CN108258276A - A kind of water hydrogen power generation base station for being automatically injected raw material - Google Patents

A kind of water hydrogen power generation base station for being automatically injected raw material Download PDF

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Publication number
CN108258276A
CN108258276A CN201611239478.5A CN201611239478A CN108258276A CN 108258276 A CN108258276 A CN 108258276A CN 201611239478 A CN201611239478 A CN 201611239478A CN 108258276 A CN108258276 A CN 108258276A
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hydrogen
water
methanol
user
storage container
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CN108258276B (en
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向华
向德成
陈昌军
安辉
何家财
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Guangdong Nengtai Science And Technology Co Ltd
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Guangdong Nengtai Science And Technology Co Ltd
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01MPROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
    • H01M8/00Fuel cells; Manufacture thereof
    • H01M8/06Combination of fuel cells with means for production of reactants or for treatment of residues
    • H01M8/0606Combination of fuel cells with means for production of reactants or for treatment of residues with means for production of gaseous reactants
    • H01M8/0612Combination of fuel cells with means for production of reactants or for treatment of residues with means for production of gaseous reactants from carbon-containing material
    • H01M8/0618Reforming processes, e.g. autothermal, partial oxidation or steam reforming
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B3/00Hydrogen; Gaseous mixtures containing hydrogen; Separation of hydrogen from mixtures containing it; Purification of hydrogen
    • C01B3/02Production of hydrogen or of gaseous mixtures containing a substantial proportion of hydrogen
    • C01B3/32Production of hydrogen or of gaseous mixtures containing a substantial proportion of hydrogen by reaction of gaseous or liquid organic compounds with gasifying agents, e.g. water, carbon dioxide, air
    • C01B3/323Catalytic reaction of gaseous or liquid organic compounds other than hydrocarbons with gasifying agents
    • 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
    • Y02E60/50Fuel cells

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  • Engineering & Computer Science (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • General Chemical & Material Sciences (AREA)
  • Sustainable Energy (AREA)
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  • Life Sciences & Earth Sciences (AREA)
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  • General Health & Medical Sciences (AREA)
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  • Inorganic Chemistry (AREA)
  • Manufacturing & Machinery (AREA)
  • Hydrogen, Water And Hydrids (AREA)
  • Fuel Cell (AREA)

Abstract

Present invention is disclosed a kind of water hydrogen power generation base station for being automatically injected raw material, including water hydrogen generator, base station ontology, main storage container;The base station ontology includes base station towers, antenna for base station, base transceiver station, base station controller, reserve battery;Water hydrogen generator includes methanol-water reformation hydrogen production equipment, hydrogen gas generation equipment;Methanol-water reformation hydrogen production equipment includes storage container, raw material conveying device, methanol-water transfer pipeline, reformer, separator, hydrogen delivery tube road, control circuit board.The water hydrogen power generation base station proposed by the present invention for being automatically injected raw material, works using the electric energy that methanol-water reformation hydrogen production is sent out, can power in the place of no power grid for communication base station, improve the convenience of arrangement of base stations, reduce the pollution to environment.It can be automatically injected raw material when raw material needed for hydrogen manufacturing is less than setting value to the setting storage container of hydrogen producer, ensure equipment steady operation, while reduce cost of labor simultaneously.

Description

A kind of water hydrogen power generation base station for being automatically injected raw material
Technical field
The invention belongs to technical field of generators, are related to a kind of generator more particularly to a kind of water for being automatically injected raw material Hydrogen power generation base station.
Background technology
The power supply incorporation way of existing base station is mostly introduced using three-phase or single phase ac mains-supplied.However some regions (such as many remote sections), because high voltage supply covers difficulty, nothing draws electric resources, and honourable resource is also extremely limited, leads to base station Drawing electric problem cannot solve always, which directly affects base station construction delivery rate, seriously affect customer service index.Because drawing Electric problem leads to problems such as to shelve.
In addition, existing water hydrogen generator (such as reformation of Chinese patent CN201410311217.4, methanol-water hydrogen producer Device and its manufacturing process;Chinese patent CN201410622203.4, a kind of generator and its hair based on Methanol water hydrogen production system Method for electrically) there are the following problems, and reformer chamber is equipped with heating and gasifying pipeline, for heating and gasifying methanol-water raw material, heating and gasifying pipe Road is generally arranged at outside reformer chamber, and heating and gasifying pipeline is susceptible to the situation of peeling disengaging, influences the service life of pipeline.
