Efficient filler device for sewage oxygen-consuming pool

CN224754281UActive Publication Date: 2026-09-15NINGXIA RUIYUAN FINE CHEM CO LTD
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Patent Information

Application Number
CN202522138003.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2026-09-15
Estimated Expiration
2035-10-10

AI Technical Summary

Technical Problem

[0002]在污水好氧池的处理过程中,传统方式通过填料实现吸附过滤,虽可设置多层填料,但存在明显局限,既无法根据不同污水的处理需求灵活更换填料或调整组合层数,也不能单独直接更换填料包,极大限制了设备的实用性,为此,我们提出了一种污水耗氧池高效填料装置

Benefits of technology

本实用新型针对污水好氧池的填料吸附处理进行了优化升级,不仅能依据污水浓度差异灵活设置多层填料机构,还支持对填料机构进行单独更换与组合调整,这一设计让填料机构的使用更具灵活性,既能始终保证稳定的吸附过滤效果,又简化了更换与组合的操作流程,有效提升了设备的实用价值。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of sewage oxygen-consuming pool high-efficiency packing device, belong to sewage oxygen-consuming pool technical field, solve the treatment process in sewage aerobic tank, traditional mode is realized adsorption filtration by packing, although multiple packing can be set, but there is obvious limitation, both cannot replace packing or adjust combination layer number according to the treatment demand of different sewage flexibly, also cannot replace packing bag directly alone, greatly limit the practicability problem of equipment, including multiple parallel distribution's placement plate, the utility model is optimized upgrading to the packing adsorption treatment of sewage aerobic tank, not only can set multiple packing mechanism flexibly according to sewage concentration difference, also support to replace and combination adjustment to packing mechanism, this design makes the use of packing mechanism more flexible, can always guarantee stable adsorption filtration effect, and simplify the operation process of replacement and combination, effectively improve the practical value of equipment.
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Description

Technical Field

[0001] This utility model belongs to the technical field of wastewater oxygen-consuming tanks, specifically relating to a high-efficiency packing device for wastewater oxygen-consuming tanks. Background Technology

[0002] In the treatment process of aerobic wastewater tanks, the traditional method uses packing materials to achieve adsorption and filtration. Although multiple layers of packing materials can be set, there are obvious limitations. It is not possible to flexibly replace the packing materials or adjust the number of layers according to the treatment needs of different wastewater, nor can the packing material be replaced directly. This greatly limits the practicality of the equipment. To address this, we propose a high-efficiency packing material device for aerobic wastewater tanks.

[0003] The information disclosed in this background section is intended only to enhance the understanding of the overall background of this utility model and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Utility Model Content

[0004] The purpose of this invention is to provide a high-efficiency packing device for wastewater oxygen-consuming tanks.

[0005] To achieve the above objectives, this utility model provides the following technical solution: A high-efficiency packing device for a wastewater oxygen-consuming tank includes multiple parallel placement plates. The upper surface of the placement plates has multiple parallel placement grooves along a rectangular array direction. The bottom sidewall of the placement groove has multiple parallel water flow holes. The packing pack is placed inside the placement groove. The upper surface of the placement plates has symmetrically distributed first plates, and the lower surface of the placement plates has symmetrically distributed second plates.

[0006] Preferably, the upper surface of the first plate has a first groove, and the size of the first groove is matched with the size of the second plate.

[0007] Preferably, the outer wall of the first plate has a first channel that extends from left to right, the first channel passes through the first groove, and the inner walls of the first channel are slidably connected by a through strip.

[0008] Preferably, the outer wall of the second plate has a plurality of parallel through holes along its length, and the size of the through holes is matched with the size of the through strip.

[0009] Preferably, the outer wall of the first plate is provided with a groove in the vertical direction, and a slide bar is slidably connected to the groove, with the slide bar located above the through bar.

[0010] Preferably, a pressure block is fixed to the side wall of the slider near the through bar, and a pressure groove is formed on the upper surface of the through bar, with the pressure block and the pressure groove engaging.

[0011] Compared with the prior art, the present invention has the following beneficial effects: This utility model optimizes and upgrades the adsorption treatment of wastewater aerobic tanks using packing materials. It not only allows for flexible multi-layer packing structures based on wastewater concentration differences, but also supports individual replacement and combination adjustments of the packing structures. This design makes the use of the packing structure more flexible, ensuring a stable adsorption and filtration effect while simplifying the replacement and combination process, effectively enhancing the practical value of the equipment. Attached Figure Description

[0012] Figure 1 This is the front view of this utility model; Figure 2 This is a side view of the present invention. Figure 1 ; Figure 3 yes Figure 2 Enlarged structural diagram of section A; Figure 4 This is a side view of the present invention. Figure 2 ; Figure 5 yes Figure 4 Enlarged structural diagram of section B.

[0013] Explanation of key figure labels: 1. Placement plate; 2. Placement groove; 3. Pressing groove; 4. Filler bag; 5. First plate; 6. Second plate; 7. First groove; 8. First channel; 9. Through strip; 10. Tie strip; 11. Through hole; 12. Sliding strip; 13. Pressing block. Detailed Implementation

[0014] The technical solution of this utility model patent will be clearly and completely described below. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0015] In the description of this utility model, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model.

