CN2487744Y - Hydrogen and oxygen fuel generator - Google Patents

Hydrogen and oxygen fuel generator Download PDF

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Publication number
CN2487744Y
CN2487744Y CN 01226883 CN01226883U CN2487744Y CN 2487744 Y CN2487744 Y CN 2487744Y CN 01226883 CN01226883 CN 01226883 CN 01226883 U CN01226883 U CN 01226883U CN 2487744 Y CN2487744 Y CN 2487744Y
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electrolyzer
storage tank
liquid level
aqua storage
temperature regulation
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CN 01226883
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林文章
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Abstract

The utility model relates to a hydrogen and oxygen fuel generator, which mainly consists of a machine body, a first electrobath, a second electrobath, a cooling fan, a water storage trough, a temperature adjustment tank, a heat radiating fin pipe and an electric distribution panel; the first electrobath and the second electrobath have an excellent cooling effect, the heat radiating fin pipe can cool and dry hydrogen and oxygen to improve the quality of hydrogen and oxygen; the arrangement of the water storage trough can replenish the electrolyte for the first electrobath and the second electrobath at any moment so as to prolong the electrolyzed time; the arrangement of the water storage trough, a liquid level detecting pipe beside the temperature adjustment tank, the liquid level sensor, the water storage tank and a liquid storage box can be supplied with the electrolyte and the temperature cooling liquid at any moment without shutting down.

