CN1931711A - Ozone generator with rotating medium layer - Google Patents

Ozone generator with rotating medium layer Download PDF

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Publication number
CN1931711A
CN1931711A CN 200510047191 CN200510047191A CN1931711A CN 1931711 A CN1931711 A CN 1931711A CN 200510047191 CN200510047191 CN 200510047191 CN 200510047191 A CN200510047191 A CN 200510047191A CN 1931711 A CN1931711 A CN 1931711A
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China
Prior art keywords
medium layer
electrode
motor
high voltage
magnet ring
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CN 200510047191
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Chinese (zh)
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CN100395175C (en
Inventor
宋中庆
任国玉
宋立平
沈丽
张锦
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宋中庆
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Priority to CNB2005100471918A priority Critical patent/CN100395175C/en
Publication of CN1931711A publication Critical patent/CN1931711A/en
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Publication of CN100395175C publication Critical patent/CN100395175C/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Oxygen, Ozone, And Oxides In General (AREA)

Abstract

The ozone generator with rotating medium layer consists of a casing, a medium layer, a high voltage discharge electrode, an earthed electrode, a motor, etc. and the medium layer is set between the high voltage discharge electrode and the earthed electrode. The ozone generator may be a tubular one with one driving shaft connected to the motor for rotating around the axis of the tube set in the medium layer; or a plate one with parallel high voltage discharge electrode, earthed electrode and the medium layer in between, and one driving shaft connected to the motor for rotating in the direction perpendicular to the electrode plate set in the medium layer. The ozone generator of the present invention has the advantages including long service life, high efficiency and simple manufacture.

