Environment-friendly industrial wastewater integrated treatment equipment

By employing a multi-dimensional mixing mechanism and scraper cleaning design, the problem of poor mixing effect in existing technologies has been solved, achieving efficient mixing and flocculation in wastewater treatment equipment and improving wastewater treatment efficiency.

CN224047107UActive Publication Date: 2026-03-27TAIAN WEIRAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-23
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing industrial wastewater treatment equipment has a simple mixing mechanism and poor mixing effect, resulting in low mixing efficiency between wastewater and flocculant, which affects the overall treatment efficiency of the equipment.

Method used

A multi-dimensional mixing mechanism is adopted, including a motor-driven rotating shaft and mixing plate, combined with scrapers and spiral blades, to achieve efficient mixing of wastewater and uniform distribution of flocculant. The scraper cleans the sludge on the inner wall to ensure that the wastewater reacts fully.

Benefits of technology

It improves the mixing efficiency and reaction rate of wastewater and flocculant, enhances the overall efficiency of wastewater treatment, and prevents sludge accumulation on the inner wall from affecting the mixing effect.

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Abstract

The utility model discloses environment-friendly integrated treatment equipment for industrial wastewater. The environment-friendly integrated treatment equipment comprises a shell, a filtering mechanism, a stirring mechanism and a monitoring mechanism, a plurality of supporting legs are arranged at the bottom of the shell, a filtering bin, a flocculation bin and a monitoring bin are arranged in the shell and communicated with one another through water pipes, the flocculation bin is located in the middle of the shell, the filtering bin and the monitoring bin are located on the two sides of the flocculation bin respectively, a water inlet is formed in the top of the filtering bin, and a drain outlet II is formed in one side of the bottom of the filtering bin. The filtering mechanism is installed in the filtering bin, a sewage draining exit I is formed in the bottom of the flocculation bin, the stirring mechanism is installed in the flocculation bin, the monitoring mechanism is installed on the top of the monitoring bin, and a water outlet is formed in one side of the monitoring bin. According to the utility model, the comprehensive treatment of industrial wastewater is realized, and the pollution of wastewater discharge to the environment is effectively reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to industrial wastewater treatment technical field, especially related to an environmental protection type industrial wastewater integrated treatment equipment. BACKGROUND

[0002] In the dosing flocculation process of industrial wastewater, although the prior art generally uses a stirring mechanism to accelerate the mixing speed of wastewater and chemicals, there is indeed a problem of single structure of the stirring mechanism and poor stirring effect, which directly affects the mixing efficiency of wastewater and flocculants and further hinders the working efficiency of the entire device for treating wastewater.

[0003] After searching: Prior art announcement number: CN 220537574 U an integrated industrial wastewater treatment device, the support stand support middle part through installation wastewater sedimentation treatment assembly, and wastewater treatment tank in wastewater sedimentation treatment assembly tank bottom end is communicated with the pollution discharge assembly;Although the prior art realizes the integration of wastewater treatment, the stirring assembly has a single structure and the stirring effect is not ideal.

[0004] Further search: Prior art announcement number: CN 219098778 U an integrated device for industrial wastewater disposal, specifically relates to wastewater treatment equipment technical field, including box, the box top symmetry is equipped with the feeding port, the feeding port between is equipped with the water inlet pipe, the box one side is equipped with water pump, the utility model discloses a connecting seat, connecting head, fixed block, baffle, spring one, connecting ring, stopper one, stopper two and spring two and the use of plug rod, make that the waste pipe and water inlet pipe between convenient disassembly and connection fixed, so as to facilitate the disassembly replacement of waste pipe, make its use more convenient, the use of plug rod and two heteropolar magnets, so as to limit the fixation of fixed block, improve the connection fixed effect, and the practicality is stronger;Although the prior art emphasizes the convenient disassembly and connection fixation between the waste pipe and the water inlet pipe, the stirring mechanism has a single structure and the stirring effect is poor, which causes the slow mixing speed of wastewater and flocculants, thereby hindering the working efficiency of the entire device for treating wastewater. SUMMARY

[0005] The utility model discloses a purpose to overcome the prior art, provide an environmental protection type industrial wastewater integrated treatment equipment, realize the efficient stirring of wastewater while realizing the integration of wastewater treatment, improve the efficiency of wastewater treatment.

