A mixing station sewage recycling and treatment device
By using a multi-angle rotating stirring rod and a servo motor-driven wastewater treatment equipment, the problems of high electricity costs and low efficiency of wastewater treatment equipment in mixing plants have been solved. This has enabled rapid mixing and automated separation, reducing the electricity costs for enterprises and improving wastewater treatment efficiency.
Patent Information
- Application Number
- CN202311625280.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-30
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2043-11-30
AI Technical Summary
Existing wastewater treatment equipment at mixing plants requires long operating hours, resulting in high electricity costs and low wastewater treatment efficiency.
The system employs a multi-angle rotating stirring rod structure, combined with a servo motor drive, to achieve rapid mixing of wastewater and chemicals, and reduces power consumption by automatically separating sludge and wastewater.
It has improved the speed of sewage treatment, reduced electricity costs, achieved efficient mixing and automated treatment of sewage, saved power resources, and improved the economic benefits of enterprises.
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Figure CN117417008B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the field of sewage treatment, and particularly relates to a recycling treatment device for sewage of a mixing station. BACKGROUND
[0002] The mixing station is a general term for large-scale machines used for civil construction and the like in industrial construction, and is composed of a mixing system, an aggregate supply system, a metering system, a control system and external supporting equipment. In recent years, environmental pollution is serious, especially sewage pollution of the mixing station, which causes pollution of nearby farmland and serious odor in ditches. Therefore, the sewage in the mixing station needs to be treated before being discharged. At present, the sewage treatment method is to mix the sewage with chemicals. Therefore, a mixing device needs to be prepared. A large number of driving members need to be used in the mixing device to complete the mixing and stirring of the sewage and chemicals and the addition of chemicals. The sewage treatment device needs to be turned on for a long time, which increases the power consumption of enterprises. In addition, the single stirring mode reduces the mixing efficiency of the sewage and chemicals and slows down the completion of the project.
[0003] Therefore, the present application provides a recycling treatment device for sewage of a mixing station to solve the above problems. SUMMARY
[0004] The present application solves the technical problem of overcoming the shortcomings of the prior art and providing a recycling treatment device for sewage of a mixing station.
[0005] To solve the above technical problems, the basic idea of the technical solution of the present application is as follows:
[0006] A recycling treatment device for sewage of a mixing station, comprising a mixing station, a sewage treatment device and a plate-and-frame filter press, wherein the mixing station and the sewage treatment device are connected by a pipeline, the outlet of the sewage treatment device and the plate-and-frame filter press and the sewage tank thereof are connected by a pipeline, the sewage treatment device comprises a mixing tank, a collecting tank is connected below the mixing tank, a mud outlet is formed on one side of the collecting tank, an outlet pipe is connected to one end of the mud outlet, the outlet pipe is connected to the plate-and-frame filter press, a water outlet is formed on the outer wall of the mixing tank, a water outlet pipe is connected to the water outlet, and the water outlet pipe is connected to the sewage tank.
[0007] Preferably, a plate body is rotatably connected to the upper portion of the mixing tank, a chemical outlet mechanism is connected to the upper portion of the plate body, a servo motor is connected to the lower portion of the chemical outlet mechanism, an output end of the servo motor is connected to a rod body located above the plate body, and a first stirring rod is connected to one end of the rod body and located in the vertical direction of the mixing tank.
[0008] Preferably, the first stirring rod is connected with a first gear at one end close to the plate body, and a plurality of support rods in the vertical direction of the mixing tank are rotatably connected to the plate body in the length direction.
[0009] Preferably, the support rod comprises a connecting rod connected with the second gear, a second stirring rod in the vertical direction of the mixing tank is rotatably connected to the lower portion of the connecting rod, two mounting plates are connected to the upper portion of the mixing tank, a positioning hole with a circular cross section is formed between the upper portion and the lower portion of the mounting plate, and the second stirring rod is located inside the positioning hole.