In view of this, nowadays there is an urgent need to design a kind of new base station power supply mode, to overcome existing base station supplier of electricity The drawbacks described above of formula.
Invention content
The technical problems to be solved by the invention are:A kind of water hydrogen power generation base station for being automatically injected raw material is provided, it is available The electric energy work that methanol-water reformation hydrogen production is sent out, can power for communication base station in the place of no power grid, improve arrangement of base stations Convenience, reduce the pollution to environment;Simultaneously can be when raw material needed for hydrogen manufacturing be less than setting value, the setting to hydrogen producer Storage container is automatically injected raw material, ensures equipment steady operation, while reduce cost of labor.
In order to solve the above technical problems, the present invention adopts the following technical scheme that:
A kind of water hydrogen power generation base station for being automatically injected raw material, holds including an at least water hydrogen generator, base station ontology, main storage Device;The base station ontology includes base station towers, antenna for base station, base transceiver station, base station controller;Base station day is set on base station towers Line, base transceiver station connect antenna for base station, base station controller respectively;The water hydrogen generator connects base station receipts by cable respectively Send out platform, base station controller, antenna for base station;
The water hydrogen generator includes methanol-water device for producing hydrogen, hydrogen fuel cell, air pump, control circuit board;Methanol-water Device for producing hydrogen includes delivery pump, heat exchanger, reformer, membrane separator, and methanol-water device for producing hydrogen is also connected with storage container, for depositing Methanol-water raw material is stored up, each storage container connects main storage container respectively;
The main storage container includes master controller, the conveying pump housing, connecting line, the master controller connection conveying pump housing;Institute Storage container is stated equipped with the first liquid level recognition unit, to identify the liquid level of storage container, the first liquid level recognition unit connection master Controller;Valve is respectively equipped between each storage container and main storage container, each valve connects the master controller respectively;
Hydrogen is made in the methanol-water reformation hydrogen production equipment utilization methanol-water raw material, and hydrogen fuel cell utilizes hydrogen obtained Power generation;
The methanol-water storage container is equipped with the first temperature sensor, liquid level sensor, and second temperature is equipped in heat exchanger Sensor, first flow sensor, reformer is interior to be equipped with third temperature sensor, and air flow inlet, the air-flow of hydrogen fuel cell go out Mouth sets pressure sensor and solenoid valve respectively;
The control circuit board connects delivery pump respectively, second temperature sensor, first flow sensor in heat exchanger, Third temperature sensor in reformer, the pressure sensor and solenoid valve of hydrogen fuel cell, and control the work of all parts;
The methanol-water raw material of liquid is stored in the methanol-water storage container;The delivery pump is used to store methanol-water Methanol-water raw material in container is pumped to the reformer chamber of reformer by conveyance conduit;The heat exchanger is installed on methanol-water raw material Conveyance conduit on, methanol-water raw material in heat exchanger, with reformer output high-temperature hydrogen exchange heat, methanol-water raw material temperature Degree raising, hydrogen temperature reduce;Methanol-water raw material carries out reformation hydrogen production reaction in reformer chamber and hydrogen-containing gas is made, and passes through film point Hydrogen is obtained from device;Air pump connects hydrogen fuel cell, pumps air into hydrogen fuel cell;Hydrogen leads to the oxygen in air Hydrogen fuel cell generation redox reaction is crossed to produce electricl energy.
The beneficial effects of the present invention are:The water hydrogen power generation base station proposed by the present invention for being automatically injected raw material, using first The electric energy work that alcohol water reformation hydrogen production is sent out, can power for communication base station in the place of no power grid, improve arrangement of base stations Convenience reduces the pollution to environment;Simultaneously can be when raw material needed for hydrogen manufacturing be less than setting value, the setting to hydrogen producer is deposited Storage container is automatically injected raw material, ensures equipment steady operation, while reduce cost of labor.In addition, the present invention can effective land productivity With generating electricity by natural energy, and extra electric energy in a manner of methanol can be stored, can be generated electricity on power supply peak by methanol.This hair It is bright to be more advantageous to fully utilizing the energy, energy conservation and environmental protection.