Description

A kind of ozone generator with rotating medium layer
Technical field
The present invention relates to ozonizer, is the ozone generator with rotating medium layer in a kind of dielectric barrier discharge specifically.
Background technology
The ozone of people's application at present is that the employing air or oxygen is that raw material uses the method for corona discharge to produce mostly.Usually the ozonizer that adopts has tubular type and board-like two kinds, for the efficient and the work-ing life of improving ozonizer, must cool off with corrosionproof protection discharge electrode and handle.As CN2450205Y, CN2451565Y, the disclosed high concentration ozone generator of CN2450204Y, all discharge electrode is provided with water cooling or electrode corrosion-resistant sfgd. in the device of the disclosed preparation ozone water of CN2245056Y.Water cooling is simple, cost is low, but makes whole device volume too fat to move, and is compact inadequately.
Summary of the invention
The object of the present invention is to provide a kind of both can water-cooled, also can air cooling, the ozone generator with rotating medium layer of high life.
For achieving the above object, the technical solution used in the present invention is:
A kind of ozone generator with rotating medium layer is made up of housing, medium layer, high voltage discharge electrode, ground-electrode and motor etc., and medium layer places between high voltage discharge electrode and the ground-electrode;
When ozonizer was tubular type, the medium layer between high voltage discharge electrode and ground-electrode is provided with can be along the axle center rotating drive shafts of pipe, and transmission shaft and motor are in transmission connection; Perhaps motor one side, along on radially (being the vertical direction in axle center) tube wall of medium layer or be inlaid with magnetic stripe or magnet ring A on the tube wall end face, and corresponding motor shaft is provided with and magnetic stripe or corresponding magnetic stripe of magnet ring A or magnet ring B, and their pairing magnetic poles are opposite, magnetic stripe or magnet ring A and magnetic stripe or magnet ring B magnetictransmission are (promptly when the magnetic stripe that links to each other with electric motor or magnet ring B rotation are moving, under magneticaction, magnet ring A also rotates with medium layer); Medium layer can be along the axle center rotation of pipe.
When ozonizer when being board-like, high voltage discharge electrode, ground-electrode are parallel with therebetween medium layer, and medium layer is provided with can be along the vertical direction rotating drive shafts of electrode pad, and transmission shaft and motor are in transmission connection; Perhaps medium layer is provided with magnetic patch C, outside vertical at magnetic patch C is provided with magnetic patch D corresponding with it on the direction of electrode pad, and their pairing magnetic poles are opposite, magnetic patch D is fixed on the motor shaft, magnetic patch C and magnetic patch D magnetictransmission are (promptly when the magnetic patch D rotation that links to each other with electric motor is moving, under magneticaction, magnetic patch C also rotates with medium layer); Medium layer rotates along the vertical direction of pole plate;
When ozonizer when being board-like, transmission shaft is positioned on the vertical direction of symmetry centre of electrode pad, and transmission shaft drives medium layer and rotates, and transmission shaft and motor are in transmission connection; High voltage electrode is parallel actionless with ground-electrode.
The present invention has the following advantages:
1. high life.Medium layer in the dielectric barrier discharge of the present invention can rotate, and has avoided its local superheating, and every bit all is intermittent discharge on the electrode, is difficult for breakdownly, is difficult for heating (air cooling, water-cooled, steam are cold, oil cooling all can).
2. efficient height.Barrier discharge medium layer of the present invention can rotate, and the output of ozone improves, and cuts down the consumption of energy, and reduces cost.
3. electrode self-healing is repaired.The discharge electrode of ozonizer has self-healing and repairing effect, and the discharging gap between high voltage discharge electrode and ground-electrode can intelligence be adjusted.
4. make simple.Air cooling of the present invention gets final product, and is convenient to realize, easy to implement and maximization.
Description of drawings
Fig. 1 is a kind of enforcement structural representation of the present invention;
Fig. 2 is the A-A sectional view among Fig. 1;
Fig. 3 is another enforcement structural representation of the present invention.
Fig. 4 is the sectional view of Fig. 3.
Fig. 5 is another enforcement structural representation of the present invention.
Fig. 6 is the sectional view of Fig. 5.
Embodiment
Embodiment 1
Shown in Fig. 1-2, a kind of tubular ozone generator, the tubular shell of making by PVC or PP-R material 1 from outside to inside, tubular grounding electrode 2 (discharge electrode), the tubulose medium layer of making by glass, pottery, silicon rubber or other material of anti-high-frequency and high-voltage the 3, tubulose high voltage electrode 4, electrode is made by protruding rough metallic substance or other material;
Form a reaction cavity (O between ground-electrode 2 and the medium layer 3 2→ O 3), also form a reaction cavity (O between high voltage discharge electrode 4 and the medium layer 2 2→ O 3).This example can adopt water-cooled, steam is cold, air is cold or the type of cooling such as oil cooling.Medium layer 3 is connected with and can bearing 5 be housed on the housing 1 along the axle center rotating drive shafts 7 of pipe, and transmission shaft is connected by power wheel 6 with motor.(tubular shell 1 in this example also can remove not, with the method solid bearing of embodiment 3).
Embodiment 2
As shown in Figure 3-4, a kind of tubular ozone generator, from outside to inside, the tubular grounding electrode of making by metallic substance 2, the tubulose medium layer of making by glass, pottery, silicon rubber or other material of anti-high-frequency and high-voltage the 3, by the tubulose high voltage discharge electrode 4 that metallic substance is made, electrode is made by protruding rough metallic substance or other material;
Form a reaction chamber A (O between ground-electrode 2 and the medium layer 3 2→ O 3), also form a reaction chamber B (O between high voltage discharge electrode 4 and the medium layer 2 2→ O 3).This example can adopt water-cooled, steam is cold, air is cold or the type of cooling such as oil cooling, be embedded with swivel bearing 5 between ground-electrode 2 and the medium layer 3, medium layer 3 is tangent with power wheel 6, and power wheel 6 is in transmission connection with motor 7, and power wheel 6 drives medium layer 3 and rotates (see figure 3).
Embodiment 3
Shown in Fig. 5-6, difference from Example 1 is, on the radially tube wall end face of the medium layer 3 of motor one side, be inlaid with magnet ring A8, arranged outside at magnet ring A8 has symmetrical with it magnet ring B9, magnet ring B9 is fixed on electric motor 10 transmission shafts 7, has certain clearance between magnet ring A8 and the magnet ring B9, and their pairing magnetic poles are opposite, magnet ring A8 and magnet ring B9 magnetictransmission, promptly when the magnet ring B9 rotation that links to each other with electric motor 10 is moving, under magneticaction, magnet ring A8 also rotates with medium layer 3.
Embodiment 4
A kind of board-like ozonizer, be tabular ground-electrode (discharge electrode) from bottom to top, by the tabular medium layer that glass, pottery, silicon rubber or other material of anti-the high-frequency and high-voltage are made, tabular high voltage electrode, electrode is made by protruding rough metallic substance or other material; High voltage discharge electrode, ground-electrode and the medium layer that it is asked are parallel, and medium layer is provided with can be along the vertical direction rotating drive shafts of electrode pad, and transmission shaft and motor are in transmission connection.
Embodiment 5
A kind of board-like ozonizer, be tabular ground-electrode (discharge electrode) from bottom to top, by the tabular medium layer that glass, pottery, silicon rubber or other material of anti-the high-frequency and high-voltage are made, tabular high voltage electrode, electrode is made by protruding rough metallic substance or other material; Medium layer is provided with magnetic patch C, be provided with magnetic patch D corresponding with it in the outside vertical of magnetic patch C on the direction of electrode pad, and their pairing magnetic poles is opposite, and magnetic patch D is fixed on the motor shaft.