[0016] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0017] See attached document Figure 1-5 A high-efficiency packing device for a wastewater oxygen-consuming tank includes multiple parallel placement plates 1. Multiple parallel placement grooves 2 are formed on the upper surface of the placement plates 1 along a rectangular array direction. Multiple parallel water flow holes are formed on the bottom sidewall of the placement grooves 2. A packing bag 4 is placed inside the placement groove 2 for placing the packing bag 4 inside the placement groove 2. The packing bag 4 is provided with fine pores to adsorb impurities in the wastewater. The packing bag 4 is filled with packing material.

[0018] A first plate 5 is symmetrically distributed on the upper surface of the placement plate 1, and a second plate 6 is symmetrically distributed on the lower surface of the placement plate 1. The first plate 5 and the second plate 6 can be combined to connect adjacent placement plates 1, allowing for easy assembly or replacement of the packing device according to different wastewater conditions. A first groove 7 is formed on the upper surface of the first plate 5, and the size of the first groove 7 matches the size of the second plate 6, allowing the second plate 6 to enter the first groove 7 for assembly or disassembly of adjacent placement plates 1. A first through-hole is formed on the outer wall of the first plate 5. Channel 8, the first channel 8 passes through the first groove 7, and a through strip 9 is slidably connected between the inner walls of the first channel 8. Before the second plate 6 enters the first groove 7, the through strip 9 can be partially pulled out without affecting the second plate 6 entering the first groove 7. One end of the through strip 9 is fixed with a pull strip 10 for easy operation. The outer wall of the second plate 6 has multiple parallel through holes 11 along its length. The size of the through holes 11 matches the size of the through strip 9, so that when the second plate 6 is located inside the first groove 7, the through strip 9 can stably pass through the through holes 11 and fix the position of the second plate 6.

[0019] The outer wall of the first plate 5 is provided with a vertical groove, and a slide bar 12 is slidably connected to the groove. The slide bar 12 is located above the through bar 9. A pressure block 13 is fixed to the side wall of the slide bar 12 near the through bar 9. A pressure groove 3 is provided on the upper surface of the through bar 9, and the pressure block 13 and the pressure groove 3 are engaged to further fix the position of the through bar 9 and ensure the stability of the adjacent placement plate 1.

[0020] When adjacent placement plates 1 are used in combination, multiple sliding bars 12 are moved, and the sliding bars 12 drive the pressure block 13 to move, separating the pressure block 13 from the pressure groove 3. Then, the pull bar 10 is pulled, and the pull bar 10 drives the through bar 9, causing the through bar 9 to move out of the first groove 7. Then, another placement plate 1 is moved, and the placement plate 1 drives the second plate 6 into the first groove 7 below. Then, the pull bar 10 is moved, and the pull bar 10 drives the through bar 9 to move, passing through the through hole 11 and fixing the position of the second plate 6. The sliding bar 12 is moved downward, and the sliding bar 12 drives the pressure block 13 to move. The pressure block 13 is stably engaged with the pressure groove 3, thereby fixing the position of adjacent placement plates 1. Multiple parallel placement plates 1 are placed at the filler position of the sewage tank, and the filler is adsorbed by the filler bag 4.

[0021] The foregoing description of specific exemplary embodiments of the present invention is for illustrative and explanatory purposes. These descriptions are not intended to limit the present invention to the precise forms disclosed, and it will be apparent that many changes and variations can be made in accordance with the foregoing teachings. The exemplary embodiments were chosen and described in order to explain the specific principles of the present invention and its practical application, thereby enabling those skilled in the art to implement and utilize various different exemplary embodiments of the present invention, as well as various different choices and variations. The scope of the present invention is intended to be defined by the claims and their equivalents.

Claims

1. A high-efficiency packing device for a wastewater oxygen-consuming tank, comprising multiple parallelly distributed placement plates (1), characterized in that, The upper surface of the placement plate (1) is provided with a plurality of parallel placement grooves (2) along the rectangular array direction. The bottom sidewall of the placement groove (2) is provided with a plurality of parallel water flow holes. The interior of the placement groove (2) is provided with a packing bag (4). The upper surface of the placement plate (1) is fixed with a first plate body (5) that is symmetrically distributed. The lower surface of the placement plate (1) is fixed with a second plate body (6) that is symmetrically distributed.

2. The high-efficiency packing device for wastewater oxygen-consuming tanks according to claim 1, characterized in that, The upper surface of the first plate (5) is provided with a first groove (7), and the size of the first groove (7) is matched with the size of the second plate (6).

3. The high-efficiency packing device for wastewater oxygen-consuming tanks according to claim 2, characterized in that, The outer wall of the first plate (5) is provided with a first channel (8) that runs through the left and right sides. The first channel (8) passes through the first groove (7). A through strip (9) is slidably connected between the inner walls of the first channel (8).

4. The high-efficiency packing device for wastewater oxygen-consuming tanks according to claim 3, characterized in that, The outer wall of the second plate (6) is provided with a plurality of parallel through holes (11) along its length direction, and the size of the through holes (11) is matched with the size of the through strip (9).

5. The high-efficiency packing device for wastewater oxygen-consuming tanks according to claim 4, characterized in that, The outer wall of the first plate (5) is provided with a groove in the vertical direction, and a slide bar (12) is slidably connected on the groove. The slide bar (12) is located above the through bar (9).

6. The high-efficiency packing device for wastewater oxygen-consuming tanks according to claim 5, characterized in that, A pressure block (13) is fixed on the side wall of the slide bar (12) near the through bar (9). A pressure groove (3) is provided on the upper surface of the through bar (9), and the pressure block (13) and the pressure groove (3) are engaged.