High-efficiency dehydration treatment device for high-organic-matter sludge
By designing an efficient dewatering treatment device for high-organic sludge, including a pretreatment box, a mixing box and a high-pressure diaphragm plate frame filter press body, the problem of poor dewatering effect of high-organic sludge in the prior art is solved, and an efficient and automated sludge dewatering process is achieved.
Patent Information
- Application Number
- CN202421726187.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-19
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-19
AI Technical Summary
When treating high-organic sludge, the dehydration effect is poor and the filter cake has a high moisture content, which affects the subsequent treatment effect.
A high-efficiency dewatering treatment device for high-organic sludge was designed, including a pretreatment box, a mixing box and a high-pressure diaphragm plate frame filter press body. The liquid addition mechanism is accurately added to the chemical liquid, the mixing rod and the motor are fully mixed, and the high-pressure pressing achieves deep dehydration of the sludge.
It significantly improves the dehydration efficiency of the sludge, reduces the moisture content of the sludge after dehydration, has a high degree of automation, and reduces the difficulty of manual intervention and operation.
Smart Images

Figure CN222923033U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of sludge treatment, and particularly relates to an efficient dehydration treatment device for high-organic-matter sludge. Background Art
[0002] With the acceleration of the urbanization process and the continuous development of industrial production, the amount of sludge generated increases year by year, and the treatment of high-organic-matter sludge in particular has become a major problem in the field of environmental protection.
[0003] At present, sludge dehydration technologies mainly include natural drying method, mechanical dehydration method, granulation method, etc. When traditional mechanical dehydration equipment is used to treat high-organic-matter sludge, due to the high content of organic matter in the sludge, it is easy to form viscous substances, resulting in poor dehydration effect and high moisture content of the filter cake. Content of the Utility Model
[0004] The utility model provides an efficient dehydration treatment device for high-organic-matter sludge, aiming to solve the problems of poor dehydration treatment effect and high moisture content of the filter cake of current high-organic-matter sludge.
[0005] The utility model is realized as follows: An efficient dehydration treatment device for high-organic-matter sludge includes: a base frame, on which a pretreatment tank, a mixing tank and a high-pressure diaphragm plate and frame filter press main body for high-organic-matter sludge dehydration treatment are arranged; a first sludge pump and a second sludge pump for pumping sludge, both of which are fixed on the base frame, and the first sludge pump and the second sludge pump are respectively communicated with the corresponding pretreatment tank and mixing tank through the sludge suction pipes on the fixed sewage inlet ends; two sewage discharge pipes for guiding sludge, the two sewage discharge pipes are respectively fixed on the sewage outlet ends of the first sludge pump and the second sludge pump, and the sewage outlet ends of the two sewage discharge pipes are respectively fixedly communicated with the sewage inlet pipe of the mixing tank and the sewage inlet pipe of the high-pressure diaphragm plate and frame filter press main body; a liquid adding mechanism for adding liquid into the pretreatment tank, and the liquid adding mechanism is arranged on the base frame.
[0006] Preferably, the liquid adding mechanism includes: a mounting frame fixed on the top of the base frame; a first liquid storage tank and a second liquid storage tank fixed on the top of the mounting frame for storing reagent liquid; a delivery pump fixed on the mounting frame for pumping the reagent liquid in the first liquid storage tank and the second liquid storage tank; injection pipes respectively fixedly communicated with the liquid outlet ends of the corresponding delivery pumps, and the liquid outlet ends of the injection pipes extend into the pretreatment tank; suction pipes respectively fixedly communicated with the liquid inlet ends of the corresponding delivery pumps, and the liquid inlet ends of the two suction pipes are respectively fixedly communicated with the corresponding first liquid storage tank and second liquid storage tank.
[0007] Preferably, a stirring rod is rotatably installed in the mixing box, the top end of the stirring rod extends outside the mixing box, a motor for driving the stirring rod to rotate is fixedly installed on the top of the mixing box, and the output shaft of the motor is fixedly connected to the top end of the stirring rod through a coupling.
[0008] Preferably, a filling port is provided on the pretreatment box, a filter basket for filtering impurities is arranged in the filling port, a PH detector is fixedly installed on the top of the pretreatment box, and the detection end of the PH detector extends into the pretreatment box.
