthermore, the terms "first," "second," etc., are primarily used to distinguish between different devices, elements, or components (which may or may not be of the same type and configuration), and are not intended to indicate or imply the relative importance or quantity of the devices, elements, or components indicated. Unless otherwise specified, "plurality" means two or more.

[0048] With the rapid development of the catering industry, the amount of kitchen waste generated has increased significantly. If these kitchen wastes are not effectively treated, they may lead to serious problems such as pipe blockage and environmental pollution. Therefore, effective measures are usually needed to treat kitchen waste, which not only helps to reduce the environmental burden, but also effectively utilizes resources and promotes environmental protection and sustainable development. In related technologies, most of the oil and water residues of kitchen waste are mixed in containers and directly dumped or buried. This practice causes serious environmental pollution. In order to solve the above problems, some practices are to add oil separators and use the oil separators to simply separate the oil and water residues without further separating the oil and water after simple isolation; some practices are to use oil separators to simply separate the oil and water residues, but the degree of integration of the equipment is not high. These practices are not conducive to subsequent garbage recovery and oil residue separation.

[0049] Based on this, the present application discloses an integrated oil-water residue treatment device. This device, by placing an oil receiving container and a residue receiving container within the device body, utilizes an oil-residue separation structure to separate the oil, water, and residue in the oil-water residue. This allows the oil receiving container to receive the separated oil and water, and the oil-residue separation structure can be rotated to allow the separated residue to be dumped into the residue receiving container. This allows for better separation of the oil, water, and residue, effectively improving the integration of waste recycling equipment and the convenience of kitchen waste recycling and treatment.

[0050] The technical solution of the present application will be further described below with reference to the embodiments and drawings.

[0051] See also Figure 1 , Figure 1This is a front view of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application. The integrated oil-water residue treatment equipment 100 provided in an embodiment of the present application includes an equipment body 1, an oil receiving container 2, a residue receiving container 3, and an oil-residue separation structure 4. A first accommodating space 1a with an upward opening 11 is formed inside the equipment body 1. The oil receiving container 2 and the residue receiving container 3 are both arranged in the first accommodating space 1a. The oil receiving container 2 and the residue receiving container 3 are arranged in sequence along the first direction F1. In this way, the oil receiving container 2 and the residue receiving container 3 are both integrated inside the equipment body 1, making the structure of the integrated oil-water residue treatment equipment 100 more compact, reducing the space occupied by the integrated oil-water residue treatment equipment 100, and being applicable to more application scenarios.

[0052] See also Figure 2 , Figure 2 It is a side view of the integrated oil-water residue treatment equipment disclosed in the embodiment of the present application. The integrated oil-water residue treatment equipment 100 disclosed in the present application is achieved by rotatably setting the oil-residue separation structure 4 on the equipment body 1 and located at the upward opening 11. At the same time, the oil-residue separation structure 4 has an oil separator 43. The oil separator 43 is configured to separate the oil and water in the oil-water residue from the residue. The oil receiving container 2 is used to receive the isolated oil and water, thereby separating the oil and water from the residue to achieve dry and wet separation of kitchen waste and facilitate recycling and processing. In addition, the oil-residue separation structure 4 can be rotated relative to the equipment body 1 to correspond to the slag receiving container 3, so that the isolated residue can be directly poured into the slag receiving container 3, so that the integrated oil-water residue treatment equipment 100 does not need an external slag receiving bucket, which effectively improves the applicability and convenience of the integrated oil-water residue treatment equipment 100.

[0053] It can be understood that the above-mentioned first direction F1 can be the length direction or the width direction of the equipment body 1, as long as the oil receiving container 2 and the slag receiving container 3 can be arranged side by side in a certain direction in the first accommodating space 1a. This application does not make specific limitations on this.

