CN202549142U - Ionic membrane electrolytic cell teaching mold - Google Patents

Ionic membrane electrolytic cell teaching mold Download PDF

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Publication number
CN202549142U
CN202549142U CN2012202047988U CN201220204798U CN202549142U CN 202549142 U CN202549142 U CN 202549142U CN 2012202047988 U CN2012202047988 U CN 2012202047988U CN 201220204798 U CN201220204798 U CN 201220204798U CN 202549142 U CN202549142 U CN 202549142U
Authority
CN
China
Prior art keywords
dividing plate
framework
ionic membrane
ion
anode
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN2012202047988U
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Chinese (zh)
Inventor
贾立军
王艳国
王少杰
王艳伟
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Tianjin Vocational Institute
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Tianjin Vocational Institute
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Publication date
Application filed by Tianjin Vocational Institute filed Critical Tianjin Vocational Institute
Priority to CN2012202047988U priority Critical patent/CN202549142U/en
Application granted granted Critical
Publication of CN202549142U publication Critical patent/CN202549142U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to an ionic membrane electrolytic cell teaching mold which comprises two supporting end plates and a plurality of unit cells. The unit cells are mounted between the two supporting end plates side by side, each unit cell comprises a frame and an ionic membrane, a partition board is manufactured in the center of each frame, an anode net and a cathode net are respectively mounted on two sides of each partition board, and each ionic membrane is clamped between the two corresponding frames. A strong brine inlet is arranged on the lower portion of a panel of the front surface of an anode chamber of each unit cell, a chlorine and light salt brine outlet is arranged on the upper portion of the panel of the front surface of the anode chamber of each unit cell, a high-purity water inlet is arranged on the lower portion of the back surface of a cathode chamber of each unit cell, and a hydrogen and sodium hydroxide outlet is arranged on the upper portion of the back surface of the cathode chamber of each unit cell. The ionic membrane electrolytic cell teaching mold is good in visual sense, high in practicality and wide in application scope, not only can be used in a class, but also can be installed in a practical training device for simulating alkali glass fired by ionic membranes. By the aid of the ionic membrane electrolytic cell teaching mold, explanation difficulty can be reduced, teaching efficiency and effect can be improved, learning interests of students can be increased, and the students can quickly understand and master knowledge.

