CN108439335A - A kind of flexible coal gas hydrogen producer - Google Patents
A kind of flexible coal gas hydrogen producer Download PDFInfo
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- CN108439335A CN108439335A CN201810184514.5A CN201810184514A CN108439335A CN 108439335 A CN108439335 A CN 108439335A CN 201810184514 A CN201810184514 A CN 201810184514A CN 108439335 A CN108439335 A CN 108439335A
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- pipeline
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- end wall
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- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B3/00—Hydrogen; Gaseous mixtures containing hydrogen; Separation of hydrogen from mixtures containing it; Purification of hydrogen
- C01B3/02—Production of hydrogen or of gaseous mixtures containing a substantial proportion of hydrogen
- C01B3/06—Production of hydrogen or of gaseous mixtures containing a substantial proportion of hydrogen by reaction of inorganic compounds containing electro-positively bound hydrogen, e.g. water, acids, bases, ammonia, with inorganic reducing agents
- C01B3/12—Production of hydrogen or of gaseous mixtures containing a substantial proportion of hydrogen by reaction of inorganic compounds containing electro-positively bound hydrogen, e.g. water, acids, bases, ammonia, with inorganic reducing agents by reaction of water vapour with carbon monoxide
- C01B3/14—Handling of heat and steam
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F22—STEAM GENERATION
- F22B—METHODS OF STEAM GENERATION; STEAM BOILERS
- F22B33/00—Steam-generation plants, e.g. comprising steam boilers of different types in mutual association
- F22B33/18—Combinations of steam boilers with other apparatus
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P20/00—Technologies relating to chemical industry
- Y02P20/10—Process efficiency
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- Inorganic Chemistry (AREA)
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- General Engineering & Computer Science (AREA)
Abstract
The invention discloses a kind of flexible coal gas hydrogen producers,Babinet A including being fixedly arranged on ground,It is provided with reaction chamber in the babinet A,The pipeline A for extending outward exterior space is provided with and communicated in the reaction chamber left end wall,The upper surfaces the pipeline A are provided with and communicated with valve A,The upper surfaces the valve A are provided with and communicated with pipeline B,It is installed with heating wire in the reaction chamber left end wall,It is installed with filter screen between the reaction chamber left hand end wall,It is installed in the filter screen and distributes case,The case that distributes is fixed with the reaction chamber lower end wall,Present device is simple in structure,It is easy to use,This equipment generates high-temperature steam using gas-fired and realizes that coal gas generates hydrogen with high-temperature steam,And using the adjusting that can control the structure of reaction speed to realize reaction speed,And the recycling of waste heat is realized using liquid water and heat transfer medium during the reaction,To improve the reliability of equipment.
Description
Technical field
The present invention relates to hydrogen preparation fields, and in particular to a kind of flexible coal gas hydrogen producer.
Background technology
With the development of science and technology, social progress, it is country that country, which promotes always high-tech development, coal gas hydrogen producing technology,
The object given priority to, in traditional coal gas hydrogen preparation field, often use coal gas and vapor that imperfect combustion generates into
Row reaction generates hydrogen and other other gaseous products, and there are reaction controlling difficulties for traditional flexible coal gas hydrogen producer
Problem and excess energy cannot be effectively recycled, this equipment largely solves this problem in that.
Invention content
The purpose of the present invention is to provide a kind of flexible coal gas hydrogen producers, and the above-mentioned of the prior art can be overcome to lack
It falls into.