Description

Hydrogen-oxygen fuel produces machine
The utility model relates to a kind of hydrogen-oxygen fuel and produces machine, particularly relates to a kind of hydrogen-oxygen fuel generation machine that can replenish electrolytic solution and cooling liquid in non-stop-machine situation at any time.
Press, general hydrogen-oxygen fuel generation machine is to produce hydrogen and oxygen after making the electrolytic solution electrolysis with electrolysis mode, and output promptly forms oxyhydrogen fuel after hydrogen and the oxygen mix.Industrial community has designed and has produced multiple oxyhydrogen machine at present, and common oxyhydrogen machine mainly is made of casing, electrolyzer, heat abstractor, explosion-proof equipment, cooling tube, gas receiver and electric box.Wherein, heat abstractor is made of spiral helicine radiating pipe and fan, and fan is positioned at the outside of radiating pipe, and the exit end of radiating pipe connects a lift pump; Electrolyzer is made of a plurality of electrolytic strips in the form of sheets, and its both sides external respectively is provided with a temperature controlled switch, and its rear side is provided with a water injection pipe, the quick-fried device of setting up defences on it, and its front side is provided with a water monitor, and its outside is provided with a water level pipe; Gas receiver is provided with a conduit and communicates with electrolyzer, its external tensimeter in upper end and by pressure controller control, to predict the pressure store of hydrogen and oxygen gas mixture; The cooling tube bottom is provided with a conduit and communicates with gas receiver, the external bypass pipe of one side, and the explosion-proof equipment bottom is provided with a conduit and cooler conducting, its external work potentiostat, the work potentiostat is provided with a tensimeter also by the external spray gun of conduit.Based on above structure, the water electrolysis that electrolyzer is inner with it, the hydrogen and oxygen gas mixture that is produced is collected by gas receiver, more successively by behind cooling tube, explosion-proof equipment, the work potentiostat by the spray gun ejection, to form hydrogen-oxygen fuel for use.
Only look into, the mixed fuel of hydrogen and oxygen generation machine of said structure remains in following defective and remains to be improved.
At first, electrolyzer is formed by majority electrolytic strip dense arrangement in the form of sheets, electrolytic solution is annotated and is filled between each electrolytic strip, therefore electrolytic solution flowing between each electrolytic strip is very slow, when the electrolytic solution in the lift pump extraction electrolyzer of heat abstractor dispels the heat, the electrolytic solution of electrolyzer water side falls sharply, thereby makes the groove electrolyte inside be skewed.This situation will make the insufficient electrolyte of electrolyzer water side, cause electrolysis effectiveness not good, even make electrolytic strip Yin Gaowen and fouling, and then influence electrolysis effectiveness.
Secondly, the size of electrolyzer designs by gas production rate, and gas production rate is directly proportional with water loss, when electrolytic solution is consumed to a certain degree, must shuts down make up water, thereby make the working hour restricted greatly.
Moreover, though the shortcomings such as black smoke, toxicity and carbon monoxide that knallgas does not have gases such as acetylene, combustion gas to have, but inflammable and explosive gas, though the design of explosion-proof equipment and gas receiver is arranged, but still do not meet with the safety requirements made from usefulness.
The purpose of this utility model promptly is, provides a kind of hydrogen-oxygen fuel that can replenish electrolytic solution and cooling liquid under not shutdown situation at any time to produce machine.
The purpose of this utility model is realized by following technical scheme.
A kind of improved hydrogen-oxygen fuel produces machine, it is characterized in that being made of board body, first electrolyzer, second electrolyzer, cooling fan, aqua storage tank, temperature regulation groove, a plurality of heat radiating fin pipe and switchboard group; The outer rim of described board body is covered with shell, and the bottom is provided with the air intake machine, and shell one side is provided with air outlet opening; Playscript with stage directions body lower edge can be organized and establish a water tank and a liquid-storing box, respectively is provided with the pump that can pump the electrolytic solution in water tank, the liquid-storing box, cooling liquid in this water tank and the liquid-storing box; Described first electrolyzer is to be fixedly arranged on board body intake opening top, is established and is formed by the bolt locking by multi-disc electrolytic strip and a plurality of insulation cushion rubber interleaved set, and one side lower edge is provided with first water-in, and the both sides upper limb respectively is provided with first air outlet; Described second electrolyzer is fixedly arranged on board body intake opening top, is established and is formed by the bolt locking by multi-disc electrolytic strip and a plurality of insulation cushion rubber interleaved set, and one side lower edge is provided with second water-in, and the both sides upper limb respectively is provided with second air outlet; Described cooling fan is set up in the top of first electrolyzer and second electrolyzer; Described aqua storage tank lower edge is provided with two water outlets and links to each other with first water-in of first electrolyzer and second water-in of second electrolyzer by conduit, the aqua storage tank upper limb is provided with a plurality of inlet mouths and air-lift tube, the air-lift tube upper limb is provided with two air outlets, top winding one relief cover; The cell wall group of aqua storage tank is established a liquid level detecting pipe, this liquid level detecting pipe is to connect with aqua storage tank, its tube wall is to be preferable with transparent material, the liquid level detecting pipe is provided with the two groups of level sensors that can adjust high and low position, the aqua storage tank lower edge is provided with an inhalent siphon again, winding one non-return valve on the inhalent siphon, an end of inhalent siphon can be attached to set pump in the water tank of board body, this level sensor to this pump output signal to control its keying; Described temperature regulation groove is the cell body of a sealing, which is provided with a low temperature tracheae and a high temperature tracheae, the pipe end of this low temperature tracheae is positioned at the inner root edge of temperature regulation groove, the pipe end of high temperature tracheae then is positioned at the inner upper limb of temperature regulation groove, winding one non-return valve again on the low temperature tracheae, establish an air-lift tube in temperature regulation groove top in addition, this air-lift tube upper limb is provided with a terminal air outlet, the top is winding one relief cover then, and the cell wall group of temperature regulation groove is established a liquid level tube and a liquid level detecting pipe, this liquid level