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CN207130343U - A kind of electrolytic ozone generator that can add electrolyte automatically - Google Patents

A kind of electrolytic ozone generator that can add electrolyte automatically Download PDF

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Publication number
CN207130343U
CN207130343U CN201720715615.1U CN201720715615U CN207130343U CN 207130343 U CN207130343 U CN 207130343U CN 201720715615 U CN201720715615 U CN 201720715615U CN 207130343 U CN207130343 U CN 207130343U
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CN
China
Prior art keywords
plate
electrolytic cell
anode
storage pool
liquid storage
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Expired - Fee Related
Application number
CN201720715615.1U
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Chinese (zh)
Inventor
程东祥
陈静
万丽娟
郑朝成
颜大伟
吴秀玲
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Nanjing Communications Institute of Technology
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Nanjing Communications Institute of Technology
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Priority to CN201720715615.1U priority Critical patent/CN207130343U/en
Application granted granted Critical
Publication of CN207130343U publication Critical patent/CN207130343U/en
Expired - Fee Related legal-status Critical Current
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Abstract

The utility model discloses a kind of electrolytic ozone generator that can add electrolyte automatically, including electrolytic cell and liquid storage pool, the liquid storage pool is located at the side of electrolytic cell, two dividing plates straight down are set on the electrolytic cell inner roof wall, two dividing plate bottoms are close to electrolytic cell bottom wall, electrolytic cell is divided into anode region by two dividing plates, store liquid zone and cathodic region, positive plate is provided with the anode region, minus plate is provided with the cathodic region, the top of the anode plate and cathode plate passes through electrolytic cell upper end wall by through hole, the positive plate top is provided with anode conducting joint, the minus plate top is provided with negative electrode conductive contact, the roof for storing liquid zone is provided with inlet, the inlet is connected by catheter with being arranged on the liquid outlet on liquid storage pool top, and catheter is stretched into inside liquid storage pool.The utility model is simple in construction, can add electrolyte automatically, and ozone generation efficiency is higher, easy to operate, and practicality is stronger.

