Organic wastewater treatment equipment
By setting up a carding assembly, a blowing mechanism, a centrifugal chamber and an extrusion assembly in the organic wastewater treatment equipment, the blockage problem caused by fibers and viscous substances in the organic wastewater is solved, and the continuous filtration and drying of the organic wastewater is achieved, ensuring the continuous operation of the equipment and convenient storage and transportation.
Patent Information
- Application Number
- CN202510673778.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-23
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-05-23
AI Technical Summary
When treating organic sewage, traditional solid-liquid separation devices are prone to blocking the screening holes by impurities in the organic sewage, and fibers and viscous substances are easily blocked, resulting in the screening process being unable to continue.
The filter belt is cleaned using a carding assembly and a blower mechanism, the centrifugal chamber is used to rotate and remove the liquid in the solids, the solids are dried through the blower mechanism and the temperature regulating mechanism, and the organic sewage is compressed by the extrusion assembly, so that it is molded for easy storage and transportation.
It realizes continuous filtration and drying of organic sewage, prevents impurities from accumulation, ensures continuous operation of the equipment, solves the blockage caused by fibers and viscous substances in organic sewage, and facilitates the storage and transportation of organic sewage.
Smart Images

Figure CN120393539A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sewage treatment, and specifically to an organic wastewater sewage treatment device. Background Art
[0002] In domestic sewage, industrial wastewater such as food processing and papermaking, there are organic substances such as carbohydrates, proteins, oils and fats, and lignin. These substances exist in sewage in a suspended or dissolved state and can be decomposed through the biochemical action of microorganisms. Oxygen is consumed during the decomposition process, so it is called an oxygen-consuming pollutant. This kind of pollutant can reduce the dissolved oxygen in water and affect the growth of fish and other aquatic organisms. After the dissolved oxygen in water is exhausted, the organic matter undergoes anaerobic decomposition, producing unpleasant odors such as hydrogen sulfide, ammonia and mercaptan, deteriorating the water quality. The composition of organic matter in water bodies is very complex, and the concentration of oxygen-consuming organic matter is usually expressed by the amount of oxygen consumed during the biochemical decomposition of oxygen-consuming substances in a unit volume of water.
[0003] Through retrieval, Chinese Patent Publication No. CN112875828B discloses an organic wastewater sewage treatment device, including a tank body. The top of the tank body is provided with a first opening, and a drainage mechanism is provided at the bottom end of the tank body. A cylinder is placed on the inner bottom surface of the tank body in a matching manner. Both ends of the cylinder are provided with second openings, and the two second openings are communicated with the first opening. A second filter screen is welded in a matching manner inside the second opening located below the cylinder. Two symmetrically arranged slide rails are installed on the outside of the cylinder through screws, and first screw holes corresponding to the positions of the long holes are provided on the sides of the two slide rails. This solution drives the stirring blades to rotate by setting a second driving motor, which is used to drive the chemical reaction substances to contact the harmful substances and oil stains in the wastewater, so as to accelerate the cleaning of the harmful substances and oil stains in the wastewater and improve the work efficiency.
[0004] Regarding the above related technologies, it is considered that there are the following defects: When treating the organic sewage mixture, a large amount of solid-liquid mixture needs to wait for separation. The traditional solid-liquid separation device will be blocked by the impurities in the organic sewage at the screening holes, and there are a large number of fibers and viscous substances in the organic sewage, which are very likely to cause blockage during the screening process and make the screening process unable to continue. Summary of the Invention
[0005] Aiming at the deficiencies of the prior art, the present invention provides an organic wastewater sewage treatment device, which solves the problems raised in the above background art.
