CN102312248A - Oxyhydrogen electrolysis device with composite-structured battery lead plate - Google Patents

Oxyhydrogen electrolysis device with composite-structured battery lead plate Download PDF

Info

Publication number
CN102312248A
CN102312248A CN2010102263427A CN201010226342A CN102312248A CN 102312248 A CN102312248 A CN 102312248A CN 2010102263427 A CN2010102263427 A CN 2010102263427A CN 201010226342 A CN201010226342 A CN 201010226342A CN 102312248 A CN102312248 A CN 102312248A
Authority
CN
China
Prior art keywords
hole
metal sheet
plate
battery lead
metal
Prior art date
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.)
Pending
Application number
CN2010102263427A
Other languages
Chinese (zh)
Inventor
张钊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
QINHONG INDUSTRIAL CO LTD
Original Assignee
QINHONG INDUSTRIAL CO LTD
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by QINHONG INDUSTRIAL CO LTD filed Critical QINHONG INDUSTRIAL CO LTD
Priority to CN2010102263427A priority Critical patent/CN102312248A/en
Publication of CN102312248A publication Critical patent/CN102312248A/en
Pending legal-status Critical Current

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/36Hydrogen production from non-carbon containing sources, e.g. by water electrolysis

Landscapes

  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)

Abstract

The invention discloses an oxyhydrogen electrolysis device with a composite-structured battery lead plate. The oxyhydrogen electrolysis device comprises a first outer plate, a second outer plate, a first metal plate, a second metal plate, a plurality of leakage prevention washers, a plurality of battery lead plates and a plurality of metal frames; a groove of each leakage prevention washer accommodates the periphery of each battery lead plate and then is pressed against the metal frame; the peripheries of the battery lead plates are pressed against the metal frames; the first metal plate, the plurality of metal frames, and the second metal plate are tightly clamped between the first outer plate and the second outer plate sequentially and are fixedly integrated to ensure that a plurality of electrolytic cells which are connected in series are formed among the first metal plate, the plurality of battery lead plates and the second metal plate; the first metal plate and the second metal plate supply voltage required during electrolysis, and heat produced during electrolysis can be transmitted to the exteriors of the electrolytic cells through the metal frames, so effective heat dissipation is achieved and electrolysis efficiency is improved.

