Multistage treatment device for inositol waste gas
By designing a multi-stage treatment device for inositol waste gas, and using the structural optimization of the spray assembly and filter assembly, the problem of high labor intensity for replacing the filter material of the spray tower and the activated carbon filter element need to be shut down, achieving higher convenience and efficiency of use.
Patent Information
- Application Number
- CN202422273610.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-18
AI Technical Summary
In the existing multi-stage treatment device for inositol waste gas, the labor intensity of replacing the filter material of the spray tower is high, and the replacement of the activated carbon filter element requires shutdown, resulting in a decrease in the convenience of use.
A multi-stage treatment device for inositol waste gas is designed, including a top cover, a spray assembly, a receiving base and a filter assembly. It facilitates material addition and removal through feeding pipes, discharge pipes and control valves. The waste gas is treated with water connection pipes, and the waste gas is filtered through the support cylinder and filter element, achieving the convenience of activated carbon replacement.
It improves the convenience and efficiency of the inositol waste gas treatment device, and reduces the difficulty and downtime of replacing activated carbon.
Smart Images

Figure CN223127644U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of inositol waste gas treatment, in particular to a multi-stage treatment device for inositol waste gas. Background Technique
[0002] Inositol is widely distributed in animals and plants and is a growth factor for animals and microorganisms. It was first isolated from the myocardium and liver and can be extracted from corn steep liquor. It is mainly used to treat cirrhosis, hepatitis, fatty liver, high blood cholesterol and other diseases. Inositol is a substance widely present in food and has a structure similar to glucose. Inositol is widely distributed in animals and plants and is a growth factor for animals and microorganisms. Inositol production, like most chemical drugs, will generate organic waste gas, so it is necessary to treat the waste gas of inositol.
[0003] Therefore, most of the existing multi-stage treatment devices for inositol waste gas are provided with a spray tower and a filter box. The material receiving platform of the spray tower is often large and the material distribution is relatively fixed. When replacing, the labor requirements for employees are relatively high, and the activated carbon filter element of the filter box often needs to be replaced after the machine is shut down, resulting in a decrease in the use convenience of the multi-stage treatment device for inositol waste gas.
[0004] Therefore, aiming at the high difficulty and low efficiency of replacing the materials inside the spray tower and the filter box of the existing multi-stage treatment device for inositol waste gas, a multi-stage treatment device for inositol waste gas can be designed to facilitate the replacement of filter materials and the replacement of activated carbon, so as to reduce the replacement difficulty and improve the use efficiency. Content of the Utility Model
[0005] In order to overcome the problem that in the process of inositol waste gas treatment, because most of the existing multi-stage treatment devices for inositol waste gas are provided with a spray tower and a filter box, the labor intensity of replacing the filter material of the spray tower is relatively large, and the replacement of the activated carbon filter element of the filter box often requires the machine to be shut down first, resulting in a decrease in the use convenience of the multi-stage treatment device for inositol waste gas.
[0006] The technical solution of the utility model is: a multi-stage treatment device for inositol waste gas, including a top cover, a spray component, a receiving base, and a filtering component; the spray component includes three vertically stacked support frames; a feeding pipe for stacking materials is fixedly connected to the front end of the support frame; a discharging pipe for unloading materials is arranged at one end of the feeding pipe; first control valves for sealing are installed on the outer sides of the feeding pipe and the discharging pipe; spray frames are arranged at the upper ends of the support frames; a water connection pipe is arranged at the rear end of the spray frame; placing plates for placing materials are installed at the lower ends of the support frames; the feeding pipe, the discharging pipe and the first control valves are used to conveniently add and take out the treatment materials on the placing plate, and the water connection pipe is used to supply water to the spray frame to facilitate the treatment of waste gas.
[0007] Preferably, a spray component is provided to access inositol waste gas and perform preliminary treatment; a receiving base is provided to receive the waste liquid generated by filtration and facilitate the support of the remaining components; a filtering component is provided to filter the waste gas and improve the efficiency of activated carbon replacement.