Description of the drawings
Fig. 1 is the composition schematic diagram for the water hydrogen power generation base station that the present invention is automatically injected raw material.
Fig. 2 is another composition schematic diagram of water hydrogen of the present invention power generation base station.
Fig. 3 is the composition schematic diagram of part control unit in water hydrogen generator.
Fig. 4 is the composition schematic diagram of methanol-water reformation hydrogen production equipment.
Fig. 5 is the structure diagram of methanol-water reformation hydrogen production equipment.
Fig. 6 is the appearance diagram of methanol-water reformation hydrogen production equipment.
Specific embodiment
The preferred embodiment that the invention will now be described in detail with reference to the accompanying drawings.
Embodiment one
It please refers to Fig.1, Fig. 2, present invention is disclosed a kind of water hydrogen power generation base station for being automatically injected raw material, including an at least water Hydrogen generator, base station ontology, main storage container 120;The base station ontology includes second shell 306, third housing 307, base station Tower 301, antenna for base station 302, base transceiver station 303, base station controller 304, reserve battery 305;Base station is set on base station towers 301 Antenna 302, base transceiver station 303 connect antenna for base station 302, base station controller 304 respectively.
The water hydrogen generator connects base transceiver station 303, base station controller 304, antenna for base station by cable respectively 302nd, reserve battery 305;Reserve battery 305 connects base transceiver station 303, base station controller 304 respectively;The base transceiver station 303rd, base station controller 304 is set in second shell 306, and reserve battery 305 is set in third housing 307.
As shown in Fig. 2, the water hydrogen generator includes methanol-water device for producing hydrogen 1, hydrogen fuel cell 2, air pump, control electricity Road plate;Methanol-water device for producing hydrogen 1 is also connected with storage container 130, and for storing methanol-water raw material, each storage container 130 connects respectively Connect main storage container 120.
Fig. 3, Fig. 4 are please referred to, the main storage container 120 includes master controller 121, main wireless communication unit 122, second Liquid level recognition unit 123, the conveying pump housing 124, connecting line 125, master controller 121 connect main wireless communication unit 122, second Liquid level recognition unit 123, the conveying pump housing 124.The second liquid level recognition unit 123 is identifying the liquid of main storage container 120 Position.
The storage container 130 is equipped with sub-controller 131, sub- wireless communication unit 132, the first liquid level recognition unit 133, First liquid level recognition unit 133 is identifying the liquid level of storage container 130;Sub-controller 131 distinguishes connexon wireless telecommunications list First 132, first liquid level recognition unit 133.Valve 134 is respectively equipped between each storage container 130 and main storage container 120, respectively Valve 134 connects the master controller 121 (can also be by sub-controller 131 come the break-make of control valve 134) respectively.
The basic composition of water hydrogen generator is that those skilled in the art can be basic according to the related patents of the applicant (the patent of invention of such as three mandates realized:Chinese patent CN201210339912.2, it is a kind of to prepare hydrogen using methanol-water System and method;Chinese patent CN201310578035.9, instant preparing hydrogen, generating power system and method;Chinese patent CN A kind of 201310520538.0, instant preparing hydrogen, generating power system and method), but here in order to embody the present invention disclose it is abundant, this In also slightly introduce, and it is partly improved simultaneously.
Referring to Fig. 4, the methanol-water reformation hydrogen production equipment 1 includes storage container 130, raw material conveying device 101, methanol It is water transfer pipeline 102, reformer 103, separator 104, hydrogen delivery tube road 105, carbon dioxide collection pipeline 106, remaining Gas discharge pipe 107, starter 108, control circuit board 109.The control circuit board 109 connects raw material conveying device respectively 101st, reformer 103, separator 104 control each device to work.
The raw material conveying device 101 connects storage container 130 and reformer respectively by methanol-water transfer pipeline 102 103, the raw material conveying device 101 is by the methanol-water feedstock transportation in storage container 130 to reformer 103.
The reformer 103 connects separator 104, and separator 104 connects hydrogen delivery tube road 105, two respectively Carbonoxide collecting 106, residual air discharge pipe 107;The separator includes membrane separation device.