Description

The ion-exchange membrane electrolyzer teaching mould
Technical field
The utility model relates to the teaching mould field, especially a kind of ion-exchange membrane electrolyzer teaching mould.
Background technology
Giving an oral account and write writing on the blackboard is the present more common mode of giving lessons, and when explaining the equipment of more complicated, generally will assist explanation through modes such as pictures.Drawing not only wastes time and energy, and figure is more abstract, and its auxiliaring effect is not desirable especially.Like ion-exchange membrane electrolyzer just because of its inner structure more complicated; Also be difficult to show the inner structure and the principle of work of this equipment even draw clearly; Cause the student can not fast understanding and grasp knowledge, and the hours of instruction that increased the teacher with give lessons difficulty.
Summary of the invention
The purpose of the utility model is to overcome the deficiency of prior art, provide a kind of intuitive good, can reduce hours of instruction, help the student to grasp the novel ion-exchange membrane electrolyzer teaching mould of knowledge fast.
The utility model solves its technical matters and realizes through following technical scheme:
A kind of ion-exchange membrane electrolyzer teaching mould is characterized in that: comprise and support end plate and unit groove, between two support end plates a plurality of unit grooves are installed side by side; Unit groove is made up of framework and ionic membrane, and the central authorities of framework are shaped on a dividing plate, and these dividing plate both sides are installed anode network and cathode screen respectively, accompany ionic membrane between two frameworks; The side dividing plate and the ionic membrane that are equipped with anode network constitute the anode chamber, and the side dividing plate and the ionic membrane that are equipped with cathode screen constitute cathode chamber, and anode chamber and cathode chamber constitute unit groove; Each unit groove anode chamber all makes a strong brine import in positive panel bottom, and chlorine and light salt brine outlet are all made in top; The lower backside of each unit groove cathode chamber is all made a high purity water import, and hydrogen and NaOH outlet are all made in top.
And said framework is surrounded by four panels in upper and lower, left and right, and a sway brace is all made in the outside of each framework two vertical panel; The two sides of the made dividing plate of framework central authorities all are shaped on web member, on the web member of dividing plate one side, are equipped with anode network, on the web member of dividing plate another side, are equipped with cathode screen.
And said each strong brine inlet all is communicated with a strong brine feed pipe through conduit; Each chlorine and light salt brine outlet all are communicated with chlorine and light salt brine discharge nozzle through conduit.
And said each high purity water import all is communicated with a high purity water feed pipe through conduit; Each hydrogen and NaOH outlet all are communicated with hydrogen and NaOH discharge nozzle through conduit.
And said two are supported between the end plates and connect through pull bar, and the sway brace of framework hangs on the pull bar, and two are supported the screw bolt and nut of end plate through the pull bar two ends and will hang over the framework jam-packed on the pull bar.
And the web member on framework, dividing plate, the dividing plate two sides, anode network, cathode screen, conduit, strong brine feed pipe, chlorine and light salt brine discharge nozzle, pure water feed pipe, hydrogen and NaOH discharge nozzle all are to process transparent member by transparent plastic or transparent organic glass; Ionic membrane is a filter cloth.
Advantage of the utility model and beneficial effect are:
1, this teaching mould is the teaching aid of an ion-exchange membrane electrolyzer; The shell of this teaching aid adopts transparent material to process; Therefore can see its inner structure clearly from the outside, not only make things convenient for the teacher that the inner structure and the course of work of electrolytic tank are explained, reduced teachers' instruction difficulty, improve give lessons efficient and effect; Also can make the student form perceptual knowledge, accelerated to understand knowledge speed, improved the degree of depth of study.
2, this device both can have been processed the bench model that volume is little, in light weight, be easy to carry and demonstrate, and was used for using class hour, can also process bigger single devices, was used for ion film caustic soda glass simulation training device.
3, two in this device support end plate and adopt the pull bar connection, and the pull bar two ends are fastening with bolt, nut, so it is convenient to disassembly, and can adjust the quantity of framework according to actual conditions.
4, the utility model is good, practical, the applied widely ion-exchange membrane electrolyzer teaching mould of a kind of intuitive, and this teaching aid both used separately at school the time, also can be installed in the ion film caustic soda glass simulation training device.Use this teaching aid can reduce the explanation difficulty, improve give lessons efficient and effect, increase student study interest, improve its manipulative ability, make its fast understanding and grasp knowledge.
Description of drawings
Fig. 1 is the front view of the utility model;
Fig. 2 is the right view of Fig. 1;
Fig. 3 is the positive synoptic diagram of the utility model;
Fig. 4 is the synoptic diagram at the utility model back side.
Embodiment
Through specific embodiment the utility model is done further to detail below, following examples are descriptive, are not determinate, can not limit the protection domain of the utility model with this.
A kind of ion-exchange membrane electrolyzer teaching mould; Comprise that two are supported end plate 1 and several frameworks 6; Framework is surrounded by four panels in upper and lower, left and right, and the central authorities of framework are shaped on a dividing plate 14, and the dividing plate two sides are shaped on web member 17; On dividing plate one side web member, be equipped with anode network 11, on the web member of dividing plate another side, be equipped with cathode screen 13.Between two support end plates several frameworks are installed side by side, two are supported between the end plates through 5 connections of one group of pull bar.A sway brace 4 is all made in the outside of each framework two vertical panel, and during assembling, this sway brace hangs on the pull bar, and two are supported the screw bolt and nut of end plate through the pull bar two ends and will hang over the framework jam-packed on the pull bar.
Accompany ionic membrane 12 between two frameworks; The dividing plate of a framework is equipped with a side 11 and ionic membrane 12 composition anode chambers of anode network; Another framework dividing plate is equipped with a side 13 of cathode screen and forms cathode chamber with ionic membrane 12, and an anode chamber and a cathode chamber constitute a unit groove.Several unit grooves are formed ion-exchange membrane electrolyzer.
Each anode chamber all makes strong brine import 7 (see figure 3)s in positive panel bottom, and each strong brine import all is communicated with a strong brine feed pipe 8 through conduit; Each anode chamber all makes a chlorine in positive panel top and light salt brine exports 2 (see figure 3)s, and each chlorine and light salt brine outlet all are communicated with chlorine and light salt brine discharge nozzle 3 through conduit.A high purity water import 16 is all made in the (see figure 4) bottom, the back side of each cathode chamber, and each high purity water import all is communicated with a high purity water feed pipe 10 through conduit; The upper rear portion of each cathode chamber is all made hydrogen and NaOH outlet 15, and each hydrogen and NaOH outlet all are communicated with hydrogen and NaOH discharge nozzle 9 through conduit.
Web member on framework, dividing plate, the dividing plate two sides, anode network, cathode screen, conduit, strong brine feed pipe, chlorine and light salt brine discharge nozzle, pure water feed pipe, hydrogen and NaOH discharge nozzle are processed by transparent plastic or transparent organic glass; Ionic membrane is processed by filter cloth; Supporting end plate is processed by opaque engineering plastics; Pull bar and bolt, nut are processed by stainless steel material.

