CN212142021U - Activated carbon adsorption cabin - Google Patents

Activated carbon adsorption cabin Download PDF

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Publication number
CN212142021U
CN212142021U CN202020542127.7U CN202020542127U CN212142021U CN 212142021 U CN212142021 U CN 212142021U CN 202020542127 U CN202020542127 U CN 202020542127U CN 212142021 U CN212142021 U CN 212142021U
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China
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cabin
activated carbon
square steel
fixed
carbon adsorption
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CN202020542127.7U
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Chinese (zh)
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娈典赴
段丰
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Hefei Qinglifang Environmental Protection Technology Co ltd
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Hefei Qinglifang Environmental Protection Technology Co ltd
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  • Treating Waste Gases (AREA)
  • Separation Of Gases By Adsorption (AREA)

Abstract

The utility model discloses an activated carbon adsorption cabin, which belongs to the technical field of waste gas treatment and comprises an air inlet cabin, an activated carbon barrier cabin, a transition cabin and a convergence cabin, wherein the air inlet cabin is communicated with the activated carbon barrier cabin; the frame between the air inlet cabin and the activated carbon barrier cabin is made of square steel; the active carbon protective screen under-deck square steel on the symmetry seted up the fixed hook, and be provided with the operation panel between the square steel, the bearing of operation panel both ends is in the fixed hook on, the length adjustable of operation panel makes things convenient for people to use, and the fixed hook can slide from top to bottom at the square steel, through the position of bolt and fixed pin fixed operation panel, the use of giving people provides convenience, the practicality is strong.