[0010] Preferably, the mixing tank is connected with a first U-shaped frame at the left and right sides, a first disc body located in the first U-shaped frame is connected to the lower portion of the plate body, and the first disc body is rotatably connected in the space of the first U-shaped frame, two connecting plates are connected to the upper and lower sides of the mixing tank, an extension plate corresponding to the connecting plate is connected to each side of the plate body, a first spring is connected between the extension plate and the connecting plate, a cam is connected to the circumferential side of the rod body, a connecting column with an L-shaped cross section is connected to the upper portion of the connecting plate, and the cam and the connecting column are in mutual pressing fit.
[0011] Preferably, a filter screen is installed at the water outlet, an opening is formed in the lower portion of the mixing tank, a baffle with a ladder-shaped cross section is in sliding fit in the vertical direction of the opening, the baffle is in sliding fit in the vertical direction of the collecting tank, a shielding annular plate is in sliding fit on the inner wall of the mixing tank, a through groove adapted to the water outlet is formed through the opposite sides of the annular plate, and the annular plate and the baffle are in cooperation.
[0012] Preferably, an air bag arranged in a ring shape is connected to the upper portion of the annular plate, a guide rod is connected to the upper portion of the baffle, and a guide hole for the sliding of the guide rod is formed through between the upper portion and the lower portion of the annular plate.
[0013] Preferably, the medicine outlet mechanism comprises a collecting box connected with a servo motor, a medicine outlet barrel fixedly connected between the plate body is in communication with the lower portion of the collecting box, a guide block with a triangular cross section is connected to the inner wall bottom of the collecting box, a medicine outlet hole in communication with the medicine outlet of the medicine outlet barrel is formed through between the upper portion and the lower portion of the plate body, and a baffle is in sliding fit below the medicine outlet hole.
[0014] Preferably, a recess is formed in one side of the mixing tank, a sliding rod is in elastic fit in the recess, a fixing rod is connected between the upper portion of the sliding rod and the baffle, a connecting block is connected to the circumferential side of the annular plate, and slopes adapted to the plane of the connecting block are arranged on the upper portion and the lower portion of the sliding rod.
[0015] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art. Of course, any product implementing the present invention does not necessarily need to achieve all of the following advantages at the same time:
[0016] 1. This invention increases the mixing speed of wastewater and chemicals by adding multiple multi-angle rotating stirring rods, thereby accelerating the wastewater treatment process. Furthermore, the multiple multi-angle rotating stirring rods only require a single servo motor to complete their rotation, saving electricity resources used in wastewater treatment equipment and reducing the electricity costs incurred by enterprises using wastewater treatment equipment, thus having good social benefits.
[0017] 2. This invention treats sewage and sludge by separating them. Furthermore, by using a baffle that moves according to the buoyancy of the sewage, the sludge can automatically fall off the baffle and into the collection tank after the sewage is discharged. Moreover, when the baffle rises, the driven baffle moves so that the medicine outlet can automatically flow the medicine into the mixing tank, making the equipment more automated and reducing the power cost.
