Circulating water tank for desulfurization

By introducing mixing and crushing components into the circulating water tank, the problems of uneven water flow distribution and insufficient mixing were solved, achieving water purification and material processing, improving desulfurization efficiency and reducing operating costs.

CN224057101UActive Publication Date: 2026-03-31XUSHUI KANGHUAN TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-26
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

The existing circulating water tanks used for desulfurization have poor internal structural design, resulting in uneven water flow distribution, insufficient mixing, and dead flow zones, which affect desulfurization efficiency and increase operating costs.

Method used

The system employs a mixing component and a crushing component. The mixing component is equipped with a settling tank and a retrieval tank via a lifting rod, while the crushing component crushes large particles of material via a support box and a drive power source. Combined with a filter plate and a stirring device, the system achieves water purification and material mixing.

Benefits of technology

It improves the mixing efficiency and desulfurization effect of the circulating water tank, effectively removes impurities, reduces operating costs, and ensures the stable operation of the desulfurization system.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a circulating water pool for desulfurization, and belongs to the technical field of circulating water pools. Comprising a mixing assembly, the mixing assembly is arranged on a lifting rod, the mixing assembly comprises a material sinking barrel slidably connected to the top of the lifting rod, a fishing barrel is arranged at the top, away from the material sinking barrel, of the lifting rod, a fixing box is fixed in the material sinking barrel, fixing plates are fixed to the two ends of the fixing box, a rotating shaft is arranged in the fixing box, and fan blades are arranged on the rotating shaft; the mixing assembly is installed on the lifting rod and plays an important role in cleaning the circulating water pool, the sinking barrel is slidably connected to the top of the lifting rod, the position of the sinking barrel can be flexibly adjusted, and when liquid in the box body needs to be mixed, an external power source is connected to drive a rotating shaft in a fixing box to rotate, and fan blades on the rotating shaft rotate along with the rotating shaft; a stirring effect is generated on liquid in the material settling barrel, so that an absorbent in the liquid is fully mixed with water, the reaction efficiency is improved, and a second filter plate on the outer side of a fixed plate can intercept large-particle impurities.
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Description

Technical Field

[0001] This utility model relates to the field of circulating water tank technology, and in particular to a circulating water tank for desulfurization. Background Technology

[0002] The circulating water tank in desulfurization plays a crucial role. It stores circulating water to continuously supply water to the desulfurization system, ensuring stable reactions. During the circulation process, the water absorbs pollutants such as sulfur from the flue gas. After treatment such as sedimentation and filtration, it can be reused, ensuring desulfurization efficiency, achieving water resource reuse, and reducing operating costs.

[0003] However, existing circulating water tanks used for desulfurization have many problems in operation. Their internal structure design is poor, the water flow distribution is uneven, which greatly reduces the mixing effect. The power is insufficient, making it difficult to drive the liquid in the tank to convect fully. At the same time, the lack of effective flow guiding devices creates dead flow zones in some areas, which further aggravates the insufficient mixing, greatly affects the desulfurization efficiency, and increases the operating cost.

[0004] Therefore, this application provides a circulating water tank for desulfurization to meet the requirements. Utility Model Content

[0005] The purpose of this invention is to address the shortcomings of existing technologies by proposing a circulating water tank for desulfurization.

[0006] To achieve the above objectives, this utility model adopts the following technical solution: a circulating water tank for desulfurization, comprising:

[0007] The base plate and the lifting rod placed on top of the base plate;

[0008] A mixing assembly is placed on a lifting rod. The mixing assembly includes a sinking bucket slidably connected to the top of the lifting rod. A retrieval bucket is provided at the top of the lifting rod away from the sinking bucket. A fixing box is fixed inside the sinking bucket. Fixing plates are fixed at both ends of the fixing box. A rotating shaft is provided inside the fixing box. Fan blades are provided on the rotating shaft.

[0009] A crushing assembly is placed on top of a base plate. The crushing assembly includes a support box fixed to the top of the base plate. A drive power supply is fixed to the top of the support box. A telescopic rod is provided at the bottom of the drive power supply. A lower pressure plate is fixed to the bottom of the telescopic rod away from the drive power supply. A damping spring is fixed to the bottom of each lower pressure plate. A crushing pressure plate is fixed to the bottom of each damping spring.

