CN1781841A - Qzone generator - Google Patents
Qzone generator Download PDFInfo
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- CN1781841A CN1781841A CN 200510124169 CN200510124169A CN1781841A CN 1781841 A CN1781841 A CN 1781841A CN 200510124169 CN200510124169 CN 200510124169 CN 200510124169 A CN200510124169 A CN 200510124169A CN 1781841 A CN1781841 A CN 1781841A
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- ozone
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Abstract
An ozone generator comprises double-layered cylindrical dielectric substances composed of a dielectric substance (A) of an inner side and a dielectric substance (B) of an outer side; stainless steel foil electrodes (B) and insulators covering outer periphery are stuck to the inner side of the dielectric substance (A) and the outer side of the dielectric substance (B) and all have cylindrical shape. Holders for blocking the air on the side face of the dielectric substance (A) are arranged at both sides of the cylinder; a discharge space is arranged between the outer side of the dielectric substance (A) and the inner side of the dielectric substance (B); an air introducing port at the holder (1) and an ozone emission port at the holder (2) are communicated with the discharge space to generate a high voltage power source required by the electrode (A) and electrode (B) and to prevent air from contacting electrodes. The invention has the following advantages: electrodes are not heated to a high temperature; drying is not required for the air as the raw material for ozone; nitric acid is not generated by the moisture and NOx in the air; the corrosion of the electrodes and consequent failure in ozone generation do not occur; and the cleaning, exchanging and maintaining of the electrode sections are not required at the time of continued use.
Description
Technical field
The present invention relates to a kind of ozonizer.
Background technology
Ozone takes place, normally with the gap of 1-2mm to two electrodes impose alternating-current, when its electrode being imposed alternating-current, will lightening out the trickle discharge of pale blue, electronics makes the oxygen excitation and makes oxygen (O
2) separation generation ozone (O
3).At this moment, if plasma discharging contacts with being exposed to airborne electrode,, therefore need cooling because metal is subjected to excitation, electrode temperature rises.And if contain moisture in the unstripped gas, then the hydrogen-oxygen atomic group that is generated by water with regard to ozone decomposition, causes yield to reduce at discharge part, simultaneously owing to generate nitric acid from oxynitride, forms the wear out reason of (deterioration) of electrode so become.Usually under the condition of dew point-50~-60 degree, make the unstripped gas drying for this reason.
As the similar techniques of the double-deck cast ozonizer of silent discharge type of the present invention, the water with conductivity that uses tap water and process water etc. cools off inside and outside two sides as water coolant.This is in order to prevent that electrode from forming high temperature and causing electrode aging (deterioration) and adopt water to cool off as condition.And when adopting water to cool off, the either party of outside, inner face is owing to keeping earthing potential, load ac high voltage, so have problems in security (publication communique 2003-306318).
In addition, with electro-conductive material to round tube type inductor (Lure Guide body) the periphery applied the induction electrode of overlay film and the discharge electrode that in its tubular electrode, is provided with between, inflow is by the concentrate oxygen of oxygen concentrating device acquisition, when producing ozone by silent discharge, the nitrogen of emitting from oxygen concentrating device is imported the surperficial lobed cylinder of discharge electrode, make discharge electrode cooling (spy opens flat 08-067504).The cooling of two electrodes is prerequisites in these technology.
As not carrying out this refrigerative technology, also have by enlarging interelectrode discharge space and suppress the temperature rising, can keep electrode low temperature, but owing to enlarge discharge space make the weakening of ozone, since for the enrichment ozone concn electrode by wire cloth etc. once more, net result since residual air must contact with the electrode of wire cloth, even so than prolonged the life-span of electrode in the past but can not say very perfect.
Thereby, ozonizer in the past, because of electrode high temperature, the normal nitrogen of emitting from water and oxygen concentrating device that adopts cools off, or electrode contacts with air, airborne moisture and oxynitride effect generate nitric acid, electrode is corroded and can not produce ozone, so need moisture trap, make the air that becomes the ozone raw material by importing dry airs such as silica gel.Therefore, in order to continue to use, the aspect that then must carry out needs such as the replacing maintenance of the cleaning of standing, electrode part of moisture trap and replacing, silica gel exists trouble.
[patent documentation 1] publication communique 2003-306318
[patent documentation 2] spy opens flat 08-067504
Because the defective that above-mentioned existing ozone generator exists, the inventor is based on being engaged in this type of product Product manufacture and design for many years abundant practical experience and professional knowledge, and cooperate the utilization of scientific principle, actively add With research and innovation, in the hope of founding a kind of ozone generator of new structure, can improve generally existing Ozone generator makes it have more practicality. Through constantly research, design, and through repeatedly studying After sample and the improvement, finally create the present invention who has practical value.
