Zeolite rotating wheel waste gas treatment equipment
By introducing an airtight device into the zeolite rotor exhaust gas treatment equipment, the airtightness problem between the connecting pipe and the zeolite rotor box and purification box is solved, achieving more efficient exhaust gas treatment and equipment stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHENGDU XINJINCHEN ENERGY SAVING & ENVIRONMENTAL PROTECTION TECH CO LTD
- Filing Date
- 2025-05-23
- Publication Date
- 2026-05-01
AI Technical Summary
Existing zeolite rotor devices have a problem with poor airtightness between the connecting pipe and the zeolite rotor box and purification box during the waste gas treatment process, which leads to gas leakage.
An airtight device is adopted, including a first ring, a second ring, a sealing component, an auxiliary component, and a stabilizing component. The airtightness is improved by setting the sealing component at the connection between the connecting pipe and the zeolite rotor box and the purification box, and the stability of the equipment is enhanced by the auxiliary component and the stabilizing component.
It effectively prevents gas leakage, improves the airtightness and stability of the waste gas treatment equipment, and enhances the waste gas treatment effect.
Smart Images

Figure CN224180591U_ABST
Abstract
Description
A zeolite rotor exhaust gas treatment device Technical Field
[0001] This utility model relates to the field of waste gas treatment technology, and in particular to a zeolite rotor waste gas treatment device. Background Technology
[0002] Existing zeolite rotor devices often have limited effectiveness in treating waste gas and cannot completely purify it. The treated gas still contains some pollutants or irritating odors. Furthermore, the waste gas may contain some solid particles before entering the zeolite rotor device, and the accumulation of these substances over a long period of time will affect the service life of the zeolite rotor device.
[0003] Existing technology CN221964889U discloses a zeolite rotor exhaust gas treatment device, including a mobile base, a zeolite rotor box at the upper end of the mobile base, a purification box at the rear end of the zeolite rotor box, a connecting pipe between the zeolite rotor box and the purification box, a storage tank at the rear end of the purification box, an inlet pipe between the storage tank and the purification box, both the purification box and the storage tank being mounted on the upper end of the mobile base, a purification grid inside the purification box, a discharge pipe on the front side wall of the purification box, a water pump inside the storage tank, a connection port between the water pump and the inlet pipe, allowing the water pump to be detachably connected to the inlet pipe through the connection port, and an exhaust pipe on the outer surface of the rear end of the purification box. A support frame is installed at the lower end of the exhaust pipe, and the lower end of the support frame is fixedly connected to the movable base. After the exhaust gas is treated by the zeolite rotary box, it enters the interior of the purification box through the connecting pipe. The water pump inside the liquid storage tank is started, and the purification liquid inside the liquid storage tank is transported into the interior of the purification box through the liquid inlet pipe. The purification liquid is evenly distributed in the middle of the purification grid inside the purification box. The gas will pass through the middle of the purification grid inside the purification box. In this way, the purification liquid contained in the purification grid will further absorb and purify the pollutants contained in the gas. The purified gas is discharged outward from the exhaust pipe, and the purified liquid is discharged outward from the discharge pipe. This can make the exhaust gas purification effect better.
[0004] However, when using the above method, the airtightness of the connection between the connecting pipe and the zeolite rotor box and the purification box is not good during the use of this equipment, which needs to be improved, resulting in easy gas leakage. Summary of the Invention
[0005] The purpose of this invention is to provide a zeolite rotor exhaust gas treatment device that can improve the airtightness between the connecting pipe and the zeolite rotor box and purification box during the use of this device, thereby preventing gas leakage.
[0006] To achieve the above objectives, this utility model provides a zeolite rotor exhaust gas treatment device, including a movable base, a zeolite rotor box, a connecting pipe, a purification box, an exhaust pipe, and an inlet pipe. The zeolite rotor box and the purification box are both fixedly installed on the upper surface of the movable base. The zeolite rotor box and the purification box are interconnected through the connecting pipe. The exhaust pipe is installed on the purification box, and the inlet pipe is installed on the zeolite rotor box. It also includes an airtight device.