tube and liquid level detecting pipe are to connect with the temperature regulation groove, its tube wall is preferable with transparent material, be provided with the level sensor that to adjust high and low position in the liquid level detecting pipe again, temperature regulation groove lower edge is provided with an inhalent siphon again, winding one non-return valve on the inhalent siphon, an end of inhalent siphon can link to each other with set pump in the liquid-storing box of board body, and this level sensor is transported to pump to control its keying with signal; Described heat radiating fin pipe is arranged at the cooling fan top, the one end is an inlet end, the other end is the outlet side, which is provided with the multi-disc radiating fin, inlet end links to each other with first air outlet of first electrolyzer, second air outlet of second electrolyzer by conduit, and the outlet side links to each other with a plurality of inlet mouths of aqua storage tank upper limb by conduit; Described switchboard group is arranged at the cooling fan top, dispose a plurality of electrical elements and pressure switch, relief valve on it, one end of this pressure switch is provided with a cohesive end, one end of relief valve is provided with the gas input terminus, the relief valve the other end is provided with two or more gas output ends, the cohesive end of pressure switch is linked to each other with the air outlet of aqua storage tank, and the gas input terminus of relief valve is linked to each other with the air outlet of aqua storage tank, by conduit the gas output end of relief valve is linked to each other with the low temperature tracheae and the high temperature tracheae of temperature regulation groove again.
The purpose of this utility model can also further realize by following technical measures.
Aforesaid improved hydrogen-oxygen fuel produces machine, and wherein the cell wall of aqua storage tank is provided with liquid level tube.
Aforesaid improved hydrogen-oxygen fuel produces machine, and wherein the cell wall of temperature regulation groove is provided with liquid level tube.
Aforesaid improved hydrogen-oxygen fuel produces machine, and wherein winding has the non-return valve that prevents that cooling liquid from refluxing on the low temperature tracheae of temperature regulation groove.
The utility model can replenish electrolytic solution and cooling liquid at any time under not shutdown situation.
Below in conjunction with specific embodiment the technical characterictic that the utility model hydrogen-oxygen fuel produces machine is described in further detail.
Fig. 1,2 is D structure figure of the present utility model;
Fig. 3 is one of component construction of the present utility model and assembling synoptic diagram;
Fig. 4 is the structural map of first electrolyzer and second electrolyzer;
Fig. 5,6,7 is respectively two, three, four of component construction of the present utility model and assembling synoptic diagram;
Fig. 8 is the aqua storage tank sectional view;
Fig. 9 is a temperature regulation groove sectional view;
Figure 10 is switchboard set constructor figure;
Figure 11 is simple and easy synoptic diagram for pipeline disposes.
Shown in figure 1,2,6, the utility model hydrogen-oxygen fuel produces machine and mainly is made up of board body 10, first electrolyzer 20, second electrolyzer 30, cooling fan 40, aqua storage tank 50, temperature regulation groove 60, heat radiating fin pipe 70 and switchboard group 80.
Shown in figure 1,2, board body 10 is formed by the metallic rod framework, its outer rim is covered with shell 11, its bottom is provided with intake opening 12, shell 11 1 sides are provided with air outlet opening 13, and board body 10 lower edges can be organized and establish a water tank 14 and liquid-storing box 15 and be respectively equipped with pump to extract electrolytic solution and cooling liquid wherein.
Shown in figure 3,4, first electrolyzer 20 is fixedly arranged on the intake opening top of board body 10, established by some electrolytic strips 21 and insulation cushion rubber interleaved set and to form and to utilize bolt 23 lockings, one side lower edge is provided with first water-in 24, and its both sides upper limb respectively is provided with first air outlet 25.
Shown in figure 3,4, second electrolyzer 30 is fixedly arranged on first electrolyzer, 20 sides of board body 10 intake openings top, its structure is identical with first electrolyzer 20, also establish and form and utilize bolt 33 lockings by electrolytic strip 31 and insulation cushion rubber interleaved set, one side lower edge is provided with second water-in 34, and the both sides upper limb respectively is provided with second air outlet 35.
Shown in figure 2,5, cooling fan 40 is set up in the top of first electrolyzer 20 and second electrolyzer 30, and when cooling fan 40 started, air was sucked and discharged by shell 11 1 side air-out holes 13 by board body 10 bottom air inlet holes 12.
With reference to figure 6, shown in 8, aqua storage tank 50 is arranged in the board body 10 and is the cell body of a sealing, its lower edge is provided with two water outlets 51, its upper limb is provided with some inlet mouths 52 and air-lift tube 53, the upper limb of air-lift tube 53 is provided with two air outlets 54, its top winding one relief cover 55, the cell wall group of aqua storage tank 50 is established a liquid level charactron 56 and liquid level detecting pipe 57, liquid level charactron 56 and liquid level detecting pipe 57 connect with aqua storage tank 50, its tube wall is good with transparent material, liquid level is detectd side pipe 57 and is provided with the two groups of level sensors 58 that can adjust high and low position, aqua storage tank 50 lower edges also are provided with inhalent siphon 59 and winding one non-return valve 591, one end of inhalent siphon 59 can be attached to the pump of the water tank 14 of board body 10, and this pump can start switching by the signal of level sensor 58.
With reference to figure 6, shown in 9, temperature regulation groove 60 is arranged in the board body 10 and is a sealing cell body, which is provided with a low temperature tracheae 61 and high temperature tracheae 62, the pipe end of low temperature tracheae 61 is positioned at temperature regulation groove 60 inner root edges, the pipe end of high temperature tracheae 62 then is positioned at temperature regulation groove 60 inner upper limbs, winding one non-return valve 63 again on the low temperature tracheae 61, temperature regulation groove 60 tops are provided with an air-lift tube 64 in addition, the upper limb of air-lift tube 64 is provided with terminal air outlet 65, its top winding one relief cover 66, the cell wall group of temperature regulation groove 60 is established a liquid level charactron 67 and liquid level detecting pipe 68, liquid level charactron 67 and liquid level detecting pipe 68 connect with temperature regulation groove 60, its tube wall is good with transparent material, liquid level detecting pipe 68 is provided with the level sensor 69 that can adjust high and low position, and temperature regulation groove 60 lower edges are provided with inhalent siphon 691, winding one non-return valve 692 on the inhalent siphon 691, one end of inhalent siphon 691 can be attached to the pump of board body 10 liquid-storing boxs 15, and this pump can start switching by the signal of level sensor 69.