[0006] In order to realize the above-mentioned purpose, the utility model adopts the technical scheme of:

[0007] The utility model provides an environmental protection type industrial wastewater integrated processing equipment, including the casing, self -priming pump, filter mechanism, stirring mechanism, monitoring mechanism, the casing bottom is equipped with a plurality of support legs, and the support leg is used for supporting the casing and ensures the stability of equipment, the inside of casing is equipped with filter bin, flocculation bin, monitoring bin three areas, and the three bins are connected with each other through the water pipe for the flow and processing of wastewater, and the flocculation bin is located in the middle position of casing, and filter bin, monitoring bin are located in flocculation bin both sides, the top of filter bin is equipped with the water inlet, and one side of bottom is equipped with sewage outlet II, and filter mechanism is installed in the inside of filter bin, the bottom of flocculation bin is equipped with sewage outlet I, and stirring mechanism is installed in the inside of flocculation bin, the monitoring mechanism is installed in the top of monitoring bin, and one side of monitoring bin is equipped with the water outlet,

[0008] The self-priming pump is installed at one end of the monitoring bin, and the self-priming pump is connected with the monitoring bin and the flocculation bin through the water pipe.

[0009] The filter mechanism includes a motor I, a filter plate I and a filter plate II. Two groups of sliding grooves I are arranged at both ends of the inside of the filter bin and located on the side of the water inlet. The filter plate I and the filter plate II are respectively arranged in the two groups of sliding grooves I and are inserted with the sliding grooves I. When the filter plate I and the filter plate II need to be maintained or replaced, the filter plate I and the filter plate II are taken out through the sliding grooves I, and the filter plate I and the filter plate II are cleaned or replaced. A screw conveyor is arranged at the bottom of the filter bin. The screw conveyor is installed at the bottom of the filter bin and is rotationally connected with the filter bin. A motor I is fixedly installed at one end of the screw conveyor. The sewage outlet II is located at the corresponding end of the motor I.

[0010] The stirring mechanism includes a motor III, a rotating shaft, a stirring plate I, a stirring plate II, a fixing frame, a dosing tank, a scraper II, a spiral blade, a guide rod III, a synchronous pulley and a synchronous belt. The motor III is fixedly installed at the top of the flocculation bin. The fixing frame is fixedly installed at the bottom end of the inside of the flocculation bin and has a cross shape. The rotating shaft is located between the motor III and the fixing frame. One end of the rotating shaft is fixedly connected with the output end of the motor III, and the end away from the motor III is rotationally connected with the fixing frame. The stirring plate I is located on the rotating shaft and is fixedly connected with the rotating shaft. A plurality of groups of slot holes are arranged on the stirring plate I. The stirring plate II is arranged in the slot holes and is rotationally connected with the stirring plate I. The scraper I is arranged at the bottom of the rotating shaft and is fixedly connected with the bottom of the rotating shaft through the connecting rod.