Description

Hydrogen and oxygen electrolyzing device with composite structure battery lead plate
Technical field
The present invention is relevant hydrogen and oxygen electrolyzing device, especially relevant hydrogen and oxygen electrolyzing device with composite structure battery lead plate.
Background technology
Cost based on fuel such as required heavy oil such as supply boiler, heat supply factory, coal mine gas is soaring day by day, and the conduct of hydrogen-oxygen generator and fuel multifuel combustion of exploitation large scale business are to improve energy use efficiency, the comparable matter of great urgency of its urgency.
The apparatus for electrolyzing that the TaiWan, China patent announcement discloses for No. 562875 is used battery lead plate; Be that metal sheet by drawing forms; Have: flat plate portion with the foreign side that is positioned at this plate portion, is able to make recess and the protuberance circumference that alternatively bent arrangement became along outer peripheral edges; The above-mentioned recess of contiguous another battery lead plate of the protuberance butt of battery lead plate, the battery lead plate of laminated multi-disc forms the electrolysis born of the same parents, has firm all sidewalls by above-mentioned concavo-convex engaging, and can promote compressive strength; The battery lead plate that constitutes the electrolysis born of the same parents has effective elasticity, can absorb the rising that the tight face of bolt that each battery lead plate causes because of thermal expansion is pressed.
The equipment for producing mixed fuel of hydrogen and oxygen that the TaiWan, China patent announcement discloses for No. 578804; Be to give electrolysis to produce hydrogen or oxygen gas fuel in order to the electrolytic solution that will contain particular electrolyte; This generation device comprises: at least one electrolyzer, be arranged at intervals with a plurality of metal polar plates in it, and wherein two-plate connects the positive and negative electrode of a direct current power supply respectively; This electrolyzer is interior and be equipped with electrolytic solution, and by the electrolytic action generation hydrogen or oxygen gas fuel of pole plate to electrolytic solution; Also comprise cooling fan, cooling trough, lift pump and a plurality of pipeline, pump to this cooling trough with lift pump, circulate through cooling fan cooling back and return recessed this electrolyzer in order to the electrolytic solution in will this at least one electrolyzer.
It is laminar to reduce the conductive resistance of battery lead plate that known battery lead plate is; But be difficult for heat radiation; Easily Yin Wendu raises and reduces electrolytic usefulness in electrolytic process, if use thicker battery lead plate increasing the usefulness of heat radiation, but can increase the conductive resistance of battery lead plate and reduces electrolysis usefulness.
Summary of the invention
In order to improve known hydrogen and oxygen electrolyzing device and battery lead plate thereof, promote electrolytic efficiency, and propose the present invention.
Main purpose of the present invention; A kind of hydrogen and oxygen electrolyzing device with composite structure battery lead plate is being provided; Be at the thicker metal frame of the peripheral bond of battery lead plate; Cooperate anti-drain gasket to form airtight construction, the heat that in electrolytic process, produces can conduct to the outside of electrolyzer via metal frame, but efficiently radiates heat increases electrolytic efficiency.
Another object of the present invention; A kind of hydrogen and oxygen electrolyzing device with composite structure battery lead plate is being provided, is making metal frame combine a dividing plate, by a plurality of guide grooves of placing on the dividing plate; The guiding electrolytic solution above the dividing plate and below between the circulation, make the hydrogen-oxygen bubble move to the top of electrolytic solution rapidly.
The present invention provides a kind of hydrogen and oxygen electrolyzing device with composite structure battery lead plate, comprising:
One first outside plate;
One second outside plate;
One first metal sheet;
One second metal sheet;
Multi-disc is prevented drain gasket; Should prevent that drain gasket was non-conductive, be the frame shape, have large-area first through hole; The position that one end face of this anti-drain gasket is positioned at contiguous this through hole is provided with the cyclic groove;
The multi-disc battery lead plate;
The multi-disc metal frame; This metal frame has large-area second through hole; A slice should prevent that the groove of drain gasket held the periphery of this battery lead plate of a slice; The periphery that should prevent drain gasket and this battery lead plate is respectively against this metal frame; Clamp this battery lead plate of a slice and a slice between two adjacent these metal frames and should prevent drain gasket, reach airtight effect; The thickness of this metal frame is than the thicker of this battery lead plate;
Wherein the upper end of this first outside plate and this second outside plate is provided with a plurality of first vias altogether; The upper end of this first metal sheet and this second metal sheet is provided with a plurality of second vias altogether; The upper end of this battery lead plate is provided with at least one the 3rd via; This first via, this second via and the 3rd via containing in the scope of lid at this first through hole; Closely clamp this first metal sheet, this multi-disc metal frame and this second metal sheet between this first outside plate and this second outside plate in regular turn and secure bond is integral, should combine closely by anti-drain gasket by a slice between adjacent this first metal sheet and this metal frame; Should combine closely by anti-drain gasket by a slice between this adjacent metal frame and this second metal sheet; Make this first metal sheet, these a plurality of metal frames and this second metal sheet reach airtight effect; Make between this first metal sheet, this multi-disc battery lead plate and this second metal sheet electrolyzer that forms a plurality of serial connections, required voltage when electrolysis being provided by this first metal sheet and this second metal sheet.