[0007] The airtight device includes a first ring, a second ring, a sealing component, an auxiliary component, and a stabilizing component. The first ring is fixedly connected to the zeolite rotor box and located on one side of the zeolite rotor box. The second ring is fixedly connected to the purification box and located on one side of the purification box. The sealing component is respectively disposed on the first ring and the second ring. The auxiliary component is respectively disposed on the zeolite rotor box and the purification box. The stabilizing component is disposed on the movable base.
[0008] The sealing assembly includes a first rubber pad and a second rubber pad. The first rubber pad is fixedly connected to the first ring and abuts against the connecting pipe. The second rubber pad is fixedly connected to the second ring and abuts against the connecting pipe.
[0009] The auxiliary components include a locking ring and a mounting ring. The locking ring is fixedly connected to the zeolite rotor box and to the air inlet pipe. The mounting ring is fixedly connected to the purification box and to the air outlet pipe.
[0010] The stabilizing component includes a mounting base and a drive rod. The mounting base is fixedly connected to the movable base and is located on one side of the movable base. The drive rod is threadedly connected to the mounting base and slidably connected to the movable base.
[0011] The stabilizing component further includes an abutment panel, which is fixedly connected to the drive rod and located on one side of the drive rod.
[0012] This utility model discloses a zeolite rotor exhaust gas treatment device, comprising a movable base, a zeolite rotor box, a connecting pipe, a purification box, an exhaust pipe, an inlet pipe, and an airtight device. The airtight device includes a first ring, a second ring, a sealing component, an auxiliary component, and a stabilizing component. During use, by placing the first ring at the connection between the connecting pipe and the zeolite rotor box, and the second ring at the connection between the purification box and the connecting pipe, and by placing the sealing component on the inner surfaces of the first and second rings, the sealing component wraps around both ends of the connecting pipe, thereby improving the airtightness between the connecting pipe and the zeolite rotor box, and between the connecting pipe and the purification box, thus preventing gas leakage. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 is a schematic diagram of the overall structure of the zeolite rotor exhaust gas treatment equipment according to the first embodiment of this utility model.
[0015] Figure 2 is an overall front view of the zeolite rotor exhaust gas treatment device according to the first embodiment of this utility model.
[0016] Figure 3 is a structural schematic diagram of the sealing assembly of the first embodiment of this utility model.
[0017] Figure 4 is a structural schematic diagram of the rubber pad according to the first embodiment of this utility model.
[0018] In the diagram: 101-Moving base, 102-Zeolite rotor box, 103-Connecting pipe, 104-Purification box, 105-Outlet pipe, 106-Inlet pipe, 107-First ring, 108-Second ring, 109-Rubber pad one, 110-Rubber pad two, 111-Locking ring, 112-Mounting ring, 113-Mounting base, 114-Drive rod, 115-Abutting panel. Detailed Implementation
[0019] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0020] The first embodiment of this application is:
[0021] Please refer to Figures 1 to 3, where Figure 1 is a schematic diagram of the overall structure of the zeolite rotor exhaust gas treatment device, Figure 2 is a front view of the overall zeolite rotor exhaust gas treatment device, Figure 3 is a schematic diagram of the sealing assembly, and Figure 4 is a schematic diagram of the first rubber gasket. This utility model provides a zeolite rotor exhaust gas treatment device: including a movable base 101, a zeolite rotor box 102, a connecting pipe 103, a purification box 104, an exhaust pipe 105, an inlet pipe 106, and an airtight device. The airtight device includes a first ring 107, a second ring 108, a sealing assembly, an auxiliary assembly, and a stabilizing assembly. The sealing assembly includes a first rubber gasket 109 and a second rubber gasket 110. The auxiliary assembly includes a locking ring 111 and an mounting ring 112, and an abutment panel 115. The aforementioned solution addresses the issue of poor airtightness at the connection between the connecting pipe 103 and the zeolite rotor box 102 and the purification box 104 during the use of this equipment, which needs improvement and leads to easy gas leakage. It is understood that the aforementioned solution can be used to improve the airtightness between the connecting pipe 103 and the zeolite rotor box 102 and the purification box 104 during the use of this equipment, thereby preventing gas leakage. It can also be used to fix the movable base 101, thereby improving the stability of the equipment.