[0011] The motor III bottom is equipped with two groups of synchronous pulleys, the motor III two sides are equipped with lead screws II, the lead screws II are rotationally connected with the flocculation bin and the fixed frame, the lead screws II top end penetrates through the flocculation bin and is equipped with a synchronous pulley, the lead screws II top end synchronous pulley is connected with the motor III bottom synchronous pulley through a synchronous belt, one side of the lead screws II is equipped with a guide rod II, the guide rod II is fixedly connected with the flocculation bin and the fixed frame, the guide rod II is hollow, a plurality of groups of nozzles are equipped on the guide rod II, the nozzles are flush with the guide rod II, and the nozzles are communicated with the dosing tank through the guide rod II;The motor III two sides are equipped with motors IV, the motor IV is fixedly installed on the flocculation bin top, the motor IV bottom is equipped with a lead screw III, one end of the lead screw III is fixedly connected with the motor IV output end, and the other end is rotationally connected with the fixed frame;The guide rod III is located on one side of the lead screw III and is fixedly connected with the flocculation bin and the fixed frame;The scraper II is equipped with a plurality of groups, is located in the flocculation bin respectively, and is screw connected with the lead screws II and III and is slidingly connected with the guide rods II and III;One end of the scraper II is tightly attached to the flocculation bin inner wall and is matched with the flocculation bin inner wall;

[0012] The scraper II two sides are equipped with cylindrical through holes, and the spiral blades are arranged in the through holes and rotationally connected with the scraper II;

[0013] The middle parts of the lead screws II and III are equipped with threads, and the upper and lower ends of the scraper II screw connected with the lead screws II and III are all equipped with telescopic protective sleeves, the telescopic protective sleeves are sleeved on the lead screws II and III, and the lead screws II and III are protected;

[0014] The motor III and the motor IV are positive and negative rotation motors.

[0015] The monitoring mechanism comprises a motor V, a lead screw IV, an electric push rod, a coupling, a monitoring instrument and a fixed seat;The fixed seat is installed on the top of the monitoring bin, and the bottom of the fixed seat is provided with a sliding groove II;The lead screw IV is rotationally connected to the fixed seat, and the motor V is fixedly installed on one end of the lead screw IV;A sliding seat is arranged on the fixed seat, and the sliding seat is slidingly connected with the fixed seat and screw connected with the lead screw IV;The electric push rod is installed on the bottom of the sliding seat and can slide in the sliding groove II;The coupling is installed on the telescopic end of the electric push rod, and the bottom of the coupling is provided with an extension rod;The top end of the extension rod is fixedly connected with the telescopic end of the electric push rod through the coupling, and the bottom end of the extension rod is fixedly installed with the monitoring instrument.

[0016] The utility model discloses compared with prior art has the beneficial effects of:

[0017] 1) the stirring mechanism rotates the motor drive rotating shaft and stirring plate I and the autorotation of stirring plate II, realizes the efficient stirring of waste water;Through the multi-dimensional stirring mode, the suspended solids, colloid and the like in waste water are uniformly distributed, thereby improving the mixing efficiency of waste water and flocculant, and making the waste water reaction more sufficient.

[0018] 2) The up and down agitation and flow guiding effect of the scraper II and the helical blade speeds up the spreading speed of the flocculant in the wastewater, improves the reaction rate of the flocculant, the neutralizing agent and the wastewater, and the up and down sliding of the scraper II can also locally clean the sludge and flocculation body attached to the inner wall, so that the sludge and the flocculation body cannot accumulate and affect the stirring effect. BRIEF DESCRIPTION OF DRAWINGS

[0019] BRIEF DESCRIPTION OF DRAWINGS Figure 1 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment;

[0020] BRIEF DESCRIPTION OF DRAWINGS Figure 2 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment;

[0021] BRIEF DESCRIPTION OF DRAWINGS Figure 3 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment; Figure 2 BRIEF DESCRIPTION OF DRAWINGS

[0022] BRIEF DESCRIPTION OF DRAWINGS Figure 4 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment; Figure 2 BRIEF DESCRIPTION OF DRAWINGS Figure 1 ;

[0023] BRIEF DESCRIPTION OF DRAWINGS Figure 5 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment; Figure 4 BRIEF DESCRIPTION OF DRAWINGS

[0024] BRIEF DESCRIPTION OF DRAWINGS Figure 6 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment; Figure 2 BRIEF DESCRIPTION OF DRAWINGS Figure 2 ;