[0054] In some embodiments, the first accommodating space 1a further has a sidewall opening 12, and the integrated oil-water residue treatment equipment 100 further includes a trolley 5, which is movably disposed in the first accommodating space 1a so as to be pushed out from the sidewall opening 12 relative to the equipment body 1. The slag receiving container 3 can be disposed on the trolley 5, and a supporting plate 15 is provided on the wall of the first accommodating space 1a. The supporting plate 15 is used to support the oil receiving container. By providing the first accommodating space 1a with a sidewall opening 12 and arranging the slag receiving container 3 on the trolley 5, and since the supporting plate 15 is disposed on the wall of the first accommodating space 1a and is located above the trolley 5, the oil receiving container can be left in the first accommodating space 1a, while the trolley 5 directly pushes the slag receiving container 3 out of the interior of the equipment body 1, facilitating the transportation of the slag receiving container 3 to a designated location for dumping, thereby saving transportation steps.

[0055] It can be understood that in addition to the aforementioned slag receiving container 3 being arranged on the trolley 5 and the oil receiving container 2 being arranged on the support plate 15, there can be other examples, such as the slag receiving container 3 and the oil receiving container 2 are both arranged on the trolley 5, or the slag receiving container 3 and the oil receiving container 2 are both arranged on the support plate 15, or the slag receiving container 3 is arranged on the support plate 15 and the oil receiving container 2 is arranged on the trolley 5.

[0056] Optionally, in order to facilitate the pushing and unpushing of the trolley 5 in the first accommodating space 1a, the first accommodating space 1a may also have a bottom opening, that is, the equipment body 1 is actually a hollow frame structure, and openings may be set at the top, bottom, and sides, so as to facilitate the arrangement of the above-mentioned components, such as the trolley 5, the slag receiving container 3, and the oil receiving container 2.

[0057] Optionally, the bottom of the trolley 5 is provided with self-locking universal wheels 51. On the one hand, the universal wheels 51 of the trolley 5 can be locked when receiving the residue to prevent the trolley 5 from moving when dumping the residue and causing the residue to fall outside the slag receiving container 3; on the other hand, the universal wheels 51 of the trolley 5 can be unlocked when transporting the residue to facilitate the trolley 5 to be pushed out of the side wall opening 12.

[0058] See also Figure 3 , Figure 3 This is a perspective view of the integrated oil-water residue treatment equipment disclosed in an embodiment of the present application. In some embodiments, the oil-residue separation structure 4 can be approximately funnel-shaped, including a bottom wall portion 41 and a side wall portion 42. The side wall portion 42 is connected to the periphery of the bottom wall portion 41. The side wall portion 42 and the bottom wall portion 41 enclose a carrying space 47 for carrying the oil-water residue. This carrying space 47 is used to dump the oil-water residue mixture.

[0059] Optionally, the side wall portion 42 includes a first sub-side wall 421, a second sub-side wall 422 and a third sub-side wall 423, the first sub-side wall 421 and the second sub-side wall 422 are arranged opposite to each other, and the third sub-side wall 423 is connected between the first sub-side wall 421 and the second sub-side wall 422, and the first sub-side wall 421, the second sub-side wall 422 and the third sub-side wall 423 are all enclosed with the bottom wall portion 41 to form a carrying space 47 for carrying oil and water residues, wherein the bottom wall portion 41 and the third sub-side wall 423 may be provided with an oil separator 43, so that the oil and water residues are poured onto the carrying space 47, and the oil separator 43 is used to separate the oil, water and residues.

[0060] It can be understood that in addition to the bottom wall portion 41 and the third sub-side wall 423 mentioned above that are provided with the oil separator 43, there can also be other examples, for example, the bottom wall portion 41 and the first sub-side wall 421 are provided with the oil separator 43, or, the bottom wall portion 41 and the second sub-side wall 422 are provided with the oil separator 43, or, only the bottom wall portion 41 is provided with the oil separator 43, or, only the first sub-side wall 421 is provided with the oil separator 43, or, only the second sub-side wall 422 is provided with the oil separator 43, or, only the third sub-side wall 423 is provided with the oil separator 43, and this embodiment does not limit this.