According to the present invention, a kind of flexible coal gas hydrogen producer of present device, including it is fixedly arranged on the babinet A on ground,
It is provided with reaction chamber in the babinet A, the pipeline for extending outward exterior space is provided with and communicated in the reaction chamber left end wall
The upper surface A, the pipeline A is provided with and communicated with the upper surfaces valve A, the valve A and is provided with and communicated with pipeline B, and the reaction chamber is left
It is installed with heating wire in end wall, filter screen is installed between the reaction chamber left hand end wall, is installed with and distributes in the filter screen
Case, the case that distributes are fixed with the reaction chamber lower end wall, it is described distribute be provided in case it is downward opening distribute chamber, it is described to dissipate
Hair chamber left hand end wall is provided with and communicated with symmetrical opening, and the opening is connected to the reaction chamber, described to distribute chamber or so
Push plate is slidably provided between end wall, the push plate upper surface is installed with cushion pad, and the push plate upper surface, which is installed with, to be passed through
The through rod worn the cushion pad and upwardly extended, the through rod slidably distribute chamber upper end wall and extend outside across described
Space, the upper surfaces the babinet A are installed with solid block, and the solid block upper surface is installed with sliding case, opening is provided in the sliding case
Towards left gear cavity, it is installed with motor in the gear cavity upper end wall, the output shaft lower face of the motor is installed with driving tooth
Wheel, the gear cavity left side is provided with and communicated in the sliding case and perforative perforation up and down, is connected to and sets on the left of the perforation
The turned cavities being equipped in the sliding case, the through rod runs through the perforation and through rod outer surface thread mating connection is set
It is equipped with driven gear, end wall rolling cooperation connects the driven gear up and down for end wall and the gear cavity up and down with the turned cavities
It connects, the driven gear is engaged with the driving gear, and the sliding case upper surface is installed with the solid bar upwardly extended, the solid bar
Left side is slidably provided with switch block, and the through rod is fixed with the switch block, is provided with below the reaction chamber positioned at described
Combustion chamber in babinet A is provided with and communicated with the pipeline C and pipeline E for extending exterior space to the right in the combustion chamber right end wall,
The right sides the pipeline C are provided with and communicated with the right sides valve B, the valve B and are provided with and communicated with connecting leg, the right sides the pipeline E
Be provided with and communicated with the right sides valve C, the valve C and be provided with and communicated with pipeline F, be provided with and communicated in the combustion chamber upper end wall with
The steam pipe for distributing chamber connection, the steam pipe lower face is provided with and communicated with the steam valve in the combustion chamber, institute
It states steam valve lower face and is provided with and communicated with tapered suction block, the tapered suction block lower face is provided with and communicated with evaporation tank, the evaporation
Opening up evaporation cavity is provided in case, the evaporation cavity is connected to the pipeline C, is provided with and is located on the right side of the reaction chamber
Hydro-thermal in the babinet A distributes chamber, and the hydro-thermal distributes and is installed with collision mat in chamber upper end wall, in the combustion chamber right end wall
It is provided with and communicated with the upper surfaces pipeline F, the pipeline F and is provided with and communicated with the upper surfaces valve D, the valve D and is provided with and communicated with and run through
The hydro-thermal distributes the heat-dissipating pipe of chamber, and the heat-dissipating pipe is through the collision mat and extends exterior space, on the heat-dissipating pipe
End face is provided with and communicated with the upper surfaces valve E, valve E connection setting pipeline H, and the hydro-thermal distributes connection in chamber right end wall and sets
It is equipped with the pipeline I extended to the right and is provided with heat transfer case on the right side of pipeline J, the babinet A, heat transfer is provided in the heat transfer case
Chamber, the pipeline I are stretched into the right in the heat transfer chamber and are stretched out in the heat transfer chamber inner bending and to the left exterior space, the pipe
The road right sides J are provided with and communicated with the circulating pump for being connected to the pipeline I, are provided with and communicated in the heat transfer chamber right end wall and prolong to the right
The pipeline K and the right sides pipeline M, the pipeline K stretched is provided with and communicated with the right sides valve F, the valve F and is provided with and communicated with pipeline
L, the heat transfer case right side are provided with heat dissipation tank, opening up wind chamber are provided in the heat dissipation tank, the pipeline L stretches into institute
It states wind intracavitary and the right sides the pipeline L is provided with and communicated with cooling fin, the pipeline M stretches into the wind intracavitary and the cooling fin
It is connected to pipeline M, symmetrical air inlet pipe is provided with and communicated in the wind chamber lower end wall, the air inlet pipe extends downwardly out
Space is seen in portion and the air inlet pipe lower face is provided with and communicated with air compressor machine, is provided with positioned at the babinet A on the left of the reaction chamber
Interior air storing cavity is provided with and communicated with the upper surfaces pipeline N, the pipeline N connection upwardly extended in the air storing cavity upper end wall and sets
It is equipped with the upper surfaces valve G, the valve G and is provided with and communicated with pipeline O, the air storing cavity lower end wall, which is provided with and communicated with, to be extended to the right
Pipeline P, the upper surfaces the pipeline P extended to the right, which are provided with and communicated with the upper surfaces valve I, the valve I and are provided with and communicated with, to be stretched into
Bright eruption head in the combustion chamber, the bright eruption head is opposite with the evaporation tank, and pipeline Q is provided with and communicated on the right side of the pipeline P,
The right sides the pipeline Q be provided with and communicated with the right sides valve H, the valve H be provided with and communicated with pipeline R, the pipeline R with it is described
Reaction chamber is connected to, and lighting device is provided at the top of the left sides the babinet A.
Further technical solution, the filter screen are that grid-net type structure increases as barrier structure in the reaction chamber
The collision of gas molecule, to increase the working efficiency of equipment.
Further technical solution, the upper and lower end wall of the turned cavities and end wall above and below the gear cavity and the driven gear
Between it is rotatable be provided with ball, so that the driven gear is rolled in the turned cavities, perforation and gear cavity, to improve
The stability of equipment.
Further technical solution, the circulating pump are self-priming circulating pump, and the aqueous that the hydro-thermal is distributed to intracavitary is followed
Ring carries out heat exchange, to improve the flexibility of equipment.