[0025] BRIEF DESCRIPTION OF DRAWINGS Figure 7 It is a structure schematic view of the environment-friendly industrial wastewater integrated treatment equipment; Figure 1 BRIEF DESCRIPTION OF DRAWINGS

[0026] In the drawing: 1, shell; 101, water inlet; 102, water outlet; 103, sewage outlet I; 104, supporting leg; 105, filtering bin; 106, flocculation bin; 107, monitoring bin; 108, self-priming pump; 109, sewage outlet II; 2, filtering mechanism; 21, motor I; 22, filter plate I; 23, filter plate II; 24, auger; 25, sliding groove I; 4, stirring mechanism; 41, motor III; 42, rotating shaft; 43, stirring plate I; 44, stirring plate II; 45, fixing frame; 46, scraper I; 47, dosing tank; 48, guide rod II; 49, spray head; 410, scraper II; 411, lead screw II; 412, motor IV; 413, lead screw III; 414, helical blade; 415, guide rod III; 418, synchronous pulley; 420, synchronous belt; 421, telescopic protective sleeve; 5, monitoring mechanism; 51, motor V; 52, lead screw IV; 53, sliding seat; 54, sliding groove II; 55, electric push rod; 56, coupling; 57, lengthened rod; 58, monitor; 59, fixing seat. DETAILED DESCRIPTION

[0027] For the convenience of persons skilled in the art to understand, the following will be combined with the accompanying drawings Figures 1-7 The technical scheme of the utility model is further specifically explained.

[0028] An environment-friendly industrial wastewater integrated treatment equipment, including shell 1, self-priming pump 108, filter mechanism 2, stirring mechanism 4, monitoring mechanism 5;The shell 1 bottom is equipped with a plurality of support legs 104, and the support leg 104 is used to support the shell 1 and ensure the stability of the equipment;The shell 1 inside is equipped with filter bin 105, flocculation bin 106, monitoring bin 107 three areas, and the three bins are interconnected through water pipes to facilitate the flow and treatment of wastewater;The flocculation bin 106 is located at the middle position of the shell 1, and the filter bin 105 and the monitoring bin 107 are located on both sides of the flocculation bin 106 respectively;The filter bin 105 top is equipped with water inlet 101, and the bottom side is equipped with blowdown port II 109, and the filter mechanism 2 is installed in the filter bin 105 inside;The flocculation bin 106 bottom is equipped with blowdown port I 103, and the stirring mechanism 4 is installed in the flocculation bin 106 inside;The monitoring mechanism 5 is installed at the monitoring bin 107 top, and the monitoring bin 107 side is equipped with water outlet 102;

[0029] The self-priming pump 108 is installed at one end of the monitoring bin 107, and the self-priming pump 108 is connected with the flocculation bin 106 through the water pipe of the monitoring bin 107;

[0030] From the above description: after wastewater enters the filter bin 105 through the water inlet 101, it is first subjected to preliminary filtration by the filter mechanism 2, and the large particle impurities and suspended solids are removed, and the large particle impurities and suspended solids are discharged through the blowdown port II 109, and the wastewater after preliminary filtration is then flowed into the flocculation bin 106 through the water pipe, and the stirring mechanism 4 starts to work, which promotes the full mixing of the flocculant, the neutralizing agent and the wastewater, the flocculant makes the impurities and colloidal substances in the wastewater form larger flocculation bodies, the flocculation bodies gradually settle to the bottom of the flocculation bin 106 under the action of gravity, the neutralizing agent adjusts the PH value of the wastewater to the appropriate range, and the clarified wastewater continues to flow to the monitoring bin 107, and the flocculation bodies after precipitation are finally discharged from the blowdown port I 103, the monitoring mechanism 5 is installed at the top of the monitoring bin 107, which is used for real-time monitoring of various indexes of wastewater entering the monitoring bin 107, the clear water after treatment is discharged through the water outlet 102, and if the monitoring is not up to standard, the self-priming pump 108 is started to pump the wastewater in the monitoring bin 107 back to the flocculation bin 106 for reprocessing.