[0018] The specific embodiments of the present invention will now be described in further detail with reference to the accompanying drawings. Attached Figure Description
[0019] The accompanying drawings described below are merely some embodiments. Those skilled in the art can obtain other drawings based on these drawings without any creative effort. In the drawings:
[0020] Figure 1 This is one of the three-dimensional structural schematic diagrams of a processing device according to an embodiment of the present invention;
[0021] Figure 2 for Figure 1 Schematic diagram of the structure at point A
[0022] Figure 3 This is a second three-dimensional structural schematic diagram of a processing device according to an embodiment of the present invention;
[0023] Figure 4 This is one of the three-dimensional structural diagrams of the processing device according to an embodiment of the present invention;
[0024] Figure 5 for Figure 4 Schematic diagram of the structure at point B;
[0025] Figure 6 for Figure 4 Schematic diagram of the structure at point C;
[0026] Figure 7 for Figure 4 Schematic diagram of the structure at point D;
[0027] Figure 8 Figure 2 is a schematic diagram of the internal three-dimensional structure of the processing device according to an embodiment of the present application;
[0028] Figure 9 Figure 3 is a schematic diagram of the structure at point E in Figure 2; Figure 8
[0029] In the drawings, the components represented by the respective reference numerals are listed as follows:
[0030] 1, mixing station; 2, sewage treatment equipment; 201, mixing tank; 202, collection tank; 203, plate body; 204, servo motor; 205, rod body; 206, stirring rod; 207, first gear; 208, support rod; 209, second gear; 210, connecting rod; 211, second U-shaped frame; 212, second stirring rod; 213, second disc body; 214, mounting plate; 215, positioning hole; 216, first U-shaped frame; 217, first disc body; 218, connecting plate; 219, extension plate; 220, first spring; 221, cam; 222, connecting column; 223, filter screen; 224, baffle; 225, annular plate; 226, through groove; 227, air bag; 228, guide rod; 229, collection box; 230, medicine outlet cartridge; 231, guide block; 232, medicine outlet hole; 233, baffle; 234, groove; 235, sliding rod; 236, fixed rod; 237, connecting block; 3, plate-and-frame filter press.
[0031] It should be noted that these drawings and written descriptions are not intended to limit the scope of the concept of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0032] The present application will now be further described in detail in conjunction with the drawings.
[0033] Please refer to Figures 1-9 shown, in this embodiment, a mixing station sewage recycling and recovery treatment device is provided, comprising a mixing station 1, sewage treatment equipment 2, plate-and-frame filter press 3, sewage pool 4, the mixing station 1 and the sewage treatment equipment 2 are connected by pipeline, the water outlet of the sewage treatment equipment 2 and the plate-and-frame filter press 3 and the sewage pool 4 thereof are connected by pipeline, and the communication mode between the above-mentioned mixing station 1, sewage treatment equipment 2, plate-and-frame filter press 3 and sewage pool 4 all adopts the mode of pump, and the type of pump includes but is not limited to water pump, centrifugal pump, and sludge pump.
[0034] The sewage treatment equipment 2 comprises a mixing tank 201, a collecting tank 202 connected below the mixing tank 201, the mixing tank 201 is used for mixing the medicament and the sludge, and the collecting tank 202 is used for collecting the residual slurry after the sewage treatment of the mixing tank 201, and then the waste is reused by secondary processing of the slurry, so that the material waste is reduced, the economic benefit of the enterprise is improved, the mixing tank 201 and the collecting tank 202 are connected by welding, a plate body 203 is rotatably connected above the mixing tank 201, the first stirring rod 206 can swing in the mixing tank 201 by the rotating plate body 203, and then the mixing efficiency of the subsequent medicament and sewage is improved, a medicament discharging mechanism is connected above the plate body 203, the medicament discharging mechanism and the plate body 203 are connected by bolts or welding, the medicament used for sewage treatment is placed in the medicament discharging mechanism, so that the automatic dosing is realized, the sewage treatment equipment 2 has a higher degree of automation, a servo motor 204 is connected below the medicament