[0008] As a preference, a blocking block is fixedly connected to the front end of the inner side of the support frame; a rotating frame is provided at the upper end of the placement plate; an adjusting plate for holding the filtering material is rotatably connected to the outer side of the rotating frame through a rotating shaft; a connecting elastic sheet is installed between the adjusting plate and the rotating frame; a support pulley is rotatably connected to the outer side of the adjusting plate through a rotating shaft; by driving the adjusting plate and the connecting elastic sheet to rotate through the rotating frame, it is convenient to dial and evenly distribute the treatment material, thereby improving the loading and unloading efficiency.
[0009] As a preference, a top cover is installed at the upper end of the support frame at the upper end; a connecting pipe is installed at the upper end of the top cover; a receiving base is installed at the lower end of the support frame at the lower end; an air inlet pipe for accessing inositol waste gas is installed at the front end of the receiving base; the inositol waste gas is concentrated through the top cover and the connecting pipe, and the waste water generated by treating the waste gas is received through the receiving base, so as to be discharged by a liquid pump.
[0010] As a preference, a liquid pump for discharging the waste liquid is installed at the rear end of the receiving base; a protective plate is provided at the upper end of the liquid pump; a flow dividing frame is fixedly connected to the inner side of the receiving base; a motor is installed inside the flow dividing frame; a rotating frame is installed on the rotating shaft of the motor through a coupling; the waste water is divided by the flow dividing frame to protect the motor, and the motor is used to drive the rotating frame to rotate, so as to facilitate dialing the treatment material.
[0011] As a preference, one end of the connecting pipe is rotatably connected to a gas collecting frame through a rotating joint; a second control valve is installed on the gas collecting frame; an air outlet pipe is estimated at one end of the gas collecting frame; a filtering component is installed at the lower end of the gas collecting frame; the filtered inositol waste gas is concentrated through the gas collecting frame, so as to be discharged through the air outlet pipe.
[0012] As a preference, the filtering component includes a support cylinder for guiding inositol waste gas; a flow dividing plate for dividing the waste gas is fixedly connected to the outer side of the support cylinder; a support base is installed at the lower end of the support cylinder; a communication hole is opened at the upper end of the support base; the waste gas is guided through the support cylinder and the flow dividing plate, so as to filter inositol by using a storage frame and a filter element.
[0013] As a preference, a third control valve is provided on the support base; a rotating seat is installed on the outer side of the support base; an installation frame is rotatably connected to the rotating seat through a rotating shaft; a storage frame is installed on the installation frame through bolts; a filter element is arranged inside the storage frame; the flow path of the waste gas is controlled through the second control valve and the third control valve, so as to drive the storage frame to move through the rotating seat and the installation frame, thereby facilitating the replacement of the activated carbon.
[0014] Beneficial effects of the utility model:
[0015] 1. Inositol waste gas is connected by setting a placement table and a spray pipe, and preliminarily treated, and the waste liquid generated by filtration is received by a centralized table, and the waste gas is filtered through a filter, and the efficiency of activated carbon replacement is improved to solve the problem that in the process of inositol waste gas treatment, most of the existing multi-stage treatment devices for inositol waste gas are equipped with a spray tower and a filter box, and the labor intensity of replacing the filter material of the spray tower is relatively large, and the replacement of the activated carbon filter element of the filter box often requires shutdown first, resulting in a decrease in the convenience of using the multi-stage treatment device for inositol waste gas;
[0016] 2. By setting a support frame, a placement plate and a receiving base, it is convenient to add and remove the treatment materials on the placement plate through the feeding pipe, the discharging pipe and the first control valve, and use the water pipe to supply water to the spray rack to treat the waste gas, and use the diversion rack to divert the waste water to protect the motor, so that the waste water generated by the waste gas treatment can be received by the receiving base and discharged by the liquid pump, and the rotating frame can be driven by the motor to rotate, so that the adjusting plate and the connecting spring can be driven to rotate by the rotating frame, so as to move and evenly arrange the treatment materials, thereby improving the convenience of use of the multi-stage treatment device of the inositol waste gas to a certain extent;