[0031] The filter mechanism 2 comprises a motor I 21, a filter plate I 22 and a filter plate II 23; two groups of sliding grooves I 25 are arranged at the two ends of the filter bin 105, and the two groups of sliding grooves I 25 are located on the side of the water inlet 101; the filter plate I 22 and the filter plate II 23 are arranged in the two groups of sliding grooves I 25 and are inserted with the sliding grooves I 25; when the filter plate I 22 and the filter plate II 23 need to be maintained or replaced, the filter plate I 22 and the filter plate II 23 are taken out through the sliding grooves I 25, and the filter plate I 22 and the filter plate II 23 are cleaned or replaced; the filter bin 105 is provided with an auger 24, the auger 24 is installed at the bottom of the filter bin 105, the auger 24 is rotatably connected with the filter bin 105, one end of the auger 24 is fixedly provided with the motor I 21, and the sewage outlet II 109 is located at the corresponding end of the motor I 21.

[0032] As known from the above description, the wastewater enters the filter bin 105 through the water inlet 101, is preliminarily filtered through the filter plate I 22 and the filter plate II 23, the pores on the filter plate I 22 and the filter plate II 23 allow water molecules and small particles to pass through, while large solid particles and impurities are blocked on the side of the filter plate I 22, the filter plate I 22 and the filter plate II 23 are used alternately, when the filter plate I 22 is replaced, the filter plate II 23 filters the wastewater, and after the separated wastewater enters the flocculation bin 106, the motor I 21 drives the auger 24 to rotate, pushes the deposited impurities to the sewage outlet II 109 and discharges the impurities.

[0033] The stirring mechanism 4 comprises a motor III 41, a rotating shaft 42, a stirring plate I 43, a stirring plate II 44, a fixing frame 45, a dosing tank 47, a scraper II 410, a helical blade 414, a guide rod III 415, a synchronous pulley 418 and a synchronous belt 420; the motor III 41 is fixedly installed at the top of the flocculation bin 106, the fixing frame 45 in a cross shape is fixedly installed at the bottom end in the flocculation bin 106; the rotating shaft 42 is located between the motor III 41 and the fixing frame 45, one end of the rotating shaft 42 is fixedly connected with the output end of the motor III 41, and the end away from the motor III 41 is rotatably connected with the fixing frame 45; the stirring plate I 43 is located on the rotating shaft 42 and is fixedly connected with the rotating shaft 42, a plurality of groups of grooves are arranged on the stirring plate I 43, the stirring plate II 44 is arranged in the grooves and is rotatably connected with the stirring plate I 43; the scraper I 46 is arranged at the bottom of the rotating shaft 42 and is fixedly connected with the bottom of the rotating shaft 42 through a connecting rod, and the scraper I 46 is close to the inner wall at the bottom end of the flocculation bin 106.

[0034] The motor III 41 bottom is equipped with two groups of synchronous pulleys 418, the motor III 41 both sides are equipped with lead screws II 411, the lead screws II 411 are rotatably connected with the flocculation bin 106 and the fixed frame 45, the lead screws II 411 top end passes through the flocculation bin 106 and is equipped with synchronous pulleys 418, the lead screws II 411 top end synchronous pulleys 418 are connected with the motor III 41 bottom synchronous pulleys 418 through synchronous belts 420, one side of the lead screws II 411 is equipped with guide rods II 48, the guide rods II 48 are fixedly connected with the flocculation bin 106 and the fixed frame 45, the guide rods II 48 are hollow, a plurality of groups of spray heads 49 are equipped on the guide rods II 48, the spray heads 49 are flush with the guide rods II 48, and the spray heads 49 are communicated with the dosing tank 47 through the guide rods II 48; The motor III 41 both sides are equipped with motors IV 412, the motor IV 412 is fixedly installed on the flocculation bin 106 top, the motor IV 412 bottom is equipped with lead screws III 413, one end of the lead screws III 413 is fixedly connected with the motor IV 412 output end, the other end is rotatably connected with the fixed frame 45; The guide rods III 415 are located on one side of the lead screws III 413 and are fixedly connected with the flocculation bin 106 and the fixed frame 45; The scraper II 410 is equipped with a plurality of groups, is located in the flocculation bin 106 respectively, and is screw connected with the lead screws II 411 and the lead screws III 413, and is slidingly connected with the guide rods II 48 and the guide rods III 415; One end of the scraper II 410 is tightly attached to the flocculation bin 106 inner wall and is matched with the flocculation bin 106 inner wall;