The reformer includes heat exchanger, vaporizer, reformer chamber, separation chamber, and the membrane separation device is set to separation Interior, separation chamber are set to the top of reformer chamber.Methanol-water raw material enters vaporizer after exchanging heat in heat exchanger and vaporizes;Vaporization Methanol steam and water vapour afterwards enters reformer chamber, and reformer chamber is equipped with catalyst, and reformer chamber lower part and middle portion temperature are 300 DEG C ~420 DEG C, the temperature on the reformer chamber top is 400 DEG C~570 DEG C;Reformer chamber is connect with separation chamber by connecting line, even The all or part for taking over road is set to the top of reformer chamber, and it is defeated from reformer chamber to continue heating by the high temperature on reformer chamber top The gas gone out;The connecting line is as the buffering between reformer chamber and separation chamber so that the temperature of the gas exported from reformer chamber Degree is identical or close with the temperature of separation chamber;The indoor temperature of separation is set as 350 DEG C~570 DEG C, indoor from detaching The aerogenesis end of membrane separation device obtains hydrogen.
In the present embodiment, the storage container 130 can be equipped with the first temperature sensor, liquid level sensor, in heat exchanger Equipped with second temperature sensor, first flow sensor, reformer chamber is equipped with third temperature sensor, the air-flow of hydrogen fuel cell Entrance, air stream outlet set pressure sensor and solenoid valve respectively.The control circuit board connects delivery pump (feedstock transportation respectively Device 101), second temperature sensor, first flow sensor in heat exchanger, the third temperature sensor in reformer, hydrogen The pressure sensor and solenoid valve of fuel cell, and control the work of all parts.
The methanol-water raw material of liquid is stored in the methanol-water storage container;The delivery pump is used to store methanol-water Methanol-water raw material in container is pumped to the reformer chamber of reformer by conveyance conduit;The heat exchanger is installed on methanol-water raw material Conveyance conduit on, methanol-water raw material in heat exchanger, with reformer output high-temperature hydrogen exchange heat, methanol-water raw material temperature Degree raising, hydrogen temperature reduce;Methanol-water raw material carries out reformation hydrogen production reaction in reformer chamber and hydrogen-containing gas is made, and passes through film point Hydrogen is obtained from device;Air pump connects hydrogen fuel cell, pumps air into hydrogen fuel cell;Hydrogen leads to the oxygen in air Hydrogen fuel cell generation redox reaction is crossed to produce electricl energy.
Fig. 5, Fig. 6 are please referred to, the reformer 103 includes heat exchanger, heating and gasifying pipeline 1038, reformer chamber 1037, The membrane separation device is set to the top in reformer chamber 1037.The heat exchanger includes methanol-water and preheats pipeline, the heat exchange Device is installed on the conveyance conduit (this section of conveyance conduit can be used as methanol-water to preheat pipeline) of methanol-water raw material, methanol-water raw material High-temperature hydrogen with reformer output in heat exchanger exchanges heat, and methanol-water material temperature raising, hydrogen temperature reduces.Methanol Water raw material gasifies after exchanging heat in heat exchanger into heating and gasifying pipeline 1038;Methanol steam and water vapour after gasification enter weight Whole room, reformer chamber are equipped with catalyst.
The entirety of a reformer 103 substantially hollow cylinder 1031, the top of hollow cylinder 1031 are equipped with gas vent 1032.Described 103 one end of reformer is equipped with starter 108, which includes cup holder 1033, cup holder 1033 On methanol-water preheating pipeline, heating and gasifying pipeline, igniter and temperature detection device are installed;The raw material input channel is defeated Enter first alcohol and water raw material, raw material input channel is connected with heating and gasifying pipeline, first alcohol and water raw material through raw material input channel into After entering heating and gasifying pipeline, exported from the end of heating and gasifying pipeline;The position of the igniter and heating and gasifying pipeline End is corresponding, and for lighting a fire to the first alcohol and water raw material exported in heating and gasifying pipeline, first alcohol and water raw material is through igniting Device ignition, combustion heats heating and gasifying pipeline, makes first alcohol and water material gasification in heating and gasifying pipeline and fast Speed increases combustion intensity, and then is heated for reformer;The temperature detection device is used to detect the temperature by heating and gasifying pipeline Degree;After the reformer starts hydrogen manufacturing, hydrogen partial made from reformer or/and residual air maintain reformer by burning Operation.