Further technical solution, the cooling fin is net distribution, by the heat in the heat transfer medium in the cooling fin
Amount comes out, to improve the heat transfer efficiency of equipment.
Further technical solution, the lighting device include the illuminating lamp holder for being fixed at the left sides the babinet A,
It is fixedly installed headlamp, the headlamp and power electric connection at the top of the illuminating lamp holder.
The beneficial effects of the invention are as follows:
In the initial state due to present device, the heating wire, circulating pump, bright eruption head, air compressor machine and motor, which are in, stops
Working condition, at the valve A, steam valve, valve B, valve C, valve D, valve E, valve F, valve H, valve I and valve G
In closed state, to make a movement structure be in original state, be conducive to subsequent repair and installation.
When equipment is run, the valve G is opened, and coal gas will be full of in the air storing cavity, and the valve I is opened, and makes coal
Gas is sprayed and is lighted outward by the bright eruption head, and the valve C is opened, and air is passed through by the pipeline F, valve C and pipeline E
The burning of coal gas, the valve B is maintained to open, liquid water is passed through by the connecting leg, valve B and pipeline C in the combustion chamber
In the evaporation cavity, formed after the heating of liquid water in the evaporation cavity high-temperature vapor by the tapered suction block, steam valve and
Steam pipe distributes intracavitary described in entering, and is spilt into the reaction chamber by the opening, and the valve H is opened, and coal gas is led to
Enter in the reaction chamber, the heating wire carries out discontinuous operation according to the temperature adjustment in the reaction chamber, makes the reaction chamber
Interior coal gas is reacted with vapor, the products such as production hydrogen, and is diffused up by the filter screen, and the valve A is opened, by hydrogen
The gases such as gas are passed through collection device by the reaction chamber, pipeline A, valve A and pipeline B, then are further extracted, described to follow
The aqueous that ring pump work makes the hydro-thermal distribute intracavitary is recycled, and the valve D and valve E are opened, will be in the combustion chamber
High-temperature gas exterior space retracting device, high-temperature gas are passed through by the pipeline F, valve D, heat-dissipating pipe, valve E and pipeline H
Heat brought into the heat transfer chamber by the pipeline I, flow into the pipeline K after the heating of heat transfer medium in the heat transfer chamber
Interior, the valve F is opened, and so that heat transfer medium is entered in the pipeline L, and spread in the cooling fin, the air compressor machine work
Make, dries to the wind intracavitary along the air inlet pipe, the heat that the cooling fin distributes is diffused up, heat has been distributed
Heat transfer medium is come back to by the pipeline M in the heat transfer chamber, utilizes heated by gas liquid water production water to steam to realize
Gas and be used for liquid water react production hydrogen with coal gas, and using a series of structures realize heat efficiently time
It receives, and utilizes and warm oneself indoors.
When needing reaction speed, the motor drives the driving gear rotation, the driving gear with it is described
Driven gear engage, so that the driven gear is rotated in the turned cavities and gear cavity, due to the through rod with it is described driven
Gear screw-thread fit connects, and the switch block and the solid bar sliding connection, then the through rod generation move up and down, and make institute
It states push plate to move up and down, the extent of opening of the opening is blocked by the push plate, and then control the adjusting of reaction speed,
To improve the reaction modulability of equipment.
When equipment stable operation, the valve G is opened, and more coal gas are led to by the pipeline O, valve G and pipeline N
Enter in the air storing cavity, you can continuous work is realized, to improve the continuous work of equipment.
Present device is simple in structure, easy to use, this equipment using gas-fired generate high-temperature steam realize coal gas with
High-temperature steam generates hydrogen, and realizes the adjusting of reaction speed using the structure of controllable reaction speed, and is reacting
The recycling for realizing waste heat in journey using liquid water and heat transfer medium, to improve the reliability of equipment.
The above, the specific implementation mode only invented, but invent protection domain be not limited thereto, it is any without
The change or replacement that creative work is expected are crossed, should all be covered within the protection domain of invention.Therefore, the protection domain of invention
It should be determined by the scope of protection defined in the claims.
Description of the drawings
It, below will be to embodiment or existing in order to illustrate more clearly of inventive embodiments or technical solution in the prior art
Attached drawing is briefly described needed in technology description, it should be apparent that, the accompanying drawings in the following description is only to invent
Some embodiments for those of ordinary skill in the art without creative efforts, can also basis
These attached drawings obtain other attached drawings.
Fig. 1 is a kind of overall structure diagram of flexible coal gas hydrogen producer of the present invention;
Fig. 2 is the enlarged diagram of A in Fig. 1;
Fig. 3 is the enlarged diagram of B in Fig. 1;
Fig. 4 is the schematic diagram in the directions C-C in Fig. 1;
Fig. 5 is the schematic diagram in the directions D-D in Fig. 1.