[0009] Preferably, a collection box for receiving and holding sludge blocks and sewage is arranged below the main body of the high-pressure diaphragm plate and frame filter press. A pull-out and detachable separation basket is arranged in the collection box for separating sludge blocks and sewage, and a plurality of water leakage holes are formed in the separation basket.
[0010] Preferably, a drain pipe is fixedly communicated with the collection box, and a water valve is arranged on the drain pipe.
[0011] Preferably, electromagnetic valves are arranged on both the sludge suction pipe and the sewage discharge pipe, and a plurality of foot pads are symmetrically and fixedly installed at the bottom of the base frame.
[0012] Compared with the related art, the high-efficiency dehydration treatment device for high-organic-matter sludge provided by the present utility model has the following beneficial effects:
[0013] Through the reasonably arranged components such as the sludge suction pump and the sewage discharge pipe, a smooth process of sludge from pretreatment to dehydration is realized; by adding a filling port and a filter basket to the pretreatment box, impurities in the sludge are effectively filtered, ensuring the purity of the pretreatment raw materials; at the same time, the introduction of the PH detector realizes the real-time monitoring and adjustment of the PH value of the sludge, ensuring that the chemical environment in the pretreatment process is in the best state; the liquid adding mechanism is stably installed through the mounting frame, and by using the combination of the metering type delivery pump, the liquid suction pipe and the liquid injection pipe, the accurate and on-demand addition of reagent liquids such as ferrous sulfate solution, hydrogen peroxide and alkali solution is realized, avoiding the error of manual addition, and improving the reaction efficiency and effect; in the mixing box, through the combination of the stirring rod and the motor, the full mixing of the sludge and the reagent liquid is realized, ensuring the uniformity and thoroughness of the chemical reaction, and laying a good foundation for the subsequent high-pressure dehydration process; the main body of the high-pressure diaphragm plate and frame filter press, as the core dehydration equipment, effectively discharges the water in the sludge through high-pressure pressing. At the same time, the design of the collection box and the separation basket realizes the effective separation of sludge blocks and sewage, facilitating subsequent classified treatment and disposal. Description of the Drawings
[0014] Figure 1 It is a front view structural schematic diagram of a high-efficiency dehydration treatment device for high-organic-matter sludge provided by the present utility model;
[0015] Figure 2 is a schematic front sectional view of the present utility model;
[0016] Figure 3 is Figure 2 an enlarged schematic view of part A shown in
[0017] Figure 4 a schematic view of the filter basket in the present utility model.
[0018] Reference numerals: 1, base frame; 2, pretreatment tank; 3, mixing tank; 4, main body of high-pressure diaphragm plate and frame filter press; 5, first sludge pump; 6, second sludge pump; 7, sewage suction pipe; 8, sewage discharge pipe; 9, mounting rack; 10, first liquid storage tank; 11, second liquid storage tank; 12, delivery pump; 13, liquid suction pipe; 14, liquid injection pipe; 15, stirring rod; 16, motor; 17, PH detector; 18, filter basket; 19, collection box; 20, separation basket; 21, drain pipe; 22, water valve. Detailed implementation manners
[0019] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field to which this application belongs; the terms used in the description of this application in the specification are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the specification and claims of this application and the above drawings are intended to cover non-exclusive inclusion. The terms "first", "second", etc. in the specification and claims of this application or the above drawings are used to distinguish different objects and not to describe a specific order.
[0020] Reference to "embodiment" herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of this application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.
[0021] An embodiment of the present utility model provides a high-efficiency dehydration treatment device for high-organic-matter sludge, as Figures 1-4As shown in the figure, the high-efficiency dehydration treatment device for high-organic-matter sludge includes: a base frame 1, on which a pretreatment tank 2, a mixing tank 3, and a high-pressure diaphragm plate-and-frame filter press main body 4 for high-organic-matter sludge dehydration treatment are provided; a first sludge pump 5 and a second sludge pump 6 for pumping sludge, both the first sludge pump 5 and the second sludge pump 6 are fixed on the base frame 1, and the first sludge pump 5 and the second sludge pump 6 are respectively communicated with the corresponding pretreatment tank 2 and mixing tank 3 through the sludge suction pipes 7 on the fixed sewage inlet ends; two sewage discharge pipes 8 for guiding sludge, the two sewage discharge pipes 8 are respectively fixedly installed on the sewage outlet ends of the first sludge pump 5 and the second sludge pump 6, and the sewage outlet ends of the two sewage discharge pipes 8 are fixedly communicated with the sewage inlet pipe of the mixing tank 3 and the sewage inlet pipe of the high-pressure diaphragm plate-and-frame filter press main body 4 respectively; a liquid adding mechanism for adding liquid into the pretreatment tank 2, and the liquid adding mechanism is arranged on the base frame 1.