Description

Activated carbon adsorption cabin
Technical Field
The utility model belongs to the technical field of the environmental protection waste gas is administered, specifically speaking relates to an active carbon adsorption cabin.
Background
The activated carbon adsorption cabin is applied to the technical field of environmental protection waste gas treatment, harmful gases in waste gas are mainly adsorbed by activated carbon to achieve the effect of waste gas essence, and the activated carbon has a large specific surface area, so that the activated carbon has good adsorption performance and is commonly used in the technical fields of waste gas treatment, waste water treatment and the like;
the activated carbon adsorption cabin is mainly characterized in that activated carbon is filled in a cabin, waste gas to be treated is introduced into the cabin, the waste gas enters the cabin and is adsorbed by the activated carbon, after harmful substances in the waste gas are adsorbed and removed by the activated carbon, the purified waste gas is discharged through an exhaust port of the cabin, and therefore the technical purpose of waste gas treatment is achieved;
however, the existing activated carbon adsorption cabin has the following defects in use:
because the activated carbon is filled in the cabin and forms the absorption barrier, consequently, lead to the change degree of difficulty of activated carbon great to the cabin is higher, people hardly look over the activated carbon in service behavior in eminence, and the use of giving people causes certain inconvenience.
SUMMERY OF THE UTILITY MODEL
The problem to current activated carbon adsorption under-deck people are difficult to look over eminence activated carbon in service behavior, the utility model provides an activated carbon adsorption under-deck installs the operation panel on the square steel between the activated carbon protective screen in this adsorption cabin, and the operation panel bearing makes things convenient for people to look over the in-deck eminence activated carbon's in service behavior on the fixed hook of square steel, gives people and provides convenience to solve the problem that proposes in the background art effectively.
In order to solve the above problems, the utility model adopts the following technical proposal.
An activated carbon adsorption cabin comprises an air inlet cabin and an activated carbon barrier cabin, wherein the air inlet cabin is communicated with the activated carbon barrier cabin;
the frame between the air inlet cabin and the activated carbon barrier cabin is made of square steel;
the active carbon protective screen cabin in the square steel on the symmetry seted up the fixed hook, and be provided with the operation panel between the square steel, the bearing of operation panel both ends is in the fixed hook on.
Preferably, the operating platform is a fixed plate-shaped structure.
Preferably, the operation panel include fixed station and movable table, the fixed station be both ends opening and inside hollow structure, inside movable table one end slides and extends into the fixed station, and the movable table other end extends to the fixed station outside, the movable table bearing is in the fixed hook on, the fixed station in install expanding spring, expanding spring's both ends are connected with the movable table respectively.
Preferably, the fixed table and the movable table are provided with bolt holes, and the bolt holes and the fixing pins are matched for fixing the relative positions of the fixed table and the movable table.
Preferably, an open slot is formed in one side, opposite to the square steel, of the square steel, and the fixing hook is vertically and slidably mounted on the square steel through the open slot; the fixing hook and the side wall of the square steel are provided with bolt holes, and the fixing hook is fixed on the side wall of the square steel through cooperation between the bolt holes and the fixing pins.
Preferably, still include and assemble the cabin and be located the transition cabin of active carbon barrier cabin both sides, the transition cabin respectively with active carbon barrier cabin and assemble the cabin intercommunication.
Preferably, the gathering cabin and the activated carbon barrier cabin are sealed by a carbon steel plate, and the thickness of the carbon steel plate is 2.75 mm.
Preferably, the frames of the convergence cabin and the transition cabin are also made of square steel, the size of the square steel is 40 x 40mm, and the square steel is made of galvanized steel.
Advantageous effects
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the utility model provides an active carbon adsorption cabin includes air inlet cabin, active carbon barrier cabin, transition cabin and assembles the cabin, wherein active carbon barrier cabin communicates with air inlet cabin and transition cabin respectively, transition cabin and assemble the cabin intercommunication, and adopt carbon steel sheet to seal between active carbon barrier cabin and the assembling cabin, therefore, waste gas gets into in the air inlet cabin and gets into the active carbon barrier cabin and filters, and the waste gas after the filtration gets into through the transition cabin and assembles the cabin and discharges, the utility model discloses a sealed effectual, and purification efficiency is high;
(2) the active carbon protective screen cabin is provided with the hook on the square steel, the hook is supported with the operating platform, the operating platform is used for operators to stand to observe the use condition of the active carbon particles in the active carbon protective screen, and the operation is convenient;
(3) the operating table comprises a fixed table and a movable table, and the relative position between the fixed table and the movable table can be adjusted, so that the length of the operating table can be conveniently adjusted, and people can conveniently support the operating table on the fixed hook, the operation is convenient, and the practicability is high;
(4) the utility model provides a sliding connection between fixed hook and the square steel, and it is fixed through bolt and fixed pin between fixed hook and the square steel, consequently, thereby adjust the height that highly changes the operation panel of fixed hook, make things convenient for people to adjust the position of operation panel according to the demand, it is convenient to use.
Drawings
FIG. 1 is a front view of an activated carbon adsorption capsule in example 1;
FIG. 2 is a right side view of the activated carbon adsorption compartment of example 1;
FIG. 3 is a top view of the activated carbon adsorption capsule of example 1;
FIG. 4 is a right side view of the activated carbon adsorption compartment of example 2;
FIG. 5 is a schematic view of the structure of the operation table in embodiment 2;
FIG. 6 is a schematic view of the structure of an operation table in embodiment 3;
FIG. 7 is a schematic structural view of a square steel in example 4.
The corresponding relationship between the reference numbers of the figures and the names of the components in the figures is as follows:
10. an air intake compartment; 11. an air inlet;
20. an activated carbon barrier compartment; 21. square steel; 211. a fixed hook; 212. an open slot;
30. a convergence cabin; 31. an exhaust port;
40. a transition cabin;
50. an operation table; 51. a fixed table; 52. a movable table; 53. a telescoping spring.
Detailed Description
The invention will be further described below in connection with specific embodiments.