Description of drawings
Other purpose of the present invention, effect see also accompanying drawing and embodiment, specify as follows, wherein:
Fig. 1 has the synoptic diagram of the hydrogen and oxygen electrolyzing device of composite structure battery lead plate for the present invention.
Synoptic diagram during the unassembled screw rod of hydrogen and oxygen electrolyzing device that Fig. 2 has the composite structure battery lead plate for the present invention.
Fig. 3 is the synoptic diagram of first outside plate of the present invention, anti-drain gasket and first metal sheet.
Fig. 4 is the synoptic diagram of second outside plate of the present invention, anti-drain gasket and second metal sheet.
Fig. 5 is the synoptic diagram of dividing plate of the present invention, metal frame, battery lead plate and anti-drain gasket.
Fig. 6 is the combination synoptic diagram of dividing plate of the present invention, metal frame, battery lead plate and anti-drain gasket.
Fig. 7 has the hydrogen and oxygen electrolyzing device connection water tank of composite structure battery lead plate and the synoptic diagram of DC power supply for the present invention.
Embodiment
Shown in Fig. 1 to 6; The present invention has the hydrogen and oxygen electrolyzing device 1 of composite structure battery lead plate, comprises first outside plate 11, second outside plate 12, first metal sheet 13, second metal sheet 14, the anti-drain gasket 15 of multi-disc, multi-disc battery lead plate 16, multi-disc metal frame 17 and 18 compositions of a plurality of dividing plate.
Like Fig. 3, shown in Figure 4, first outside plate 11 and second outside plate 12 can be of similar shape; The periphery of first outside plate 11 and second outside plate 12 is respectively equipped with a plurality of corresponding first holes 111 and second hole 121; The upper end of first outside plate 11 and second outside plate 12 is provided with a plurality of first vias 10 altogether, a plurality of first vias 10 can be located at first outside plate 11 or second outside plate 12 one of them, or both are equipped with first via 10.The upper end of first metal sheet 13 and second metal sheet 14 is provided with respectively corresponding to the 3rd hole 131 in first hole 111 and second hole 121 and the 4th hole 141; The upper end of first metal sheet 13 and second metal sheet 14 is provided with a plurality of second vias 100 corresponding to first via 10 altogether; A plurality of second vias 100 can be located at first metal sheet 13 or second metal sheet 14 one of them, or both are equipped with second via 100.The upper end of first metal sheet 13 and second metal sheet 14 is provided with the 5th hole 132 and the 6th hole 142 respectively.The 3rd hole 131 and the 4th hole 141 are respectively greater than first hole 111 and second hole 121; Second via 100 is positioned at the below in the 3rd hole 131 and the 4th hole 141; The 5th hole 132 and the 6th hole 142 lay respectively at the top in the 3rd hole 13 and the 4th hole 141.Clamp an anti-drain gasket 15 between first outside plate 11 and first metal sheet 13 to reach airtight effect.Clamp an anti-drain gasket 15 between second outside plate 12 and second metal sheet 14 to reach airtight effect.The upper end of first metal sheet 13 and second metal sheet 14 is higher than the upper end of first outside plate 11 and second outside plate 12 respectively.
Like Fig. 3, Fig. 5, shown in Figure 6, nonconducting anti-drain gasket 15 is the frame shape, has large-area first through hole 151.The position that one end face of anti-drain gasket 15 is positioned at contiguous through hole 151 is provided with cyclic groove 152, the periphery of groove 152 hold electrodes plates 16.The upper end of battery lead plate 16 is provided with at least one the 3rd via 161.Metal frame 17 has large-area second through hole 171; Two relative longitudinal medials of the upper end of metal frame 17 have the auricle 172 that subtend is extended respectively; Auricle 172 is provided with catching groove 173.Dividing plate 18 is strip, has first guide groove 181 and second guide groove 182 of the upper end and the lower end of a plurality of connection dividing plates 18; First guide groove 181 is shape wide at the top and narrow at the bottom, makes liquid be easier to flowed to by the below of first guide groove 181 top of first guide groove 181; Second guide groove 182 is low wide and up narrow shape, makes liquid be easier to flowed to by the top of second guide groove 182 below of second guide groove 182; The two ends of dividing plate 18 have the buckle ear 183 corresponding to catching groove 173 respectively.
Like Fig. 5, shown in Figure 6, after the groove 152 of anti-drain gasket 15 1 end faces of a slice holds the periphery of a slice battery lead plate 16, against a slice metal frame 17; The periphery of battery lead plate 16 is also against metal frame 17; Clamp the anti-drain gasket 15 of a slice battery lead plate 16 and a slice between two adjacent metal frames 17; Metal frame 17 two inboard catching grooves 173 fasten the buckle ear 183 at dividing plate 18 two ends respectively, make the metal frame 17 inboard dividing plates 18 that combine, and are as shown in Figure 6.