[0006] To achieve the above objectives, the present invention is implemented through the following technical solutions: an organic wastewater treatment equipment, including a supporting base, the upper surface of the supporting base is fixedly connected to a collecting rack, the inner side of the collecting rack is provided with a combing assembly, the surface of the collecting rack is fixedly connected to a holding shell, the outer side of the holding shell is fixedly connected to a horizontal pushing mechanism, the blocking shell is slidably connected to the inner wall of the holding shell, the holding shell is fixedly connected at one end away from the horizontal pushing mechanism and is connected to a centrifugal bin for removing liquid inside the solid filtrate in the organic wastewater, the outer side of the centrifugal bin is rotatably connected to a wrapping shell, the lower end of the wrapping shell is connected to a second guide shell, the outer surface of the wrapping shell is fixedly connected to a positioning assembly, the outer surface of the positioning assembly is fixedly connected to the centrifugal mechanism, the outer surface of the positioning assembly is fixedly connected to a discharge bin, the upper end of the discharge bin is provided with a blowing mechanism, the inner side of the discharge bin is fixedly connected with a temperature regulating mechanism, the outer surface of the discharge bin is provided with a lifting mechanism, the lower end of the discharge bin is provided with a blocking assembly, and the outer surface of the supporting base is fixedly connected to a forming mechanism for squeezing the filtered organic matter into a fixed shape.
[0007] Preferably, the blocking shell is composed of a horizontal push rod and a baffle plate. The center of the horizontal push rod is a round rod. Both ends of the round rod of the horizontal push rod are provided with discs. The discs are in sliding contact with the inner wall of the containing shell. A threaded hole is provided in the center of the horizontal push rod and is engaged with the horizontal push threaded rod. The end face of the horizontal push rod is fixedly connected with the baffle plate. The baffle plate is an arc-shaped plate that can block the square opening above the containing shell. The horizontal pushing mechanism includes a horizontal push threaded rod fixedly connected to the output end of the horizontal push motor, and the outer surface of the horizontal push threaded rod is threadedly connected to the blocking shell.
[0008] Preferably, the centrifugal bin is composed of a drum bin and an outer gear ring. The drum bin is cylindrical in shape, and small holes are provided on the surface of the drum bin. The outer gear ring is fixedly connected to the end face of the drum bin. The surface of the outer gear ring is provided with teeth and meshes with the centrifugal mechanism. The centrifugal mechanism includes a centrifugal motor. The output end of the centrifugal motor is fixedly connected to a centrifugal gear, and the centrifugal gear meshes with the centrifugal bin.
[0009] Preferably, the lifting mechanism includes a limit frame, which is a square frame fixedly connected to the outer surface of the lower material bin, and the inner side of the limit frame is fixedly connected to a lifting motor, and the output end of the lifting motor is connected to a lifting threaded rod, and the outer surface of the lifting threaded rod is threadedly connected to a toggle rod, and the toggle rod passes through the lower material bin and extends to the inner side of the centrifugal bin.
[0010] Preferably, the combing assembly includes a cleaning motor, a blower mechanism and a storage box. The cleaning motor is fixedly connected to the inner side of the collecting frame. The output end of the cleaning motor is fixedly connected to a cleaning shaft. A brush is provided on the surface of the cleaning shaft. The blower mechanism has a blowing function. Both the blower mechanism and the cleaning shaft are above the storage box. The filter belt passes through the gap between the cleaning shaft and the blower mechanism and the storage box.
[0011] Preferably, the lower material bin is in the form of a square hollow shell as a whole, the upper end of the lower material bin is provided with a chamfer, and the lower end of the lower material bin is provided with a columnar drum cavity.
[0012] Preferably, the blocking assembly includes a blocking motor and a blocking shaft, the blocking motor is connected to the outside of the lower material bin, the blocking shaft is connected to the output end of the blocking motor, the blocking shaft has an elliptical cross-section, and the blocking shaft is located inside the drum cavity of the lower material bin.
[0013] Preferably, one end of the toggle rod is a blocking plate and the other end is a toggle rod, the blocking plate is threadedly connected to the lifting threaded rod, the blocking plate is slidingly connected to the outer surface of the lower hopper, the toggle rod is a curved long rod, and the toggle rod is on the inner side of the centrifugal bin.