[0022] It should be noted that sludge dehydration technology is a key link in the current sewage treatment field, and its goal is to reduce the water content in sludge to facilitate subsequent transportation, storage, and further treatment. At present, sludge dehydration technologies mainly include natural drying method, mechanical dehydration method, granulation method, etc. However, these technologies face many challenges when dealing with high-organic-matter sludge, especially in the application of traditional mechanical dehydration equipment; The natural drying method uses natural energy sources such as solar energy and wind energy to evaporate the water in the sludge in the natural environment. This method is simple and easy to implement without additional energy consumption, but it has significant disadvantages: it requires a large area and a long dehydration time, and is greatly affected by climate conditions; Therefore, the natural drying method is usually applicable to places with large land area, dry climate, and sufficient sunlight; The mechanical dehydration method applies external force to the sludge through mechanical equipment to discharge the water in it. Common mechanical dehydration equipment includes belt filter presses, centrifugal dehydrators, plate-and-frame filter presses, etc.; However, when dealing with high-organic-matter sludge, these equipment face the following problems: due to the high organic matter content in high-organic-matter sludge, it is easy to form viscous substances, resulting in difficult effective discharge of water, which makes the moisture content of the dehydrated filter cake relatively high and affects the subsequent treatment effect;
[0023] In this embodiment, the base frame 1 serves as the support platform for the entire device to ensure the stable installation of each component; the pretreatment tank 2 is used for the preliminary physical or chemical pretreatment of high-organic sludge to improve the dewatering performance of the sludge; the mixing tank 3 receives the pretreated sludge and further mixes and reacts here; the high-pressure diaphragm plate and frame filter press main body 4 is the core dehydration equipment, which effectively discharges the water in the deeply conditioned sludge through high-pressure pressing; the first sludge pump 5 and the second sludge pump 6 are respectively responsible for pumping the sludge from the pretreatment tank 2 and the mixing tank 3 to the next treatment unit to ensure the smooth process; the sewage discharge pipe 8 is connected to the sludge pump, the mixing tank 3 and the high-pressure diaphragm plate and frame filter press main body 4 to realize the directional transportation of the sludge; the liquid adding mechanism is arranged on the base frame 1 and is used for adding necessary regulators into the pretreatment tank 2. First, ferrous sulfate solution is added and reacts with the organic matter in the sludge water to form intermediate products that are easily oxidized; after the ferrous sulfate solution reacts for a period of time, hydrogen peroxide is injected and undergoes a violent oxidation reaction with the intermediate products to decompose the organic matter and reduce the sludge viscosity; then, alkali solution is added as needed to adjust the pH value of the sludge to an appropriate range.
[0024] In a further preferred embodiment of the present invention, the liquid adding mechanism includes: a mounting frame 9 fixed to the top of the base frame 1; a first liquid storage tank 10 and a second liquid storage tank 11 fixed to the top of the mounting frame 9 for storing reagent liquid; a delivery pump 12 fixed to the mounting frame 9 for pumping the reagent liquid in the first liquid storage tank 10 and the second liquid storage tank 11; injection pipes 14 respectively and fixedly connected to the liquid outlet ends of the corresponding delivery pumps 12, and the liquid outlet ends of the injection pipes 14 extend into the pretreatment tank 2; suction pipes 13 respectively and fixedly connected to the liquid inlet ends of the corresponding delivery pumps 12, and the liquid inlet ends of the two suction pipes 13 are respectively and fixedly connected to the corresponding first liquid storage tank 10 and the second liquid storage tank 11.