[0010] Furthermore, the inside of each retrieval bucket is provided with a water flow groove, and a protective shell is fixed to the top of the retrieval bucket near the fixed plate. Both ends of the protective shell are fixed with a first filter plate.

[0011] The beneficial effects of adopting the above-mentioned further solution are: during the operation of the retrieval bucket, water enters and exits through the water flow channel, the protective shell is fixed on the top of the retrieval bucket to protect the internal structure, and the first filter plates at both ends can filter out larger impurities in the water, thus achieving preliminary purification of the water quality in the circulating water pool.

[0012] Furthermore, the crushing plate has a damage-prevention groove on the side near the protective shell.

[0013] The beneficial effect of adopting the above-mentioned further solution is that when the crushing plate is pressed down, the anti-damage slot on one side can be cleverly offset from the protective shell, crushing the bottom of the retrieval bucket and avoiding equipment damage.

[0014] Furthermore, a liquid injection port is fixed on one side of the settling tank, and a liquid outlet is fixed on the other side of the settling tank away from the liquid injection port.

[0015] The beneficial effects of adopting the above-mentioned further solution are: when the sedimentation tank is working, the liquid flows in from the injection port, and after sedimentation treatment, it flows out from the outlet port, thereby realizing the purification and effective transportation of circulating water.

[0016] Furthermore, a second filter plate is fixed to the outer side of each of the fixing plates.

[0017] The beneficial effect of adopting the above-mentioned further solution is that the second filter plate on the outside of the fixed plate can block impurities, prevent them from entering the interior of the fixed plate, and protect the rotating shaft and fan blades.

[0018] Furthermore, a drive motor is fixed to the top of the lifting rod.

[0019] The beneficial effect of adopting the above-mentioned further solution is that the drive motor is fixed at the top of the lifting rod, and drives the lifting rod to rise and fall after starting.

[0020] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0021] 1. The mixing component is installed on the lifting rod and plays an important role in cleaning the circulating water tank. The sedimentation tank is slidably connected to the top of the lifting rod and its position can be flexibly adjusted. When it is necessary to mix the liquid in the tank, the external power is turned on, which drives the rotating shaft in the fixed box to rotate. The fan blades on the rotating shaft rotate accordingly, which stirs the liquid in the sedimentation tank, so that the absorbent in the liquid is fully mixed with the water, improving the reaction efficiency. The second filter plate on the outside of the fixed plate can intercept large particles of impurities, and the retrieval bucket at the top of the lifting rod is responsible for retrieval of floating objects on the water surface, effectively cleaning the circulating water tank.

[0022] 2. When the large particles of material added are not dissolved and are retrieved by the retrieval bucket, the crushing component begins to function. The support box is fixed to the top of the base plate, providing support for the entire component. The drive power supply is installed on the top of the support box. After the power is turned on, the drive power supply starts the telescopic rod. The telescopic rod extends, causing the lower pressure plate to descend. The damping spring at the bottom of the lower pressure plate can buffer the pressure, while simultaneously causing the crushing plate to slowly press down. The crushing plate squeezes and crushes the retrieved large particles of material into smaller particles, so that they can be better dissolved and utilized in the circulating water pool, thereby improving the desulfurization effect. Attached Figure Description

[0023] Figure 1 This is a front view of a circulating water tank for desulfurization according to this utility model;

[0024] Figure 2 This is a cross-sectional view of a circulating water tank for desulfurization according to the present invention;

[0025] Figure 3 This is a structural diagram of a mixing component in a circulating water tank for desulfurization according to the present invention;

[0026] Figure 4 This is a structural diagram of a pulverizing component in a circulating water tank for desulfurization according to this utility model.