[0014] Preferably, the forming mechanism includes a slide rail shell, a first telescopic rod plate is fixedly connected to the inner side of the slide rail shell, an extrusion assembly is fixedly connected to the inner side of the slide rail shell, a locking shell is provided on the inner side of the slide rail shell, a discharge plate is fixedly connected to the outer surface of the support base, a discharge telescopic rod is fixedly connected to the surface of the discharge plate, and the free end of the discharge telescopic rod is fixedly connected to the locking shell.
[0015] Preferably, the outer surface of the collecting rack is fixedly connected to a collecting motor, the output end of the collecting motor is fixedly connected to a driving shaft, a corner shaft is provided on the inner side of the collecting rack, a filter belt is sleeved on the outer side of the corner shaft and the driving shaft, and a first guide shell is provided on the inner side of the collecting rack, and the first guide shell is on the inner side of the filter belt.
[0016] Compared with the prior art, the present invention has the following beneficial effects: 1. The organic wastewater treatment equipment sets a combing component on the surface of the filter belt, so that the cleaning shaft wipes the filter belt and the blower mechanism blows the small holes on the surface of the filter belt to prevent the organic wastewater from blocking the filter belt. The combing belt is used to clean the filter belt while it rotates to prevent the filtered organic wastewater from blocking the filter belt. The air flow is generated by the blower mechanism, and the lower hopper is cut off by the blocking shaft, so that the air flow is discharged from the lower hole of the drum hopper, preventing the centrifugal hopper from being blocked during use and affecting the effect. The problem that a large amount of fiber and viscous matter in the organic wastewater can easily cause blockage during the screening process, making the screening process unsustainable is solved.
[0017] 2. The organic wastewater treatment equipment is equipped with a centrifugal bin to remove the liquid in the solid matter of the organic wastewater by rotation, so that the organic wastewater can be separated into dry and wet parts. By arranging a blowing mechanism and a temperature regulating mechanism on the inner side of the discharge bin, the solid matter of the organic wastewater can be dried by high-temperature air when discharged, making the organic wastewater drier and more convenient to store. By processing and storing the filtered impurities, the sewage can be continuously filtered to prevent the risk of blockage caused by excessive accumulation of impurities in the sewage.
[0018] 3. The organic wastewater treatment equipment uses a first telescopic rod plate to limit the sliding space of organic wastewater solids, and squeezes the organic wastewater by setting an extrusion component, so that the organic wastewater can enter the clamping shell and be compressed, and the clamping shell is driven to move on the surface of the discharge plate by the discharge telescopic rod, so that the compressed organic wastewater can be quickly discharged from the device, and the loose organic wastewater solids after drying can be compressed and stored and convenient for subsequent transportation and processing, solving the problem that the organic wastewater solids are relatively loose and inconvenient to store and transport, and achieving the effect of compressing and processing organic impurities in the wastewater, so that the device can operate continuously. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the lifting mechanism structure of the present invention; Figure 3 This is a schematic diagram of the filter belt structure of the present invention; Figure 4 This is a schematic structural diagram of the combing component of the present invention; Figure 5 This is a structural diagram of the drum bin of the present invention; Figure 6 This is a schematic diagram of the barrier shell structure of the present invention; Figure 7 This is a schematic diagram of the lower silo structure of the present invention; Figure 8 This is a schematic diagram of the blocking shaft structure of the present invention; Figure 9 It is a schematic diagram of the structure of the discharge plate of the present invention.
[0020] Description of the drawings: 1. Support base; 2. Collection rack; 3. Collection motor; 4. Propelling shaft; 5. Angle shaft; 6. Filter belt; 7. First guide shell; 8. Combing assembly; 81. Cleaning motor; 82. Cleaning shaft; 83. Blowing mechanism; 84. Storage box; 9. Container shell; 10. Horizontal push motor; 11. Horizontal push threaded rod; 12. Blocking shell; 121. Horizontal push rod; 122. Baffle; 13. Centrifugal chamber; 131. Drum chamber; 132. Outer gear ring; 14. Wrapping shell; 15. Second guide shell; 16. Positioning assembly; 17. Centrifugal motor; 18. Centrifugal gear; 19. Discharge bin; 20. Blowing mechanism; 21. Temperature control mechanism; 22. Lifting mechanism; 221. Limiting frame; 222. Lifting motor; 223. Lifting threaded rod; 224. Toggle rod; 2241. Blocking plate; 2242. Toggle rod; 23. Blocking assembly; 231. Blocking motor; 232. Blocking shaft; 24. Slide rail housing; 25. First telescopic rod plate; 26. Extrusion assembly; 27. Positioning housing; 28. Discharge plate; 29. Discharge telescopic rod. DETAILED DESCRIPTION
[0021] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without making creative efforts belong to the scope of protection of the present application.