discharging mechanism, the servo motor 204 can be connected below the medicament discharging mechanism by bolts or welding, and the servo motor 204 can be replaced by a self-locking motor, a synchronous motor or various motors, the sewage treatment equipment 2 is more automatic by the setting of the servo motor 204, an output end of the servo motor 204 is connected with a rod body 205 above the plate body 203, the rod body 205 and the output end of the servo motor 204 are connected by welding, one end of the rod body 205 is connected with the first stirring rod 206 in the vertical direction of the mixing tank 201 and penetrating through the plate body 203, the sewage and the medicament can be mixed together by the setting of the first stirring rod 206, and the sewage and the slurry can be separated, a slurry outlet is formed in one side of the collecting tank 202, one end of the slurry outlet is connected with a slurry outlet pipe, the slurry outlet pipe and the slurry outlet are connected by welding, the slurry outlet pipe and a plate frame filter press 3 are communicated, the slurry in the collecting tank 202 can be transmitted into the plate frame filter press 3 by the setting of the slurry outlet, so that the slurry is dehydrated, the slurry is reused, the sewage treatment efficiency is improved, the use effect is better, and the operation difficulty is lower, a water outlet is formed in the circumferential side of the outer wall of the mixing tank 201, a water outlet pipe is connected at the water outlet, the water outlet pipe is communicated with a sewage pool 4, the sewage and the slurry are separately treated, so that the efficiency of the product in the sewage treatment process is higher, and the practicability of the product is improved, the treated sewage can be reused for water in the mixing station, used for road surface watering, used for automatic spraying and dust setting of the material bin of the mixing station, and the like, the sewage is reasonably treated, the sewage is recycled, and good social benefits are achieved, one end of the first stirring rod 206 close to the plate body 203 is connected with a first gear 207, the first gear 207 is connected with the first stirring rod 206 by welding, a positioning hole 215 matched with the first stirring rod 206 is formed in the central part between the upper and lower parts of the plate body 203, a plurality of supporting rods 208 in the vertical direction of the mixing tank 201 are rotatably connected below the plate body 203 in the length direction,The side close to the plate body 203 of the supporting rod 208 is connected with the second gear 209 engaged with the first gear 207, the supporting rod 208 and the second gear 209 are connected by bolts, the upper side of the second gear 209 is connected with a column body with a T-shaped cross section, the lower side of the plate body 203 is provided with a first annular groove for the rotation of the column body, the setting of the first annular groove and the column body avoids the falling of the subsequent supporting rod 208, improves the stability of the rotation of the supporting rod 208, and the setting of the first gear 207 and the second gear 209 can drive the rotation of the supporting rod 208 during the rotation of the first stirring rod 206, further improves the mixing efficiency of the sewage and the medicament, and only one motor is needed to complete the rotation of the plurality of first stirring rods 206, saves the cost of the sewage treatment equipment 2, the supporting rod 208 comprises a connecting rod 210 connected with the second gear 209, the connecting rod 210 and the second gear 209 are connected by bolts, the upper side of the connecting rod 210 is connected with a positioning disc, a plurality of mounting holes are provided through the opposite sides of the positioning disc, a plurality of threaded holes corresponding to the mounting holes are provided in the lower side of the second gear 209, and the bolts are screwed into the threaded holes through the mounting holes, the connecting rod 210 plays a role of a connecting piece, the lower side of the connecting rod 210 is rotatably connected with the second stirring rod 212 in the vertical direction of the mixing tank 201, the lower side of the connecting rod 210 is connected with a second U-shaped frame 211, the upper end of the second stirring rod 212 is connected with a second disc body 213 located in the second U-shaped frame 211, the setting of the second U-shaped frame 211 and the second disc body 213 can make the second stirring rod 212 