[0027] Figure Labels

[0028] 1. Base plate; 2. Lifting rod; 3. Drive motor;

[0029] 4. Mixing assembly; 41. Settling tank; 42. Retrieving tank; 43. Protective shell; 44. First filter plate; 45. Flow groove; 46. Injection port; 47. Outlet port; 48. Fixing plate; 49. Second filter plate; 410. Fixing box; 411. Rotating shaft; 412. Fan blade;

[0030] 5. Crushing assembly; 51. Support box; 52. Drive power supply; 53. Telescopic rod; 54. Lower pressure cover plate; 55. Damping spring; 56. Crushing plate; 57. Damage-proof groove. Detailed Implementation

[0031] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0032] like Figure 1 - Figure 4As shown, this utility model provides a technical solution: a circulating water tank for desulfurization, comprising: a bottom plate 1 and a lifting rod 2 placed on top of the bottom plate 1;

[0033] A mixing component 4 is mounted on a lifting rod 2. The mixing component 4 includes a settling tank 41 slidably connected to the top of the lifting rod 2. A retrieval bucket 42 is located at the top of the lifting rod 2 away from the settling tank 41. A fixing box 410 is fixed inside the settling tank 410, and fixing plates 48 are fixed to both ends of the fixing box 410. A rotating shaft 411 is located inside the fixing box 410, and fan blades 412 are mounted on the rotating shaft 411. The mixing component 4, mounted on the lifting rod 2, plays an important role in cleaning the circulating water tank. The settling tank 41 is slidably connected to the top of the lifting rod 2, and its position can be flexibly adjusted. When it is necessary to mix the liquid in the tank, the external power supply is turned on, which drives the rotating shaft 411 in the fixed box 410 to rotate. The fan blade 412 on the rotating shaft 411 rotates accordingly, which stirs the liquid in the settling tank 41, so that the absorbent in the liquid is fully mixed with the water, improving the reaction efficiency. The second filter plate 49 on the outside of the fixed plate 48 can intercept large particles of impurities, and the retrieval bucket 42 at the top of the lifting rod 2 is responsible for retrieval of floating objects on the water surface, effectively cleaning the circulating water pool.

[0034] The crushing assembly 5 is located on top of the base plate 1. The crushing assembly 5 includes a support box 51 fixed to the top of the base plate 1. A drive power supply 52 is fixed to the top of the support box 51. A telescopic rod 53 is provided at the bottom of the drive power supply 52. ​​A lower pressure plate 54 is fixed to the bottom of the telescopic rod 53 away from the drive power supply 52. ​​Damping springs 55 are fixed to the bottom of each lower pressure plate 54. A crushing pressure plate 56 is fixed to the bottom of each damping spring 55. When large particles of material are added but not dissolved and are retrieved by the retrieval bucket 42, the crushing assembly... Component 5 begins to function. Support box 51 is fixed to the top of base plate 1, providing support for the entire assembly. Drive power supply 52 is installed on the top of support box 51. After the power is turned on, drive power supply 52 starts telescopic rod 53. Telescopic rod 53 extends, driving the lower pressure cover plate 54 to descend. The damping spring 55 at the bottom of the lower pressure cover plate 54 can buffer the pressure, while driving the crushing plate 56 to slowly press down. The crushing plate 56 squeezes and crushes the large particles of material that have been retrieved, making them smaller particles so that they can be better dissolved and utilized in the circulating water pool, thus improving the desulfurization effect.

[0035] Furthermore, such as Figure 1 - Figure 3As shown: The inside of the retrieval bucket 42 is provided with water flow grooves 45. A protective shell 43 is fixed to the top of the retrieval bucket 42 near the fixed plate 48. A first filter plate 44 is fixed to both ends of the protective shell 43. When the retrieval bucket 42 is in operation, water enters and exits through the water flow grooves 45. The protective shell 43 is fixed to the top of the retrieval bucket 42 to protect the internal structure. The first filter plates 44 at both ends can filter out larger impurities in the water, realizing the initial purification of the water quality in the circulating water pool.

[0036] The above solutions also have the problem of damaging the equipment during the crushing process, such as... Figure 2 - Figure 4 As shown: In this solution, the crushing plate 56 has a damage prevention groove 57 on the side near the protective shell 43. When the crushing plate 56 is pressed down, the damage prevention groove 57 on one side can cleverly offset the protective shell 43 and crush the bottom of the retrieval bucket 42 to avoid damage to the equipment.