[0017] 3. By setting up a gas collecting rack, a support tube and a storage frame, the inositol waste gas can be concentrated through the top cover and the connecting pipe, and the waste gas is guided through the support tube and the diverter plate, so that the storage frame and the filter element can be used to filter the inositol, so that the filtered inositol waste gas can be concentrated by the gas collecting rack and discharged through the outlet pipe. At the same time, the flow path of the waste gas is controlled by the second control valve and the third control valve, so that part of the storage frame does not filter the inositol waste gas, so that the storage frame is driven to move through the rotating seat and the mounting frame to facilitate the replacement of activated carbon, thereby improving the use efficiency and convenience of the entire multi-stage treatment device for inositol waste gas. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 What is shown is a schematic diagram of the structure of a multi-stage treatment device for inositol waste gas of the utility model;
[0019] Figure 2 What is shown is a schematic diagram of the structure of a spray assembly of a multi-stage treatment device for inositol waste gas of the utility model;
[0020] Figure 3 Shown is a schematic diagram of the top cover structure of a multi-stage treatment device for inositol waste gas of the utility model;
[0021] Figure 4 Shown is a schematic diagram of a receiving base structure of a multi-stage treatment device for inositol waste gas of the utility model;
[0022] Figure 5 The figure shows a schematic structural diagram of a gas collection rack of a multi-stage treatment device for inositol waste gas of the present utility model.
[0023] Figure 6 The figure shows a schematic structural diagram of a filter assembly of a multi-stage treatment device for inositol waste gas of the present utility model.
[0024] Description of reference numerals: 2, top cover; 3, connecting pipe; 4, receiving base; 5, air inlet pipe; 6, liquid pump; 7, enclosing plate; 8, shunt rack; 9, motor; 10, gas collection rack; 11, second control valve; 12, air outlet pipe; 101, support frame; 102, feeding pipe; 103, discharging pipe; 104, first control valve; 105, spray rack; 106, placing plate; 107, blocking block; 108, rotating rack; 109, adjusting plate; 110, connecting spring piece; 111, support pulley; 1301, support cylinder; 1302, shunt plate; 1303, support base; 1304, communication hole; 1305, third control valve; 1306, rotating seat; 1307, mounting rack; 1308, storage box; 1309, filter element. Detailed implementation manners
[0025] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0026] Please refer to Figures 1-6, the present utility model provides an embodiment: a multi-stage treatment device for inositol waste gas, which includes a top cover 2, a spraying assembly, a receiving base 4, and a filtering assembly; the spraying assembly includes three vertically stacked support frames 101; a feeding pipe 102 for stacking materials is fixedly connected to the front end of the support frame 101; a discharging pipe 103 for unloading materials is arranged at one end of the feeding pipe 102; first control valves 104 for sealing are installed on the outer sides of the feeding pipe 102 and the discharging pipe 103; spraying frames 105 are arranged at the upper ends of the support frames 101; a water receiving pipe is arranged at the rear end of the spraying frame 105; placing plates 106 for placing materials are installed at the lower ends of the support frames 101; a blocking block 107 is fixedly connected to the front end inside the support frame 101; a rotating frame 108 is arranged at the upper end of the placing plate 106; an adjusting plate 109 for filtering materials is rotatably connected to the outside of the rotating frame 108 through a rotating shaft; a connecting elastic sheet 110 is installed between the adjusting plate 109 and the rotating frame 108; a support pulley 111 is rotatably connected to the outside of the adjusting plate 109 through a rotating shaft; the feeding pipe 102, the discharging pipe 103 and the first control valve 104 are used to conveniently add and remove the treatment materials on the placing plate 106, and the water receiving pipe is used to supply water to the spraying frame 105 to facilitate the treatment of waste gas; the rotating frame 108 drives the adjusting plate 109 and the connecting elastic sheet 110 to rotate, so as to dial and evenly distribute the treatment materials, thereby improving the loading and unloading efficiency.