Description

A kind of electrolytic ozone generator that can add electrolyte automatically
Technical field
A kind of ozone generating-device is the utility model is related to, specifically a kind of electrolysis type ozone that can add electrolyte automatically Generating means.
Background technology
Ozone is the allotrope of oxygen, at normal temperatures and pressures, stability extreme difference, can voluntarily be decomposed into oxygen at normal temperatures Gas.Ozone can be used for food purification, drink water purifying, sterilization, purification of air, preserving fruit and vegetable utilizing, mould proof, bathing, beauty, guarantor It is good for, breeds fish, watering flowers, deodorization etc..At present, the method for producing ozone mainly has corona to put a method and PEM electrolysis.Compare corona Electric discharge, PEM electrolysis has ozone purity high, not the advantages of nitrogen-containing oxide, and it is easy to operate.Existing electrolysis type ozone Generator apparatus is easily contaminated using the method for artificial addition electrolyte, electrolyte more, and electrolytic ozone generator Ozone occurs less efficient.
Utility model content
The purpose of this utility model is to provide a kind of electrolytic ozone generator that can add electrolyte automatically, with solution The problem of being proposed in certainly above-mentioned background technology.
To achieve the above object, the utility model provides following technical scheme:
A kind of electrolytic ozone generator that can add electrolyte automatically, including electrolytic cell and liquid storage pool, the storage liquid Pond is located at the side of electrolytic cell, and two dividing plates straight down, two dividing plate bottoms are set on the electrolytic cell inner roof wall Close to electrolytic cell bottom wall, electrolytic cell is divided into anode region, stores liquid zone and cathodic region by two dividing plates, is set in the anode region There is positive plate, minus plate is provided with the cathodic region, the anode plate and cathode plate include dielectric film, silicone rubber O-ring And porous metal plate, the dielectric film both sides are wrapped up by silicone rubber O-ring, the porous metal plate is arranged on silicon rubber The outside of sealing ring, interior add of silicone rubber O-ring have catalyst granules, and the positive plate Inner electrolysis plasma membrane is positive dielectric film, The minus plate Inner electrolysis plasma membrane is cloudy dielectric film, and the top of the anode plate and cathode plate passes through electrolytic cell by through hole Upper end wall, the positive plate top are provided with anode conducting joint, and the minus plate top is provided with negative electrode conductive contact, anode Fixed plate, anode conducting joint and negative electrode the conductive contact difference are equipped with conductive contact and negative electrode conductive contact lower surface The both positive and negative polarity of electrolysis power with being arranged on electrolytic cell roof is electrically connected with, and the side wall of the anode region is provided with anode outlet Mouthful, the side wall in the cathodic region is provided with negative electrode gas outlet, and the roof for storing liquid zone is provided with inlet, and the inlet leads to Cross catheter and be connected with being arranged on the liquid outlet on liquid storage pool top, and catheter is stretched into inside liquid storage pool.
As further program of the utility model:It is equipped with the porous metal plate and silicone rubber O-ring one a pair The reacting hole answered.
As the utility model further scheme:It is equipped between the positive plate and through hole, minus plate and through hole Sealing ring.
As the utility model further scheme:The fixed plate is fixed on electrolytic cell roof by fixing screws On.
As the utility model further scheme:The liquid storage pool upper end is provided with pulsometer away from electrolytic cell side.
Compared with prior art, the beneficial effects of the utility model are:Anode region and the moon have been completely cut off by the setting of dividing plate The empty room of polar region upper end is identical, so as to mixed gases caused by avoiding anode region and cathodic region, influences the generation of ozone, passes through The setting of liquid storage pool is easy to add electrolyte automatically to electrolytic cell, eliminates addition electrolyte step, improves ozone generation efficiency, Cell reaction is accelerated by the setting of catalyst in anode plate and cathode plate, so as to improve ozone generation efficiency.This reality It is simple with new structure, electrolyte can be added automatically, and ozone generation efficiency is higher, easy to operate, and practicality is stronger.
Brief description of the drawings
Fig. 1 is the structural representation for the electrolytic ozone generator that can add electrolyte automatically.
Fig. 2 is the structural representation for the electrolytic ozone generator middle-jiao yang, function of the spleen and stomach pole plate that can add electrolyte automatically.
Fig. 3 is the structural representation of minus plate in the electrolytic ozone generator for can add automatically electrolyte.
Fig. 4 is the structural representation of partial enlargement in the electrolytic ozone generator for can add automatically electrolyte.
