CN212017321U - Ceramic membrane tube supporting frame of desulfurization device - Google Patents

Ceramic membrane tube supporting frame of desulfurization device Download PDF

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Publication number
CN212017321U
CN212017321U CN201922477569.8U CN201922477569U CN212017321U CN 212017321 U CN212017321 U CN 212017321U CN 201922477569 U CN201922477569 U CN 201922477569U CN 212017321 U CN212017321 U CN 212017321U
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desulfurization
ceramic membrane
membrane tube
membrane
tube
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CN201922477569.8U
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Chinese (zh)
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杨生哲
田慎重
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Jiangsu Younada Environmental Technology Co ltd
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Jiangsu Younada Environmental Technology Co ltd
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Abstract

The utility model discloses a ceramic membrane tube supporting frame of a desulfurization device, which comprises a bracket, wherein a desulfurization box is arranged on the bracket; a baffle is installed through the articulated elements in the upper end of desulfurization case, through this baffle with its top space separation for the collecting chamber, below space separation is the desulfurization chamber, the upper end of collecting chamber is provided with the feed inlet, the lower extreme of desulfurization chamber is provided with the discharge gate. Be provided with alkali lye in this device ceramic tube membrane subassembly tube membrane, the gaseous ceramic tube membrane subassembly that enters into is followed the feed inlet in the collecting chamber, ooze after absorbing the sulphide via alkali lye in the tube membrane, then discharge gate discharge from the desulfurization chamber, thereby realize the flue gas, the desulfurization treatment of waste gas, and if need change ceramic desulfurization membrane tube subassembly or when inside membrane tube, only need open the baffle of locking, just can be convenient pull down ceramic tube membrane subassembly, can realize conveniently changing the membrane tube, wash the mesh of membrane tube, set up the logistics like this and change and wash the membrane tube, make desulfurization purifying effect better.