[0022] It should be noted that all directional indications in the embodiments of the present application are only used to explain the relative positional relationship and movement conditions between components in a specific posture. If this specific posture changes, the directional indication will also change accordingly.
[0023] In the present application, unless otherwise clearly defined and limited, the terms "connection", "fixation", etc. should be understood in a broad sense. For example, "fixation" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific circumstances.
[0024] In addition, in the present application, descriptions such as "first" and "second" are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one of such features. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on the ability of those of ordinary skill in the art to implement. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present application.
[0025] Such as Figures 1 to 9As shown in the figure, an organic wastewater treatment device includes a support base 1. A collection rack 2 is fixedly connected to the upper surface of the support base 1. A collection motor 3 is fixedly connected to the outer surface of the collection rack 2. The output end of the collection motor 3 is fixedly connected to a push shaft 4. A corner shaft 5 is arranged inside the collection rack 2. A filter belt 6 is sleeved on the outer sides of the corner shaft 5 and the push shaft 4. A first diversion shell 7 is arranged inside the collection rack 2, and the first diversion shell 7 is inside the filter belt 6. A combing component 8 is arranged inside the collection rack 2. A storage shell 9 is fixedly connected to the surface of the collection rack 2. The combing component 8 includes a cleaning motor 81, a cleaning shaft 82, a blowing mechanism 83, and a storage box 84. The cleaning motor 81 is fixedly connected inside the collection rack 2. The cleaning shaft 82 is fixedly connected to the output end of the cleaning motor 81. A brush is arranged on the surface of the cleaning shaft 82. The blowing mechanism 83 has the function of blowing air. Both the blowing mechanism 83 and the cleaning shaft 82 are above the storage box 84. The filter belt 6 passes through the gap between the cleaning shaft 82, the blowing mechanism 83, and the storage box 84. The combing component 8 can brush the moving filter belt 6 by rotating the cleaning shaft 82, and flush the brushed filter belt 6 by generating an air flow through the blowing mechanism 83, so that the running filter belt 6 can be cleaned in time, and the filter belt 6 can continue to run and be used.
[0026] A horizontal push motor 10 is fixedly connected to the outside of the storage shell 9. The cross-section of the storage shell 9 is a "C"-shaped bent plate. Leakage holes are arranged at the lower end of the storage shell 9. The storage shell 9 can store the organic sewage solids pushed by the filter belt 6.
[0027] The output end of the horizontal push motor 10 is fixedly connected to a horizontal push threaded rod 11. A blocking shell 12 is threadedly connected to the outer surface of the horizontal push threaded rod 11. The blocking shell 12 is slidably connected to the inner wall of the storage shell 9. One end of the storage shell 9 far from the horizontal push motor 10 is fixedly connected and communicated with a centrifugal chamber 13. The blocking shell 12 is composed of a horizontal push rod 121 and a shielding plate 122. The center of the horizontal push rod 121 is a round rod. Disks are arranged at both ends of the round rod of the horizontal push rod 121, and the disks are in sliding contact with the inner wall of the storage shell 9. A threaded hole is arranged in the center of the horizontal push rod 121 and meshes with the horizontal push threaded rod 11. A shielding plate 122 is fixedly connected to the end face of the horizontal push rod 121. The shielding plate 122 is in the shape of an arc plate and can block the opening above the storage shell 9. The blocking shell 12 can clamp the organic sewage solids therein by using the horizontal push rod 121, which is convenient for pushing them into the centrifugal chamber 13. By setting the shielding plate 122, new organic sewage solids are prevented from entering during the pushing process.
