Recycling box capable of preventing secondary pollution
By introducing gas components into the battery recycling box, and using the filter box and suction pump to treat the harmful gases generated during the recovery process, the problem of the inability to effectively deal with harmful gases in the prior art is solved, and the effect of reducing secondary pollution is achieved.
Patent Information
- Application Number
- CN202421482875.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-26
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2034-06-26
AI Technical Summary
The existing battery recycling box cannot effectively handle the harmful gases generated during the recycling process, resulting in secondary pollution problems.
A recycling box including a recycling box, a gas assembly and a recycling box body is designed. The gas assembly consists of a filter box, an intake pipe and an outlet pipe. The gas in the recycling box is actively extracted through a suction pump and filtered through the filter box.
Effectively remove harmful gases and tiny particulate matter in the recycling box, ensure that the emitted gas meets environmental protection standards, and reduce secondary pollution to the atmosphere.
Smart Images

Figure CN222860196U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the field of battery recycling equipment, and in particular relates to a recycling box for preventing secondary pollution. Background Art
[0002] A battery recycling box is a container or device specifically used to collect and store used batteries. Its main function is to collect used batteries for subsequent professional treatment and recycling. By using a battery recycling box, it is possible to avoid the random discarding of used batteries, thereby reducing the pollution of soil, water sources and air caused by harmful substances (such as heavy metals, etc.) in used batteries, and reducing the potential harm to the ecological environment and human health. Existing battery recycling boxes have obvious shortcomings, one of which is that the gas inside the recycling box cannot be treated, causing secondary pollution. This is because batteries may release various harmful gases during storage, such as sulfur-containing and nitrogen-containing compounds, but the recycling box lacks an effective gas treatment device. The conventional response method is to place the battery recycling box in a well-ventilated area to promote the diffusion and dilution of the gas. However, this method has many disadvantages. First, ventilation alone cannot completely eliminate harmful gases, and some gases will still remain and pollute the surrounding environment. Secondly, good ventilation conditions are not always guaranteed, and are greatly affected by factors such as site and climate. Furthermore, the diffusion of gases may expand the scope of pollution and cause potential harm to a wider area. In addition, this method does not fundamentally solve the problem of gas generation. It is only a passive response method and cannot effectively collect and treat the gas. Moreover, for some highly volatile and toxic gases, the effect of ventilation dilution is very limited, and it is difficult to meet the requirements of protecting the environment and human health. Therefore, a new structure is needed to solve the above technical problems. Utility Model Content
[0003] In view of the shortcomings of the prior art, the purpose of the utility model is to provide a recycling box that prevents secondary pollution and solves the problems raised in the above background technology.
[0004] The utility model is achieved through the following technical solutions: a recycling box for preventing secondary pollution, comprising: a recycling box, a gas component and a recycling box body, the upper surface of the recycling box is installed with a gas component, the front surface of the recycling box is damped and hinged with a box door, the front surface of the recycling box is slidably installed with a recycling box body, the lower part of the recycling box body is slidably installed with a liquid recovery box, a buffer plate is installed inside the recycling box body, a partition is installed inside the recycling box, two accommodating cavities are formed inside the recycling box through the partition, a baffle is installed on the lower surface of the recycling box body, an anti-corrosion lining is installed inside the liquid recovery box, the gas component comprises: a filter box, an air inlet pipe and an air outlet pipe, the outer surface of the filter box is installed with an air inlet pipe through an air suction pump, and the upper surface of the filter box is installed with an air outlet pipe.
[0005] As a preferred embodiment, a supporting leg is installed at each of the four corners of the lower surface of the recycling box, and the upper half of the front surface of the recycling box is symmetrically damped and hinged with two box doors, and a sealing ring is provided at the junction of the box door and the recycling box.
[0006] As a preferred embodiment, two recycling box bodies are symmetrically and slidably installed on the lower half of the front surface of the recycling box, a sealing ring is provided at the joint between the recycling box body and the recycling box, a recycling mark and a handle are installed on the front surface of the recycling box body, and a plurality of circular through holes are evenly opened on the lower surface of the recycling box body.
[0007] As a preferred embodiment, a buffer plate is symmetrically installed on the left inner wall and the right inner wall of the recycling box body at an angle of 25 degrees, a buffer pad is glued to the upper surface of the buffer plate, and a partition is welded at the center position inside the recycling box.
[0008] As a preferred embodiment, a baffle is installed between the left inner wall of the recycling box and the left surface of the partition, and a baffle is installed between the right inner wall of the recycling box and the right surface of the partition, and the surface of the baffle is a filter structure.
[0009] As a preferred embodiment, a liquid recovery box is slidably mounted on the bottom of each of the two accommodating chambers, and the upper surface of the liquid recovery box and the recovery box body are both open;
[0010] A filter box is installed at the center of the upper surface of the recovery box, and a box door is sealed and hinged on the front surface of the filter box. An activated carbon layer and a HEPA filter are arranged inside the filter box. The end of the air inlet pipe away from the filter box is connected to the upper surface of the recovery box, and a valve is installed at the connection between the air outlet pipe and the filter box.