Like Fig. 1-shown in Figure 6, between first outside plate 11, first metal sheet 13, multi-disc metal frame 17, second metal sheet 14 and second outside plate 12, place an anti-drain gasket 15 respectively; Anti-drain gasket 15 between the two adjacent metal frames 17 combines a battery lead plate 16; Many screw rods 21 pass first hole 111, the 3rd hole 131, the 4th hole 141 and second hole 121 respectively; The two ends of screw rod 21 are spirally connected fixing with nut 23 in socket pad 22 backs respectively; Make between first outside plate 11 and second outside plate 12 and have holding force; Closely clamp first metal sheet 13, multi-disc metal frame 17, multi-disc battery lead plate 16, the anti-drain gasket 15 of multi-disc and second metal sheet 14 in regular turn, and secure bond is integral; Many screw rods 21 do not contact with first metal sheet 13 and second metal sheet 14 and multi-disc metal frame 17 respectively; Two vertical relatively outsides of metal frame 17 have the depression 174 corresponding to screw rod 21 respectively, and screw rod 21 passes depression 174.Between adjacent first metal sheet 13 and metal frame 17, between adjacent two battery lead plates 16, and the adjacent metal frame 17 and second metal sheet 14 between; Combine closely by anti-drain gasket 15 respectively; Make first metal sheet 13, second metal sheet 14, and a plurality of metal frames 17 reach airtight effect; Make the electrolyzer 30 that forms a plurality of serial connections between first metal sheet 13, multi-disc battery lead plate 16 and second metal sheet 14; Can put into electrolytic solution 31 respectively, required voltage when electrolysis being provided by first metal sheet 13 and second metal sheet 14.First via 10, second via 100 and the 3rd via 161 containing in the scope of lid at first through hole 151.
The thickness of metal frame 17 is than the thicker of battery lead plate 16; The heat that produces in the electrolytic process can conduct to the outside of electrolyzer 30 faster via thicker metal frame 17, and the periphery of metal frame 17 can be exposed in the air or in other fluid; Therefore be easy to heat radiation, can significantly promote radiating efficiency.
As shown in Figure 6, the below of dividing plate 18 contiguous the 3rd vias 161 is divided into the space of dividing plate 18 tops and the space of dividing plate 18 belows with electrolyzer 30; Electrolytic solution 31 in the electrolyzer 30 between two battery lead plates 16; Be easier to flow to the space of dividing plate 18 tops by first guide groove 181 of dividing plate 18; And be easier to flow to the space of dividing plate 18 belows by second guide groove 182; Make convenient hydrogen, the oxygen gas mixture that drives after the electrolysis of mobile electrolytic solution 31, first guide groove 181 that up moves through dividing plate flows to the space of the top of dividing plate 18, flow to the outside of electrolyzer 30 then via the 3rd via 161, second via 100 and first via 10.
As shown in Figure 7, two first guide holes 10 of first outside plate 11 of the present invention can be distinguished socket first pipe 41 and second pipe 42, and other first via 10 is by stopper 24 sealings.First pipe, 41 and second pipe 42 connects first valve 43 and second valve 44 respectively.Is communicated with the 3rd pipe 45 between first valve 43 and the water tank 51, in the water input electrolyzer 30 in first valve, the 43 may command water tanks 51, with additional electrolytic solution.Second valve 44 connects the 4th pipe 46; Second valve, 44 control electrolyzers, 30 output hydrogen, oxygen gas mixture drain into other device via the 4th pipe 46.The positive pole of DC power supply 52 and negative pole are by first lead 53 and second lead 54; Connect first metal sheet 13 and second metal sheet 14 respectively; Provide between first metal sheet 13 and second metal sheet 14 and produce potential difference; Make first metal sheet 13 and second metal sheet 14 respectively as positive pole and negative pole, to carry out electrolytic action.The 5th hole 132 and the 6th hole 142 are in order to combine first lead 53 and second lead 54 respectively.
The present invention produces a large amount of hydrogen, oxygen gas mixture, and the boiler and the required fuel of heating equipment of traditional combustion heavy oil, gas or the like can be provided, reach the gain of heat by the auxiliary of hydrogen, oxygen gas mixture, economize can with the effect of joint carbon.
The thicker metal frame of peripheral bond one at battery lead plate of the present invention cooperates anti-drain gasket to form airtight construction, and the heat that battery lead plate produces in electrolytic process can conduct to the outside of electrolyzer faster via metal frame, but efficiently radiates heat increases electrolytic efficiency; And the resistance that can select for use thin battery lead plate to reduce battery lead plate increases electrolytic efficiency; And make metal frame combine a dividing plate,, make the bubble of hydrogen, oxygen gas mixture move to the top of electrolytic solution rapidly by the upper and lower circulation of a plurality of difform guide groove guiding electrolytic solution of placing on the dividing plate.The present invention can improve known hydrogen and oxygen electrolyzing device and battery lead plate thereof, and promotes electrolytic efficiency.
The above record is merely the embodiment that utilizes technology contents of the present invention, anyly is familiar with modification, variation that this operator uses the present invention to do, in the claim scope that all belongs to the present invention and advocated.