[0035] The scraper II 410 both sides are equipped with cylindrical through holes, and the helical blades 414 are arranged in the through holes and are rotatably connected with the scraper II 410;

[0036] The lead screws II 411 and the lead screws III 413 are equipped with threads in the middle, the scraper II 410 upper and lower ends screw connected with the lead screws II 411 and the lead screws III 413 are all equipped with telescopic protective sleeves 421, the telescopic protective sleeves 421 are sleeved on the lead screws II 411 and the lead screws III 413, and the lead screws II 411 and the lead screws III 413 are protected;

[0037] The motor III 41 and the motor IV 412 are forward and reverse rotation motors;

[0038] From the above description can be known: when the wastewater into the flocculation bin 106 and reach the predetermined water level, motor III 41 start, drive rotating shaft 42 rotation, make stirring plate I 43 rotation, stirring plate II 44 under the resistance of water body and stirring plate I 43 rotation, rotation, the wastewater in the flocculation bin 106 is preliminary stirred, promote the uniform distribution of suspended solids, colloid etc. in wastewater; At the same time, dosing tank 47 start work, flocculant, neutralizing agent is sprayed to the flocculation bin 106 through the nozzle 49 on the guide rod II 48; At the same time, motor III 41 bottom synchronous pulley 418 through synchronous belt 420 drive screw rod II 411 rotation, so that with the screw rod II 411 thread connection scraper II 410 along the guide rod II 48 up and down sliding, motor IV 412 drive screw rod III 413, make with the screw rod III 413 thread connection scraper II 410 along the guide rod III 415 up and down sliding, scraper II 410 in the flocculation bin 106 up and down stirring, make the spiral blade 414 in the water flow resistance start rotation, the wastewater is small range drainage, accelerate the spread speed of flocculant, neutralizing agent in wastewater, improve the reaction rate of flocculant, neutralizing agent and wastewater, with the continuous stirring, suspended solids, colloid etc. in wastewater gradually combine with flocculant, form larger flocculation and gradually settle to the bottom of the flocculation bin 106, neutralizing agent and wastewater fully reacted, the PH value of wastewater is adjusted to the appropriate range, the adjusted wastewater enters the monitoring bin 107 for monitoring, the precipitate is discharged through the pollution outlet I 103, then motor III 41 continue to work, scraper I 46 rotation around rotating shaft 42, clean the inner wall of the flocculation bin 106 bottom, scraper II 410 up and down sliding, carry out local cleaning of the sludge, flocculation attached to the inner wall of the flocculation bin 106, prevent them from accumulating and affecting the stirring effect.

[0039] The monitoring mechanism 5 includes motor V 51, screw rod IV 52, electric push rod 55, coupling 56, monitoring instrument 58, fixed seat 59; The fixed seat 59 is installed at the top of the monitoring bin 107, and the fixed seat 59 is provided with a sliding groove II 54 at the bottom. The screw rod IV 52 is rotatably connected to the fixed seat 59, and the motor V 51 is fixedly installed at one end of the screw rod IV 52. The fixed seat 59 is provided with a sliding seat 53 which is slidably connected to the fixed seat 59 and threadedly connected to the screw rod IV 52. The electric push rod 55 is installed at the bottom of the sliding seat 53 and can slide in the sliding groove II 54. The coupling 56 is installed at the extension end of the electric push rod 55, and the extension rod 57 is fixedly installed at the bottom of the coupling 56. The extension rod 57 is fixedly connected to the extension end of the electric push rod 55 through the coupling 56, and the monitoring instrument 58 is fixedly installed at the bottom end of the extension rod 57.

