Resin adsorption tank structure
By forming a transverse square tube and flat iron, the vertical columns form a longitudinal support, which solves the problem of low structural strength of the resin adsorption tank body and easy corrosion at the connection, achieving higher service life and structural stability.
Patent Information
- Application Number
- CN202422540180.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-21
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-21
AI Technical Summary
The load-bearing components of the existing resin adsorption tank body have simple structure, low structural strength, and are prone to corrosion at the connections, and have a short service life.
The staggered square pipe and flat iron are used to form horizontal support, and the columns are formed into longitudinal support, which increases the strength of the load-bearing structure, and a protective structure is installed at the connection between the tank and the square pipe to delay corrosion.
It improves the structural strength of the load-bearing structure, extends the service life, and prevents corrosion at the connection.
Smart Images

Figure CN223221224U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of waste gas treatment, in particular to a resin adsorption tank structure. Background Art
[0002] The primary function of a resin adsorption tank is to absorb harmful substances from exhaust gases using a resin adsorbent, effectively removing pollutants and purifying the environment. Resin adsorption technology operates based on the interaction between active groups on the resin surface and target substances in solution. Through physical adsorption, chemical adsorption, or ion exchange, it achieves efficient adsorption and separation of target substances. This technology is particularly effective for treating high-volume, low-concentration exhaust gases or wastewater.
[0003] However, the existing resin adsorption tank body often has a relatively simple load-bearing component structure for placing the adsorption resin, and often only has lateral support force, resulting in low structural strength. At the same time, the connection between the load-bearing component and the tank body is easily corroded, resulting in a short service life. Utility Model Content
[0004] The purpose of the utility model is to provide a resin adsorption tank structure, which can form a horizontal support through staggered square tubes and flat irons, and a longitudinal support through columns, thereby improving the structural strength of the load-bearing structure, and by installing a protective structure at the connection between the tank body and the square tube, delaying the corrosion time of the connection structure, increasing the service life, and solving the problems raised by the above technical background.
[0005] In order to achieve the above-mentioned purpose, the present invention provides the following technical solutions: a resin adsorption tank structure, comprising: a tank body, wherein the top center and the bottom center of the tank body are respectively provided with an air outlet and an air inlet, and the interior of the tank body is provided with a water and air distribution pipe, an interception net and two load-bearing nets, wherein the water and air distribution pipe is located above the interception net, and the interception net is located above the two load-bearing nets, and the load-bearing net is composed of a square tube, a flat iron, a column, a flange connecting plate, a screen, a pressure strip and a screw, and the six square tubes are arranged in a group of three at equal distances, and two groups are provided. They are arranged horizontally and vertically respectively, and a number of flat irons are equidistant and staggered between the two groups of square tubes. Columns are installed on both sides of the bottom end of the horizontal group of square tubes. The two groups of columns of the two load-bearing nets are respectively connected to the top of the load-bearing net below and the tank body. A flange connecting plate is integrally formed at the joint of the tank body and the square tube. A screen is provided above the flange connecting plate. A pressure strip is provided above the screen. The pressure strip is connected to the square tube by screws passing through the screen and the flange connecting plate. Adsorption resin is provided above the load-bearing net.
[0006] Preferably, a steam inlet is provided on one side of the top of the tank body, and a water spray inlet and a compressed air inlet are provided on the other side of the top of the tank body, and the water spray inlet and the compressed air inlet are connected together.
[0007] Preferably, a water spray outlet is provided on one side of the air inlet, and a steam and compressed air outlet is provided on the other side of the air inlet.
[0008] Preferably, the steam inlet, the water spray inlet and the compressed air inlet are respectively connected to two sides of the water and air distribution pipes.
[0009] Preferably, a plurality of corbel brackets are equidistantly installed on the lower outer side of the tank body.
[0010] Preferably, two feeding ports are provided on one side of the tank body, and two discharging ports are provided on the other side of the tank body.
[0011] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0012] The exhaust gas is discharged through the air inlet, and the exhaust gas is adsorbed and purified by the adsorption resin on the load-bearing net, and then the remaining particles in the exhaust gas are intercepted by the interception net. The purified particles are discharged from the tank through the air outlet. When cleaning is required, water and air are evenly distributed in the tank through the water and air distribution pipes;
[0013] The load-bearing net is connected to the tank body by screws connecting the pressure strips, screens, flange connection plates and square tubes. The horizontal and vertically arranged square tubes are combined with staggered flat irons to form the load-bearing net. The load-bearing net is supported vertically by columns to increase the structural strength of the load-bearing net. The screen blocks particulate matter in the exhaust gas from entering the connection between the flange connection plate and the square tube, preventing the connection from being corroded.