Summary of the invention
The objective of the invention is to, overcome the defective that existing ozonizer exists, and a kind of ozonizer of novel texture is provided, make electrode be unlikely high temperature, as the raw air drying-free air of ozone and can not generate with airborne moisture and oxynitride nitric acid, electrode no longer because of corrosion ozone can not take place, in the cleaning and the replacing that do not need under the situation about using to continue electrode part, need not to maintain.
The object of the invention to solve the technical problems realizes by the following technical solutions.A kind of ozonizer according to the present invention's proposition, it is characterized in that it comprises the outside dielectric material (Lure Electricity body that to be provided with inboard dielectric material A be the center) B, dielectric material is the cylindric of bilayer, paste the electrode A of intrinsic stainless steel foil in the inboard of dielectric material A, paste the electrode B of intrinsic stainless steel foil in the outside of dielectric material B, for the periphery that makes electrode B not ingress of air be provided with to cover and wrap up in peripheral isolator, their all integrally formed round shape is provided with the support platform 1 of blocking-up dielectric material A side air and supports platform 2 about columnar, between the inboard of the outside of dielectric material A and dielectric material B, be provided with discharge space, supporting platform 1 place to be provided with the air introducing port and be communicated with above-mentioned discharge space supporting platform 2 places to be provided with the ozone escape orifice, form the high-voltage power supply that electrode A and electrode B are allowed, and blocking-up air contacts electrode.
The present invention compared with prior art has tangible advantage and beneficial effect.By above technical scheme as can be known, major technique of the present invention thes contents are as follows:
Ozonizer of the present invention comprises double-layered cylinder shape dielectric material (Lure Electricity body), dielectric material A with the inboard is the dielectric material B in center, the outside, the electrode B of pasting the electrode A of intrinsic stainless steel foil etc. in the inboard of dielectric material A, pasting intrinsic stainless steel foil etc. in the outside of dielectric material B, for the periphery that makes electrode B not ingress of air be provided with to cover and wrap up in peripheral isolator and all integrally formed round tube type.About round tube type, be provided with the support platform 1 of blocking-up dielectric material A side air and support platform 2, between the inboard of the outside of dielectric material A and dielectric material B, be provided with discharge space, supporting platform 1 place to be provided with the air introducing port, be communicated with above-mentioned discharge space supporting platform 2 places to be provided with the ozone escape orifice, form the high-voltage power supply that electrode A and electrode B are allowed, and blocking-up air contacts electrode.
By technique scheme, ozonizer of the present invention does not have the existing defective of existing ozonizer in use fully, and can reach suitable technical progress and practicality, and have the extensive utility value on the industry, it has following advantage at least:
(1) because the ozonizer that constituted comprises double-layered cylinder shape dielectric material, with the dielectric material A of inboard be the dielectric material B in center, the outside, paste the electrode A of intrinsic stainless steel foil etc. in the inboard of dielectric material A, paste in the outside of dielectric material B intrinsic stainless steel foil etc. electrode B, for the periphery that makes electrode B not ingress of air be provided with to cover and wrap up in its peripheral isolator and all integrally formed round tube type.About round tube type, be provided with the support platform 1 of blocking-up dielectric material A side air and support platform 2, between the inboard of the outside of dielectric material A and dielectric material B, be provided with discharge space, at the air introducing port of supporting that platform 1 place is provided with, be communicated with above-mentioned discharge space with the ozone escape orifice of supporting platform 2 places to be provided with, form electrode A and electrode B and allow the high-voltage power supply of (seal can), and block the air contacts electrode.So, since electrode not ingress of air, avoided airborne moisture content and oxynitride effect generation nitric acid, thereby suppressed the phenomenon that ozone can not take place because of corrosion electrode.
Thereby, carried out dry air with regard to not needing.
(2) according to above-mentioned (1), electrode does not produce high temperature, then need not water coolant etc.
(3), grow electrode life, can accomplish non-maintaining according to above-mentioned (1).
(4) according to above-mentioned (1), the ozone that is produced is high density not only, more can reach miniaturization and reduces manufacturing cost.
In sum, the ozonizer of special construction of the present invention, it has above-mentioned many advantages and practical value, and in like product, do not see have similar structure design to publish or use and really genus innovation, no matter it all has bigger improvement on structure or function, have large improvement technically, and produced handy and practical effect, and more existing ozonizer has the multinomial effect of enhancement, thereby be suitable for practicality more, and have the extensive utility value of industry, really be a new and innovative, progressive, practical new design.