Specific implementation mode
All features disclosed in this specification or disclosed all methods or in the process the step of, in addition to mutually exclusive
Feature and/or step other than, can combine in any way.
This specification(Including any accessory claim, abstract and attached drawing)Disclosed in any feature, except non-specifically chatting
It states, can be replaced by other alternative features that are equivalent or have similar purpose.That is, unless specifically stated, each feature is only
It is an example in a series of equivalent or similar characteristics.
As shown in Figs. 1-5, a kind of flexible coal gas hydrogen producer of the invention, including it is fixedly arranged on the babinet A100 on ground,
It is provided with reaction chamber 111 in the babinet A100, is provided with and communicated in 111 left end wall of the reaction chamber and extends outward external sky
Between the upper surfaces pipeline A108, the pipeline A108 be provided with and communicated with the upper surfaces valve A109, the valve A109 connection setting
There is pipeline B110, is installed with heating wire 200 in 111 left end wall of the reaction chamber, it is fixed between 111 left hand end wall of the reaction chamber
There is filter screen 201, is installed in the filter screen 201 and distributes case 203, it is described to distribute case 203 and 111 lower end wall of the reaction chamber
It is fixed, it is described distribute be provided in case 203 it is downward opening distribute chamber 206,206 left hand end wall of chamber that distributes is provided with and communicated with
Symmetrical opening 205, the opening 205 are connected to the reaction chamber 111, and described distribute can between 206 left hand end wall of chamber
Sliding is provided with push plate 204, and 204 upper surface of the push plate is installed with cushion pad 202, and 204 upper surface of the push plate is installed with
Through the cushion pad 202 and the through rod that upwardly extends, the through rod, which slidably passes through, described to be distributed 206 upper end wall of chamber and prolongs
Exterior space is stretched out, the upper surfaces the babinet A100 are installed with solid block 300, and solid 300 upper surface of block is installed with sliding case 304,
It is provided with the gear cavity 301 being open towards a left side in the sliding case 304, motor 303, institute are installed in 301 upper end wall of the gear cavity
The output shaft lower face for stating motor 303 is installed with driving gear 302, and 301 left side of the gear cavity is provided with and communicated with positioned at described
In sliding case 304 and perforative perforation 307 up and down, 307 left side of the perforation is provided with and communicated with the revolution in the sliding case 304
Chamber 305, the through rod runs through the perforation 307 and through rod outer surface thread mating connection is provided with driven gear 306, institute
It states driven gear 306 and rolls mating connection with about 305 end wall of the turned cavities and about 301 end wall of the gear cavity, it is described
Driven gear 306 is engaged with the driving gear 302, and 304 upper surface of sliding case is installed with the solid bar 113 upwardly extended, institute
It states 113 left side of solid bar and is slidably provided with switch block 112, the through rod is fixed with the switch block 112, the reaction chamber 111
Lower section is provided with the combustion chamber 145 in the babinet A100, is provided with and communicated in 145 right end wall of the combustion chamber and prolongs to the right
The right side pipeline C138 and pipeline E144, the pipeline C138 for stretching out exterior space is provided with and communicated with valve B139, the valve
The right sides door B139 are provided with and communicated with connecting leg 140, and the right sides the pipeline E144 are provided with and communicated with valve C142, the valve
The right sides C142 are provided with and communicated with pipeline F141, are provided with and communicated in 145 upper end wall of the combustion chamber and connect with the chamber 206 that distributes
Logical steam pipe 207,207 lower face of the steam pipe are provided with and communicated with the steam valve 208 in the combustion chamber 145, institute
It states 208 lower face of steam valve and is provided with and communicated with tapered suction block 143,143 lower face of tapered suction block is provided with and communicated with evaporation tank
149, opening up evaporation cavity 137 is provided in the evaporation tank 149, the evaporation cavity 137 is connected to the pipeline C138,
The hydro-thermal that 111 right side of the reaction chamber is provided in the babinet A100 distributes chamber 131, and the hydro-thermal distributes on chamber 131
It is installed with collision mat 116 in end wall, is provided with and communicated in 145 right end wall of the combustion chamber on pipeline F136, the pipeline F136
End face be provided with and communicated with the upper surfaces valve D135, the valve D135 be provided with and communicated with through the hydro-thermal distribute chamber 131 dissipate
Heat pipe 134, the heat-dissipating pipe 134 is through the collision mat 116 and extends exterior space, and 134 upper surface of the heat-dissipating pipe connects
Logical to be provided with the upper surfaces valve E115, valve E115 connection setting pipeline H114, the hydro-thermal distributes in 131 right end wall of chamber
It is provided with and communicated with the pipeline I117 extended to the right and is provided with heat transfer case 118, the biography on the right side of pipeline J132, the babinet A100
Heat transfer chamber 119 is provided in hot tank 118, the pipeline I117 is stretched into the right in the heat transfer chamber 119 and in the heat transfer chamber 119
Inner bending simultaneously stretches out exterior space to the left, and the right sides the pipeline J132 are provided with and communicated with the cycle for being connected to the pipeline I117