Description

Ceramic membrane tube supporting frame of desulfurization device
Technical Field
The utility model relates to a flue gas desulfurization environmental protection processing technology field, a desulphurization unit's ceramic membrane pipe braced frame specifically says so.
Background
In current desulfurization environmental protection technical field, form the spray column device through aqueous ammonia or alkali lye and carry out the desulfurization through spraying the technique among the ordinary desulfurization technique, but along with the development of science and technology, this kind of desulfurization technique is used by reducing gradually, and adopt ceramic membrane tube technique to carry out the desulfurization in the new technique, especially waste water treatment, the membrane filtration technique of ceramic membrane tube can effectually get rid of its inside granule in the waste liquid treatment, colloidal substance, organic matter etc. and more convenient, wash etc. more easily, for example, the publication number: the membrane filtration device of CN206730879U uses ceramic membrane for filtration, but this device installs the ceramic membrane module by means of fixed installation, and the installation and disassembly of the ceramic membrane module inside the frame are not very convenient, and the ceramic membrane module needs to be disassembled and then replaced when replacing the module, which results in inconvenient use.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a ceramic membrane tube supporting frame of a desulfurization device aiming at the defects of the prior art; the technical scheme is as follows:
a ceramic membrane tube supporting frame of a desulfurization device comprises a bracket, wherein a desulfurization box is arranged on the bracket; the upper end of the desulfurization box is provided with a clapboard through an articulated piece, the space above the desulfurization box is divided into a material collecting chamber through the clapboard, the space below the desulfurization box is divided into a desulfurization chamber, the upper end of the material collecting chamber is provided with a material inlet, the lower end of the desulfurization chamber is provided with a material outlet, the lower end of the desulfurization chamber is also provided with positioning grooves with uniform intervals, the clapboard is provided with a butt joint interface of a ceramic membrane tube assembly corresponding to the positioning grooves, the lower end of the corresponding ceramic membrane tube assembly is placed in the positioning grooves, and the orifice of the upper end of the ceramic membrane tube assembly is correspondingly arranged in; a lower pressing ring plate is arranged at the lower end of the partition plate and outside each butt joint interface; the lower pressure ring plate is connected with the partition plate above the lower pressure ring plate through corresponding spring parts in an installing mode, the position of the lower pressure ring plate corresponds to the position of the ceramic membrane tube assembly, an upper end orifice of the ceramic membrane tube assembly is sleeved in the lower pressure ring plate, the lower pressure ring plate correspondingly presses the upper end edge of the ceramic membrane tube assembly, and the ceramic membrane tube assembly is fixed in the desulfurization chamber through the locking partition plate.
Preferably, at least three spring pieces are arranged between the lower pressure ring plate and the partition plate, and the three spring pieces are uniformly arranged at intervals.
Preferably, stepped grooves are further formed in the two sides of the partition plate in the desulfurization box; articulated elements on the baffle are correspondingly installed on the ladder groove to sealed retaining member is correspondingly installed to the other end of baffle.
Preferably, five butt joints are arranged on the partition plate, five positioning grooves are correspondingly arranged at the bottom of the corresponding desulfurization box, and a ceramic membrane tube assembly is arranged between each butt joint and each positioning groove.
Has the advantages that: the utility model discloses following beneficial effect has: in the device, a material collecting chamber above and a desulfurizing chamber below are arranged in a desulfurizing box through a partition plate, corresponding positioning grooves and butt joints are correspondingly arranged at the bottoms of the partition plate and the desulfurizing chamber, a pressing plate is installed on the outer side of the butt joint through a spring part and a ceramic membrane tube assembly is correspondingly placed in the positioning grooves, when the partition plate is turned over, closed and locked, the butt joint of the partition plate just corresponds to an orifice of a ceramic tube membrane assembly, the orifice is clamped in the butt joint, the pressing plate on the corresponding outer side is pressed at the outer edge of the upper end of the ceramic tube membrane assembly, after the partition plate is locked, the ceramic tube membrane assembly is fixed between the partition plate and a bottom plate in a pressing mode under the pressure action of the spring part, alkali liquor is arranged in a tube membrane of the ceramic tube membrane assembly when the ceramic tube membrane assembly is used, and gas entering the material collecting chamber enters the ceramic tube membrane assembly from a, ooze after absorbing the sulphide via alkali lye in the tube membrane, then discharge from the discharge gate of desulfurization chamber, thereby realize the flue gas, the desulfurization of waste gas is handled, and if need change ceramic desulfurization membrane pipe subassembly or when inside membrane pipe, only need open the baffle of locking, just can be convenient pull down ceramic pipe membrane subassembly, can realize conveniently changing the membrane pipe, wash the purpose of membrane pipe, set up the logistics like this and change and wash the membrane pipe, make desulfurization purifying effect better.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
The present invention will be further clarified by the following embodiments with reference to the attached drawings, which are implemented on the premise of the technical solution of the present invention, and it should be understood that these embodiments are only used for illustrating the present invention and are not used for limiting the scope of the present invention.
As shown in fig. 1, a ceramic membrane tube supporting frame of a desulfurization device comprises a support 1, wherein a desulfurization box 2 is arranged on the support 1; the upper end of the desulfurization box 2 is provided with a clapboard 4 through a hinge part 3, the space above the desulfurization box is divided into a material collecting chamber 5 through the clapboard 4, the space below the desulfurization chamber is divided into a desulfurization chamber 6, the upper end of the material collecting chamber 5 is provided with a material inlet 7, the lower end of the desulfurization chamber 6 is provided with a material outlet 8, the lower end of the desulfurization chamber 6 is also provided with positioning grooves 9 with uniform intervals, the clapboard 4 is provided with a butt joint interface 11 of a ceramic membrane tube assembly 10 corresponding to the positioning grooves 9, the lower end of the corresponding ceramic membrane tube assembly 10 is arranged in the positioning grooves 9, and the orifice at the upper end of the ceramic membrane tube assembly is correspondingly arranged in the; a lower pressing ring plate 12 is arranged at the lower end of the partition plate 4 and outside each butt joint interface 11; the lower pressure ring plate 12 is connected with the partition plate 4 above the lower pressure ring plate through corresponding spring parts 13 in an installing mode, the position of the lower pressure ring plate 12 corresponds to the position of the ceramic membrane tube assembly 11, an upper end orifice of the ceramic membrane tube assembly 11 is sleeved in the lower pressure ring plate 12, the lower pressure ring plate 12 correspondingly presses the upper end edge of the ceramic membrane tube assembly 11, and the ceramic membrane tube assembly 11 is fixed in the desulfurization chamber 6 through the locking partition plate 4.
At least three spring pieces 13 are arranged between the lower pressure ring plate 12 and the partition plate 4, and the three spring pieces 13 are uniformly arranged at intervals; stepped grooves 14 are also formed in the two sides of the partition plate 4 in the desulfurization box 2; the hinge 3 on the partition plate 4 is correspondingly arranged on the stepped groove 14, and the other end of the partition plate 4 is correspondingly provided with a sealing locking piece; five butt joint interfaces 11 are arranged on the partition plate 4, five positioning grooves 9 are correspondingly arranged at the bottom of the corresponding desulfurization box 2, and a ceramic membrane tube assembly is arranged between each butt joint interface 11 and each positioning groove 9.
Set up the desulfurization chamber of the collection room and below into the top through the baffle in with the desulfurization case in this device, and the corresponding constant head tank and the butt joint interface of bottom setting of baffle and desulfurization chamber, and the spring part installation is passed through in the outside of butt joint interface and is pushed down the clamp plate, and the ceramic membrane tube subassembly is then correspondingly placed in the constant head tank, and when closing the locking with the baffle upset, the butt joint interface of baffle just in time is corresponding with the drill way of ceramic tube membrane subassembly, the drill way clamps in the butt joint interface, the lower clamp plate in corresponding outside is pressed in the upper end outside edge of ceramic tube membrane subassembly.
After the baffle locks, make ceramic pipe membrane module fix between baffle and bottom plate with the form that compresses tightly under the pressure effect of spring part, in the use, be provided with alkali lye in the pipe membrane of ceramic pipe membrane module, the gas that gets into in the collecting chamber enters into ceramic pipe membrane module from the feed inlet, ooze after absorbing the sulphide via alkali lye in the pipe membrane, then discharge from the discharge gate of desulfurization chamber, thereby realize the desulfurization treatment of flue gas, waste gas, and if need change ceramic desulfurization membrane pipe subassembly or inside membrane pipe, only need open the baffle of locking, just can be convenient pull down ceramic pipe membrane module, can realize conveniently changing the membrane pipe, wash the mesh of membrane pipe, it is in changing and washing the membrane pipe to set up the logistics like this, make desulfurization purifying effect better.
The above-mentioned embodiments are only preferred embodiments of the present invention, and are not intended to limit the scope of the invention and the appended claims, and all equivalent changes and modifications made according to the claims should be included in the scope of the present invention.