[0022] In this specific embodiment, the zeolite rotor box 102 and the purification box 104 are both fixedly mounted on the upper surface of the movable base 101. The zeolite rotor box 102 and the purification box 104 are interconnected through the connecting pipe 103. The exhaust pipe 105 is mounted on the purification box 104, and the intake pipe 106 is mounted on the zeolite rotor box 102. The zeolite rotor box 102 is fixed to the upper left side of the movable base 101, and the purification box 104 is fixed to the upper right side of the movable base 101. The zeolite rotor box 102 and the purification box 104 are connected through the connecting pipe 103. The intake pipe 106 is provided on the front side of the zeolite rotor box 102 for the intake of waste gas, and the exhaust pipe 105 is provided on the right side of the purification box 104 for the discharge of treated waste gas. The zeolite rotor box 102 is used to treat waste gas. All of the above are prior art, and therefore will not be described in detail in this application.
[0023] The first ring 107 is fixedly connected to the zeolite rotor box 102 and located on one side of the zeolite rotor box 102; the second ring 108 is fixedly connected to the purification box 104 and located on one side of the purification box 104; the sealing components are respectively disposed on the first ring 107 and the second ring 108; the auxiliary components are respectively disposed on the zeolite rotor box 102 and the purification box 104; the stabilizing component is disposed on the movable base 101; and the connection between the zeolite rotor box 102 and the connecting pipe 103 is provided with... A first ring 107 is provided, the diameter of which is slightly larger than the diameter of the connecting pipe 103. A second ring 108 is provided at the connection between the connecting pipe 103 and the purification box 104, the diameter of which is adapted to the diameter of the first ring 107. The inner surfaces of both the first ring 107 and the second ring 108 are provided with the sealing assembly, which wraps around the end of the connecting pipe 103, thereby improving the connection between the connecting pipe 103 and the zeolite rotor box 102 and the connecting pipe. The airtightness between 103 and the purification chamber 104 is ensured. The auxiliary components are respectively located at the connection points of the zeolite rotor box 102 and the air inlet pipe 106, and the connection points of the purification chamber 104 and the air outlet pipe 105, thereby improving the airtightness of the air inlet pipe 106 and the air outlet pipe 105, indirectly improving the waste gas treatment effect. The stabilizing component is located on the upper surface of the movable base 101, which can fix the movable base 101 and improve its stability during use. By providing a first ring 107 at the connection between the connecting pipe 103 and the zeolite turbine box 102, and a second ring 108 at the connection between the purification box 104 and the connecting pipe 103, and by providing the sealing assembly on the inner surfaces of the first ring 107 and the second ring 108, the sealing assembly can wrap around both ends of the connecting pipe 103, thereby improving the airtightness between the connecting pipe 103 and the zeolite turbine box 102, and between the connecting pipe 103 and the purification box 104, and preventing gas leakage.
[0024] Secondly, the first rubber pad 109 is fixedly connected to the first ring 107 and abuts against the connecting pipe 103; the second rubber pad 110 is fixedly connected to the second ring 108 and abuts against the connecting pipe 103. The first rubber pad 109 is provided on the inner surface of the first ring 107, and the inner surface of the first rubber pad 109 is tightly attached to the outer surface of the connecting pipe 103. The first rubber pad 109 is made of natural latex material and has the characteristics of anti-slip and wear resistance. Thus, the first rubber pad 109 wraps and seals the connection between the connecting pipe 103 and the zeolite rotor box 102, improving airtightness. Similarly, the second rubber pad 110 is provided inside the second ring 108. The second rubber pad 110 is made of the same material as the first rubber pad 109. The second rubber pad 110 wraps the connection between the connecting pipe 103 and the purification box 104, thereby improving airtightness.