[0014] The resin adsorption tank structure can form horizontal supports through staggered square tubes and flat irons, and vertical supports through columns, thereby improving the structural strength of the load-bearing structure. In addition, by installing a protective structure at the connection between the tank body and the square tube, the corrosion time of the connection structure is delayed, thereby increasing the service life. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a structural diagram of the utility model;
[0016] Figure 2 This is a large sample drawing of the water and air distribution pipes for this application;
[0017] Figure 3 It is a top view of the utility model;
[0018] Figure 4 This is a large sample drawing of the load-bearing net of the utility model;
[0019] Figure 5 For this utility model Figure 4 Large sample picture at the middle DD;
[0020] Figure 6 For this utility model Figure 5 Enlarged view of point A in the middle;
[0021] Figure 7 It is a bottom view of the present utility model.
[0022] The reference numerals and names in the figures are as follows:
[0023] 100. Tank body; 110. Feed inlet; 120. Discharge port; 130. Air outlet; 140. Air inlet; 150. Steam inlet; 160. Water spray inlet; 170. Compressed air inlet; 180. Water spray outlet; 190. Steam and compressed air outlet; 200. Water and air distribution pipes; 300. Intercepting net; 400. Load-bearing net; 410. Square tube; 420. Flat iron; 430. Column; 440. Flange connecting plate; 450. Screen; 460. Pressure strip; 470. Screws; 500. Corbel bracket; 600. Safety pressure relief vent. DETAILED DESCRIPTION
[0024] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0025] Example 1
[0026] See also Figures 1 to 7, the utility model provides an embodiment: a resin adsorption tank structure, comprising: a tank body 100, the top center and the bottom center of the tank body 100 are respectively provided with an air outlet 110 and an air inlet 120, the interior of the tank body 100 is connected with a water and air distribution pipe 200, an interception net 300 and two load-bearing nets 400 by bolts, the water and air distribution pipe 200 is located above the interception net 300, the interception net 300 is located above the two load-bearing nets 400, the load-bearing net 400 is composed of a square tube 410, a flat iron 420, a column 430, a flange connecting plate 440, a screen 450, a pressure strip 460 and a screw 470, the six square tubes 410 are equidistantly arranged in a group of three, and the two groups are respectively along Arranged horizontally and vertically, a number of flat irons 420 are equidistant and staggered between the two groups of square tubes 410. Columns 430 are installed on both sides of the bottom end of the horizontal group of square tubes 410. The two groups of columns 430 of the two load-bearing nets 400 are respectively connected to the top of the load-bearing net 400 below and the tank body 100. A flange connecting plate 440 is integrally formed at the junction of the tank body 100 and the square tube 410. A screen 450 is provided above the flange connecting plate 440. A pressure strip 460 is provided above the screen 450. The pressure strip 460 is threadedly connected to the square tube 410 by screws 470 that pass through the screen 450 and the flange connecting plate 440. An adsorption resin is provided above the load-bearing net 400.
[0027] The tank body 100 is used to provide a place for adsorbing exhaust gas, the air outlet 110 is used to discharge the adsorbed exhaust gas, the air inlet 120 is used to introduce unadsorbed exhaust gas, the water and air distribution pipe 200 is used to evenly distribute water and air in the tank body 100, the interception net 300 is used to block the remaining particulate matter in the exhaust gas, the load-bearing net 400 is used to hold the adsorption resin, the square tube 410 is used to fix the flat iron 420, and the flat iron 420 is used to cooperate with the square tube 410 to provide support and load-bearing functions, the column 430 is used to support the square tube 410 and provide vertical support force, the flange connecting plate 440 is used to connect the tank body 100 and the square tube 410, the screen 450 is used to prevent particulate matter from entering the connection between the flange connecting plate 440 and the square tube 410, the pressure strip 460 is used to fix the screen 450, and the screw 470 is used to connect the pressure strip 460, the screen 450, the flange connecting plate 440 and the square tube 410.
[0028] During specific use, the exhaust gas is discharged through the air inlet 120, and the exhaust gas is adsorbed and purified by the adsorption resin on the load-bearing net 400. The remaining particles in the exhaust gas are then intercepted by the interception net 300. The purified particles are discharged from the tank body 100 through the air outlet 110. When cleaning is required, water and air are evenly distributed in the tank body 100 through the water and air distribution pipe 200.
[0029] The pressure strip 460, the screen 450, the flange connecting plate 440 and the square tube 410 are connected by screws 470 to connect the load-bearing net 400 and the tank body 100. The square tubes 410 arranged horizontally and vertically cooperate with the staggered flat irons 420 to form the load-bearing net 400, and the load-bearing net 400 is vertically supported by the columns 430 to increase the structural strength of the load-bearing net 400. The screen 450 is used to block particulate matter in the exhaust gas from entering the connection between the flange connecting plate 440 and the square tube 410, thereby preventing the connection from being corroded.