Claims (9)

1. hydrogen and oxygen electrolyzing device with composite structure battery lead plate comprises:
One first outside plate;
One second outside plate;
One first metal sheet;
One second metal sheet;
Multi-disc is prevented drain gasket; Should prevent that drain gasket was non-conductive, be the frame shape, have large-area first through hole; The position that one end face of this anti-drain gasket is positioned at contiguous this through hole is provided with the cyclic groove;
The multi-disc battery lead plate;
The multi-disc metal frame; This metal frame has large-area second through hole; A slice should prevent that the groove of drain gasket held the periphery of this battery lead plate of a slice; The periphery that should prevent drain gasket and this battery lead plate is respectively against this metal frame; Clamp this battery lead plate of a slice and a slice between two adjacent these metal frames and should prevent drain gasket, reach airtight effect; The thickness of this metal frame is than the thicker of this battery lead plate;
Wherein the upper end of this first outside plate and this second outside plate is provided with a plurality of first vias altogether; The upper end of this first metal sheet and this second metal sheet is provided with a plurality of second vias altogether; The upper end of this battery lead plate is provided with at least one the 3rd via; This first via, this second via and the 3rd via containing in the scope of lid at this first through hole; Closely clamp this first metal sheet, this multi-disc metal frame and this second metal sheet between this first outside plate and this second outside plate in regular turn and secure bond is integral, should combine closely by anti-drain gasket by a slice between adjacent this first metal sheet and this metal frame; Should combine closely by anti-drain gasket by a slice between this adjacent metal frame and this second metal sheet; Make this first metal sheet, these a plurality of metal frames and this second metal sheet reach airtight effect; Make between this first metal sheet, this multi-disc battery lead plate and this second metal sheet electrolyzer that forms a plurality of serial connections, required voltage when electrolysis being provided by this first metal sheet and this second metal sheet.
2. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 1 is wherein clamped a slice and should be prevented drain gasket between this first metal sheet and this first outside plate, clamping a slice between this second metal sheet and this second outside plate should anti-drain gasket.
3. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 2, wherein the upper end of the upper end of this first metal sheet and this second metal sheet is higher than the upper end of this first outside plate and the upper end of this second outside plate respectively.
4. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 3, wherein the periphery of this first outside plate and second outside plate is respectively equipped with a plurality of corresponding first holes and second hole; The upper end of this first metal sheet and this second metal sheet is provided with respectively corresponding to the 3rd hole in this first hole and this second hole and the 4th hole; The 3rd hole and the 4th hole are respectively greater than this first hole and this second hole; Many screw rods pass this first hole, the 3rd hole, the 4th hole and this second hole respectively; These screw rod two ends are spirally connected fixing respectively with nut, make between this first outside plate and this second outside plate to have holding force; This screw rod does not contact with this first metal sheet and this second metal sheet and this metal frame respectively.
5. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 4, wherein two of this metal frame vertical relatively outsides have the depression corresponding to this screw rod respectively; This screw rod passes this depression.
6. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 5, wherein two this first guide hole difference socket, first pipe and second pipe; This first pipe and this second pipe connect first valve and second valve respectively; Be communicated with the 3rd pipe between this first valve and the water tank; This this electrolyzer of first valve control water input; This second valve connects the 4th pipe; This electrolyzer output oxyhydrogen of this second valve control; The positive pole of one direct current power supply unit and negative pole connect this first metal sheet and this second metal sheet by first lead and second lead respectively.
7. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 6, wherein the upper end of this first metal sheet and this second metal sheet is provided with the 5th hole and the 6th hole respectively; The 5th hole and the 6th hole lay respectively at the top in the 3rd hole and the 4th hole; The 5th hole and the 6th hole are in order to combine this first lead and this second lead respectively.
8. like each described hydrogen and oxygen electrolyzing device with composite structure battery lead plate in the claim 1 to 7, wherein this metal frame inboard combines a dividing plate; The below of contiguous the 3rd via of this dividing plate is divided into the space of this dividing plate top and the space of this dividing plate below with this electrolyzer; This dividing plate has at least one first guide groove and second guide groove of being communicated with this dividing plate upper end and lower end; This first guide groove is shape wide at the top and narrow at the bottom; This second guide groove is low wide and up narrow shape.
9. the hydrogen and oxygen electrolyzing device with composite structure battery lead plate as claimed in claim 8, wherein these metal frame two relative longitudinal medials have the auricle that subtend is extended respectively; This auricle is provided with catching groove; The two ends of this dividing plate have the buckle ear corresponding to this catching groove respectively; This catching groove fastens this buckle ear.
CN2010102263427A 2010-07-08 2010-07-08 Oxyhydrogen electrolysis device with composite-structured battery lead plate Pending CN102312248A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010102263427A CN102312248A (en) 2010-07-08 2010-07-08 Oxyhydrogen electrolysis device with composite-structured battery lead plate