[0061] Optionally, the oil separator 43 may be, but is not limited to, an oil separator hole, or a combination of an oil separator hole and an oil separator filter. Exemplarily, the oil separator 43 may be an oil separator hole, and there may be multiple oil separator holes, which may be spaced apart. The diameter of the oil separator hole may be set according to the desired residue to be isolated. For example, the diameter of the oil separator hole may be set smaller than the particle size of the residue, thereby isolating the residue in the carrying space 47 while allowing oil and water to enter the oil receiving container 2 through the oil separator hole. Of course, if the combination of the oil separator hole and the oil separator filter is used, the oil separator filter may be positioned above or below the oil separator hole, and the mesh size of each filter may be the same as or different from the diameter of the oil separator hole. The specific setting can be determined according to actual needs and is not specifically limited in this embodiment.

[0062] Combine Figure 1 and Figure 3 As shown, in some embodiments, the device body 1 includes a frame 1b and a mounting seat 1c, the frame 1b has a first accommodating space 1a, the mounting seat 1c is arranged on the upper part of the frame 1b, and the mounting seat 1c is hollowed out to avoid the upper opening of the first accommodating space 1a, the oil residue separation structure 4 can be rotatably connected to the mounting seat 1c, and the mounting seat 1c can fix the structure of the device body 1, play a role in reinforcing the device body 1, thereby preventing the device body 1 from deformation.

[0063] Combine Figure 4 As shown, Figure 4 This is a front view of the integrated oil-water residue treatment equipment disclosed in the embodiment of the present application when it is in the residue dumping state. Furthermore, the mounting seat 1c includes a supporting portion 13 and a side plate portion 14. The supporting portion 13 is provided on the frame 1b, and the supporting portion 13 is at least partially located in the first accommodating space 1a. The supporting portion 13 forms a supporting space 131, and the side plate portion 14 is connected to the periphery of the supporting portion 13 and extends upward to be located on the upper part of the frame 1b. By providing the mounting seat 1c including the supporting portion 13 and the side plate portion 14, the supporting portion 13 can be used to support oil, water and residue corresponding to the oil receiving container 2 and the residue receiving container 3, and the side plate portion 14 can play a reinforcing role in the oil-water residue treatment, further strengthening the structural strength of the equipment body 1.

[0064] Optionally, the receiving space 131 is provided with a water inlet 1311 and a slag inlet 1312. The water inlet 1311 corresponds to the oil receiving container 2 and is configured to allow the separated oil and water to enter the oil receiving container 2. The slag inlet 1312 corresponds to the slag receiving container 3. The water inlet 1311 is used to discharge the oil and water and guide them to fall into the oil receiving container 2. The slag inlet 1312 is configured to allow residue to enter the slag receiving container 3. Thus, by rotating the oil-residue separation structure 4 to correspond to the water inlet 1311, the oil and water can be separated from the residue, allowing the oil and water to enter the oil receiving container 2. When the oil-residue separation structure 4 rotates to correspond to the slag inlet 1312, the slag inlet 1312 is used to discharge the residue and guide it into the slag receiving container 3, preventing it from splashing and contaminating the device body 1.

[0065] Optionally, since the water inlet 1311 is configured to allow the separated oil and water to enter the oil receiving container 2, based on this, the water inlet 1311 can be connected to the oil receiving container 2 through the liquid conduit 6, so that the water inlet 1311 and the oil receiving container 2 are connected through the liquid conduit 6, so that the oil and water can be transported to the oil receiving container 2, preventing the oil and water from splashing during the process of entering the oil receiving container 2 and polluting the equipment body 1 and even the surrounding environment.

[0066] Optionally, a sealing ring 1311a is provided on the inner wall of water inlet 1311. Sealing ring 1311a abuts against the outer wall of the liquid guide tube. Sealing ring 1311a is used to seal the connection between water inlet 1311 and liquid guide tube 6, thereby preventing oil and water residue from leaking into the external environment. The cross-sectional shape of sealing ring 1311a can be "O" or "D" shaped, which is not limited in this embodiment.

[0067] Optionally, the oil-residue separation structure 4 can be rotatably connected to the supporting portion 13, so that by rotating one end of the oil-residue separation structure 4, the oil and water corresponding to the water receiving port 1311 fall down, or by rotating the oil-residue separation structure 4, the residue corresponding to the residue receiving port 1312 falls down, thereby simplifying the processing steps of the oil-water residue and improving the recovery efficiency of the oil-water residue.