swing in the space of the mixing tank 201, thereby improving the subsequent mixing efficiency and speeding up the sewage treatment speed, the upper side of the mixing tank 201 is connected with two mounting plates 214, the mounting plates 214 are connected to the upper side of the mixing tank 201 by welding or bolts, a positioning hole 215 with a circular cross section is provided through the upper side and the lower side of the mounting plate 214, the second stirring rod 212 is located in the positioning hole 215, the setting of the positioning hole 215 avoids the over-swinging of the second stirring rod 212, and the periphery of the inner wall of the positioning hole 215 is provided with shock-absorbing rubber, the setting of the shock-absorbing rubber reduces the impact force when the second stirring rod 212 swings and contacts the inner wall of the positioning hole 215, prolongs the service life of the second stirring rod 212, the left and right sides of the mixing tank 201 are connected with a first U-shaped frame 216, the first U-shaped frame 216 is connected to the upper side of the mixing tank 201 by welding or bolts, the lower side of the plate body 203 is connected with a first disc body 217 located in the first U-shaped frame 216, the first disc body 217 is connected to the lower side of the plate body 203 by welding or bolts, the two sides of the first disc body 217 are connected with rotating rods, the two sides of the first U-shaped frame 216 are provided with rotating holes for the rotation of the rotating rods, the setting of the rotating rods and the rotating holes avoids the suspension of the subsequent first disc body 217,The rotating rod and the rotating hole play a positioning role, the first disc body 217 is rotationally connected in the space of the first U-shaped frame 216, the first disc body 217 and the first U-shaped frame 216 are arranged to avoid the situation that the subsequent plate body 203 is suspended, and the first disc body 217 and the first U-shaped frame 216 are arranged to enable the plate body 203 to swing, thereby driving the first stirring rod 206 to swing in the mixing tank 201, and the mixing efficiency of the sewage and the medicament is improved, the mixing tank 201 is connected with two connecting plates 218 on the upper side, the connecting plates 218 are connected to the upper side of the mixing tank 201 in a welded manner, the plate body 203 is connected with the extension plates 219 corresponding to the connecting plates 218 on both sides, the extension plates 219 are connected to the two sides of the plate body 203 in a welded manner, the connecting plates 218 and the extension plates 219 are both rectangular plate structures, the heights of the extension plates 219 and the connecting plates 218 do not exceed the bottom of the cam 221, the connecting plates 218 and the extension plates 219 are arranged in this way to avoid affecting the rotation of the cam 221, the first springs 220 are connected between the extension plates 219 and the connecting plates 218, the first springs 220 are arranged to facilitate the subsequent plate body 203 to be adjusted, the cam 221 is connected to the periphery of the rod body 205, the cam 221 and the rod body 205 are connected in a welded manner, the connecting column 222 with an L-shaped cross section is connected to the upper side of the connecting plate 218, the connecting column 222 and the connecting plate 218 are connected in a welded manner, the cam 221 and the connecting column 222 are in extrusion fit with each other, the connecting column 222 is arranged to enable the arc-shaped structure at the front end of the cam 221 to generate extrusion force, thereby enabling the plate body 203 to pull one of the first springs 220 to complete the swing process, the cam 221 can rotate together with the rod body 205, without the need to prepare a new driving part, so that the sewage treatment equipment 2 consumes less power, is more energy-saving, reduces the waste of power resources, and further improves the economic benefits of enterprises, the first stirring rod 206 with multiple multi-angle rotations is arranged, so that the mixing speed of the sewage and the medicament is faster, thereby speeding up the sewage treatment speed, and the first stirring rod 206 with multiple multi-angle rotations only needs one servo motor 204 to complete the rotation, saves the power resources used by the sewage treatment equipment 2, reduces the power cost generated by the enterprise in using the sewage treatment equipment 2, and has good social benefits.