[0028] A wrapping shell 14 is rotatably connected to the outside of the centrifugal bin 13. A second diversion shell 15 is connected to the lower end of the wrapping shell 14. A positioning component 16 is fixedly connected to the outer surface of the wrapping shell 14. A centrifugal motor 17 is fixedly connected to the outer surface of the positioning component 16. An output end of the centrifugal motor 17 is fixedly connected to a centrifugal gear 18. The centrifugal gear 18 meshes with the centrifugal bin 13. The centrifugal bin 13 is composed of a drum bin 131 and an outer tooth ring 132. The drum bin 131 is cylindrical in shape. Small holes are provided on the surface of the drum bin 131. The outer tooth ring 132 is fixedly connected to the end face of the drum bin 131. Teeth are provided on the surface of the outer tooth ring 132 and mesh with the centrifugal gear 18. The centrifugal bin 13 can generate a centrifugal force through rotation, so that the liquid mixed inside the organic sewage solids is thrown out.
[0029] A feeding bin 19 is fixedly connected to the outer surface of the positioning component 16. A blowing mechanism 20 is provided at the upper end of the feeding bin 19. The blowing mechanism 20 is a conventional device capable of generating air flow. The feeding bin 19 is an overall square empty shell. A chamfer is provided at the upper end of the feeding bin 19. A cylindrical blowing cavity is provided at the lower end of the feeding bin 19. The feeding bin 19 can control the air flow inside while transporting the organic sewage.
[0030] A temperature regulating mechanism 21 is fixedly connected to the inside of the feeding bin 19. The temperature regulating mechanism 21 is a conventional mechanism capable of controlling temperature. A lifting mechanism 22 is provided on the outer surface of the feeding bin 19. The lifting mechanism 22 includes a limit frame 221, a lifting motor 222, a lifting threaded rod 223 and a toggle rod 224. The limit frame 221 is box-shaped and fixedly connected to the outer surface of the feeding bin 19. The lifting motor 222 is fixedly connected to the inside of the limit frame 221. The lifting threaded rod 223 is connected to the output end of the lifting motor 222. The outer surface of the lifting threaded rod 223 is threadedly connected to the toggle rod 224. The toggle rod 224 penetrates through the feeding bin 19 and extends to the inside of the centrifugal bin 13. The lifting mechanism 22 can control the lifting of the toggle rod 224 on the surface of the feeding bin 19 to approach and move away from the inner wall of the centrifugal bin 13.
[0031] A blocking component 23 is provided at the lower end of the feeding bin 19. One end of the toggle rod 224 is a blocking disc 2241 and the other end is a lever 2242. The blocking disc 2241 is threadedly connected to the lifting threaded rod 223. The blocking disc 2241 is slidably connected to the outer surface of the feeding bin 19. The lever 2242 is a bent long rod in shape. The lever 2242 is inside the centrifugal bin 13. The toggle rod 224 can block the organic sewage on the inner wall of the centrifugal bin 13 through the shape of the bent long rod and guide the solids into the inside of the feeding bin 19.
[0032] A slide rail shell 24 is fixedly connected to the outer surface of the support base 1, and the blocking assembly 23 includes a blocking motor 231 and a blocking shaft 232. The blocking motor 231 is connected to the outside of the discharge bin 19, and the blocking shaft 232 is connected to the output end of the blocking motor 231. The cross-section of the blocking shaft 232 is elliptical, and the blocking shaft 232 is located on the inner side of the drum cavity of the discharge bin 19. The blocking assembly 23 can close the outlet of the lower end of the inner side of the discharge bin 19 in time through the rotation of the blocking shaft 232, so that the airflow generated by the blowing mechanism 20 can be discharged from the centrifugal bin 13, and the small holes blocked in the centrifugal bin 13 can be cleaned by exhausting the airflow.