[0068] Optionally, the receiving space 131 includes a liquid-guiding portion 1313 and a residue-guiding portion 1314 that are interconnected. The liquid-guiding portion 1313 is provided with a water inlet 1311, and the residue-guiding portion 1314 is provided with a residue inlet 1312. The liquid-guiding portion 1313 and the residue-guiding portion 1314 can respectively guide the oil, water, and residue. The oil-residue separation structure 4 includes a first end 44 and a second end 45 along a first direction F1. The first end 44 can be rotatably connected to the receiving portion 13 at a position corresponding to the residue-guiding portion 1314. Thus, the oil-residue separation structure 4 can be rotated relative to the receiving portion 13 until the second end 45 is located in the water inlet 1311, allowing the oil and water to enter the oil receiving container 2, thereby separating the oil, water, and residue. After the oil, water, and residue are separated, the oil-residue separation structure 4 can further be rotated relative to the receiving portion 13 until the first end 44 is located in the residue inlet 1312, allowing the residue to be directly dumped into the residue receiving container 3 for subsequent recycling.

[0069] It can be understood that the first end of the oil-residue separation structure 4 is rotatably connected to the supporting portion 13 to correspond to the position of the residue guiding portion 1314, that is, the front end of the oil-residue separation structure 4 is rotatably connected to the supporting portion 13. In this way, on the one hand, it is convenient to receive the oil-water residue. On the other hand, after the oil-water residue is separated from the residue, since the residue left on the oil-residue separation structure 4 is heavy, it is only necessary to manually rotate the oil-residue separation structure 4, so that the oil-residue separation structure 4 can be rotated quickly to the state where the first end 44 is located in the residue receiving port 1312, so that the residue can be directly poured into the residue receiving container 3.

[0070] Optionally, the oil-residue separation structure 4 also includes a first handle 46, which can be set at the second end 45. The first handle 46 is used to rotate the oil-residue separation structure 4 relative to the supporting part 13 so that the first end 44 is located in the residue receiving port 1312, so that the residue can be poured into the residue receiving container 3; in addition, the first handle 46 can also be used to rotate the oil-residue separation structure 4 relative to the supporting part 13 so that the second end 45 is located in the water receiving port 1311, so that oil and water enter the oil receiving container 2.

[0071] Optionally, the liquid guiding portion 1313 has a slope 1311b, which connects the water receiving port 1311 and the slag receiving port 1312. In this way, the opening width of the liquid guiding portion 1313 gradually narrows along the direction of the oil and water falling, thereby better guiding the separated oil and water to concentrate at the water receiving port 1311.

[0072] Optionally, the side plate 14 is provided with a through hole 141 for installing a water inlet angle valve, so that the oil-residue separation structure 4 can be directly flushed by the water inlet angle valve. In this way, the oil-residue separation structure 4 can be cleaned in a timely manner, and the generation of odor caused by oil and water residue remaining in the oil-residue separation structure 4 for a long time can be effectively reduced.

[0073] See also Figure 5 , Figure 5 This is a schematic diagram of the internal structure of the oil receiving container of the integrated oil-water residue treatment equipment disclosed in the embodiments of the present application. In some embodiments, the oil receiving container 2 includes a container body 21, a filter basket 22 and a baffle 23. A second accommodating space 211 is formed inside the container body 21. The filter basket 22 is located at the top of the second accommodating space 211. The filter basket 22 is arranged corresponding to the water receiving port 1311. The baffle 23 is arranged on one side of the filter basket 22, and the baffle 23 extends to the bottom of the second accommodating space 211. An oil filter port (not shown) is provided on the baffle 23. The oil filter port is configured to filter the oil and water filtered by the filter basket 22. In this way, the oil and water filtered by the oil-residue separation structure 4 will be filtered again through the filter basket 22 and the oil filter port, so that fine residue can also be effectively isolated, thereby improving the filtering effect of oil and water residue.