[0030] Example 2
[0031] See also Figures 1 to 7 The present invention proposes a resin adsorption tank structure. Compared with the first embodiment, this embodiment further includes:
[0032] A steam inlet 150 is provided on one side of the top of the tank body 100, and a water spray inlet 160 and a compressed air inlet 170 are provided on the other side of the top of the tank body 100, and the water spray inlet 160 and the compressed air inlet 170 are connected together;
[0033] The steam inlet 150 is used to introduce steam, the water spray inlet 160 is used to introduce tap water, and the compressed air inlet 170 is used to introduce compressed air;
[0034] Steam is introduced through the steam inlet 150 to desorb the adsorbent resin in the tank body 100, and after desorption, compressed air is introduced through the compressed air inlet 170 for purging;
[0035] Tap water is introduced through the water spray inlet 160 to spray the desorbed adsorption resin in the tank body 100, and compressed air is introduced through the compressed air inlet 170 to purge after spraying.
[0036] A water spray outlet 180 is provided on one side of the air inlet 120 , and a steam and compressed air outlet 190 is provided on the other side of the air inlet 120 ;
[0037] The water spray outlet 180 is used to discharge the tap water for spraying, and the steam and compressed air outlet 190 is used to discharge the steam and compressed air;
[0038] The tap water after spraying is discharged from the tank body 100 through the water spray outlet 180 , and the desorbed steam, compressed air and compressed air after spraying are discharged from the tank body 100 through the steam and compressed air outlet 190 .
[0039] The steam inlet 150, the water spray inlet 160 and the compressed air inlet 170 are respectively connected to the two sides of the water and air distribution pipe 200 by bolts;
[0040] The steam, tap water and compressed air introduced into the steam inlet 150 , the water spray inlet 160 and the compressed air inlet 170 are evenly distributed into the tank body 100 through the water and air distribution pipes 200 .
[0041] Four corbel brackets 500 are equidistantly connected to the lower outer portion of the tank body 100 by bolts;
[0042] The bracket 500 is used to support the tank body 100;
[0043] The tank body 100 is stably supported on the ground by the corbel bracket 500 .
[0044] Two feeding ports 130 are provided on one side of the tank body 100, and two discharging ports 140 are provided on the other side of the tank body 100;
[0045] The feed port 130 is used to introduce the adsorption resin, and the discharge port 140 is used to discharge the adsorption resin;
[0046] The adsorption resin is placed on the load-bearing net 400 through the feed port 130 , and is taken out through the discharge port 140 for replacement.
[0047] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the present invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be encompassed within the present invention. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
Claims
1. A resin adsorption tank structure, characterized in that: include: A tank body (100), wherein the center of the top end and the center of the bottom end of the tank body (100) are respectively provided with an air outlet (110) and an air inlet (120); a water and air distribution pipe (200), an interception net (300) and two load-bearing nets (400) are installed inside the tank body (100); the water and air distribution pipe (200) is located above the interception net (300); the interception net (300) is located above the two load-bearing nets (400); the load-bearing net (400) is composed of a square tube (410), a flat iron (420), a column (430), a flange connecting plate (440), a screen (450), a pressure strip (460) and a screw (470); the six square tubes (410) are arranged in a group of three at equal distances, and the two groups are arranged in the horizontal direction and the vertical direction respectively, and the two groups of square tubes are arranged in a group of three at equal distances. A plurality of flat irons (420) are equidistantly and staggeredly arranged between the square tubes (410), and columns (430) are installed on both sides of the bottom end of a horizontal group of square tubes (410). The two groups of columns (430) of the two load-bearing nets (400) are respectively connected to the top of the load-bearing net (400) below and the tank body (100). A flange connecting plate (440) is integrally formed at the joint between the tank body (100) and the square tube (410). A screen (450) is arranged above the flange connecting plate (440), and a pressure strip (460) is arranged above the screen (450). The pressure strip (460) is connected to the square tube (410) by screws (470) passing through the screen (450) and the flange connecting plate (440). Adsorption resin is arranged above the load-bearing net (400).
2. The resin adsorption tank structure according to claim 1, characterized in that: A steam inlet (150) is provided on one side of the top of the tank body (100), and a water spray inlet (160) and a compressed air inlet (170) are provided on the other side of the top of the tank body (100), and the water spray inlet (160) and the compressed air inlet (170) are connected together.
3. The resin adsorption tank structure according to claim 1, characterized in that: A water spray outlet (180) is provided on one side of the air inlet (120), and a steam and compressed air outlet (190) is provided on the other side of the air inlet (120).
4. The resin adsorption tank structure according to claim 2, characterized in that: The steam inlet (150), the water spray inlet (160) and the compressed air inlet (170) are respectively connected to two sides of the water and air distribution pipe (200).
5. The resin adsorption tank structure according to claim 1, characterized in that: A plurality of corbel brackets (500) are equidistantly installed on the lower outer side of the tank body (100).
6. The resin adsorption tank structure according to claim 1, characterized in that: Two feeding ports (130) are provided on one side of the tank body (100), and two discharging ports (140) are provided on the other side of the tank body (100).