Claims (2)

1. an ozone generator with rotating medium layer is made up of medium layer (3), high voltage discharge electrode (4), ground-electrode (2) and motor etc., and medium layer (3) places between high voltage discharge electrode (4) and the ground-electrode (2); It is characterized in that:
When ozonizer was tubular type, the medium layer between high voltage discharge electrode and ground-electrode is provided with can be along the axle center rotating drive shafts of pipe, and transmission shaft and motor are in transmission connection; Perhaps on radially tube wall motor one side, medium layer or be inlaid with magnetic stripe or magnet ring A on the tube wall end face, and corresponding motor shaft is provided with and magnetic stripe or corresponding magnetic stripe of magnet ring A or magnet ring B, and their pairing magnetic poles are opposite, magnetic stripe or magnet ring A and magnetic stripe or magnet ring B magnetictransmission;
When ozonizer when being board-like, high voltage discharge electrode, ground-electrode are parallel with therebetween medium layer, and medium layer is provided with can be along the vertical direction rotating drive shafts of electrode pad, and transmission shaft and motor are in transmission connection; Perhaps medium layer is provided with magnetic patch C, be provided with magnetic patch D corresponding with it in the outside vertical of magnetic patch C on the direction of electrode pad, and their pairing magnetic poles is opposite, and magnetic patch D is fixed on the motor shaft.
2. according to the described ozone generator with rotating medium layer of claim 1, it is characterized in that: when ozonizer when being board-like, transmission shaft is positioned on the vertical direction of symmetry centre of electrode pad, and transmission shaft drives medium layer and rotates, and transmission shaft and motor are in transmission connection.
CNB2005100471918A 2005-09-14 2005-09-14 Ozone generator with rotating medium layer Expired - Fee Related CN100395175C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2005100471918A CN100395175C (en) 2005-09-14 2005-09-14 Ozone generator with rotating medium layer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2005100471918A CN100395175C (en) 2005-09-14 2005-09-14 Ozone generator with rotating medium layer

Publications (2)

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CN1931711A true CN1931711A (en) 2007-03-21
CN100395175C CN100395175C (en) 2008-06-18

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112535750A (en) * 2020-12-13 2021-03-23 孙涛 Simple and efficient sterilizing ozone machine
CN114455547A (en) * 2022-03-03 2022-05-10 浙江大学 Power-adaptive dielectric barrier discharge electrode phase change cooling device and method

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3812994B2 (en) * 1997-07-09 2006-08-23 友希 今泉 Drive structure of rotary ozone generator
CN2654588Y (en) * 2003-10-10 2004-11-10 宋中庆 Rotary type ozone generator

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112535750A (en) * 2020-12-13 2021-03-23 孙涛 Simple and efficient sterilizing ozone machine
CN114455547A (en) * 2022-03-03 2022-05-10 浙江大学 Power-adaptive dielectric barrier discharge electrode phase change cooling device and method
CN114455547B (en) * 2022-03-03 2023-03-14 浙江大学 Power-adaptive dielectric barrier discharge electrode phase change cooling device and method

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