[0074] Optionally, the oil receiving container 2 further includes a cover plate 26, which is detachably connected to the container body 21. The cover plate 26 can cover the container body 21 to prevent the oil and water residue in the container body 21 from leaking out. In addition, a second handle 261 is also provided on the cover plate 26 to facilitate the user to open or close the container body 21.

[0075] Optionally, the container body 21 includes a first side 212 and a second side 213 opposite to each other, the filter basket 22 and the baffle 23 are located on the first side 212, and the second side 213 is provided with a water outlet 2131. The oil receiving container 2 also includes a first baffle 24 and a second baffle 25. The baffle 23, the first baffle 24 and the second baffle 25 are sequentially spaced in the direction from the first side 212 to the second side 213. The oil and water filtered by the filter basket 22 and the oil filter port pass through the first baffle 24 and the second baffle 25 in sequence. 25. The first baffle 24 is provided at the bottom of the second accommodating space 211, thereby being used to block the residue with heavier density and part of the sewage, so that the grease with lighter density flows from the first side 212 to the second side 213; the second baffle 25 is provided at the top of the second accommodating space 211, thereby being used to block the grease with lighter density, so that the sewage with heavier density flows from the first side 212 to the second side 213 and is discharged from the water outlet 2131 of the second side 213, thereby effectively separating the oil and water residues.

[0076] In addition, a slag separation space 2111 is formed between the first baffle 24 and the baffle 23, an oil separation space 2112 is formed between the second baffle 25 and the first baffle 24, the second baffle 25 is arranged adjacent to the second side 213 and forms a water separation space 2114 with the second side 213, and the container body 21 is also provided with an oil outlet 2113. In this way, the oil outlet 2113 is located in the oil separation space 2112, and the water outlet 2131 is located in the water separation space 2114. The oil outlet 2113 can discharge the filtered grease, and the water outlet 2131 can discharge the sewage on the upper layer, which is convenient for subsequent recycling and treatment.

[0077] As can be seen, when oil and water enter the oil receiving container 2 from the oil-residue separation structure 4, large particles of residue in the oil and water are filtered through the filter basket 22. The oil and water, at this point, are still mixed with small particles of residue, grease, and sewage. The first baffle 24 then separates the small particles of residue mixed with the oil and water, retaining them in the residue separation space 2111 while the oil and water enter the oil separation space 2112. Finally, the second baffle 25 filters the sewage in the oil and water. In this way, the grease remains in the oil separation space 2112 and is discharged through the oil outlet 2113, while the sewage is discharged through the water outlet 2131. This achieves a three-stage filtration of the oil and water by the oil receiving container 2, namely, separation of small particles of residue, grease, and sewage, allowing them to be recycled and processed separately, further reducing pollution caused by direct discharge into the environment.

[0078] This application is suitable for use in kitchen canteens such as government canteens, canteens of enterprises and institutions (hospitals, power supply bureaus, schools), etc.

[0079] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some or all of the technical features therein. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present application.

Claims

1. An integrated oil-water residue treatment device, characterized in that: include: A device body, wherein a first accommodating space with an upward opening is formed inside the device body; an oil receiving container, the oil receiving container being arranged in the first accommodating space; a slag receiving container, the slag receiving container being arranged in the first accommodating space, the oil receiving container and the slag receiving container being arranged in sequence along a first direction; The oil-residue separation structure can be rotatably arranged on the equipment body and is located at the upward opening. The oil-residue separation structure has an oil separator, and the oil separator is configured to separate the oil and water in the oil-water residue from the residue. The oil receiving container is used to receive the separated oil and water. The oil-residue separation structure can be rotated relative to the equipment body to correspond to the residue receiving container so as to pour the separated residue into the residue receiving container.

2. The integrated oil-water residue treatment equipment according to claim 1, characterized in that: The first accommodating space further has a side wall opening, the integrated oil-water residue processing equipment further includes a trolley, the trolley is movably arranged in the first accommodating space so as to be pushed out from the side wall opening relative to the equipment body, the slag receiving container is arranged on the trolley, and / or, A supporting plate is provided on the wall surface of the first accommodating space, and the supporting plate is used to support the oil receiving container.