[0037] Working principle: such as Figure 1 - Figure 4 As shown, the mixing component 4 is installed on the lifting rod 2. The settling tank 41 is slidably connected to the top of the lifting rod 2 and its position can be adjusted. When the external power is turned on, the rotating shaft 411 inside the fixed box 410 rotates. The rotating shaft 411 drives the fan blade 412 to rotate, stirring the liquid in the settling tank 41, promoting the mixing of the absorbent and water, and improving the reaction efficiency. The second filter plate 49 on the outside of the fixed plate 48 intercepts large particles of impurities and protects the rotating shaft 411 and the fan blade 412. The retrieval tank 42 at the top of the lifting rod 2 is responsible for retrieval of floating objects on the water surface. Water enters and exits the retrieval tank 42 through the water channel 45. The protective shell 43 is fixed to the top of the retrieval tank 42. The first filter plates 44 at both ends of the shell filter larger impurities in the water, achieving preliminary water purification. The crushing component 5 is used to process large particles of material. The support box 51 is fixed to the top of the base plate 1 to provide support for the component. The drive power supply 52 is installed on the top of the support box 51. After the power is turned on, the extension is started. The extension rod 53 causes the lower cover plate 54 to descend. The damping spring 55 at the bottom of the lower cover plate 54 buffers the pressure, causing the crushing plate 56 to slowly press down. After the scooping bucket 42 scoops up undissolved large particles, the crushing plate 56 crushes them into small particles, which are easier to dissolve and utilize in the circulating water pool, thus improving the desulfurization effect. The anti-damage slot 57 on one side of the crushing plate 56 is offset from the protective shell 43 during pressing to avoid equipment damage. When the settling bucket 41 is working, the liquid flows in from the injection port 46 and flows out from the outlet 47 after sedimentation, realizing the purification and transportation of circulating water. The drive motor 3 is fixed on the top of the lifting rod 2. After starting, it drives the lifting rod 2 to rise and fall, adjusting the height of the mixing component 4 to adapt to different working requirements. Through the orderly operation of each component, the circulating water pool can effectively clean impurities, improve desulfurization efficiency, ensure the stable operation of the desulfurization system, and provide strong support for desulfurization work.

[0038] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A circulating pool for desulfurization, characterized by comprising: Include: The bottom plate (1) and the lifting rod (2) placed on the top of the bottom plate (1); The mixing assembly (4) is placed on the lifting rod (2), the mixing assembly (4) includes a sinking barrel (41) slidingly connected on the top of the lifting rod (2), the lifting rod (2) is provided with a fishing barrel (42) away from the top of the sinking barrel (41), the inside of the sinking barrel (41) is fixed with a fixed box (410), both ends of the fixed box (410) are fixed with a fixed plate (48), the inside of the fixed box (410) is provided with a rotating shaft (411), the rotating shaft (411) is provided with a fan blade (412); The crushing assembly (5) is placed on the top of the bottom plate (1), the crushing assembly (5) includes a support box (51) fixed on the top of the bottom plate (1), the top of the support box (51) is fixed with a driving power supply (52), the bottom of the driving power supply (52) is provided with a telescopic rod (53), the bottom of the telescopic rod (53) is fixed with a lower pressing cover plate (54), the bottom of the lower pressing cover plate (54) is fixed with a damping spring (55), the bottom of the damping spring (55) is fixed with a crushing pressing plate (56).

2. A recirculating pool for desulphurisation according to claim 1, characterised in that, The inside of the fishing barrel (42) is provided with a water flowing slot (45), the top of the fishing barrel (42) is fixed with a protective shell (43) close to the fixed plate (48), both ends of the protective shell (43) are fixed with a first filter plate (44).

3. A recirculating pool for desulphurisation according to claim 1, characterised in that, The crushing pressing plate (56) is provided with a damage prevention slot (57) on one side close to the protective shell (43).

4. A recirculating pool for desulphurisation according to claim 1, characterised in that, One side of the sinking barrel (41) is fixed with a liquid injection port (46), the other side of the sinking barrel (41) is fixed with a liquid outlet (47) away from the liquid injection port (46).

5. A recirculating pool for desulphurisation according to claim 1, characterised in that, The outside of the fixed plate (48) is fixed with a second filter plate (49).

6. A recirculating pool for desulphurisation according to claim 1, characterised in that, The top of the lifting rod (2) is fixed with a driving motor (3).