[0025] In this embodiment, the mounting bracket 9 is fixed to the top of the base bracket 1 and serves as the mounting platform for the components of the liquid adding mechanism, providing a stable mounting foundation to ensure the stability and accuracy of the components of the liquid adding mechanism. The first liquid storage tank 10 and the second liquid storage tank 11 are respectively fixed to the top of the mounting bracket 9 and are used to store different types of reagent liquids respectively, storing and supplying the required reagent liquids, such as ferrous sulfate solution, hydrogen peroxide, etc., to meet the chemical requirements of sludge pretreatment. The transfer pump 12 is fixed to the mounting bracket 9 and corresponds to the first liquid storage tank 10 and the second liquid storage tank 11. Through the pumping action, the reagent liquid in the liquid storage tank is accurately and stably transported to the pretreatment tank 2. The design of the metering transfer pump 12 ensures that the reagent liquid can be added as needed and in the required amount, avoiding the errors and uncertainties of manual addition. The liquid suction pipes 13 are respectively fixed and communicated with the liquid inlet ends of the corresponding transfer pumps 12, and their liquid inlet ends are respectively fixedly communicated with the first liquid storage tank 10 and the second liquid storage tank 11. As the input channels of the reagent liquid, they guide the reagent liquid in the liquid storage tank to the transfer pump 12 for pumping. The liquid injection pipes 14 are respectively fixed and communicated with the liquid outlet ends of the corresponding transfer pumps 12, and their liquid outlet ends extend into the pretreatment tank 2. As the output channels of the reagent liquid, they accurately inject the reagent liquid pumped by the transfer pump 12 into the pretreatment tank 2 to react with the sludge. The design of the liquid injection pipes 14 ensures that the reagent liquid can be evenly and quickly dispersed in the sludge, improving the reaction efficiency and effect.
[0026] In a further preferred embodiment of the present utility model, a stirring rod 15 is rotatably installed in the mixing tank 3. The top end of the stirring rod 15 extends out of the mixing tank 3. A motor 16 for driving the stirring rod 15 to rotate is fixedly installed on the top of the mixing tank 3, and the output shaft of the motor 16 is fixedly connected to the top end of the stirring rod 15 through a coupling.
[0027] In this embodiment, the design inside the mixing tank 3 is enhanced, especially by introducing the combination of the stirring rod 15 and the motor 16 to achieve more thorough mixing of the sludge and the reagent liquid. The stirring rod 15 is rotatably installed in the mixing tank 3, and its length and shape are designed to fully cover all corners inside the mixing tank to ensure the uniformity of stirring. The top end of the stirring rod 15 extends out of the mixing tank 3. Such a design facilitates the connection with an external driving device (such as the motor 16) and at the same time ensures the stable rotation of the stirring rod inside the mixing tank. The motor 16 is fixedly installed on the top of the mixing tank 3 to provide power for the stirring rod 15. The output shaft of the motor 16 is fixedly connected to the top end of the stirring rod 15 through a coupling to achieve direct power transmission. This connection method is simple and reliable and can effectively ensure the stable rotation of the stirring rod.
[0028] In a further preferred embodiment of the present utility model, a filling port is provided on the pretreatment tank 2, a filter basket 18 for filtering impurities is arranged in the filling port, a PH detector 17 is fixedly installed on the top of the pretreatment tank 2, and the detection end of the PH detector 17 extends into the pretreatment tank 2.
[0029] In this embodiment, the design of the pretreatment tank 2 is further optimized. By adding a filling port and its filter basket 18, and introducing a PH detector 17, the efficiency and effect of sludge pretreatment are improved; the filling port provided on the pretreatment tank 2 is used to fill sludge or other treatment liquids into the tank. This design makes the process of adding sludge more convenient and also facilitates adding other chemical agents into the tank when needed; the filter basket 18 arranged in the filling port is used to filter impurities entering the pretreatment tank. The sludge may contain various solid particles, fibers and other impurities. If these impurities directly enter the pretreatment tank, it may affect the subsequent treatment effect. The introduction of the filter basket 18 can effectively block these impurities and ensure that the sludge entering the pretreatment tank 2 is relatively pure; the PH detector 17 is fixedly installed on the top of the pretreatment tank 2, and its detection end extends into the pretreatment tank to ensure that the PH value of the sludge in the tank can be accurately measured.
[0030] In a further preferred embodiment of the present utility model, a collection box 19 for receiving and containing sludge blocks and sewage is arranged below the high-pressure diaphragm plate and frame filter press main body 4. A pull-out and detachable separation basket 20 is arranged in the collection box 19 for separating sludge blocks from sewage, and a number of water leakage holes are provided on the separation basket 20.