Liquid level detecting pipe 68 in the utility model and level sensor 69 and the circuit that its control pump opens and closes, be the commercially available prod and commonly use the simple designs circuit, be that the person of ordinary skill in the field can be unlabored, so do not give unnecessary details.
With reference to shown in Figure 7, heat radiating fin pipe 70 is arranged at cooling fan 40 tops, and the one end is an inlet end 71, and the other end is outlet side 72, and heat radiating fin pipe 70 is provided with a plurality of radiating fins 73.
Shown in figure 2,10, switchboard group 80 is arranged at cooling fan 40 tops, dispose some electrical elements and pressure switch 81 and relief valve 82 on it, pressure switch 81 1 ends are provided with cohesive end 83, relief valve 82 1 ends are provided with gas input terminus 84, and the other end then is provided with two or more gas output ends 85.
With reference to shown in Figure 11, utilize conduit 90 following each port can be connected binding, that is: aqua storage tank 50 water outlets 51 and first electrolyzer, 20 first water-ins 24, aqua storage tank 50 water outlets 51 and second electrolyzer, 30 second water-ins 34, first electrolyzer, 20 first air outlets 25 and heat radiating fin pipe 70 inlet ends 71, second electrolyzer, 30 second air outlets 35 and heat radiating fin pipe 70 inlet ends 71, heat radiating fin pipe 70 outlet sides 72 and aqua storage tank 50 upper limb inlet mouths 52, the cohesive end 83 of aqua storage tank 50 air-lift tubes, 53 upper limb air outlets 54 and switchboard group 80 pressure switches 81, the gas output end 85 of aqua storage tank 50 air-lift tubes, 53 upper limb air outlets 54 and switchboard group 80 relief valves 82, the gas output end 85 and the temperature regulation groove 60 low temperature tracheaes 61 of relief valve 82, the gas output end 85 and the temperature regulation groove 60 high temperature tracheaes 62 of relief valve 82.
Based on above structure, an amount of electrolytic solution is injected in the aqua storage tank 50 and with in the cooling liquid implantation temperature regulating tank 60, electrolytic solution can be imported in first electrolyzers 20 and second electrolyzer 30 by first water-in 24 and second water-in 34 respectively by two water outlets 51 of aqua storage tank 50, through electrolytic strip 21,31 effect and produce hydrogen and oxygen, oxyhydrogen can be by first air outlet 25 of first electrolyzer 20 and second air outlet, 35 outputs of second electrolyzer 30, deliver to aqua storage tank 50 through heat radiating fin pipe 70, deliver to the pressure switch 81 and the relief valve 82 of switchboard group 80 more respectively by the air outlet 54 of air-lift tube 53 upper limbs, by the gas output end 85 of relief valve 82 oxyhydrogen is sent in the temperature regulation groove 60 again, by temperature regulation groove 60 terminal air outlets 65 oxyhydrogen is exported for directly using at last, need do not established gas receiver in addition.By above structure as can be known, the utility model will have the following advantages:
1, first electrolyzer 20 and second electrolyzer 30 are established, are formed by some bolt 23,33 lockings by electrolytic strip 21,31 and insulation cushion rubber interleaved set, so electrolytic strip 21,31 directly exposes in the outside, first electrolyzer 20 and second electrolyzer 30 are fixedly arranged on board body 10 intake openings top and cooling fan 40 belows again, so when cooling fan 40 starts, air is sucked by intake opening and directly first electrolyzer 20 and second electrolyzer 30 is cooled off, and is discharged by the air outlet opening 13 of shell 11 1 sides again; Because cooling fan 40 inhaled airs directly act on electrolytic strip 21,31, so cooling performance is splendid.
2, the oxyhydrogen that produces through electrolysis has certain temperature and humidity, when heat radiating fin pipe 70 is delivered to aqua storage tank 50, because heat radiating fin pipe 70 is arranged at cooling fan 40 tops and the surface is provided with a plurality of radiating fins 73, so during the oxyhydrogen of high temperature, high humidity process radiating fin 70, can reduce its temperature and humidity, the globule that produces after the condensation can drop down onto in the aqua storage tank 50 and recycling; Through cooling, dried oxyhydrogen, its quality can be improved.
3, aqua storage tank 50 utilizes conduit 90 and links perforation with first electrolyzer 20 and second electrolyzer 30, the electrolytic solution of first electrolyzer 20 of supply at any time and second electrolyzer 30, with its electrolysis time of effective prolongation, can observe the electrolyte level of aqua storage tank 50, first electrolyzer 20 and second electrolyzer 30 by liquid level charactron 56.
4, when electrolytic solution injects aqua storage tank 50, electrolyte level can be shown by liquid level charactron 56, and the water level of liquid level detecting pipe 57 can be by the liquid level detecting of two level sensors 58, when the water level of aqua storage tank 50 is higher or lower than the reconnaissance range of level sensor 58, level sensor 58 promptly sends alarm signal (warning lamp or caution sound), when if the water level of aqua storage tank 50 is lower than the reconnaissance range of level sensor 58, level sensor 58 is notified the pump startup in the water tank 14 immediately, and electrolytic solution is pumped to aqua storage tank 50 through inhalent siphon 59; When electrolytic solution recovered normal liquid level, level sensor 58 promptly notified pump to quit work, and the non-return valve 591 on the inhalent siphon 59 can prevent that electrolytic solution from refluxing.
5, when cooling liquid implantation temperature regulating tank 60, its liquid level is promptly shown by liquid level charactron 67, and the liquid level of liquid level detecting pipe 68 is promptly by level sensor 69 detectings, when the liquid level of temperature regulation groove 60 is lower than the reconnaissance range of level sensor 69, level sensor 69 is notified the pump startup of liquid-storing box 15 immediately, cooling liquid is pumped to temperature regulation groove 60 through inhalent siphon 691, when cooling liquid is supplemented to normal liquid level, level sensor 69 promptly notifies pump to quit work, and set non-return valve 692 can prevent that cooling liquid from refluxing on the inhalent siphon 691.
6, utilize the designs such as relief cover 55 of non-return valve 63 on pressure switch 81, relief valve 82 and the temperature regulation groove 60 low temperature tracheaes 61 of switchboard group 80, relief cover 66, aqua storage tank 50, can improve the security of electrolysis operation; The oxyhydrogen that the utility model produced in addition can directly use and need not establish gas receiver in addition, also can improve the security of use.
In sum as can be known, the cooling performance of the utility model electrolyzer is good, and electrolysis time is long, oxyhydrogen quality height, and can replenish the electrolytic solution of aqua storage tank and the cooling liquid of temperature regulation groove under non-stop-machine situation at any time.

