CN-224215130-U - Gas purification compression storage tank
Abstract
The utility model discloses a gas purifying and compressing storage tank, which belongs to the technical field of gas purifying and comprises a storage tank body and a filler arranged in the storage tank body, wherein a feed pipe is communicated above the storage tank body, a rotating shell and a dislocation plate arranged in the storage tank body are arranged below the feed pipe, so that workers can conveniently debug the rate of gas entering the storage tank body, the gas with different properties can fully contact with the filler in the storage tank body, the purifying effect is improved, the gas entering the storage tank body can be uniformly distributed by utilizing the rotating shell with a semicircular gas outlet end and gradually increased gas outlet hole angle from inside to outside, the contact effect of the gas and the filler is improved, and the rotating shell can be rotated and downward distributed to the gas by arranging an outer cover and the rotating shell and matching with a motor, so that the diffusion range of the gas can be improved, the contact effect of the gas and the filler can be improved, and the purifying quality of the gas can be improved.
Inventors
- FAN LINGLING
- CAO HONGJUN
Assignees
- 江苏中科机械有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250513
Claims (8)
- 1. The gas purifying and compressing storage tank comprises a storage tank body (1) and a filler (2) arranged in the storage tank body, and is characterized in that a feed pipe (3) is communicated above the storage tank body (1); The dispersing assembly (4) is arranged at the discharge end of the feeding pipe (3); Wherein, dispersion subassembly (4) are including setting up in rotation shell (402) of inlet pipe (3) below, the interior below of rotation shell (402) is provided with dislocation board (403).
- 2. The gas purifying compressed tank according to claim 1, wherein the dispersion assembly (4) further comprises a housing (401) communicating with the lower end of the feed pipe (3), the rotary shell (402) being provided in the housing (401), the diameter of the rotary shell (402) being identical to the inner diameter of the housing (401).
- 3. The gas purifying and compressing tank according to claim 1, wherein the inner lower side of the rotary shell (402) and the surface of the dislocation plate (403) are provided with dispersion holes, and the diameters of the two sets of dispersion holes are identical.
- 4. The gas purifying and compressing tank according to claim 1, wherein the plurality of dispersion holes are provided in an annular array, and the angles of the dispersion holes are gradually increased from inside to outside.
- 5. The gas purifying and compressing tank according to claim 2, wherein the motor (405) is disposed on one side above the housing (401) and on the inner wall of the rotating shell (402), a gear is disposed at the output end of the motor (405), and a gear ring is disposed on the surface of the gear, and two gear rings are disposed on the inner walls of the rotating shell (402) and the dislocation plate (403) respectively.
- 6. The gas purifying and compressing tank according to claim 1, wherein the inner lower side of the rotating shell (402) and the dislocation plate (403) are both semicircular, and the dislocation plate (403) is in a fitting design with the inner lower side of the rotating shell (402).
- 7. The gas purifying and compressing storage tank according to claim 2, wherein the inner walls of the outer cover (401) and the driving shell are provided with sliding grooves (404), sliding strips (406) are connected in the sliding grooves (404) in a sliding manner, and the two groups of sliding strips (406) are respectively arranged on the surfaces of the rotating shell (402) and the dislocation plate (403).
- 8. A gas purifying compressed tank according to claim 1, wherein the feed pipe (3), the rotating shell (402) and the dislocation plate (403) are all co-axial.
Description
Gas purification compression storage tank Technical Field The utility model relates to the technical field of gas purification, in particular to a gas purification compression storage tank. Background Gas cleaning is a process of removing harmful substances such as sulfides, nitrogen oxides, and particulates from a gas by various technical means. The gas purifying compression accumulator tank combines the gas storing and purifying functions, can store the treated gas effectively, further purify the gas through adsorption, chemical reaction or filtering and other methods to ensure that harmful substances are removed to the minimum level, and in the gas purifying process, the gas is conveyed into the gas purifying compression accumulator tank through a pipeline and contacts with the filler in the accumulator tank. After traditional gas enters the storage tank, because the caliber of an air inlet pipe of the storage tank is smaller than the diameter of the tank body, the gas is easy to accumulate and stay in the storage tank after entering the storage tank, and the gas flow is easy to be uneven, so that partial gas cannot fully contact with the filler, and the air purification efficiency is affected. Based on this, the present utility model has devised a gas purifying compression tank to solve the above-mentioned problems. Disclosure of utility model In view of the above-mentioned shortcomings of the prior art, the present utility model provides a gas purifying compression tank. In order to achieve the above purpose, the utility model is realized by the following technical scheme: The gas purifying and compressing storage tank comprises a storage tank body and a filler arranged in the storage tank body, wherein a feed pipe is communicated above the storage tank body; the dispersing assembly is arranged at the discharge end of the feeding pipe; The dispersing assembly comprises a rotating shell arranged below the feeding pipe, and a dislocation plate is arranged below the inner part of the rotating shell; Further, the dispersing assembly further comprises an outer cover communicated with the lower end of the feeding pipe, the rotating shell is arranged in the outer cover, and the diameter of the rotating shell is consistent with the inner diameter of the outer cover; further, the inner lower part of the rotating shell and the surface of the dislocation plate are provided with dispersing holes, and the calibers of the two groups of dispersing holes are consistent; further, the plurality of the dispersing holes are arranged in an annular array, and the angles of the dispersing holes are gradually increased from inside to outside; Furthermore, a motor is arranged on one side above the outer cover and the inner wall of the rotating shell, a gear is arranged at the output end of the motor, a gear ring is arranged on the surface of the gear, and two gear rings are arranged and are respectively arranged on the inner walls of the rotating shell and the dislocation plate; Furthermore, the inner lower part of the rotating shell and the dislocation plate are both semicircular, and the dislocation plate is in fit design with the inner lower part of the rotating shell; Furthermore, the inner walls of the outer cover and the driving shell are provided with sliding grooves, sliding strips are connected in the sliding grooves in a sliding manner, and the two groups of sliding strips are respectively arranged on the surfaces of the rotating shell and the dislocation plate; further, the feeding pipe, the rotating shell and the dislocation plate are all positioned on the same axis; Advantageous effects 1. The rotating shell and the dislocation plate inside the rotating shell are arranged below the feeding pipe, so that a worker can conveniently debug the speed of gas entering the storage tank body, the gas with different properties can fully contact with the filler in the storage tank body, the purifying effect is improved, meanwhile, the gas entering the storage tank body is uniformly distributed by utilizing the rotating shell with the semicircular gas outlet end and the gradually increased angle of the gas outlet hole from inside to outside, and the contact effect of the gas and the filler is improved; 2. Through setting up dustcoat and rotating the shell and cooperation motor, can make to rotate the shell rotatory and to gaseous downwardly distributed, can improve gaseous diffusion scope, improve the contact effect of gas and filler, also can promote gaseous purification quality simultaneously. Drawings In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below. It is evident that the drawings in the following description are only some embodiments of the present utility model and that other drawings may be obtained from these drawings without inventive effo