Above-mentioned explanation only is the general introduction of technical solution of the present invention, for can clearer understanding technique means of the present invention, and can be implemented according to the content of specification sheets, and for above-mentioned and other purposes, feature and advantage of the present invention can be become apparent, below especially exemplified by preferred embodiment, and conjunction with figs., be described in detail as follows.
Description of drawings
Fig. 1 is a structure sectional view of the present invention.
A: dielectric material B: dielectric material
3: electrode 4: electrode
5: peripheral isolator 1: support platform
2: support platform 8: discharge space
The air introducing port generates the ozone escape orifice
11: high-voltage power supply 12: sealing
13: stainless steel 14: silica tube
But accompanying drawing shows for explanation to the greatest extent, limits record scope of the present invention absolutely not.
Embodiment
Reach technique means and the effect that predetermined goal of the invention is taked for further setting forth the present invention, below in conjunction with accompanying drawing and preferred embodiment, to its embodiment of ozonizer, structure, feature and the effect thereof that foundation the present invention proposes, describe in detail as after.
[embodiment 1]
Among best first embodiment of the present invention, Fig. 1 is the sectional view of structure.
The present invention includes the outside dielectric material B that it comprises that to be provided with inboard dielectric material A be the center, dielectric material is the cylindric of bilayer, paste the electrode 3 of intrinsic stainless steel foil etc. in the inboard of dielectric material A, paste the electrode 4 of intrinsic stainless steel foil etc. in the outside of dielectric material B, for the periphery that makes electrode 4 not ingress of air be provided with to cover and wrap up in peripheral isolator 5, and all integrally formed round shape is provided with the support platform 1 of blocking-up dielectric material A side air and supports platform 2 about columnar, between the inboard of the outside of dielectric material A and dielectric material B, be provided with discharge space 8, be arranged at the air introducing port 9 of supporting platform 1 and be arranged at the ozone escape orifice 10 of supporting platform 2 and be communicated with above-mentioned discharge space, form the high-voltage power supply 11 that electrode A and electrode B are allowed, make electrode and the isolated ozonizer of air thereby constituted.
Constitute above-mentioned ozonizer, accompany the dielectric material of quartz and pottery etc.,, then permit every half period pulsating on electrode surface of voltage that trickle discharge takes place if apply the interchange () about 10-20KV, 50Hz-2KHz.
This power supply must be to exchange.
Under galvanic situation, because of the clamping dielectric material, stored electronics on the dielectric material, if circulate unidirectional electric current, dielectric material accumulates electric power, electrorheological gets and does not circulate, and just can not produce discharge, thereby ozone can not take place.
If exchange, even electric charge accumulates by a direction, also can contrary direction discharge in following half period.That is to say that electric current continues to flow, ozone just takes place.
Electrode is unlikely the pyritous reason, although electronic temp is up to tens thousand of degree,, and, the electrode ingress of air wraps up in for being covered with the dielectric material holding electrode, because electronics is not directly run into discharge electrode, so can flashing, dielectric material becomes electrical condenser postpones the velocity of discharge of electronics, can relax the impact of electronics, reason because of room temperature, the ozone raw material is by air, and only discharge causes that temperature rises, and still can keep low temperature.
The all integrally formed round tube type of dielectric material and electrode is because be provided with electrode in the inboard of dielectric material A, so be a major requirement of supporting platform to the filling of inboard sealing.
About support the material of platform, be the insulating material that adopts the ozone resistance of polypropylene and nylon etc.
See also shown in Figure 1ly, if electrode A and electrode B place allow high-voltage power supply, the air from the air introducing port of supporting platform 1 to be provided with enters generates ozone at discharge space, is discharged by the ozone escape orifice of supporting platform 2 places to be provided with again.
Therefore, as the air of raw material, needn't just can generate ozone by contacts electrode fully.
Then, in the outside of dielectric material B, because the electrode B of the intrinsic stainless steel foil of subsides etc., if its periphery is airtight, secluding air, this ozonizer can reach blocks air closely.
Dielectric material uses silica glass with high dielectric for well, and but, hard glass and pottery also can.
Material when ingress of air does not seal the periphery that makes electrode selects for use isolator ideal.Because electrical conductor can corrode.
Electrode then need not the periphery is sealed when using uncorruptible metal such as platinum, gold and using the metal film coated making of this class.But, in this situation, (economy) problem on the cost can appear probably.
Electrode adopts under the situation of copper work, and corrosion can be very serious.And, because the metal of copper, aluminium, gold, platinum etc. conducts electricity because of being easy to, so the generation of ozone can weaken.