Wherein:Electrolytic cell 1, dividing plate 2, anode region 3, storage liquid zone 4, cathodic region 5, electrolysis power 6, anode conducting joint 7, sun Pole plate 8, negative electrode conductive contact 9, minus plate 10, anode venthole 11, negative electrode venthole 12, inlet 13, liquid outlet 14, lead Liquid pipe 15, pulsometer 16, liquid storage pool 17, fixed plate 18, sealing ring 19, through hole 20, dielectric film 21, silicone rubber O-ring 22, Porous metal plate 23, reacting hole 24.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made The every other embodiment obtained, belong to the scope of the utility model protection.
Refer to Fig. 1~4, in the utility model embodiment, a kind of electrolysis type ozone that can add electrolyte automatically occurs Device, including electrolytic cell 1 and liquid storage pool 17, the liquid storage pool 17 are located at the side of electrolytic cell 1, on the inner roof wall of electrolytic cell 1 Two dividing plates 2 straight down are set, and two bottoms of dividing plate 2 will be electrolysed close to the bottom wall of electrolytic cell 1, two dividing plates 2 Pond 1 is divided into anode region 3, stores liquid zone 4 and cathodic region 5, is provided with positive plate 8 in the anode region 3, is provided with the cathodic region 5 Minus plate 10, the positive plate 8 and minus plate 10 include dielectric film 21, silicone rubber O-ring 22 and porous metal plate 23, The both sides of dielectric film 21 are wrapped up by silicone rubber O-ring 22, and the porous metal plate 23 is arranged on silicone rubber O-ring 22 outside, interior add of silicone rubber O-ring 22 have catalyst granules, and catalyst granules can accelerate cell reaction, the micropore It is equipped with metallic plate 23 and silicone rubber O-ring 22 and corresponds reacting hole 24, the setting of reacting hole 24 can be in order to electrolyte Reacted hole 24 reaches dielectric film, and with this generation cell reaction, caused gas also discharge by reacted hole 24, the positive plate 8 Inner electrolysis plasma membranes 21 are positive dielectric film, and the Inner electrolysis plasma membrane 21 of minus plate 10 is cloudy dielectric film, the He of positive plate 8 The top of minus plate 10 passes through the upper end wall of electrolytic cell 1, and positive plate 8 and through hole 20, minus plate 10 and through hole by through hole 20 Sealing ring 19 is equipped between 20, ensures air-tightness, to prevent the gas of electrolysis from being leaked from gap, the top of positive plate 8 Anode conducting joint 7 is provided with, the top of minus plate 10 is provided with negative electrode conductive contact 9, anode conducting joint 7 and negative electrode Fixed plate 18 is equipped with the lower surface of conductive contact 9, the fixed plate 18 is fixed on the roof of electrolytic cell 1 by fixing screws, The anode conducting joint 7 and negative electrode conductive contact 9 respectively with the both positive and negative polarity for the electrolysis power 6 being arranged on the roof of electrolytic cell 1 It is electrically connected with, the side wall of the anode region 3 is provided with anode gas outlet 11, and the side wall in the cathodic region 5 is provided with negative electrode outlet Mouth 12, the roof for storing liquid zone 4 are provided with inlet 13, and the inlet 13 is by catheter 15 and is arranged on liquid storage pool 17 The liquid outlet on top is connected, and catheter 15 is stretched into inside liquid storage pool 17, and the upper end of liquid storage pool 17 is away from the side of electrolytic cell 1 Provided with pulsometer 16, the setting of pulsometer 16 can keep the pressure inside liquid storage pool 17, be easy to automatically add from trend electrolytic cell 1 Add electrolyte.
Operation principle of the present utility model is:Electrolysis power 6 connects positive plate 8 and minus plate 10, positive plate 8 and minus plate Dielectric film 21 in 10 produces two kinds of gases of ozone and hydrogen with electrolyte electrochemical reaction, and ozone and hydrogen are respectively positioned at sun Polar region 3 and cathodic region 5, and discharged from the negative electrode gas outlet 12 of the anode gas outlet 11 of anode region 3 and cathodic region 5, when ozone and When hydrogen discharges electrolytic cell 1, the pressure inside electrolytic cell 1 diminishes, so that the pressure inside electrolytic cell 1 is less than liquid storage pool 17 Interior pressure, so as to which the electrolyte in liquid storage pool 17 is pressed into electrolytic cell 1 by the air pressure in liquid storage pool 17 from inlet, so as to real Existing electrolytic cell 1 adds electrolyte automatically.
It is obvious to a person skilled in the art that the utility model is not limited to the details of above-mentioned one exemplary embodiment, and And in the case of without departing substantially from spirit or essential attributes of the present utility model, it can realize that this practicality is new in other specific forms Type.Therefore, no matter from the point of view of which point, embodiment all should be regarded as exemplary, and is nonrestrictive, this practicality is new The scope of type limits by appended claims rather than described above, it is intended that the equivalency fallen in claim is contained All changes in justice and scope are included in the utility model.Any reference in claim should not be considered as limitation Involved claim.
Moreover, it will be appreciated that although the present specification is described in terms of embodiments, not each embodiment is only wrapped Containing an independent technical scheme, this narrating mode of specification is only that those skilled in the art should for clarity Using specification as an entirety, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art It is appreciated that other embodiment.