[0025] Meanwhile, the locking ring 111 is fixedly connected to the zeolite rotor box 102 and the air inlet pipe 106; the mounting ring 112 is fixedly connected to the purification box 104 and the air outlet pipe 105. The locking ring 111 is fixed at the connection between the air inlet pipe 106 and the zeolite rotor box 102, and the locking ring 111 wraps around the connection between the air inlet pipe 106 and the zeolite rotor box 102 to improve the airtightness between the air inlet pipe 106 and the zeolite rotor box 102. The mounting ring 112 is fixed on the outer surface of the air outlet pipe 105 and fixed on the right side of the purification box 104. The mounting ring 112 wraps around the connection between the purification box 104 and the air outlet pipe 105, thereby improving the airtightness between the air outlet pipe 105 and the purification box 104 and improving the waste gas treatment effect.
[0026] Additionally, the mounting base 113 is fixedly connected to the movable base 101 and located on one side of the movable base 101; the drive rod 114 is threadedly connected to the mounting base 113 and slidably connected to the movable base 101; the abutment panel 115 is fixedly connected to the drive rod 114 and located on one side of the drive rod 114; the mounting base 113 is fixed to the upper surface of the movable base 101, and the drive rod 114 is disposed through the mounting base 113; the movable base 101 is driven by the drive rod 114. The bottom end of the drive rod 114 is fixed to the abutment panel 115, so that after the movable base 101 is moved to the desired position, the drive rod 114 is rotated. Under the threaded drive of the mounting base 113, the drive rod 114 moves on the mounting base 113 toward the ground, thereby causing the drive rod 114 to drive the abutment panel 115 to move until the abutment panel 115 abuts against the ground and generates greater resistance, thereby fixing the movable base 101 and improving the stability of the equipment.
[0027] When using the zeolite rotor exhaust gas treatment device of this embodiment, during the use of this device, by setting the first ring 107 at the connection between the connecting pipe 103 and the zeolite rotor box 102, and setting the second ring 108 at the connection between the purification box 104 and the connecting pipe 103, and setting the sealing component on the inner surface of the first ring 107 and the second ring 108, the sealing component wraps around both ends of the connecting pipe 103, thereby improving the airtightness between the connecting pipe 103 and the zeolite rotor box 102 and between the connecting pipe 103 and the purification box 104, and preventing gas leakage.
[0028] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A zeolite rotor exhaust gas treatment device, comprising a movable base, a zeolite rotor box, a connecting pipe, a purification box, an exhaust pipe, and an inlet pipe, wherein the zeolite rotor box and the purification box are both fixedly mounted on the upper surface of the movable base, the zeolite rotor box and the purification box are interconnected through the connecting pipe, the exhaust pipe is mounted on the purification box, and the inlet pipe is mounted on the zeolite rotor box, characterized in that: It also includes an airtight device; the airtight device includes a first ring, a second ring, a sealing component, an auxiliary component, and a stabilizing component. The first ring is fixedly connected to the zeolite rotor box and located on one side of the zeolite rotor box. The second ring is fixedly connected to the purification box and located on one side of the purification box. The sealing component is respectively disposed on the first ring and the second ring. The auxiliary component is respectively disposed on the zeolite rotor box and the purification box. The stabilizing component is disposed on the movable base.
2. The zeolite rotor exhaust gas treatment equipment as described in claim 1, characterized in that: The sealing assembly includes a first rubber pad and a second rubber pad. The first rubber pad is fixedly connected to the first ring and abuts against the connecting pipe. The second rubber pad is fixedly connected to the second ring and abuts against the connecting pipe.
3. The zeolite rotor exhaust gas treatment equipment as described in claim 1, characterized in that: The auxiliary components include a locking ring and a mounting ring. The locking ring is fixedly connected to the zeolite rotor box and to the air inlet pipe. The mounting ring is fixedly connected to the purification box and to the air outlet pipe.
4. The zeolite rotor exhaust gas treatment equipment as described in claim 1, characterized in that: The stabilizing component includes a mounting base and a drive rod. The mounting base is fixedly connected to the movable base and is located on one side of the movable base. The drive rod is threadedly connected to the mounting base and slidably connected to the movable base.
5. The zeolite rotor exhaust gas treatment equipment as described in claim 4, characterized in that: The stabilizing component also includes an abutment panel, which is fixedly connected to the drive rod and located on one side of the drive rod.
Citation Information
Patent Citations
Zeolite rotating wheel waste gas treatment device
CN221964889U