[0033] A first telescopic rod plate 25 is fixedly connected to the inner side of the slide rail shell 24. The first telescopic rod plate 25 is composed of a telescopic rod and a flat plate fixedly connected. An extrusion assembly 26 is fixedly connected to the inner side of the slide rail shell 24. The extrusion assembly 26 is composed of a telescopic rod and an extrusion block. A locking shell 27 is provided on the inner side of the slide rail shell 24. A discharge plate 28 is fixedly connected to the outer surface of the support base 1. A discharge telescopic rod 29 is fixedly connected to the surface of the discharge plate 28. The free end of the discharge telescopic rod 29 is fixedly connected to the locking shell 27.
[0034] This equipment adopts multi-stage physical treatment technology, including dynamic filtration, centrifugal dehydration, hot air drying, and hydraulic compression. It realizes continuous treatment of organic sewage through a precisely designed mechanical structure. When in use, the solid-liquid mixture of organic sewage is first collected and moved to the inner side of the collection rack 2. The organic sewage mixture stays on the surface of the filter belt 6 and the surface mesh is used to screen the organic sewage solids and retain them on the surface. The liquid in the organic sewage mixture penetrates from the filter belt 6 and flows into the inner side of the first guide shell 7 so that the liquid can flow out in a concentrated manner, thereby realizing the filtration of organic wastewater.
[0035] By starting the collection motor 3 to drive the driving shaft 4 to rotate, the filter belt 6 rotates on the surface of the corner shaft 5. By setting multiple corner shafts 5, the filter belt 6 can be bent to facilitate the falling of the surface filter material and the exposure of the mesh on the surface of the filter belt 6, so that the mesh is easy to clean, and the organic sewage solids are pushed to the inside of the containing shell 9, so that the organic sewage solids enter the horizontal push rod 121. The filter belt 6 is bent according to the position set by the corner shaft 5, so that the organic impurities on the surface of the filter belt 6 can fall quickly at the bent position. The filter belt 6 remains flat under the action of mechanical tension, ensuring the uniform retention of solid particles. The ingenious arrangement of multiple corner shafts 5 allows the filter belt 6 to form a bent motion trajectory. This dynamic filtration method not only ensures filtration efficiency, but also realizes automatic unloading function through periodic bending.
[0036] By starting the cleaning motor 81 to drive the cleaning shaft 82, the filter belt 6 is rotated and cleaned by the rotating cleaning shaft 82, so that solid impurities entering the mesh of the filter belt 6 are blown by the air blowing mechanism 83 to generate airflow to blow the filter belt 6, so that the solid impurities in the mesh of the filter belt 6 are blown into the storage box 84, so as to prevent the filter belt 6 from being blocked during long-term use. The impurities blocking the filter belt 6 are cleared by the combing component 8, so that the filter belt 6 can achieve continuous operation. Then, by starting the horizontal push motor 10, the horizontal push threaded rod 11 is driven to rotate, so that the horizontal push threaded rod 11 rotates and pushes the blocking shell 12 to slide toward the inside of the centrifugal bin 13, so that the horizontal push rod 121 pushes the organic sewage solids into the inside of the centrifugal bin 13, and by starting the centrifugal motor 17, the centrifugal gear 18 is driven to rotate, so that the centrifugal gear 18 pushes the centrifugal bin 13 to rotate inside the wrapping shell 14, so that the organic sewage solids inside the centrifugal bin 13 are rotated and dehydrated by the centrifugal force generated by the rotation of the centrifugal bin 13. The centrifugal force is generated by the rotation of the centrifugal bin 13, and the liquid mixed in the impurities is thrown out under the action of the centrifugal force. The liquid separated by centrifugation enters the second guide shell 15 along the inner wall of the wrapping shell 14 and flows out.