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010102263427A CN102312248A (en) 2010-07-08 2010-07-08 Oxyhydrogen electrolysis device with composite-structured battery lead plate

Publications (1)

Publication Number Publication Date
CN102312248A true CN102312248A (en) 2012-01-11

Family

ID=45425800

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010102263427A Pending CN102312248A (en) 2010-07-08 2010-07-08 Oxyhydrogen electrolysis device with composite-structured battery lead plate

Country Status (1)

Country Link
CN (1) CN102312248A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103436907A (en) * 2013-08-27 2013-12-11 黄晓云 Vehicle-mounted oxyhydrogen electrolysis device
CN109267085A (en) * 2018-09-25 2019-01-25 河南天源净光科技研发有限公司 A kind of apparatus for electrolyzing and carbon combustion-supporting system is removed equipped with the device

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10219489A (en) * 1997-02-07 1998-08-18 Shinko Pantec Co Ltd Electrode plate for hydrogen and oxygen generator
US5843292A (en) * 1993-09-06 1998-12-01 Hydrogen Technology Ltd. Electrolysis systems
US20010009223A1 (en) * 2000-10-24 2001-07-26 Jae-Heung Lee Apparatus for generating a mixture gas of oxygen and hydrogen
TW562875B (en) * 1999-09-27 2003-11-21 Shinko Pantec Co Ltd Electrode plate for water electrolysis device, electrode plate unit, solid electrolyte membrane unit, and electrochemical cell
CN1505698A (en) * 2001-05-02 2004-06-16 �ձ��Ƽ��ɷ����޹�˾ Hydrogen-oxygen gas generator and method of generating hydrogen-oxygen gas using the generator
CN101054678A (en) * 2007-02-14 2007-10-17 宁波和利氢能源科技有限公司 Integrated series-parallel combined electrolysis bath