[0040] From the above description, it can be known that: after the wastewater enters the monitoring bin 107, the motor V 51 drives the lead screw IV 52 to rotate, and through the threaded transmission, the sliding seat 53 realizes the transverse sliding on the fixed seat 59, so that the monitoring instrument 58 realizes the transverse movement in the monitoring bin 107, at the same time, the electric push rod 55 can be telescopic according to the requirement, drives the monitoring instrument 58 to reach different depths of the monitoring bin 107 for monitoring, monitors the PH value in the water, if the PH value in the wastewater meets the monitoring standard, the wastewater is discharged from the water outlet; if the detection is unqualified, the self-priming pump 108 is started, and the wastewater in the monitoring bin 107 is retransported back to the flocculation bin 106 for dosing treatment until the water quality meets the standard.

[0041] In the description of the present application, unless otherwise specified, the meaning of "a plurality of" is two or more than two; the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the present application. In addition, the terms "first", "second", "third" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance.

[0042] As described above, including but not limited to electronic or electrical components such as electric push rod, motor, self-priming pump and the like are prior art components, which are obtained by private customization or purchase, and the electrical connection between each component is the conventional circuit connection or electrical connection in the prior art, which is not the protection range of the present application.

[0043] The above content is only an example and description of the structure of the present application, and those skilled in the art can make various modifications or supplements or use similar ways to replace the described specific embodiments, as long as they do not deviate from the structure of the application or exceed the scope defined by the present application, which shall belong to the protection scope of the present application.

Claims

1. An environmentally friendly industrial wastewater integrated treatment equipment, comprising a shell, a filtering mechanism, a stirring mechanism and a monitoring mechanism; the bottom of the shell is provided with a plurality of supporting legs, the inside of the shell is provided with a filtering bin, a flocculation bin and a monitoring bin, the three bins are connected with each other through water pipes; the flocculation bin is located at the middle of the shell, the filtering bin and the monitoring bin are respectively located at the two sides of the flocculation bin; the top of the filtering bin is provided with a water inlet, one side of the bottom of the filtering bin is provided with a sewage outlet II, the filtering mechanism is installed in the filtering bin; the bottom of the flocculation bin is provided with a sewage outlet I, the stirring mechanism is installed in the flocculation bin; the monitoring mechanism is installed at the top of the monitoring bin, one side of the monitoring bin is provided with a water outlet; characterized in that the stirring mechanism comprises a motor III, a rotating shaft, a stirring plate I, a stirring plate II, a fixing frame, a dosing tank, a scraper II, a spiral blade, a guide rod III, a synchronous pulley and a synchronous belt; the motor III is fixedly installed at the top of the flocculation bin, the fixing frame is fixedly installed at the bottom of the inside of the flocculation bin and has a cross shape; the rotating shaft is located between the motor III and the fixing frame, one end of the rotating shaft is fixedly connected with the output end of the motor III, and the end away from the motor III is rotatably connected with the fixing frame; the stirring plate I is located on the rotating shaft and is fixedly connected with the rotating shaft, a plurality of groups of slot holes are arranged on the stirring plate I, the stirring plate II is arranged in the slot hole and is rotatably connected with the stirring plate I; the scraper I is arranged at the bottom of the rotating shaft and is tightly attached to the inner wall of the bottom of the flocculation bin, and the scraper I is fixedly connected with the bottom of the rotating shaft through a connecting rod.