The bottom side of the cup holder 1033 is equipped with air inlet cover board, which is equipped with air duct, and outside air can be through the wind Road is entered in reformer;The raw material input channel is equipped with solenoid valve, so that raw material input channel is controlled to play on or off It closes, while controls the flow of raw material input channel.After the hydrogen producer starts, hydrogen producer passes through hydrogen made from device for producing hydrogen The energy of the air lift needed for for operation;At this point it is possible to close starter.Due to hydrogen partial made from device for producing hydrogen or/and remaining Gas maintains hydrogen producer to run by burning, and so as to reduce the dependence to extra power, adaptive ability is strong.
As shown in figure 5, the reformer chamber 1037 includes hollow circuit cylinder housing, catalyst is equipped in hollow circuit cylinder housing 1039;Partly or entirely being set in hollow circuit cylinder housing, being wrapped up by catalyst 1039 for heating and gasifying pipeline 1038, is effectively protected Protect heating and gasifying pipeline.By the improvement, the present invention can preferably preheat, and avoid heating and gasifying pipeline for methanol water liquid There is the situation that peeling is detached from, effectively extend the service life of pipeline.
In addition, in order to efficiently use the heat of residual air, methanol-water pre-add pipe line can exchange heat with residual air discharge pipe.Institute The part for stating methanol-water pre-add pipe line is shape of threads pipeline, is used to convey methanol-water raw material in shape of threads pipeline;Shape of threads Pipeline wraps the residual air discharge pipe of reformer;Residual air discharge pipe temperature after shape of threads pipeline reduces, shape of threads Pipeline temperature after residual air discharge pipe increases;One end of shape of threads pipeline is equipped with input port, and the other end is set there are two defeated Exit port, each output port are equipped with valve;The other parts of one output port connection methanol-water transfer pipeline, another is defeated Exit port is connected to input port by circulation line;The set temperature sensor at the output port close to shape of threads pipeline, Temperature sensor connects pre-add heat controller;Pre-add heat controller is according to the temperature data of temperature sensor and the original of reformer apparatus The switch of material demand two valves of adjusting and the aperture of valve.
Embodiment two
【Generated energy electricity consumption monitoring】
The difference between this embodiment and the first embodiment lies in the present embodiment, it is defeated that the hydrogen gas generation equipment further includes hydrogen Send monitoring modular, generated energy monitoring modular, electricity demand monitoring modular, electricity judgment module, power supply handover module, charge control mould Block, extra electricity conveyor module.
The hydrogen conveying monitoring module is monitoring the amounts of hydrogen of methanol-water reformation hydrogen production equipment conveying.The hair Electric quantity monitoring module is real-time using the hydrogen of methanol-water reformation hydrogen production equipment conveying to monitor the fuel cell system Electricity obtained.The electricity demand monitoring modular is monitoring real-time power demand.The electricity judgment module is to by described in Generated energy monitoring modular is compared with the data that electricity demand monitoring modular obtains, and judges electricity obtained in real time and real-time electricity consumption The relationship of demand, and comparison result is fed back into power supply handover module, extra electricity conveyor module.The power supply handover module is used With when electricity judgment module obtains real-time electricity obtained less than real-time power demand, control buffered sources is have power demand Power supply for electrical equipment.The extra electricity conveyor module is more than in fact to obtain electricity obtained in real time in electricity judgment module When power demand when, by extra electric energy buffered sources charging or/and part electricity to be delivered to the methanol-water weight Whole hydrogen producer needs electric installation to provide electric energy for the methanol-water reformation hydrogen production equipment;The methanol-water reformation hydrogen production equipment Need electric installation include for reformer chamber heating electric heater and control circuit board, each sensor.
The fuel cell system connects low-temperature cogeneration unit, and low-temperature cogeneration unit utilizes fuel cell system Thermal energy, the residual air temperature of the methanol-water reformation hydrogen production equipment and residual air combustion power generation.
The low-temperature cogeneration unit connects generating set switch control unit, the connection of generating set switch control unit If dry temperature sensor, when the data of each temperature sensor senses meet sets requirement, low-temperature cogeneration unit is controlled It opens;When the data of each temperature sensor senses meet sets requirement, control low-temperature cogeneration unit is closed.
The hydrogen gas generation equipment further includes control parameter logging modle, historical data base, historical data acquisition module, reality When control parameter acquisition module, data comparing module, adaptation module.