[0035] The water outlet is provided with a filter screen 223. The filter screen 223 can block the subsequent slurry from entering the water outlet pipe. In addition, a space is left between the water outlet and the baffle 224. The space is used to store slurry, so that the slurry can be deposited above the baffle 224. An opening is formed in the lower part of the mixing tank 201. A baffle 224 with a trapezoidal cross section is slidably connected to the opening in the vertical direction. A second spring is connected between the baffle 224 and the collection tank 202. The baffle 224 can be tightly fitted to the opening through the second spring. A sealing ring is connected to the upper part of the baffle 224. An annular groove is formed in the lower part of the opening and is matched with the sealing ring. The sealing ring and the annular groove improve the sealing performance of the baffle 224 after being contacted. The trapezoidal baffle 224 can make the slurry above the baffle 224 fall into the collection tank 229. The baffle 224 is slidably connected to the collection tank 202 in the vertical direction. Two positioning plates are connected to the lower part of the baffle 224. Guide rails are connected to the inner wall of the collection tank 202. Sliding grooves are formed in the opposite sides of the positioning plates and are used for the sliding of the guide rails. The guide rails and the sliding grooves can guide the sliding of the baffle 224 and avoid the suspension of the baffle 224. A shielding annular plate 225 is slidably connected to the inner wall of the mixing tank 201. A through groove 226 is formed in the opposite sides of the annular plate 225 and is matched with the water outlet. The through groove 226 can avoid the shielding of the water outlet by the annular plate 225 and facilitate the flow of the sewage. The annular plate 225 is matched with the baffle 224. An air bag 227 is connected to the upper part of the annular plate 225. The air bag 227 is connected to the upper part of the annular plate 225 by means of glue. The air bag 227 can drive the annular plate 225 to slide upward or downward according to the buoyancy of the sewage. Then, the baffle 224 can slide upward or downward, so that the slurry above the baffle 224 can fall into the collection tank 229. A guide rod 228 is connected to the upper part of the baffle 224. Guide holes are formed in the upper part and the lower part of the annular plate 225 and are used for the sliding of the guide rod 228. The guide rod 228 and the guide holes can avoid the falling of the plate body 203. The guide rod 228 is a T-shaped rod structure. The T-shaped rod can avoid the over-sliding of the annular plate 225. The medicine outlet mechanism comprises a collection tank 229 connected with a servo motor 204. The collection tank 229 and the servo motor 204 are connected by means of bolts. The collection tank 229 is located above the plate body 203. A medicine outlet barrel 230 is fixedly connected between the collection tank 229 and the plate body 203. A guide block 231 with a triangular cross section is connected to the inner wall of the collection tank 229. The guide block 231 can make the medicine enter the medicine outlet barrel 230 along the slope and then enter the mixing tank 201 through a medicine outlet hole 232. The guide block 231 can improve the capacity of the medicine storage. The medicine outlet hole 232 is formed in the upper part and the lower part of the plate body 203 and is communicated with the medicine outlet of the medicine outlet barrel 230.The lower part of the medicine outlet hole 232 is slidably matched with a baffle 233. The baffle 233 can be opened during subsequent water injection, so that the medicine can flow out of the medicine outlet hole 232. When the baffle 224 is opened, the baffle 233 is attached to the lower part of the medicine outlet hole 232, avoiding the subsequent medicine from flowing out at will, reducing the waste of medicine. One side of the mixing tank 201 is provided with a groove 234. The inner part of the groove 234 is elastically matched with a sliding rod 235. One end of the sliding rod 235 is connected with one side of the inner wall of the groove 234 through a third spring. The upper part of the sliding rod 235 is connected with the baffle 233 through a fixed rod 236. The fixed rod 236 is connected between the baffle 233 and the sliding rod 235 by welding. The circumferential side of the annular plate 225 is connected with a connecting block 237. The connecting block 237 is a rectangular block structure. The upper part and the lower part of the sliding rod 235 are both provided with slopes which are adapted to the plane of the connecting block 237. The slopes are arranged to facilitate the subsequent extension and contraction of the sliding rod 235. When the annular plate 225 is lowered, the connecting block 237 will press the slope, so that the sliding rod 235 slides into the groove 234. Then, the sliding rod 235 will drive the baffle 233 to cancel the shielding of the medicine outlet hole 232 through the fixed rod 236, so as to facilitate the subsequent medicine to enter the mixing tank 201.