2. The integrated industrial wastewater treatment device according to claim 1, characterized in that two groups of synchronous pulleys are arranged at the bottom of the motor III, lead screws II are arranged at the two sides of the motor III, the lead screws II are rotatably connected with the flocculation bin and the fixing frame, the top end of the lead screw II penetrates through the flocculation bin and is provided with a synchronous pulley, the top end synchronous pulley of the lead screw II is connected with the bottom synchronous pulley of the motor III through the synchronous belt, a guide rod II is arranged at one side of the lead screw II, the guide rod II is fixedly connected with the flocculation bin and the fixing frame, the guide rod II is hollow, a plurality of groups of nozzles are arranged on the guide rod II, the nozzles are flush with the guide rod II, and the nozzles are connected with the dosing tank through the guide rod II; a motor IV is arranged at the two sides of the motor III, the motor IV is fixedly installed at the top of the flocculation bin, a lead screw III is arranged at the bottom of the motor IV, one end of the lead screw III is fixedly connected with the output end of the motor IV, and the other end is rotatably connected with the fixing frame; the guide rod III is located at one side of the lead screw III and is fixedly connected with the flocculation bin and the fixing frame; a plurality of scrapers II are arranged in the flocculation bin and are threadedly connected with the lead screws II and the lead screws III and are slidably connected with the guide rods II and the guide rods III; one end of the scraper II is tightly attached to the inner wall of the flocculation bin and is matched with the inner wall of the flocculation bin.

3. The integrated industrial wastewater treatment device according to claim 1, characterized in that cylindrical through holes are arranged at the two sides of the scraper II, the spiral blades are arranged in the through holes and are rotatably connected with the scraper II.

4. The integrated industrial wastewater treatment device according to claim 1, characterized in that threads are arranged in the middle of the lead screws II and the lead screws III, telescopic protective sleeves are arranged at the upper and lower ends of the scraper II which is threadedly connected with the lead screws II and the lead screws III, and the telescopic protective sleeves are sleeved on the lead screws II and the lead screws III.

5. The integrated industrial wastewater treatment device according to claim 1, characterized in that the motor III and the motor IV are forward and reverse rotation motors.

6. The integrated industrial wastewater treatment device according to claim 1, characterized in that a self-suction pump is installed at one end of the monitoring bin, and the self-suction pump connects the monitoring bin and the flocculation bin through a water pipe.

7. The integrated industrial wastewater treatment device according to claim 1, characterized in that The filtering mechanism comprises a motor I, a filtering plate I and a filtering plate II; two groups of sliding grooves I are arranged at the two ends of the filtering bin, and the two groups of sliding grooves I are located at the water inlet side; the filtering plate I and the filtering plate II are respectively arranged in the two groups of sliding grooves I and are inserted with the sliding grooves I; an auger is arranged at the bottom of the filtering bin, the auger is rotationally connected with the filtering bin, one end of the auger is fixedly provided with the motor I, and the sewage outlet II is located at the corresponding end of the motor I.

8. The integrated industrial wastewater treatment device according to claim 1, characterized in that The monitoring mechanism comprises a motor V, a lead screw IV, an electric push rod, a coupling, a monitor and a fixing seat; the fixing seat is arranged at the top of the monitoring bin, a sliding groove II is arranged at the bottom of the fixing seat, the lead screw IV is rotationally connected with the fixing seat, and the motor V is fixedly arranged at one end of the lead screw IV; a sliding seat is arranged on the fixing seat, the sliding seat is slidably connected with the fixing seat and is threadedly connected with the lead screw IV, the electric push rod is arranged at the bottom of the sliding seat, the electric push rod is arranged in the sliding groove II and can slide in the sliding groove II, the coupling is arranged at the telescopic end of the electric push rod, the bottom of the coupling is provided with an extension rod, the top end of the extension rod is fixedly connected with the telescopic end of the electric push rod through the coupling, and the bottom end of the extension rod is fixedly provided with the monitor.

Citation Information

Patent Citations

  • Integrated equipment for industrial wastewater treatment

    CN219098778U

  • Integrated industrial wastewater treatment device

    CN220537574U