3. The integrated oil-water residue treatment equipment according to claim 1, characterized in that: The oil-residue separation structure includes a bottom wall portion and a side wall portion, wherein the side wall portion is connected to the periphery of the bottom wall portion, and the side wall portion and the bottom wall portion enclose a bearing space for bearing the oil-water residue; The sidewall portion includes a first sub-sidewall, a second sub-sidewall and a third sub-sidewall, the first sub-sidewall and the second sub-sidewall are arranged opposite to each other, and the third sub-sidewall is connected between the first sub-sidewall and the second sub-sidewall; The oil separator is provided on the bottom wall portion and / or at least one of the first sub-side wall, the second sub-side wall and the third sub-side wall.

4. The integrated oil-water residue treatment equipment according to claim 1, characterized in that: The equipment body includes a frame and a mounting seat, the frame has the first accommodating space, the mounting seat is arranged on the upper part of the frame, and the mounting seat is hollowed out to avoid the upper opening of the first accommodating space, and the oil residue separation structure can be rotatably connected to the mounting seat.

5. The integrated oil-water residue treatment equipment according to claim 4, characterized in that: The mounting seat includes a receiving portion and a side plate portion, the receiving portion is provided on the frame body and at least partially located in the first accommodating space, the receiving portion forms a receiving space, and the side plate portion surrounds and is connected to the periphery of the receiving portion and extends upward to be located on the upper portion of the frame body; The receiving space is provided with a water receiving port and a slag receiving port, the water receiving port is provided corresponding to the oil receiving container, the water receiving port is configured to allow the separated oil and water to enter the oil receiving container, the slag receiving port corresponds to the slag receiving container, the slag receiving port is configured to allow the residue to enter the slag receiving container; The oil residue separation structure can be rotatably connected to the supporting portion.

6. The integrated oil-water residue treatment equipment according to claim 5, characterized in that: The receiving space comprises a liquid guiding part and a slag guiding part which are interconnected, the liquid guiding part is provided with the water receiving port, and the slag guiding part is provided with the slag receiving port; The oil-residue separation structure includes a first end and a second end along the first direction, the first end being rotatably connected to a position of the supporting portion corresponding to the residue guiding portion, and the oil-residue separation structure being rotatable relative to the supporting portion until the first end is located in the residue receiving opening, so that the residue is dumped into the residue receiving container; or The oil-residue separation structure can be rotated relative to the supporting portion until the second end is located in the water receiving port, so that the oil and water enter the oil receiving container.

7. The integrated oil-water residue treatment equipment according to claim 6, characterized in that: The liquid guiding portion has an inclined surface, the inclined surface connects the water receiving port and the slag receiving port, and the inclined surface is configured to guide the separated oil and water to be concentrated at the water receiving port.

8. The integrated oil-water residue treatment equipment according to claim 5, characterized in that: The side plate portion is provided with a through hole, and the through hole is used for installing a water inlet angle valve.

9. The integrated oil-water residue treatment equipment according to any one of claims 5 to 8, characterized in that: The oil receiving container includes a container body, a filter basket and a baffle. A second accommodating space is formed inside the container body. The filter basket is located at the top of the second accommodating space. The filter basket is arranged corresponding to the water receiving port. The baffle is arranged on one side of the filter basket and extends to the bottom of the second accommodating space. An oil filter port is provided on the baffle, and the oil filter port is configured to filter the oil and water after being filtered by the filter basket.

10. The integrated oil-water residue treatment equipment according to claim 9, characterized in that: The container body comprises a first side and a second side opposite to each other, the filter basket and the baffle are located on the first side, and the second side is provided with a water outlet; The oil receiving container further includes a first baffle and a second baffle, wherein the baffle, the first baffle, and the second baffle are sequentially spaced from the first side to the second side, the first baffle being disposed at the bottom of the second accommodating space, and the second baffle being disposed at the top of the second accommodating space; A slag separation space is formed between the first baffle and the baffle, an oil separation space is formed between the second baffle and the first baffle, and the second baffle is arranged adjacent to the second side and forms a water separation space between the second side; The container body is further provided with an oil outlet, the oil outlet is located in the oil-isolating space, and the water outlet is located in the water-isolating space.