133 are pumped, the pipeline K120 extended to the right and pipeline M128, the pipeline are provided with and communicated in 119 right end wall of the heat transfer chamber
The right sides K120 are provided with and communicated with the right sides valve F121, the valve F121 and are provided with and communicated with pipeline L122, the heat transfer case
118 right sides are provided with heat dissipation tank 125, opening up wind chamber 123 are provided in the heat dissipation tank 125, the pipeline L122 stretches
Enter in the wind chamber 123 and the right sides the pipeline L122 are provided with and communicated with cooling fin 124, the pipeline M128 stretches into the wind
In chamber 123 and the cooling fin 124 is connected to pipeline M128, is provided with and communicated in 123 lower end wall of wind chamber symmetrical
Air inlet pipe 126, the air inlet pipe 126 extend downwardly out outside and see that space and 126 lower face of the air inlet pipe are provided with and communicated with sky
Press 127, the left side of the reaction chamber 111 are provided with the air storing cavity 104 in the babinet A100, on the air storing cavity 104
It is provided with and communicated with the upper surfaces pipeline N105, the pipeline N105 upwardly extended in end wall and is provided with and communicated with valve G106, it is described
The upper surfaces valve G106 are provided with and communicated with pipeline O107, and 104 lower end wall of the air storing cavity is provided with and communicated with the pipeline extended to the right
P101, the upper surfaces the pipeline P101 extended to the right are provided with and communicated with the connection of the upper surfaces valve I146, the valve I146 and set
It is equipped with the bright eruption head 147 stretched into the combustion chamber 145, the bright eruption head 147 is opposite with the evaporation tank 149, the pipeline
It is provided with and communicated with the right sides pipeline Q102, the pipeline Q102 on the right side of P101 and is provided with and communicated with valve H103, the valve H103
Right side is provided with and communicated with pipeline R150, and the pipeline R150 is connected to the reaction chamber 111, the left sides babinet A100 top
Portion is provided with lighting device.
Valuably, wherein the filter screen 201 is that grid-net type structure increases the reaction chamber 111 as barrier structure
The collision of interior gas molecule, to increase the working efficiency of equipment.
Valuably, wherein about 305 end wall of the turned cavities and about 301 end wall of the gear cavity and the driven tooth
It is rotatable between wheel 306 to be provided with ball, make the driven gear 306 in the turned cavities 305, perforation 307 and gear cavity
It is rolled in 301, to improve the stability of equipment.
Valuably, wherein the circulating pump 133 is self-priming circulating pump, and the hydro-thermal is distributed the aqueous in chamber 131 and is followed
Ring carries out heat exchange, to improve the flexibility of equipment.
Valuably, wherein the cooling fin 124 is net distribution, by the heat in the heat transfer medium in the cooling fin 124
Amount comes out, to improve the heat transfer efficiency of equipment.
Valuably, wherein the lighting device includes the illuminating lamp holder for being fixed at the left sides the babinet A100
501,501 top of the illuminating lamp holder is fixedly installed headlamp 502, the headlamp 502 and power electric connection, the illumination
Device facilitates night work.
Present device in the initial state, the heating wire 200, circulating pump 133, bright eruption head 147,127 and of air compressor machine
Motor 303 is in stop working state, the valve A109, steam valve 208, valve B139, valve C142, valve D135, valve
Door E115, valve F121, valve H103, valve I146 and valve G106 are closed.
When equipment is run, the valve G106 is opened, and coal gas, the valve I146 will be full of in the air storing cavity 104
It opens, coal gas is made to be sprayed and be lighted outward by the bright eruption head 147, the valve C142 is opened, by air by the pipeline
F141, valve C142 and pipeline E144 are passed through the burning that coal gas is maintained in the combustion chamber 145, and the valve B139 is opened, will
Liquid water is passed through by the connecting leg 140, valve B139 and pipeline C138 in the evaporation cavity 137, the liquid in the evaporation cavity 137
High-temperature vapor is formed after the heating of state water distributes chamber described in the entrance of the tapered suction block 143, steam valve 208 and steam pipe 207
It in 206, and is spilt into the reaction chamber 111 by the opening 205, the valve H103 is opened, and coal gas is passed through described anti-
It answers in chamber 111, the heating wire 200 carries out discontinuous operation according to the temperature adjustment in the reaction chamber 111, makes the reaction chamber
Coal gas in 111 is reacted with vapor, the products such as production hydrogen, and is diffused up by the filter screen 201, the valve A109
It opens, the gases such as hydrogen is passed through collection device by the reaction chamber 111, pipeline A108, valve A109 and pipeline B110, then into
The further extraction of row, the aqueous that the work of the circulating pump 133 makes the hydro-thermal distribute in chamber 131 are recycled, the valve
D135 and valve E115 are opened, by the high-temperature gas in the combustion chamber 145 by the pipeline F136, valve D135, heat-dissipating pipe
134, valve E115 and pipeline H114 is passed through exterior space retracting device, and the heat of high-temperature gas brings institute by the pipeline I117
It states in heat transfer chamber 119, is flowed into the pipeline K120 after the heat transfer medium heating in the heat transfer chamber 119, the valve F121
It opens, heat transfer medium is made to enter in the pipeline L122, and the diffusion in the cooling fin 124, the air compressor machine 127 works,
It dries into the wind chamber 123 along the air inlet pipe 126, the heat that the cooling fin 124 distributes is diffused up, has been distributed
The heat transfer medium of heat is come back to by the pipeline M128 in the heat transfer chamber 119.