For the control parameter logging modle recording control parameter into historical data base, control parameter includes work In mean power within the setting period of electrical equipment mark, the electrical equipment in each work, ambient parameter data, generated energy Data, hydrogen supply, methanol-water feedstock transportation amount.The historical data base to storing control parameter historical data.Institute Historical data acquisition module is stated to obtain history control parameter from historical data base.The real-time control parameter acquisition module To obtain real-time control parameter.The data comparing module is to the real-time control that obtains real-time control parameter acquisition module Parameter processed is compared with the history control parameter that historical data acquisition module obtains, emphatically the electrical equipment mark in comparison work Know, the electrical equipment in each work is setting the mean power in the period, ambient parameter data;It obtains and real-time control parameter phase Like the highest history control parameter of degree.The adaptation module is to the similarity highest that is obtained according to the data comparing module History control parameter deposit methanol-water raw material, and in this, as the reference for being initially powered up hydrogen manufacturing amount under state.
Embodiment three
【Methanol-water is collected】
The difference between this embodiment and the first embodiment lies in the present embodiment, the methanol-water reformation hydrogen production equipment further includes: Methanol water collecting device, methanol concentration sensor, concentration deployment device, high concentration methanol water container.
The fuel cell system includes water collecting device, the first heat-exchanger rig, air compression plant.It is prepared by the methanol Equipment includes carbon dioxide interfacing conveyor, hydrogen interfacing conveyor, and carbon dioxide interfacing conveyor connects the methanol-water reformation hydrogen production The carbon dioxide collection pipeline of equipment, hydrogen interfacing conveyor connect the hydrogen delivery tube road of the methanol-water reformation hydrogen production equipment. The methanol-water reformation hydrogen production equipment will partly be delivered to fuel cell system in hydrogen obtained, partly maintain first by burning The operation of alcohol water reformation hydrogen production equipment;The carbon dioxide of collection is delivered to methanol Preparation equipment, the residual air of discharge passes through burning For maintaining the operation of methanol-water reformation hydrogen production equipment.The fuel cell system is by the electrical energy transportation of part generation to methanol-water Reformation hydrogen production equipment, methanol Preparation equipment, the water that fuel cell system is collected are delivered to methanol-water reformation hydrogen production equipment;Fuel electricity The heat of cell system discharge is the methanol-water raw material preheating of methanol-water reformation hydrogen production equipment by the first heat-exchanger rig.
Methanol aqueous solution is made in the methanol Preparation equipment, is delivered to methanol-water reformation hydrogen production equipment.The methanol-water is received Acquisition means connect methanol Preparation equipment, to collect methanol aqueous solution made from methanol Preparation equipment.The methanol concentration sensing Device is set in methanol water collecting device, to sense the methanol concentration in methanol aqueous solution.The concentration deployment device includes Allocates container, the first allotment valve body, the second allotment valve body, third allotment valve body, rabbling mechanism, allotment control unit, first adjusts Valve body control mechanism is respectively equipped with valve body, the second allotment valve body.The methanol water collecting device, water collecting device, high concentration Methanol water container connects allocates container by respective pipeline and delivery pump respectively, and rabbling mechanism is set in allocates container.
The first allotment of methanol water collecting device setting valve body, water collecting device setting the second allotment valve body, high concentration Methanol water container setting third allocates valve body;Allotment control unit calculates methanol-water according to the data that methanol concentration sensor senses The proportioning of solution or/and water or/and high concentration methanol aqueous solution, control methanol water collecting device, water collecting device, high concentration first Alcohol water container corresponds to the switch of allotment valve body so that in the methanol aqueous solution allocated in allocates container, methanol concentration, which reaches, to be set Definite value.
Example IV
【Raw material is automatically injected】
The difference between this embodiment and the first embodiment lies in the present embodiment, the base station further includes main storage container, main storage It deposits container and includes the first liquid level recognition unit, valve, the conveying pump housing, connecting line;First liquid level recognition unit is identifying master The liquid level of storage container, connecting line are equipped with valve and the conveying pump housing;
The storage container is equipped with the second liquid level identification mechanism, to identify the liquid level of storage container;In storage container Liquid level be less than setting value when, conveying the pump housing methanol-water raw material is conveyed from main storage container to storage container.
Embodiment five
【Speech recognition controlled】
The difference between this embodiment and the first embodiment lies in the present embodiment, the water hydrogen generator further includes voice data Library, sound identification module, voice command execution module, voice self-learning module, speech database update module.