Claims (5)

1. a kind of electrolytic ozone generator that can add electrolyte automatically, including electrolytic cell (1) and liquid storage pool (17), described Liquid storage pool (17) is located at the side of electrolytic cell (1), it is characterised in that on electrolytic cell (1) inner roof wall set two vertically to Under dividing plate (2), two dividing plate (2) bottoms are close to electrolytic cell (1) bottom wall, and two dividing plates (2) are by electrolytic cell (1) point It is cut into anode region (3), stores liquid zone (4) and cathodic region (5), positive plate (8), the cathodic region (5) is provided with the anode region (3) Interior to be provided with minus plate (10), the positive plate (8) and minus plate (10) include dielectric film (21), silicone rubber O-ring (22) With porous metal plate (23), dielectric film (21) both sides are wrapped up by silicone rubber O-ring (22), the porous metal plate (23) outside of silicone rubber O-ring (22) is arranged on, being added in silicone rubber O-ring (22) has catalyst granules, the anode Plate (8) Inner electrolysis plasma membrane (21) is positive dielectric film, and minus plate (10) the Inner electrolysis plasma membrane (21) is cloudy dielectric film, described The top of positive plate (8) and minus plate (10) passes through electrolytic cell (1) upper end wall, positive plate (8) top by through hole (20) End is provided with anode conducting joint (7), and minus plate (10) top is provided with negative electrode conductive contact (9), anode conducting joint (7) fixed plate (18) and on negative electrode conductive contact (9) lower surface is equipped with, the anode conducting joint (7) and negative electrode conduction connect Head (9) is electrically connected with the both positive and negative polarity of electrolysis power (6) being arranged on electrolytic cell (1) roof respectively, the anode region (3) Side wall is provided with anode gas outlet (11), and the side wall of the cathodic region (5) is provided with negative electrode gas outlet (12), the storage liquid zone (4) roof is provided with inlet (13), and the inlet (13) is by catheter (15) and is arranged on liquid storage pool (17) top Liquid outlet be connected, and to stretch into liquid storage pool (17) internal for catheter (15).
2. the electrolytic ozone generator according to claim 1 that electrolyte can be added automatically, it is characterised in that described One-to-one reacting hole (24) is equipped with porous metal plate (23) and silicone rubber O-ring (22).
3. the electrolytic ozone generator according to claim 1 that electrolyte can be added automatically, it is characterised in that described Sealing ring (19) is equipped between positive plate (8) and through hole (20), minus plate (10) and through hole (20).
4. the electrolytic ozone generator according to claim 1 that electrolyte can be added automatically, it is characterised in that described Fixed plate (18) is fixed on electrolytic cell (1) roof by fixing screws.
5. the electrolytic ozone generator according to claim 1 that electrolyte can be added automatically, it is characterised in that described Liquid storage pool (17) upper end is provided with pulsometer (16) away from electrolytic cell (1) side.
CN201720715615.1U 2017-06-08 2017-06-08 A kind of electrolytic ozone generator that can add electrolyte automatically Expired - Fee Related CN207130343U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720715615.1U CN207130343U (en) 2017-06-08 2017-06-08 A kind of electrolytic ozone generator that can add electrolyte automatically

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720715615.1U CN207130343U (en) 2017-06-08 2017-06-08 A kind of electrolytic ozone generator that can add electrolyte automatically

Publications (1)

Publication Number Publication Date
CN207130343U true CN207130343U (en) 2018-03-23

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108950589A (en) * 2018-10-09 2018-12-07 赵国良 Hypochlorite generator
CN114892194A (en) * 2022-06-02 2022-08-12 合肥工业大学 A carbon dioxide electrolysis cell catalyst extending device

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108950589A (en) * 2018-10-09 2018-12-07 赵国良 Hypochlorite generator
CN108950589B (en) * 2018-10-09 2023-07-25 赵国良 Sodium hypochlorite generator
CN114892194A (en) * 2022-06-02 2022-08-12 合肥工业大学 A carbon dioxide electrolysis cell catalyst extending device
CN114892194B (en) * 2022-06-02 2023-08-11 合肥工业大学 Catalyst extending device of carbon dioxide electrolytic cell

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180323

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