When needing reaction speed, the motor 303 drives the driving gear 302 to rotate, the driving gear
302 engage with the driven gear 306, make the rotation in the turned cavities 305 and gear cavity 301 of the driven gear 306, by
It is connect with 306 screw-thread fit of the driven gear in the through rod, and the switch block 112 and solid 113 company of being slidably matched of bar
It connects, then the through rod generation moves up and down, and the push plate 204 is made to move up and down, and described open is blocked by the push plate 204
The extent of opening of mouth 205, and then control the adjusting of reaction speed.
When equipment stable operation, the valve G106 is opened, by more coal gas by the pipeline O107, valve G106
It is passed through in the air storing cavity 104 with pipeline N105, you can realize continuous work.
The beneficial effects of the invention are as follows:In the initial state due to present device, the heating wire, circulating pump, bright eruption
Head, air compressor machine and motor are in stop working state, the valve A, steam valve, valve B, valve C, valve D, valve E, valve
F, valve H, valve I and valve G are closed, and to make a movement structure be in original state, are conducive to subsequent dimension
It repaiies and installs.
When equipment is run, the valve G is opened, and coal gas will be full of in the air storing cavity, and the valve I is opened, and makes coal
Gas is sprayed and is lighted outward by the bright eruption head, and the valve C is opened, and air is passed through by the pipeline F, valve C and pipeline E
The burning of coal gas, the valve B is maintained to open, liquid water is passed through by the connecting leg, valve B and pipeline C in the combustion chamber
In the evaporation cavity, formed after the heating of liquid water in the evaporation cavity high-temperature vapor by the tapered suction block, steam valve and
Steam pipe distributes intracavitary described in entering, and is spilt into the reaction chamber by the opening, and the valve H is opened, and coal gas is led to
Enter in the reaction chamber, the heating wire carries out discontinuous operation according to the temperature adjustment in the reaction chamber, makes the reaction chamber
Interior coal gas is reacted with vapor, the products such as production hydrogen, and is diffused up by the filter screen, and the valve A is opened, by hydrogen
The gases such as gas are passed through collection device by the reaction chamber, pipeline A, valve A and pipeline B, then are further extracted, described to follow
The aqueous that ring pump work makes the hydro-thermal distribute intracavitary is recycled, and the valve D and valve E are opened, will be in the combustion chamber
High-temperature gas exterior space retracting device, high-temperature gas are passed through by the pipeline F, valve D, heat-dissipating pipe, valve E and pipeline H
Heat brought into the heat transfer chamber by the pipeline I, flow into the pipeline K after the heating of heat transfer medium in the heat transfer chamber
Interior, the valve F is opened, and so that heat transfer medium is entered in the pipeline L, and spread in the cooling fin, the air compressor machine work
Make, dries to the wind intracavitary along the air inlet pipe, the heat that the cooling fin distributes is diffused up, heat has been distributed
Heat transfer medium is come back to by the pipeline M in the heat transfer chamber, utilizes heated by gas liquid water production water to steam to realize
Gas and be used for liquid water react production hydrogen with coal gas, and using a series of structures realize heat efficiently time
It receives, and utilizes and warm oneself indoors.
When needing reaction speed, the motor drives the driving gear rotation, the driving gear with it is described
Driven gear engage, so that the driven gear is rotated in the turned cavities and gear cavity, due to the through rod with it is described driven
Gear screw-thread fit connects, and the switch block and the solid bar sliding connection, then the through rod generation move up and down, and make institute
It states push plate to move up and down, the extent of opening of the opening is blocked by the push plate, and then control the adjusting of reaction speed,
To improve the reaction modulability of equipment.
When equipment stable operation, the valve G is opened, and more coal gas are led to by the pipeline O, valve G and pipeline N
Enter in the air storing cavity, you can continuous work is realized, to improve the continuous work of equipment.