Claims (4)

1. The utility model provides a desulphurization unit's ceramic membrane pipe braced frame which characterized in that: comprises a bracket (1), wherein a desulfurization box (2) is arranged on the bracket (1); the upper end of the desulfurization box (2) is provided with a clapboard (4) through a hinge piece (3), the space above the desulfurization box is divided into a material collecting chamber (5) through the clapboard (4), the space below the desulfurization box is divided into a desulfurization chamber (6), the upper end of the material collecting chamber (5) is provided with a feeding hole (7), the lower end of the desulfurization chamber (6) is provided with a discharging hole (8), the lower end of the desulfurization chamber (6) is also provided with positioning grooves (9) with uniform intervals, the clapboard (4) is provided with a butt joint interface (11) of a ceramic membrane tube assembly (10) corresponding to the positioning grooves (9), the lower end of the corresponding ceramic membrane tube assembly (10) is placed in the positioning grooves (9), and the orifice at the upper end of the ceramic membrane tube assembly is correspondingly arranged in the butt; a lower pressing ring plate (12) is arranged at the lower end of the partition plate (4) and outside each butt joint interface (11); the lower pressure ring plate (12) is connected with the partition plate (4) above the lower pressure ring plate through a corresponding spring piece (13), the position of the lower pressure ring plate (12) corresponds to the position of the ceramic membrane tube assembly (10), an upper end orifice of the ceramic membrane tube assembly (10) is sleeved in the lower pressure ring plate (12), the lower pressure ring plate (12) is correspondingly pressed at the upper end edge of the ceramic membrane tube assembly (10), and the ceramic membrane tube assembly (10) is fixed in the desulfurization chamber (6) through the locking partition plate (4).
2. The ceramic membrane tube supporting frame of a desulfurization apparatus according to claim 1, wherein: at least three spring pieces (13) are arranged between the lower pressure ring plate (12) and the partition plate (4), and the three spring pieces (13) are evenly arranged at intervals.
3. The ceramic membrane tube supporting frame of a desulfurization apparatus according to claim 1, wherein: stepped grooves (14) are also arranged on two sides of the partition plate (4) in the desulfurization box (2); articulated elements (3) on baffle (4) are corresponding to be installed on ladder groove (14) to the other end of baffle (4) is corresponding to be installed and is sealed retaining member.
4. The ceramic membrane tube supporting frame of a desulfurization apparatus according to claim 1, wherein: five butt joint interfaces (11) are arranged on the partition plate (4), five positioning grooves (9) are correspondingly arranged at the bottom of the corresponding desulfurization box (2), and a ceramic membrane pipe assembly is arranged between each butt joint interface (11) and each positioning groove (9).
CN201922477569.8U 2019-12-31 2019-12-31 Ceramic membrane tube supporting frame of desulfurization device Active CN212017321U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922477569.8U CN212017321U (en) 2019-12-31 2019-12-31 Ceramic membrane tube supporting frame of desulfurization device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922477569.8U CN212017321U (en) 2019-12-31 2019-12-31 Ceramic membrane tube supporting frame of desulfurization device

Publications (1)

Publication Number Publication Date
CN212017321U true CN212017321U (en) 2020-11-27

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922477569.8U Active CN212017321U (en) 2019-12-31 2019-12-31 Ceramic membrane tube supporting frame of desulfurization device

Country Status (1)

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CN (1) CN212017321U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117695853A (en) * 2024-02-05 2024-03-15 山东浦创流体技术有限公司 Tubular ceramic membrane device

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117695853A (en) * 2024-02-05 2024-03-15 山东浦创流体技术有限公司 Tubular ceramic membrane device
CN117695853B (en) * 2024-02-05 2024-04-19 山东浦创流体技术有限公司 Tubular ceramic membrane device

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