Claims (6)

1. an ion-exchange membrane electrolyzer teaching mould is characterized in that: comprise and support end plate and unit groove, between two support end plates a plurality of unit grooves are installed side by side; Unit groove is made up of framework and ionic membrane, and the central authorities of framework are shaped on a dividing plate, and these dividing plate both sides are installed anode network and cathode screen respectively, accompany ionic membrane between two frameworks; The side dividing plate and the ionic membrane that are equipped with anode network constitute the anode chamber, and the side dividing plate and the ionic membrane that are equipped with cathode screen constitute cathode chamber, and anode chamber and cathode chamber constitute unit groove; Each unit groove anode chamber all makes a strong brine import in positive panel bottom, and chlorine and light salt brine outlet are all made in top; The lower backside of each unit groove cathode chamber is all made a high purity water import, and hydrogen and NaOH outlet are all made in top.
2. ion-exchange membrane electrolyzer teaching mould according to claim 1 is characterized in that: said framework is surrounded by four panels in upper and lower, left and right, and a sway brace is all made in the outside of each framework two vertical panel; The two sides of the made dividing plate of framework central authorities all are shaped on web member, on the web member of dividing plate one side, are equipped with anode network, on the web member of dividing plate another side, are equipped with cathode screen.
3. ion-exchange membrane electrolyzer teaching mould according to claim 1 is characterized in that: said each strong brine inlet all is communicated with a strong brine feed pipe through conduit; Each chlorine and light salt brine outlet all are communicated with chlorine and light salt brine discharge nozzle through conduit.
4. ion-exchange membrane electrolyzer teaching mould according to claim 1 is characterized in that: said each high purity water import all is communicated with a high purity water feed pipe through conduit; Each hydrogen and NaOH outlet all are communicated with hydrogen and NaOH discharge nozzle through conduit.
5. ion-exchange membrane electrolyzer teaching mould according to claim 1; It is characterized in that: said two are supported between the end plate through the pull bar connection; The sway brace of framework hangs on the pull bar, and two are supported the screw bolt and nut of end plate through the pull bar two ends and will hang over the framework jam-packed on the pull bar.
6. ion-exchange membrane electrolyzer teaching mould according to claim 1 is characterized in that: the web member on framework, dividing plate, the dividing plate two sides, anode network, cathode screen, conduit, strong brine feed pipe, chlorine and light salt brine discharge nozzle, pure water feed pipe, hydrogen and NaOH discharge nozzle all are to process transparent member by transparent plastic or transparent organic glass; Ionic membrane is a filter cloth.
CN2012202047988U 2012-05-09 2012-05-09 Ionic membrane electrolytic cell teaching mold Expired - Fee Related CN202549142U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2012202047988U CN202549142U (en) 2012-05-09 2012-05-09 Ionic membrane electrolytic cell teaching mold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2012202047988U CN202549142U (en) 2012-05-09 2012-05-09 Ionic membrane electrolytic cell teaching mold

Publications (1)

Publication Number Publication Date
CN202549142U true CN202549142U (en) 2012-11-21

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Application Number Title Priority Date Filing Date
CN2012202047988U Expired - Fee Related CN202549142U (en) 2012-05-09 2012-05-09 Ionic membrane electrolytic cell teaching mold

Country Status (1)

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CN (1) CN202549142U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109267087A (en) * 2018-09-30 2019-01-25 福建浩达智能科技股份有限公司 A kind of a bipolar type ion-exchange membrane electrolyzer

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109267087A (en) * 2018-09-30 2019-01-25 福建浩达智能科技股份有限公司 A kind of a bipolar type ion-exchange membrane electrolyzer
CN109267087B (en) * 2018-09-30 2024-01-09 福建浩达智能科技股份有限公司 Multipole type ionic membrane electrolytic tank

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C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20121121

Termination date: 20130509