Present device is simple in structure, easy to use, this equipment using gas-fired generate high-temperature steam realize coal gas with
High-temperature steam generates hydrogen, and realizes the adjusting of reaction speed using the structure of controllable reaction speed, and is reacting
The recycling for realizing waste heat in journey using liquid water and heat transfer medium, to improve the reliability of equipment.
The above, the specific implementation mode only invented, but invent protection domain be not limited thereto, it is any without
The change or replacement that creative work is expected are crossed, should all be covered within the protection domain of invention.Therefore, the protection domain of invention
It should be determined by the scope of protection defined in the claims.
Claims (6)
1. a kind of flexible coal gas hydrogen producer, including be fixedly arranged in the babinet A, the babinet A on ground and be provided with reaction chamber, institute
It states and is provided with and communicated with the upper surfaces pipeline A, the pipeline A for extending outward exterior space in reaction chamber left end wall and is provided with and communicated with
The upper surfaces valve A, the valve A are provided with and communicated with pipeline B, and heating wire, the reaction are installed in the reaction chamber left end wall
It is installed with filter screen between chamber left hand end wall, is installed in the filter screen and distributes case, it is described to distribute under case and the reaction chamber
End wall is fixed, it is described distribute be provided in case it is downward opening distribute chamber, the chamber left hand end wall that distributes is provided with and communicated with left and right
Symmetrical opening, the opening are connected to the reaction chamber, and described distribute slidably is provided with push plate between chamber left hand end wall,
The push plate upper surface is installed with cushion pad, and the push plate upper surface is installed with through the cushion pad and upwardly extends logical
Bar, the through rod slidably distribute chamber upper end wall and extend exterior space across described, and the upper surfaces the babinet A are installed with
Gu block, the solid block upper surface is installed with sliding case, and opening is provided in the sliding case towards left gear cavity, the gear cavity upper end
Motor is installed in wall, the output shaft lower face of the motor is installed with driving gear, is provided with and communicated on the left of the gear cavity
In the sliding case and perforative perforation up and down, the perforation left side are provided with and communicated with the turned cavities in the sliding case,
The through rod is provided with driven gear through the perforation and through rod outer surface thread mating connection, the driven gear with
End wall rolls mating connection, the driven gear and the driving gear to the turned cavities up and down for end wall and the gear cavity up and down
Engagement, the sliding case upper surface are installed with the solid bar upwardly extended, and the solid bar left side is slidably provided with switch block, described
Through rod is fixed with the switch block, and the combustion chamber in the babinet A, the combustion chamber right end are provided with below the reaction chamber
It is provided with and communicated with the pipeline C for extending exterior space to the right in wall and the right sides pipeline E, the pipeline C are provided with and communicated with valve
The right side B, the valve B is provided with and communicated with connecting leg, and the right sides the pipeline E are provided with and communicated with valve C, the valve C right ends
Face is provided with and communicated with pipeline F, is provided with and communicated in the combustion chamber upper end wall and the steam pipe for distributing chamber and being connected to, the steaming
Steam pipe lower face is provided with and communicated with the steam valve in the combustion chamber, and the steam valve lower face is provided with and communicated with tapered suction
Block, the tapered suction block lower face is provided with and communicated with evaporation tank, opening up evaporation cavity is provided in the evaporation tank, described
Evaporation cavity is connected to the pipeline C, and the hydro-thermal being provided in the babinet A on the right side of the reaction chamber distributes chamber, the water
It is installed with collision mat in heat produced chamber upper end wall, the upper ends pipeline F, the pipeline F are provided with and communicated in the combustion chamber right end wall
Face is provided with and communicated with the upper surfaces valve D, the valve D and is provided with and communicated with the heat-dissipating pipe for distributing chamber through the hydro-thermal, described to dissipate
Heat pipe is through the collision mat and extends exterior space, and the heat-dissipating pipe upper surface is provided with and communicated with valve E, the valve E
Upper surface connection setting pipeline H, the hydro-thermal, which distributes, is provided with and communicated with the pipeline I extended to the right and pipeline J, institute in chamber right end wall
It states and is provided with heat transfer case on the right side of babinet A, heat transfer chamber is provided in the heat transfer case, the pipeline I stretches into the right the heat transfer chamber
Interior and stretch out in the heat transfer chamber inner bending and to the left exterior space, the right sides the pipeline J are provided with and communicated with the pipeline I
The circulating pump of connection is provided with and communicated with the pipeline K extended to the right and pipeline M, the pipeline K right ends in the heat transfer chamber right end wall
Face is provided with and communicated with the right sides valve F, the valve F and is provided with and communicated with pipeline L, and heat dissipation tank is provided on the right side of the heat transfer case,
Opening up wind chamber is provided in the heat dissipation tank, the pipeline L stretches into the wind intracavitary and the right sides the pipeline L are connected to
It is provided with cooling fin, the pipeline M stretches into the wind intracavitary and the cooling fin is connected to pipeline M, in the wind chamber lower end wall
It is provided with and communicated with symmetrical air inlet pipe, the air inlet pipe extends downwardly out outside and sees that space and the air inlet pipe lower face connect
It is logical to be provided with air compressor machine, the air storing cavity in the babinet A is provided on the left of the reaction chamber, in the air storing cavity upper end wall
It is provided with and communicated with the upper surfaces pipeline N, the pipeline N upwardly extended and is provided with and communicated with the connection of the upper surfaces valve G, the valve G
It is provided with pipeline O, the air storing cavity lower end wall is provided with and communicated with the pipeline P extended to the right, the upper ends the pipeline P extended to the right
Face is provided with and communicated with the upper surfaces valve I, the valve I and is provided with and communicated with the bright eruption head stretched into the combustion chamber, the bright eruption
Head is opposite with the evaporation tank, and being provided with and communicated with the right sides pipeline Q, the pipeline Q on the right side of the pipeline P is provided with and communicated with valve
The right side H, the valve H is provided with and communicated with pipeline R, and the pipeline R is connected to the reaction chamber, the left sides babinet A top
Portion is provided with lighting device.