[0011] After adopting the above technical scheme, the beneficial effect of the utility model is as follows: by setting up a gas component, the gas component includes: a filter box, an air inlet pipe and an air outlet pipe, the outer surface of the filter box is equipped with an air inlet pipe through an air suction pump, and the upper surface of the filter box is equipped with an air outlet pipe. When in use, the air suction pump actively extracts the gas in the recovery box through the air inlet pipe, and filters it through the filter box, effectively removing harmful gases and tiny particles, ensuring that the discharged gas meets environmental protection standards and reducing secondary pollution to the atmosphere.
[0012] By setting a recovery box body, a box door is hingedly connected with a damping on the front side surface of the recovery box, the recovery box body is slidably installed on the front side surface of the recovery box, a liquid recovery box is slidably installed under the recovery box body, and a buffer plate is installed inside the recovery box body. When in use, a special liquid recovery box is set to collect the liquid leaked from the battery separately to prevent the leaked liquid from causing secondary pollution to the environment. At the same time, the buffer plate inside the recovery box body can reduce the impact force of the battery when it is put into use, reduce the risk of battery damage, and reduce the possibility of internal substance leakage due to battery collision. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the utility model. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative labor.
[0014] Figure 1 The utility model is a schematic diagram of the overall structure of a recycling box for preventing secondary pollution.
[0015] Figure 2 This is a schematic diagram of the internal structure of a recycling box for preventing secondary pollution according to the utility model.
[0016] Figure 3 The utility model is a schematic diagram of a recycling box body of a recycling box for preventing secondary pollution.
[0017] In the figure, 100-recycling box, 110-supporting leg, 120-box door, 130-baffle, 140-partition;
[0018] 200-recovery box body, 201-circular through hole, 210-buffer plate;
[0019] 300-filter box, 310-intake pipe, 320-outlet pipe, 330-;
[0020] 400-Liquid recovery box. DETAILED DESCRIPTION
[0021] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0022] See also Figures 1 to 3 The utility model provides a technical solution: a recovery box for preventing secondary pollution, comprising: a recovery box 100, a gas component and a recovery box body 200, the upper surface of the recovery box 100 is installed with a gas component, the front surface of the recovery box 100 is hinged with a box door 120, the front surface of the recovery box 100 is slidably installed with the recovery box body 200, and the lower part of the recovery box body 200 is slidably installed with a liquid recovery box 400, a buffer plate 210 is installed inside the recovery box body 200, a partition 140 is installed inside the recovery box 100, and two accommodating cavities are formed inside the recovery box 100 through the partition 140, a baffle 130 is installed on the lower surface of the recovery box body 200, and an anti-corrosion lining is installed inside the liquid recovery box 400, the gas component comprises: a filter box 300, an air inlet pipe 310 and an air outlet pipe 320, the outer surface of the filter box 300 is installed with an air inlet pipe 310 through an air suction pump, and the upper surface of the filter box 300 is installed with an air outlet pipe 320.
[0023] See also Figures 1 to 3 As the first embodiment of the utility model: a support leg 110 is installed at each of the four corners of the lower surface of the recycling box 100, and two box doors 120 are symmetrically damped and hingedly connected to the upper part of the front surface of the recycling box 100, and a sealing ring is provided at the abutment between the box door 120 and the recycling box 100;
[0024] Two recycling box bodies 200 are symmetrically and slidably mounted on the lower half of the front surface of the recycling box 100. A sealing ring is provided at the abutment between the recycling box body 200 and the recycling box 100. A recycling mark and a handle are installed on the front surface of the recycling box body 200. A plurality of circular through holes 201 are evenly opened on the lower surface of the recycling box body 200.
[0025] The left inner wall and the right inner wall of the recycling box body 200 are symmetrically installed with a buffer plate 210 at an angle of 25 degrees. The upper surface of the buffer plate 210 is glued with a buffer pad. The center position of the recycling box 100 is welded with a partition plate 140.
[0026] A baffle 130 is installed between the left inner wall of the recycling box 100 and the left surface of the partition 140, and a baffle 130 is installed between the right inner wall of the recycling box 100 and the right surface of the partition 140, and the surface of the baffle 130 is a filter structure;
[0027] A liquid recovery box 400 is slidably mounted at the bottom of each of the two accommodating chambers, and the upper surfaces of the liquid recovery box 400 and the recovery box body 200 are both open;
[0028] When recycling batteries, the user first opens the damping hinged box door 120, and then puts the battery into the recycling box 100. When the battery enters the recycling box 100, it will fall due to gravity. At this time, the battery will fall onto the upper surface of the buffer plate 210. At this time, the buffer pad on the surface of the buffer plate 210 can reduce the impact of the battery when it falls, and try to ensure that the battery will not be broken when it falls. When the battery falls onto the surface of the first buffer plate 210, it will roll onto the surface of the second buffer plate 210 due to gravity, and then continue to roll to the bottom of the recycling box body 200 for collection. If the battery leaks liquid when it is stored inside the recycling box body 200, At this time, the flowing liquid will slowly fall into the liquid recovery box 400 through the circular through hole 201 inside the recovery box body 200, and then the leaked liquid will be recovered through the liquid recovery box 400 to prevent the leaked liquid from causing secondary pollution to the environment. After the leaked liquid and the battery are recovered, the user only needs to pull out the recovery box body 200 and the liquid recovery box 400 for subsequent processing. Since a special liquid recovery box 400 is provided, the liquid leaked from the battery can be collected separately to prevent the leaked liquid from causing secondary pollution to the environment. At the same time, the buffer plate 210 in the recovery box body 200 can reduce the impact force of the battery when it is put into use, reduce the risk of battery damage, and reduce the possibility of internal material leakage due to battery collision.