[0027] Please refer to Figures 5-6 , in this embodiment, the filtering assembly includes a support cylinder 1301 for guiding inositol waste gas; a flow dividing plate 1302 for diverting waste gas is fixedly connected to the outside of the support cylinder 1301; a support base 1303 is installed at the lower end of the support cylinder 1301; a communication hole 1304 is opened at the upper end of the support base 1303; a third control valve 1305 is arranged on the support base 1303; a rotating seat 1306 is installed on the outside of the support base 1303; a mounting frame 1307 is rotatably connected to the rotating seat 1306 through a rotating shaft; a storage frame 1308 is installed on the mounting frame 1307 through bolts; a filter element 1309 is arranged inside the storage frame 1308; the support cylinder 1301 and the flow dividing plate 1302 are used to guide waste gas, so as to filter inositol by using the storage frame 1308 and the filter element 1309; the second control valve 11 and the third control valve 1305 are used to control the flow path of waste gas, so as to drive the storage frame 1308 to move through the rotating seat 1306 and the mounting frame 1307, thereby facilitating the replacement of activated carbon.
[0028] Please refer to Figures 2-4, in this embodiment, a top cover 2 is installed at the upper end of the support frame 101 at the upper end; a connecting pipe 3 is installed at the upper end of the top cover 2; a receiving base 4 is installed at the lower end of the support frame 101 at the lower end; an air inlet pipe 5 for introducing inositol waste gas is installed at the front end of the receiving base 4; a liquid pump 6 for discharging waste liquid is installed at the rear end of the receiving base 4; a protective plate 7 is provided at the upper end of the liquid pump 6; a flow dividing frame 8 is fixedly connected inside the receiving base 4; a motor 9 is installed inside the flow dividing frame 8; a rotating frame 108 is installed on the rotating shaft of the motor 9 through a coupling; one end of the connecting pipe 3 is rotatably connected to a gas collecting frame 10 through a rotating joint; a second control valve 11 is installed on the gas collecting frame 10; an air outlet pipe 12 is estimated at one end of the gas collecting frame 10; a filtering component is installed at the lower end of the gas collecting frame 10; the inositol waste gas is concentrated through the top cover 2 and the connecting pipe 3, and the waste water generated by treating the waste gas is received through the receiving base 4, so as to be discharged by the liquid pump 6; the waste water is divided by the flow dividing frame 8 to protect the motor 9, and the motor 9 is used to drive the rotating frame 108 to rotate, so as to stir the materials for treatment; the filtered inositol waste gas is concentrated through the gas collecting frame 10, so as to be discharged through the air outlet pipe 12.
[0029] During the primary treatment, first, it is convenient to add the materials for treatment on the placement plate 106 through the feeding pipe 102 and the first control valve 104. Then, the motor 9 is used to drive the rotating frame 108 to rotate, so as to drive the adjusting plate 109 and the connecting elastic piece 110 to rotate through the rotating frame 108, so as to stir and evenly distribute the materials for treatment. Then, the water spray frame 105 is supplied with water through the water connection pipe to treat the waste gas, and the waste water is divided by the flow dividing frame 8 to protect the motor 9, so as to receive the waste water generated by treating the waste gas through the receiving base 4 and discharge it by the liquid pump 6. Finally, the discharge pipe 103;
[0030] During the secondary treatment, first, the inositol waste gas is concentrated through the top cover 2 and the connecting pipe 3. Then, the waste gas is guided through the support cylinder 1301 and the flow dividing plate 1302, so as to filter inositol by using the storage frame 1308 and the filter element 1309. Finally, the filtered inositol waste gas is concentrated through the gas collecting frame 10, so as to be discharged through the air outlet pipe 12. When replacing the activated carbon, the flow path of the waste gas is controlled through the second control valve 11 and the third control valve 1305, so that part of the storage frame 1308 does not filter the inositol waste gas. Then, the storage frame 1308 is driven to move through the rotating seat 1306 and the mounting frame 1307, so as to facilitate the replacement of the activated carbon.