[0037] Then, by starting the lifting motor 222 to drive the lifting threaded rod 223 to rotate, the toggle rod 224 is lowered inside the limit frame 221, and the toggle rod 2242 is lowered close to the inner wall of the centrifugal bin 13. Through the rotation of the centrifugal bin 13, the organic sewage solids inside are pushed out by the toggle rod 2242 and enter the discharge bin 19. The temperature is regulated by the temperature regulating mechanism 21, and the air flow is generated by the blowing mechanism 20, so that the hot air flow blows the organic sewage solids inside the discharge bin 19. The organic sewage can be dehydrated and dried by the rotation of the set centrifugal bin 13. The temperature is regulated by the temperature regulating mechanism 21 to adjust the temperature of the air flow generated by the blowing mechanism 20, and the dehydrated organic impurities are dried, so that the collected organic impurities that block the filter device become dry and fluffy after dehydration, so that the impurities in the organic wastewater can be completely detached from the liquid and conveniently collected.
[0038] Finally, when the organic impurities fall to the lower end of the lower bin 19, the blocking motor 231 is started to drive the blocking shaft 232 to rotate, so that the blocking shaft 232 can block the lower bin 19 during the rotation process. When the lower bin 19 is blocked, the air flow generated by the blowing mechanism 20 enters the centrifugal bin 13 and is discharged from the small holes in the roller bin 131, so that the air flow can break through the impurities blocking the inner side of the small holes in the roller bin 131. The small holes in the roller bin 131 are unblocked by the blowing of the air flow, so that the small holes in the roller bin 131 are not blocked. After the organic impurities fall from the lower bin 19, the first telescopic rod plate 25 is started to cover the surface of the organic impurities, and the extrusion component 26 is started to push the organic impurities so that the organic impurities are compressed into the blocking shell 27, so that the organic impurities are compressed into blocks for more convenient stacking, storage and transportation. The discharging telescopic rod 29 is started to pull the blocking shell 27 so that the blocking shell 27 can be pulled, so that the compressed organic impurity blocks fall onto the discharging plate 28 for discharge.
[0039] The device uses six rotating filter belts to continuously filter organic wastewater, preventing organic impurities in the wastewater from clogging the mesh. To prevent organic impurities from accumulating and affecting the filtration of the wastewater, the filtered impurities are collected and physically dehydrated using centrifugal rotation and thermal drying. Finally, mechanical compression is used to minimize the space occupied by the collected impurities, allowing the equipment to continuously filter the wastewater and prevent clogging and accumulation. The precisely designed mechanical structure achieves continuous treatment of organic wastewater, forming a highly efficient closed-loop solid-liquid separation system. The device innovatively utilizes a synergistic mechanism of dynamic curved surface filtration and mechanical stress, demonstrating excellent adaptability and reliability in the wastewater treatment process.
[0040] In the description of this specification, the reference terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" mean that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art can combine and combine different embodiments or examples described in this specification.
[0041] In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the fact that ordinary technicians in this field can implement them. When the combination of technical solutions is mutually contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by this application.
[0042] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An organic wastewater sewage treatment device, including a support base, and a collection rack fixedly connected to the upper surface of the support base, characterized in that: The inner side of the collecting rack is provided with a combing assembly, the surface of the collecting rack is fixedly connected to a holding shell, the outer side of the holding shell is fixedly connected to a horizontal pushing mechanism, the blocking shell is slidably connected to the inner wall of the holding shell, one end of the holding shell away from the horizontal pushing mechanism is fixedly connected and is connected to a centrifugal bin for removing liquid inside the solid filtrate in the organic wastewater, the outer side of the centrifugal bin is rotatably connected to a wrapping shell, the lower end of the wrapping shell is connected to a second guide shell, the outer surface of the wrapping shell is fixedly connected to a positioning assembly, the outer surface of the positioning assembly is fixedly connected to the centrifugal mechanism, the outer surface of the positioning assembly is fixedly connected to a lower bin, the upper end of the lower bin is provided with a blowing mechanism, the inner side of the lower bin is fixedly connected to a temperature regulating mechanism, the outer surface of the lower bin is provided with a lifting mechanism, and the lower end of the lower bin is provided with a blocking assembly; The outer surface of the support base is fixedly connected with a forming mechanism for squeezing the filtered organic matter into a fixed shape.