[0029] See also Figures 1 to 3 As the second embodiment of the utility model: a filter box 300 is installed at the center of the upper surface of the recovery box 100, a box door 120 is sealed and hingedly connected to the front surface of the filter box 300, an activated carbon layer and a HEPA filter are arranged inside the filter box 300, an end of the air inlet pipe 310 away from the filter box 300 is connected to the upper surface of the recovery box 100, and a valve is installed at the connection between the air outlet pipe 320 and the filter box 300;
[0030] During use, when the batteries are stored together, some harmful gases will be generated. Once the batteries leak, the harmful gases will be generated more severely. At this time, the suction pump on the outer surface of the filter box 300 will work, and then the air inside the recovery box 100 will be drawn through the air inlet pipe 310, and the air will be drawn into the filter box 300 for filtration, and then discharged through the air outlet pipe 320 on the upper surface of the filter box 300. After the filter box 300 has been used for a period of time, the user needs to open the box door 120 sealed and glued on the front side of the filter box 300 to replace the filter material inside the filter box 300. Since the suction pump actively draws the gas in the recovery box through the air inlet pipe 310, the gas is filtered through the filter box 300, which effectively removes harmful gases and tiny particles, ensures that the discharged gas meets environmental protection standards, and reduces secondary pollution to the atmosphere.
[0031] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A recycling box for preventing secondary pollution, comprising: A recovery box (100), a gas component and a recovery box body (200), characterized in that the gas component is installed on the upper surface of the recovery box (100), the front surface of the recovery box (100) is hinged with a box door (120), the front surface of the recovery box (100) is slidably installed with the recovery box body (200), and the bottom of the recovery box body (200) is slidably installed with a liquid recovery box (400); A buffer plate (210) is installed inside the recovery box body (200), a partition plate (140) is installed inside the recovery box (100), two accommodating cavities are formed inside the recovery box (100) through the partition plate (140), a baffle plate (130) is installed on the lower surface of the recovery box body (200), and an anti-corrosion lining is installed inside the liquid recovery box (400); The gas assembly comprises: a filter box (300), an air inlet pipe (310) and an air outlet pipe (320); the air inlet pipe (310) is installed on the outer surface of the filter box (300) via an air suction pump, and the air outlet pipe (320) is installed on the upper surface of the filter box (300).
2. A recycling box for preventing secondary pollution as claimed in claim 1, characterized in that: A supporting leg (110) is respectively installed at the four corners of the lower surface of the recovery box (100); the upper half of the front surface of the recovery box (100) is symmetrically damped and hinged with two box doors (120); and a sealing ring is provided at the abutment between the box doors (120) and the recovery box (100).
3. A recycling box for preventing secondary pollution as claimed in claim 2, characterized in that: Two recycling box bodies (200) are symmetrically and slidably mounted on the lower half of the front surface of the recycling box (100); a sealing ring is provided at the abutment between the recycling box body (200) and the recycling box (100); a recycling mark and a handle are mounted on the front surface of the recycling box body (200); and a plurality of circular through holes (201) are evenly opened on the lower surface of the recycling box body (200).
4. A recycling box for preventing secondary pollution as claimed in claim 3, characterized in that: A buffer plate (210) is symmetrically installed on the left inner wall and the right inner wall of the recovery box body (200) at an angle of 25 degrees, and a buffer pad is glued to the upper surface of the buffer plate (210). A partition plate (140) is welded at the center position of the recovery box (100).
5. A recycling box for preventing secondary pollution as claimed in claim 4, characterized in that: A baffle (130) is installed between the left inner wall of the recovery box (100) and the left surface of the partition (140), and a baffle (130) is installed between the right inner wall of the recovery box (100) and the right surface of the partition (140), and the surface of the baffle (130) is a filter structure.
6. A recycling box for preventing secondary pollution as claimed in claim 1, characterized in that: A liquid recovery box (400) is slidably mounted on the bottom of each of the two accommodating chambers, and the upper surfaces of the liquid recovery box (400) and the recovery box body (200) are both designed to be open; A filter box (300) is installed at the center of the upper surface of the recovery box (100); a box door (120) is sealed and hingedly connected to the front surface of the filter box (300); an activated carbon layer and a HEPA filter are arranged inside the filter box (300); one end of the air inlet pipe (310) away from the filter box (300) is connected to the upper surface of the recovery box (100); and a valve is installed at the connection between the air outlet pipe (320) and the filter box (300).