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5843292A (en) * 1993-09-06 1998-12-01 Hydrogen Technology Ltd. Electrolysis systems
JPH10219489A (en) * 1997-02-07 1998-08-18 Shinko Pantec Co Ltd Electrode plate for hydrogen and oxygen generator
TW562875B (en) * 1999-09-27 2003-11-21 Shinko Pantec Co Ltd Electrode plate for water electrolysis device, electrode plate unit, solid electrolyte membrane unit, and electrochemical cell
US20010009223A1 (en) * 2000-10-24 2001-07-26 Jae-Heung Lee Apparatus for generating a mixture gas of oxygen and hydrogen
CN1505698A (en) * 2001-05-02 2004-06-16 �ձ��Ƽ��ɷ����޹�˾ Hydrogen-oxygen gas generator and method of generating hydrogen-oxygen gas using the generator
CN101054678A (en) * 2007-02-14 2007-10-17 宁波和利氢能源科技有限公司 Integrated series-parallel combined electrolysis bath

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103436907A (en) * 2013-08-27 2013-12-11 黄晓云 Vehicle-mounted oxyhydrogen electrolysis device
CN103436907B (en) * 2013-08-27 2016-08-24 宁波江东晟创工业产品设计有限公司 Vehicular hydrogen and oxygen electrolyzing device
CN109267085A (en) * 2018-09-25 2019-01-25 河南天源净光科技研发有限公司 A kind of apparatus for electrolyzing and carbon combustion-supporting system is removed equipped with the device
CN109267085B (en) * 2018-09-25 2024-06-11 河南天源净光科技研发有限公司 Water electrolysis device and be equipped with device's decarbonization combustion-supporting system

Similar Documents

Publication Publication Date Title
CN102569843B (en) Embedded electrode frame of flow cell pile
CN101847724B (en) Bipolar plate frame and galvanic pile of flow battery
US20140061060A1 (en) Electrolytic cell and method of use thereof
CN104716392B (en) A kind of flow battery structure
CN106505233B (en) A kind of microbiological fuel cell of bamboo charcoal bundled tube bubbling air cathode construction
CN105529478A (en) Fuel cell bipolar plate and electric pile constituted by same
CN100376055C (en) Flow battery making electrolyte cross porous electrode
CN102312248A (en) Oxyhydrogen electrolysis device with composite-structured battery lead plate
Emam et al. Enhancing alkaline water electrolysis through innovative approaches and parametric study
CN114232014A (en) Bipolar plate, solid oxide electrolytic cell stack and application of bipolar plate and solid oxide electrolytic cell stack
CN220099216U (en) AEM electrolytic water hydrogen production integrated equipment
CN204651400U (en) A kind of solid oxide fuel cell connecting board anode-side structure
CN205069768U (en) Preparation facilities of full vanadium electrolyte of high concentration
CN103484890A (en) Hydrogen-oxygen generator
CN203271957U (en) Car electrolytic cell generating oxyhydrogen and car combustion-supporting oxyhydrogen generation system
CN203653710U (en) Bipolar membrane pole distance electrolytic cell with circulating pipe
CN216427428U (en) Bipolar plate and solid oxide electrolytic cell stack
CN202337831U (en) Hydrogen and oxygen separation electrolytic cell
CN212894043U (en) Electrode binding post sealing structure for sewage treatment electrolysis device
CN201933160U (en) Natural circulation ion-exchange membrane electrolytic cell
CN102242377B (en) Method for producing metal sodium through electrolysis in bipolar electrolytic cell
TWI394867B (en) Hydrogen electrolysis device with composite structure electrode plate
CN202945332U (en) System for producing hydrogen by electrolyzing medium-pressure water by self-circulating of electrolyte
CN202916239U (en) Multifunctional chemical tank for researching and developing all-vanadium redox flow battery in laboratory
CN205355158U (en) High power density PEMFC sealing connection spare for pile

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
AD01 Patent right deemed abandoned

Effective date of abandoning: 20120111

C20 Patent right or utility model deemed to be abandoned or is abandoned