Claims (4)

1, a kind of improved hydrogen-oxygen fuel produces machine, it is characterized in that being made of board body, first electrolyzer, second electrolyzer, cooling fan, aqua storage tank, temperature regulation groove, a plurality of heat radiating fin pipe and switchboard group;
The outer rim of described board body is covered with shell, and the bottom is provided with the air intake machine, and shell one side is provided with air outlet opening; Board body lower edge can be organized and establish a water tank and a liquid-storing box, respectively is provided with the pump that can pump the electrolytic solution in water tank, the liquid-storing box, cooling liquid in this water tank and the liquid-storing box;
Described first electrolyzer is to be fixedly arranged on board body intake opening top, is established and is formed by the bolt locking by multi-disc electrolytic strip and a plurality of insulation cushion rubber interleaved set, and one side lower edge is provided with first water-in, and the both sides upper limb respectively is provided with first air outlet;
Described second electrolyzer is fixedly arranged on board body intake opening top, is established and is formed by the bolt locking by multi-disc electrolytic strip and a plurality of insulation cushion rubber interleaved set, and one side lower edge is provided with second water-in, and the both sides upper limb respectively is provided with second air outlet;
Described cooling fan is set up in the top of first electrolyzer and second electrolyzer;
Described aqua storage tank lower edge is provided with two water outlets and links to each other with first water-in of first electrolyzer and second water-in of second electrolyzer by conduit, the aqua storage tank upper limb is provided with a plurality of inlet mouths and air-lift tube, the air-lift tube upper limb is provided with two air outlets, top winding one relief cover; The cell wall group of aqua storage tank is established a liquid level detecting pipe, this liquid level detecting pipe is to connect with aqua storage tank, its tube wall is to be preferable with transparent material, the liquid level detecting pipe is provided with the two groups of level sensors that can adjust high and low position, the aqua storage tank lower edge is provided with an inhalent siphon again, winding one non-return valve on the inhalent siphon, an end of inhalent siphon can be attached to set pump in the water tank of board body, this level sensor to this pump output signal to control its keying;
Described temperature regulation groove is the cell body of a sealing, which is provided with a low temperature tracheae and a high temperature tracheae, the pipe end of this low temperature tracheae is positioned at the inner root edge of temperature regulation groove, the pipe end of high temperature tracheae then is positioned at the inner upper limb of temperature regulation groove, winding one non-return valve again on the low temperature tracheae, establish an air-lift tube in temperature regulation groove top in addition, this air-lift tube upper limb is provided with a terminal air outlet, the top is winding one relief cover then, and the cell wall group of temperature regulation groove is established a liquid level tube and a liquid level detecting pipe, this liquid level tube and liquid level detecting pipe are to connect with the temperature regulation groove, its tube wall is preferable with transparent material, be provided with the level sensor that to adjust high and low position in the liquid level detecting pipe again, temperature regulation groove lower edge is provided with an inhalent siphon again, winding one non-return valve on the inhalent siphon, an end of inhalent siphon can link to each other with set pump in the liquid-storing box of board body, and this level sensor is transported to pump to control its keying with signal;
Described heat radiating fin pipe is arranged at the cooling fan top, the one end is an inlet end, the other end is the outlet side, which is provided with the multi-disc radiating fin, inlet end links to each other with first air outlet of first electrolyzer, second air outlet of second electrolyzer by conduit, and the outlet side links to each other with a plurality of inlet mouths of aqua storage tank upper limb by conduit;
Described switchboard group is arranged at the cooling fan top, dispose a plurality of electrical elements and pressure switch, relief valve on it, one end of this pressure switch is provided with a cohesive end, one end of relief valve is provided with the gas input terminus, the relief valve the other end is provided with two or more gas output ends, the cohesive end of pressure switch is linked to each other with the air outlet of aqua storage tank, and the gas input terminus of relief valve is linked to each other with the air outlet of aqua storage tank, by conduit the gas output end of relief valve is linked to each other with the low temperature tracheae and the high temperature tracheae of temperature regulation groove again.
2, improved hydrogen-oxygen fuel according to claim 1 produces machine, it is characterized in that the cell wall of described aqua storage tank is provided with liquid level tube.
3, improved hydrogen-oxygen fuel according to claim 1 produces machine, it is characterized in that the cell wall of described temperature regulation groove is provided with liquid level tube.
4, improved hydrogen-oxygen fuel according to claim 1 produces machine, it is characterized in that winding has the non-return valve that prevents that cooling liquid from refluxing on the low temperature tracheae of described temperature regulation groove.
CN 01226883 2001-06-12 2001-06-12 Hydrogen and oxygen fuel generator Expired - Lifetime CN2487744Y (en)