[0031] In this embodiment, the treatment process below the high-pressure diaphragm plate and frame filter press main body 4 is optimized. By adding a collection box 19 and its internal separation basket 20, the effective separation of sludge blocks and sewage is realized, further improving the efficiency and convenience of sludge treatment; the collection box 19 is arranged below the high-pressure diaphragm plate and frame filter press main body 4 and is used to receive and contain the mixture of sludge blocks and sewage discharged from the filter press. As a temporary storage container, the collection box 19 avoids the direct discharge of sludge blocks and sewage into the environment and also provides convenience for subsequent treatment steps; the separation basket 20 is arranged in the collection box 19 in a pull-out and detachable manner, facilitating the user to install, use and clean according to needs.
[0032] In a further preferred embodiment of the present utility model, a drain pipe 21 is fixedly communicated with the collection box 19, and a water valve 22 is arranged on the drain pipe 21.
[0033] In this embodiment, by adding a drain pipe 21 and its water valve 22, the flexible discharge and control of sewage are realized. The drain pipe 21 is fixedly communicated with the collection box 19 and serves as a channel for sewage discharge. Its design ensures that sewage can be smoothly discharged from the collection box 19.
[0034] In a further preferred embodiment of the present utility model, electromagnetic valves are provided on both the sludge suction pipe 7 and the sewage discharge pipe 8, and a plurality of foot pads are symmetrically and fixedly installed at the bottom of the base frame 1.
[0035] In this embodiment, the designs of the bottom of the sludge suction pipe 7, the sewage discharge pipe 8, and the base frame 1 are optimized. By adding electromagnetic valves and foot pads, the automatic control ability and stability of the equipment are improved; electromagnetic valves are provided on both the sludge suction pipe 7 and the sewage discharge pipe 8; as control components, electromagnetic valves can automatically open or close the pipeline according to a preset program or an external signal. By setting an electromagnetic valve on the sludge suction pipe 7, precise control of the sludge extraction process can be achieved; by setting an electromagnetic valve on the sewage discharge pipe 8, the timing and amount of sewage discharge can be controlled; by adding electromagnetic valves, the sludge treatment equipment of the present utility model has a higher automatic control ability. This can not only reduce the workload of manual operation, but also improve the stability and reliability of equipment operation, and avoid failures or accidents caused by human misoperation.
[0036] In summary, the high-efficiency dehydration treatment device for high-organic-matter sludge provided by the present technical method significantly improves the sludge dehydration efficiency and reduces the moisture content of the dehydrated sludge through comprehensive pretreatment and deep conditioning measures; it has a high degree of automation, reduces manual intervention and operation difficulty; can adjust the chemical agent dosing ratio and reaction conditions according to the characteristics of different sludges to ensure the treatment effect.
[0037] Compared with the related technology, through the reasonable layout of components such as the sludge suction pump and the sewage discharge pipe 7, a smooth process of sludge from pretreatment to dehydration is realized; by adding a filling port and a filter basket 18 to the pretreatment tank 2, impurities in the sludge are effectively filtered, ensuring the purity of the pretreatment raw materials; at the same time, the introduction of the PH detector 17 realizes the real-time monitoring and adjustment of the sludge PH value, ensuring that the chemical environment in the pretreatment process is in the best state; the liquid adding mechanism is stably installed through the mounting frame 9, and by using the combination of the metering type delivery pump 12, the liquid suction pipe 13 and the liquid injection pipe 14, the precise and on-demand addition of chemical agent liquids such as ferrous sulfate solution, hydrogen peroxide and alkali solution is realized, avoiding the error of manual addition and improving the reaction efficiency and effect; in the mixing tank 3, through the combination of the stirring rod 15 and the motor 16, the sludge and the chemical agent liquid are fully mixed, ensuring the uniformity and thoroughness of the chemical reaction, and laying a good foundation for the subsequent high-pressure dehydration process; the high-pressure diaphragm plate and frame filter press main body 4 as the core dehydration equipment effectively discharges the moisture in the sludge through high-pressure pressing. At the same time, the design of the collection box 19 and the separation basket 20 realizes the effective separation of sludge blocks and sewage, facilitating subsequent classification treatment and disposal.