[0031] Through the above steps, the inositol waste gas is introduced and preliminarily treated by setting the support frame 101, the placement plate 106 and the rotating frame 108; the waste liquid generated by filtration is received by setting the receiving base 4 and the gas collecting frame 10, and the rest of the components are conveniently supported; the waste gas is filtered by setting the support cylinder 1301 and the filter element 1309, and the efficiency of replacing the activated carbon is improved, so as to solve the problem that in the process of treating inositol waste gas, because most of the existing multi-stage treatment devices for inositol waste gas are equipped with spray towers and filter boxes, the labor intensity of replacing the filtering materials of the spray tower is relatively large, and the activated carbon filter blocks of the filter box often need to be shut down first, resulting in a decrease in the usability of the multi-stage treatment device for inositol waste gas.
Claims
1. A multi-stage treatment device for inositol waste gas, comprising a top cover (2); characterized in that: It also includes a spray component, a receiving base (4), and a filtering component; the spray component includes three vertically stacked support frames (101); the front end of the support frame (101) is fixedly connected with a feeding pipe (102) for stacking materials; one end of the feeding pipe (102) is provided with a discharging pipe (103) for unloading materials; first control valves (104) for sealing are installed on the outer sides of the feeding pipe (102) and the discharging pipe (103); spray racks (105) are arranged at the upper ends of the support frames (101); a water connection pipe is arranged at the rear end of the spray rack (105); placing plates (106) for placing materials are installed at the lower ends of the support frames (101).
2. The multi-stage treatment device for inositol waste gas according to claim 1, wherein: Blocking blocks (107) are fixedly installed at the front ends inside the support frames (101); a rotating frame (108) is arranged at the upper end of the placing plate (106); an adjusting plate (109) for filtering materials is rotatably connected to the outside of the rotating frame (108) through a rotating shaft; a connecting elastic sheet (110) is installed between the adjusting plate (109) and the rotating frame (108); support pulleys (111) are rotatably connected to the outside of the adjusting plate (109) through a rotating shaft.
3. The multi-stage treatment device for inositol waste gas according to claim 2, wherein: A top cover (2) is installed at the upper end of the upper support frame (101); a connecting pipe (3) is installed at the upper end of the top cover (2); a receiving base (4) is installed at the lower end of the lower support frame (101); an air inlet pipe (5) for introducing inositol waste gas is installed at the front end of the receiving base (4).
4. The multi-stage treatment device for inositol waste gas according to claim 3, characterized in that: A liquid pump (6) for discharging waste liquid is installed at the rear end of the receiving base (4); a protective plate (7) is arranged at the upper end of the liquid pump (6); a flow dividing rack (8) is fixedly connected inside the receiving base (4); a motor (9) is installed inside the flow dividing rack (8); a rotating frame (108) is installed on the rotating shaft of the motor (9) through a coupling.
5. The multi-stage treatment device for inositol waste gas according to claim 3, wherein: One end of the connecting pipe (3) is rotatably connected to a gas collecting rack (10) through a rotating joint; a second control valve (11) is installed on the gas collecting rack (10); an air outlet pipe (12) is estimated at one end of the gas collecting rack (10); a filtering component is installed at the lower end of the gas collecting rack (10).
6. The multi-stage treatment device for inositol waste gas according to claim 5, characterized in that: The filtering component includes a support cylinder (1301) for guiding inositol waste gas; a flow dividing plate (1302) for dividing the waste gas is fixedly connected to the outside of the support cylinder (1301); a support base (1303) is installed at the lower end of the support cylinder (1301); a communication hole (1304) is opened at the upper end of the support base (1303).
7. The multi-stage treatment device for inositol waste gas according to claim 6, characterized in that: A third control valve (1305) is arranged on the support base (1303); a rotating seat (1306) is installed on the outside of the support base (1303); an installation rack (1307) is rotatably connected to the rotating seat (1306) through a rotating shaft; a storage frame (1308) is installed on the installation rack (1307) through bolts; a filter element (1309) is arranged inside the storage frame (1308).