2. a kind of flexible coal gas hydrogen producer as described in claim 1, it is characterised in that:The filter screen is grid-net type knot
Structure increases the collision of gas molecule in the reaction chamber as barrier structure.
3. a kind of flexible coal gas hydrogen producer as described in claim 1, it is characterised in that:The turned cavities up and down end wall with
The gear cavity is rotatable between end wall and the driven gear up and down to be provided with ball, makes the driven gear at described time
Turn to roll in chamber, perforation and gear cavity.
4. a kind of flexible coal gas hydrogen producer as described in claim 1, it is characterised in that:The circulating pump is self-priming follows
Ring pumps, and the aqueous cycle that the hydro-thermal is distributed to intracavitary carries out heat exchange.
5. a kind of flexible coal gas hydrogen producer as described in claim 1, it is characterised in that:The cooling fin is netted point
Cloth comes out the heat in the heat transfer medium in the cooling fin.
6. a kind of flexible coal gas hydrogen producer as described in claim 1, it is characterised in that:The lighting device includes fixing
Illuminating lamp holder in the left sides the babinet A is set, is fixedly installed headlamp at the top of the illuminating lamp holder, the headlamp and
Power electric connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201810184514.5A CN108439335A (en) | 2018-03-07 | 2018-03-07 | A kind of flexible coal gas hydrogen producer |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201810184514.5A CN108439335A (en) | 2018-03-07 | 2018-03-07 | A kind of flexible coal gas hydrogen producer |
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CN108439335A true CN108439335A (en) | 2018-08-24 |
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CN201810184514.5A Withdrawn CN108439335A (en) | 2018-03-07 | 2018-03-07 | A kind of flexible coal gas hydrogen producer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112209340A (en) * | 2020-10-10 | 2021-01-12 | 辽宁华融富瑞新能源科技股份有限公司 | Conversion device for hydrogen production from natural gas |
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CN101679032A (en) * | 2008-01-09 | 2010-03-24 | 松下电器产业株式会社 | Hydrogen generation apparatus and fuel battery system |
CN201526947U (en) * | 2008-10-16 | 2010-07-14 | 林光湧 | Environment-friendly constant-pressure high-temperature steam generator |
CN106678806A (en) * | 2017-01-13 | 2017-05-17 | 安徽未名鼎和环保有限公司 | Garbage combustion chamber |
CN206823485U (en) * | 2017-05-04 | 2018-01-02 | 山东蓝博环保设备有限公司 | A kind of novel desulphurization denitration dehumidifying integrated apparatus |
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2018
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Publication number | Priority date | Publication date | Assignee | Title |
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CN101679032A (en) * | 2008-01-09 | 2010-03-24 | 松下电器产业株式会社 | Hydrogen generation apparatus and fuel battery system |
CN201526947U (en) * | 2008-10-16 | 2010-07-14 | 林光湧 | Environment-friendly constant-pressure high-temperature steam generator |
CN106678806A (en) * | 2017-01-13 | 2017-05-17 | 安徽未名鼎和环保有限公司 | Garbage combustion chamber |
CN206823485U (en) * | 2017-05-04 | 2018-01-02 | 山东蓝博环保设备有限公司 | A kind of novel desulphurization denitration dehumidifying integrated apparatus |
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CN112209340A (en) * | 2020-10-10 | 2021-01-12 | 辽宁华融富瑞新能源科技股份有限公司 | Conversion device for hydrogen production from natural gas |
CN112209340B (en) * | 2020-10-10 | 2023-03-10 | 辽宁华融富瑞新能源科技股份有限公司 | Conversion device for hydrogen production from natural gas |
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Application publication date: 20180824 |