[0036] Working principle: when the sewage treatment device needs to be used, first, the sewage in the mixing station is transported to the mixing tank 201 through the centrifugal pump, then the water in the mixing tank 201 is filled, then the water moves upward through the buoyancy drive ring plate 225, then the connecting block 237 connected on one side of the ring plate 225 extrudes the slope of the sliding rod 235, so that the third spring is elastically deformed, then the sliding rod 235 slides into the groove 234, at the same time, the sliding rod 235 drives the baffle 233 to slide to cancel the shielding of the medicine outlet hole 232, and then when the ring plate 225 contacts the top of the guide rod 228, the third spring is elastically deformed to pop the sliding rod 235 out of the groove 234, then the baffle 233 shields the medicine outlet hole 232, thereby reducing the waste of the medicament, then the medicament in the medicine outlet cylinder 230 enters the mixing tank 201, then the servo motor 204 is started, so that the rod body 205 connected with the output end of the servo motor 204 rotates, in the process of rotating the rod body 205, the cam 221 also rotates, then the rod body 205 drives the first stirring rod 206 to rotate, then the first stirring rod 206 drives the second gear 209 to rotate through the first gear 207, at the same time, the cam 221 contacts the connecting column 222, then the cam 221 pushes the plate body 203 to swing after contacting the connecting column 222, at the same time, the first stirring rod 206 swings in the mixing tank 201, and the second stirring rod 212 swings around the connecting rod 210, thereby improving the mixing effect of the medicament and the sewage, then after the sewage treatment is completed, the sewage is transported to the sewage pool 4 through the centrifugal pump, in the process of the sewage descending, the sludge is deposited above the baffle 224, after the sewage is discharged, the ring plate 225 contacts the upper side of the baffle 224, the baffle 224 moves downward due to the weight of the sludge and the weight of the ring plate 225, then the sludge above the baffle 224 falls along the slope, when the amount of sludge in the collecting tank 202 is large, the sludge pump is started to transport the sludge to the plate and frame filter press 3.
[0037] The present application is not limited to the above-mentioned embodiments, and anyone should know that any structural changes made under the inspiration of the present application fall within the protection scope of the present application. The technical, shape and structure parts not described in detail in the present application are all known technologies.
Claims
1. A mixing plant sewage recycling recovery treatment device, characterized in that, The utility model relates to a sewage treatment equipment, including mixing station (1), sewage treatment equipment (2), plate and frame filter press (3), sewage pool (4), mixing station (1) with sewage treatment equipment (2) are connected through pipeline intercommunication, the water outlet of sewage treatment equipment (2) with plate and frame filter press (3) and its sewage pool (4) are connected through pipeline intercommunication, sewage treatment equipment (2) includes, mixing jar (201), the lower side of mixing jar (201) is connected with collection jar (202), one side of collection jar (202) is provided with sludge outlet, one end of sludge outlet is connected with sludge pipe, sludge pipe with plate and frame filter press (3) intercommunication, the circumferential side of the outer wall of mixing jar (201) is provided with water outlet, and the water outlet is connected with water outlet pipe, and water outlet pipe is connected with sewage pool (4) intercommunication; The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); 2. A sewage recycling treatment device for a mixing station according to claim 1, characterized in that, The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203); The upper side of mixing jar (201) is rotatably connected with plate body (203), the upper side of plate body (203) is connected with medicine outlet mechanism, the lower side of medicine outlet mechanism is connected with servo motor (204), the output end of servo motor (204) is connected with the rod body (205) located above plate body (203), one end of rod body (205) is connected with the first stirring rod (206) located in the vertical direction of mixing jar (201) and penetrating through plate body (203) 3. A sewage recycling treatment device for a mixing station according to claim 2, characterized in that, The supporting rod (208) comprises a connecting rod (210) connected with the second gear (209), the lower part of the connecting rod (210) is rotationally connected with a second stirring rod (212) in the vertical direction of the mixing tank (201), the upper part of the mixing tank (201) is connected with two mounting plates (214), the upper part and the lower part of the mounting plate (214) are connected with a positioning hole (215) with a circular cross section, and the second stirring rod (212) is located in the positioning hole (215).
Citation Information
Patent Citations
Sewage efficient filtering and separation device and method
CN108264161A
Medicament mixing device for sewage treatment
CN218358803U