2. An organic wastewater sewage treatment device according to claim 1, characterized in that: The blocking shell is composed of a horizontal push rod and a baffle plate. The center of the horizontal push rod is a round rod. Both ends of the round rod of the horizontal push rod are provided with discs. The discs are in sliding contact with the inner wall of the containing shell. A threaded hole is provided in the center of the horizontal push rod and engages with the horizontal push threaded rod. The end face of the horizontal push rod is fixedly connected with the baffle plate. The baffle plate is an arc-shaped plate that can block the square opening above the containing shell. The horizontal pushing mechanism includes a horizontal push threaded rod fixedly connected to the output end of the horizontal push motor, and the outer surface of the horizontal push threaded rod is threadedly connected to the blocking shell.
3. An organic wastewater treatment device according to claim 1, characterized in that: The centrifugal bin is composed of a drum bin and an outer gear ring. The drum bin is cylindrical in shape and has small holes on its surface. The outer gear ring is fixedly connected to the end face of the drum bin. The outer gear ring is provided with teeth on its surface and engages with the centrifugal mechanism. The centrifugal mechanism includes a centrifugal motor. The output end of the centrifugal motor is fixedly connected to a centrifugal gear, which engages with the centrifugal bin.
4. An organic wastewater treatment device according to claim 1, characterized in that: The lifting mechanism includes a limit frame, which has a square shape and is fixedly connected to the outer surface of the lower material bin. A lifting motor is fixedly connected to the inner side of the limit frame. The output end of the lifting motor is connected to a lifting threaded rod. The outer surface of the lifting threaded rod is threadedly connected to a toggle rod, which passes through the lower material bin and extends to the inner side of the centrifugal bin.
5. An organic wastewater sewage treatment device according to claim 1, characterized in that: The combing assembly includes a cleaning motor, a blower mechanism and a storage box. The cleaning motor is fixedly connected to the inner side of the collecting frame. The output end of the cleaning motor is fixedly connected to a cleaning shaft. A brush is provided on the surface of the cleaning shaft. The blower mechanism has a blowing function. The blower mechanism and the cleaning shaft are both above the storage box. The filter belt passes through the gap between the cleaning shaft, the blower mechanism and the storage box.
6. An organic wastewater sewage treatment device according to claim 1, characterized in that: The lower material bin is in the form of a square hollow shell as a whole, the upper end of the lower material bin is provided with a chamfer, and the lower end of the lower material bin is provided with a columnar drum cavity.
7. An organic wastewater treatment device according to claim 6, characterized in that: The blocking assembly includes a blocking motor and a blocking shaft. The blocking motor is connected to the outside of the lower material bin. The blocking shaft is connected to the output end of the blocking motor. The blocking shaft has an elliptical cross-section and is located inside the drum cavity of the lower material bin.
8. An organic wastewater treatment device according to claim 4, characterized in that: One end of the toggle rod is a blocking disc and the other end is a toggle rod. The blocking disc is threadedly connected to the lifting threaded rod, and the blocking disc is slidingly connected to the outer surface of the lower bin. The toggle rod is a curved long rod and is located inside the centrifugal bin.
9. An organic wastewater treatment device according to claim 1, characterized in that: The shaping mechanism includes a slide rail shell, a first telescopic rod plate is fixedly connected to the inner side of the slide rail shell, an extrusion assembly is fixedly connected to the inner side of the slide rail shell, a clamping shell is arranged on the inner side of the slide rail shell, a discharge plate is fixedly connected to the outer surface of the support base, a discharge telescopic rod is fixedly connected to the surface of the discharge plate, and the free end of the discharge telescopic rod is fixedly connected to the clamping shell.
10. An organic wastewater sewage treatment device according to claim 1, characterized in that: A collection motor is fixedly connected to the outer surface of the collection rack, a push shaft is fixedly connected to the output end of the collection motor, a corner shaft is arranged inside the collection rack, a filter belt is sleeved on the outer sides of the corner shaft and the push shaft, and a first diversion shell is arranged inside the collection rack, and the first diversion shell is inside the filter belt.
Citation Information
Patent Citations
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