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Application Number Priority Date Filing Date Title
CN 01226883 CN2487744Y (en) 2001-06-12 2001-06-12 Hydrogen and oxygen fuel generator

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1308490C (en) * 2002-12-21 2007-04-04 金相湳 High performance brown gas generator
CN102400171A (en) * 2010-09-15 2012-04-04 火传利能科技股份有限公司 Electrolysis apparatus for preparing oxyhydrogen
CN107165750A (en) * 2017-05-02 2017-09-15 宁波市爱迪嵩智能科技有限公司 A kind of hydrogen-oxygen generating device of car and boat
CN113549954A (en) * 2021-08-10 2021-10-26 阳光新能源开发有限公司 Electrolytic hydrogen production system device and control method thereof

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1308490C (en) * 2002-12-21 2007-04-04 金相湳 High performance brown gas generator
CN102400171A (en) * 2010-09-15 2012-04-04 火传利能科技股份有限公司 Electrolysis apparatus for preparing oxyhydrogen
CN107165750A (en) * 2017-05-02 2017-09-15 宁波市爱迪嵩智能科技有限公司 A kind of hydrogen-oxygen generating device of car and boat
CN113549954A (en) * 2021-08-10 2021-10-26 阳光新能源开发有限公司 Electrolytic hydrogen production system device and control method thereof

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Expiration termination date: 20110612

Granted publication date: 20020424