[0038] It should be noted that the circuits, electronic components and modules involved in the present utility model are all prior arts, which can be fully implemented by those skilled in the art without further elaboration. The content protected by the present utility model does not involve improvements to software and methods either.
[0039] In several embodiments provided by the present application, it should be understood that the disclosed device can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the above division of units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the displayed or discussed couplings or communication connections between each other can be through some interfaces. The indirect couplings or communication connections between devices or units can be in the form of telecommunications or other forms.
[0040] The above embodiments are only used to illustrate the technical solutions of the present utility model, rather than to limit the protection scope of the utility model. Obviously, the described embodiments are only some embodiments of the present utility model, rather than all embodiments. Based on these embodiments, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model. Although the present utility model has been described in detail with reference to the above embodiments, those of ordinary skill in the art can still, without conflict and without creative efforts, combine, add, delete or make other adjustments to the features in the various embodiments of the present utility model according to the circumstances, so as to obtain different technical solutions that essentially do not deviate from the concept of the present utility model. These technical solutions also belong to the scope of protection of the present utility model.
Claims
1. An efficient dehydration treatment device for high-organic sludge, characterized in that: include: A base frame, on which a pretreatment box, a mixing box and a high-pressure diaphragm plate-frame filter press body for high-organic sludge dehydration treatment are arranged; A first sludge pump and a second sludge pump for pumping sludge, the first sludge pump and the second sludge pump are both fixed on the base frame, and the first sludge pump and the second sludge pump are respectively connected to the corresponding pretreatment box and mixing box through the sewage pumping pipes fixed on the sewage inlet end; Two sewage pipes for conveying sludge, the two sewage pipes are fixedly mounted on the sewage outlet ends of the first sludge pump and the second sludge pump respectively, and the sewage outlet ends of the two sewage pipes are fixedly connected to the sewage inlet pipe of the mixing box and the sewage inlet pipe of the main body of the high-pressure diaphragm plate and frame filter press respectively; A liquid adding mechanism is used for adding liquid into the pretreatment box, and the liquid adding mechanism is arranged on the base frame.
2. The high-efficiency dehydration treatment device for high-organic sludge according to claim 1, characterized in that: The liquid adding mechanism comprises: a mounting frame fixed to the top of the base frame; A first liquid storage tank and a second liquid storage tank fixed on the top of the mounting frame for containing the medicine liquid; A delivery pump fixed on the mounting frame and used for pumping the medicine liquid in the first liquid storage tank and the second liquid storage tank; Injection pipes respectively fixedly connected to the corresponding liquid outlet ends of the delivery pumps, the liquid outlet ends of the injection pipes extending into the pretreatment box; The two liquid pumping pipes are respectively fixedly connected to the corresponding liquid inlet ends of the delivery pumps, and the liquid inlet ends of the two liquid pumping pipes are respectively fixedly connected to the corresponding first liquid storage tank and second liquid storage tank.
3. The high-efficiency dehydration treatment device for high-organic sludge according to claim 1, characterized in that: A stirring rod is rotatably installed in the mixing box, and the top end of the stirring rod extends out of the mixing box. A motor for driving the stirring rod to rotate is fixedly installed on the top of the mixing box, and the output shaft of the motor is fixedly connected to the top end of the stirring rod through a coupling.
4. The high-efficiency dehydration treatment device for high-organic sludge according to claim 1, characterized in that: The pretreatment box is provided with a filling port, a filter basket for filtering impurities is arranged in the filling port, a pH detector is fixedly installed on the top of the pretreatment box, and a detection end of the pH detector extends into the pretreatment box.
5. The high-efficiency dehydration treatment device for high-organic sludge according to claim 1, characterized in that: A collecting box for receiving sludge blocks and sewage is arranged below the main body of the high-pressure diaphragm plate-frame filter press. A removable separation basket is arranged in the collecting box for separating sludge blocks and sewage. A plurality of water leakage holes are opened on the separation basket.
6. The high-efficiency dehydration treatment device for high-organic sludge according to claim 5, characterized in that: The collection box is fixedly connected with a drainage pipe, and the drainage pipe is provided with a water valve.
7. The high-efficiency dehydration treatment device for high-organic sludge according to claim 1, characterized in that: The sewage suction pipe and the sewage discharge pipe are both provided with electromagnetic valves, and a plurality of foot pads are symmetrically fixedly installed at the bottom of the base frame.