Example 1
As shown in fig. 1 to 3, which are schematic structural diagrams of an activated carbon adsorption cabin according to a preferred embodiment of the present invention, the activated carbon adsorption cabin of this embodiment includes an air intake cabin 10 and an activated carbon barrier cabin 20, the air intake cabin 10 is communicated with the activated carbon barrier cabin 20, an air inlet 11 for waste gas to enter is formed in the air intake cabin 10, the waste gas enters the air intake cabin 10 through the air inlet 11, the waste gas enters the activated carbon barrier cabin 20 through the air intake cabin 10, and the waste gas passes through the activated carbon barrier cabin 20 and then is adsorbed by activated carbon to achieve the purpose of gas purification;
in this embodiment, the activated carbon barrier cabin 20 is filled with activated carbon particles, the activated carbon particles are honeycomb activated carbon, and the filtering area of the activated carbon barrier cabin 20 is 6.3m3
In this embodiment, the air intake chamber 10 is further provided with an explosion venting sheet; the explosion venting sheet is used for placing the activated carbon organism, so that the high temperature is avoided from being burnt due to the high temperature in the cabin, the problem of explosion is avoided, and the pressure is effectively relieved for the cabin, the explosion venting sheet in the utility model adopts the PFTA410 x 410-0.01-22 explosion sheet produced by Suzhou Anding explosion sheet manufacturing Limited company, and is the prior art, and the redundant description is not repeated in the application;
in this embodiment, the air intake chamber 10 is further provided with an inspection door for people to enter and exit and replace the activated carbon;
in this embodiment, the height of the air intake chamber 10 is 2000mm, and the inner diameter of the air intake 11 is 700 mm;
in this embodiment, activated carbon barriers are symmetrically arranged in the activated carbon barrier cabin 20, a channel for waste gas to enter is reserved between the activated carbon barriers, transition cabins 40 are symmetrically distributed on two sides of the activated carbon barrier cabin 20, the width of each transition cabin 40 is 320mm, and the length of each transition cabin 40 is 1680 mm; the waste gas enters the transition cabin 40 after being filtered by the active carbon barrier cabin 20;
in this embodiment, the activated carbon adsorption cabin further comprises a convergence cabin 30, the convergence cabin 30 is communicated with the transition cabin 40, the convergence cabin 30 and the activated carbon barrier cabin 20 are sealed by a carbon steel plate, and the thickness of the carbon steel plate is 2.75 mm;
in this embodiment, the convergence chamber 30 is further provided with an exhaust port 31, and the inner diameter of the exhaust port 31 is 700 mm; the position of the exhaust port can be determined according to the height of the fan;
in the embodiment, frames among the air intake chamber 10, the activated carbon barrier chamber 20, the convergence chamber 30 and the transition chamber 40 are all made of square steel 21, the size of the square steel 21 is 40 × 40mm, and the square steel 21 is made of galvanized steel;
as shown by the exhaust gas flow arrow in fig. 3, in this embodiment, the exhaust gas enters the intake chamber 10 through the intake port 11, enters the activated carbon barrier chamber 20 after passing through the intake chamber 10, enters the activated carbon barriers at both sides for purification and filtration through the middle passage, and enters the transition chamber 40 and then enters the convergence chamber 30 to be discharged through the exhaust port 31.
In this embodiment, in order to facilitate people to check the use condition of the activated carbon in the activated carbon barrier, the square steel 21 positioned between the activated carbon barriers in the activated carbon barrier cabin 20 is connected with a fixed hook 211, and an operation table 50 is detachably mounted between the fixed hooks 211;
in this embodiment, the operation panel 50 is a fixed plate structure, and the two ends of the operation panel 50 are supported on the fixed hooks 211, so that people can conveniently stand on the operation panel 50 to check the use condition of the activated carbon.
Example 2
As shown in fig. 4 and 5, which are schematic structural views of an operating platform 50 in an activated carbon adsorption cabin according to another preferred embodiment of the present invention, the operating platform 50 of this embodiment is a length-adjustable structure, on the basis of embodiment 1, the operating platform 50 includes a fixed platform 51 and a movable platform 52, the fixed platform 51 is a hollow structure with two open ends, one end of the movable platform 52 slides and extends into the fixed platform 51, the other end of the movable platform 52 extends to the outside of the fixed platform 51, and the movable platform 52 is supported on the fixed hook 211;
in this embodiment, the fixed table 51 is internally provided with the telescopic spring 53, and two ends of the telescopic spring 53 are respectively connected with the movable table 52, in this embodiment, the length of the movable table 52 in the fixed table 51 can be adjusted by the telescopic spring 53, so as to adjust the length of the operating table 50, and the operating table 50 is conveniently supported on the fixed hook 211;
example 3
As shown in fig. 6, which is a schematic structural view of an operating table 50 in an activated carbon adsorption cabin according to another preferred embodiment of the present invention, in the operating table 50 of this embodiment, bolt holes are formed in the fixed table 51 and the movable table 52, and bolts and fixing pins are used in cooperation to fix the relative positions of the fixed table 51 and the movable table 52.
Example 4
As shown in fig. 7, which is a schematic structural view of square bars 21 on two sides of an activated carbon barrier in an activated peptide adsorption cabin according to the present invention, in the square bar 21 of this embodiment, on the basis of any one of embodiments 1 to 3, an open slot 212 is opened on one side of the square bar 21 opposite to the open slot 212, and a fixing hook 211 is slidably installed on the square bar 21 up and down through the open slot 212;
in this embodiment, bolt holes are formed in the side walls of the fixing hook 211 and the square steel 21, and the fixing hook 211 is fixed on the side wall of the square steel 21 through the cooperation between the bolt holes and the fixing pins;
in this embodiment, can slide the position that is used for adjusting fixed hook 211 on the 21 lateral walls of square steel through fixed hook 211, make things convenient for people to adjust the height of operation panel 50 as required, convenient to use gives people and looks over the condition that the active carbon used and provides convenience.
The above description is for further details of the present invention, and it is not assumed that the embodiments of the present invention are limited to these descriptions, and it is obvious to those skilled in the art that the present invention can be implemented by a plurality of simple deductions or replacements without departing from the concept of the present invention, and all should be considered as belonging to the protection scope defined by the claims submitted by the present invention.