Tungsten and stainless steel are because big to the impedance of electric power, and the generation of ozone can strengthen.
The tungsten metal is hard, so it is not too easy to make paper tinsel.Processing the difficulty conference increases cost.
Therefore, based on ozone incidence and corrodibility, relatively probably still stainless steel foil is better from the angle of cost.
The ozone generating capacity, different because of the size of electrode, now be exemplified below, adopt silica tube with dielectric material, the material of electrode adopts stainless steel foil to experimentize:
Electrode A is made diameter 13mm, 4.2 squares of cm,
Electrode B is made under the condition of diameter 19mm, 5.6 squares of cm, and silica tube is set to bilayer with 1mm thickness between electrode, can obtain the about 300mg/h of ozone.
The about 1mm of the discharge space of above-mentioned experiment.
The heating of the electrode of above-mentioned experiment room temperature+about 2 ℃ Celsius, is low temperature.
Among the 2nd embodiment of the present invention, be, remove the electrode part that can give high-voltage power supply, 2 electrode A, B of netted stainless steel etc. are imbedded double-deck dielectric material A and B, it is contacted with air with the difference of the 1st embodiment of the invention described above.
The above, it only is preferred embodiment of the present invention, be not that the present invention is done any pro forma restriction, though the present invention discloses as above with preferred embodiment, yet be not in order to limit the present invention, any those skilled in the art, in not breaking away from the technical solution of the present invention scope, when the structure that can utilize above-mentioned announcement and technology contents are made a little change or be modified to the equivalent embodiment of equivalent variations, in every case be the content that does not break away from technical solution of the present invention, according to technical spirit of the present invention to any simple modification that above embodiment did, equivalent variations and modification all still belong in the scope of technical solution of the present invention.
Claims (1)
1, a kind of ozonizer, it is characterized in that it comprises that being provided with inboard dielectric material (A) is the outside dielectric material (B) at center, dielectric material is the cylindric of bilayer, paste the electrode (A) of intrinsic stainless steel foil in the inboard of dielectric material (A), paste the electrode (B) of intrinsic stainless steel foil in the outside of dielectric material (B), for the periphery that makes electrode (B) not ingress of air be provided with to cover and wrap up in peripheral isolator, their all integrally formed round shape is provided with the support platform (1) of blocking-up dielectric material (A) side air and supports platform (2) about columnar, between the inboard of the outside of dielectric material (A) and dielectric material (B), be provided with discharge space, supporting platform (1) to locate to be provided with the air introducing port and supporting platform (2) to locate to be provided with the ozone escape orifice to be communicated with above-mentioned discharge space, form the high-voltage power supply that electrode (A) and electrode (B) are allowed, and blocking-up air contacts electrode.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2004335456A JP2006143522A (en) | 2004-11-19 | 2004-11-19 | Ozone generator |
JP2004335456 | 2004-11-19 |
Publications (1)
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CN1781841A true CN1781841A (en) | 2006-06-07 |
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CN 200510124169 Pending CN1781841A (en) | 2004-11-19 | 2005-11-21 | Qzone generator |
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JP (1) | JP2006143522A (en) |
CN (1) | CN1781841A (en) |
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110178447A (en) * | 2016-12-29 | 2019-08-27 | 纯粹生物协同瑞典公司 | Electric discharge device and method for treatment fluid |
CN111268651A (en) * | 2020-02-10 | 2020-06-12 | 南京交通职业技术学院 | Portable vehicle-mounted ozone generating device |
Families Citing this family (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US8663569B2 (en) * | 2010-12-21 | 2014-03-04 | Kabushiki Kaisha Toshiba | Ozone generating apparatus |
JP2016201316A (en) * | 2015-04-13 | 2016-12-01 | 株式会社Param | Vacuum system |
CN108046216B (en) * | 2018-01-19 | 2021-06-15 | 河海大学常州校区 | Cascade type rotary air flow ozone generator |
-
2004
- 2004-11-19 JP JP2004335456A patent/JP2006143522A/en active Pending
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2005
- 2005-11-21 CN CN 200510124169 patent/CN1781841A/en active Pending
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN110178447A (en) * | 2016-12-29 | 2019-08-27 | 纯粹生物协同瑞典公司 | Electric discharge device and method for treatment fluid |
US11096267B2 (en) | 2016-12-29 | 2021-08-17 | Pure Bio Synergy Sweden Ab | Electric discharge device and method for treatment of fluids |
CN111268651A (en) * | 2020-02-10 | 2020-06-12 | 南京交通职业技术学院 | Portable vehicle-mounted ozone generating device |
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JP2006143522A (en) | 2006-06-08 |
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