Claims (8)

1. An activated carbon adsorption cabin comprises an air inlet cabin (10) and an activated carbon barrier cabin (20), wherein the air inlet cabin (10) is communicated with the activated carbon barrier cabin (20);
the method is characterized in that:
the frame between the air inlet cabin (10) and the activated carbon barrier cabin (20) is made of square steel (21);
fixed hooks (211) have been seted up to the symmetry on square steel (21) in active carbon barrier cabin (20), and be provided with between square steel (21) operation panel (50), operation panel (50) both ends bearing are in fixed hook (211) on.
2. The activated carbon adsorption capsule of claim 1, wherein: the operating platform (50) is of a fixed plate-shaped structure.
3. The activated carbon adsorption capsule of claim 1, wherein: operation panel (50) including fixed station (51) and movable table (52), fixed station (51) be both ends opening and inside hollow structure, inside movable table (52) one end slides and extends into fixed station (51), and movable table (52) other end extends to the fixed station (51) outside, movable table (52) bearing is in fixed hook (211) on, fixed station (51) in install expanding spring (53), the both ends of expanding spring (53) are connected with movable table (52) respectively.
4. The activated carbon adsorption capsule of claim 3, wherein: the fixed table (51) and the movable table (52) are provided with bolt holes, and the relative positions of the fixed table (51) and the movable table (52) are fixed by matching the bolts and the fixing pins.
5. The activated carbon adsorption capsule of any one of claims 1-4, wherein: an open slot (212) is formed in one side, opposite to the square steel (21), of the square steel, and the fixed hook (211) is installed on the square steel (21) in a vertically sliding mode through the open slot (212); the fixing hook (211) and the side wall of the square steel (21) are provided with bolt holes, and the fixing hook (211) is fixed on the side wall of the square steel (21) through the cooperation between the bolt holes and the fixing pins.
6. The activated carbon adsorption capsule of claim 5, wherein: still including converging cabin (30) and lie in the transition cabin (40) of active carbon barrier cabin (20) both sides, transition cabin (40) respectively with active carbon barrier cabin (20) and converge cabin (30) intercommunication.
7. The activated carbon adsorption capsule of claim 6, wherein: the gathering cabin (30) and the activated carbon barrier cabin (20) are sealed by a carbon steel plate, and the thickness of the carbon steel plate is 2.75 mm.
8. The activated carbon adsorption capsule of claim 7, wherein: the frames of the convergence cabin (30) and the transition cabin (40) are also made of square steel (21), the size of the square steel (21) is 40 x 40mm, and the square steel (21) is made of galvanized steel.
CN202020542127.7U 2020-04-13 2020-04-13 Activated carbon adsorption cabin Active CN212142021U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020542127.7U CN212142021U (en) 2020-04-13 2020-04-13 Activated carbon adsorption cabin

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020542127.7U CN212142021U (en) 2020-04-13 2020-04-13 Activated carbon adsorption cabin

Publications (1)

Publication Number Publication Date
CN212142021U true CN212142021U (en) 2020-12-15

Family

ID=73720376

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020542127.7U Active CN212142021U (en) 2020-04-13 2020-04-13 Activated carbon adsorption cabin

Country Status (1)

Country Link
CN (1) CN212142021U (en)

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