The speech database is to voice data and each voice data is corresponding performs order;The voice Identification module is the voice data of acquisition to be compared with the voice data in the speech database, if speech database It is middle to there is the voice data met, comparison result is fed back into voice command execution module;Institute's speech commands execution module is used To perform corresponding order according to the recognition result of sound identification module;The voice self-learning module is to the language according to user Sound sounding custom sets specific voice comparison data for it;Voice comparison data is by voice self-learning module according to user's Pronunciation custom self study obtains;The speech database update module to by the voice self-learning module for setting user set Fixed special sound comparison data is updated in speech database so that user is set in speech database has specific voice Comparison data library.
Specifically, the voice self-learning module judges the first voice number to obtain the first voice data of user According to whether having record, if no record, its voice value sequence is initialized;If there is record, the voice of first voice data is obtained Value sequence;At least one data are recorded in voice value sequence, which represents the voice of certain voice data and another voice data Value, when which reaches given threshold, represents that certain voice data is close with another voice data, it is believed that the two corresponds to same Voice command;
If sound identification module fails to find corresponding voice data in speech database or by user feedback voice Identification module identifies mistake;If user sent out in setting time second speech data by sound identification module identify successfully or Person user sends control command by other approach, the corresponding voice data of the control command is second speech data;Then by The speech value that one voice data corresponds to second speech data increases setting value, then, judges whether the speech value reaches setting threshold Value;If reaching given threshold, in the corresponding voice comparison data library of the user, the first voice data is increased into the second voice Voice data corresponding to the corresponding control command of data, and the comparison priority of the first voice data is more than the second voice number According to preferentially being compared in follow-up comparison process.
Embodiment six
【Gesture identification controls】
The difference between this embodiment and the first embodiment lies in the present embodiment, the water hydrogen generator further includes gesture data Library, gesture recognition module, gesture command execution module, gesture self-learning module, gesture database update module.The gesture number According to library storing gesture data and each gesture data is corresponding performs order.The gesture recognition module will be will obtain Gesture data be compared with the gesture data in the gesture database, if there is the gesture number that meets in gesture database According to comparison result is fed back to gesture command execution module.The gesture command execution module is to according to gesture recognition module Recognition result perform corresponding order.The gesture self-learning module is specific for its setting to be accustomed to according to the gesture of user Gesture comparison data;Gesture comparison data is accustomed to self study according to the gesture of user by gesture self-learning module and is obtained.Institute Gesture database update module is stated to be setting certain gestures comparison data set by user by the gesture self-learning module It is updated in gesture database so that user is set in gesture database has specific gesture comparison data library.
Specifically, the gesture self-learning module judges the first gesture number to obtain the first gesture data of user According to whether having record, if no record, its gesture value sequence is initialized;If there is record, the gesture of the first gesture data is obtained Value sequence;At least one data are recorded in gesture value sequence, which represents the gesture of certain gesture data and another another data Value, when which reaches given threshold, represents that certain gesture data is close with another another data, it is believed that the two corresponds to same Gesture command.If gesture recognition module fails to find corresponding gesture data in gesture database or by user feedback hand Gesture identification module identifies mistake;If user sends out second gesture data in setting time and is identified successfully by gesture recognition module, Or user sends control command by other approach, the corresponding gesture data of the control command is second gesture data;Then will The gesture value that first gesture data correspond to second gesture data increases setting value, then, judges whether the gesture value reaches setting Threshold value;If reaching given threshold, in the corresponding gesture comparison data library of the user, first gesture data are increased into second-hand Gesture data corresponding to the corresponding control command of gesture data, and the comparison priority of first gesture data is more than second gesture number According to preferentially being compared in follow-up comparison process.
Embodiment seven
【Power consumption prediction】
The difference between this embodiment and the first embodiment lies in the present embodiment, it is pre- that the water hydrogen generator further includes electricity consumption Survey module, hydrogen buffering storage container.The electricity demand forecasting module is to the electricity consumption according to historical data or/and different user Electricity consumption in custom prediction setting time.
The electricity demand forecasting module includes electricity consumption historical data base, user's living habit database, customer position information Acquiring unit, user identification unit, user are accustomed to analytic unit, electrical equipment custom analytic unit, electricity demand forecasting unit.
The electricity consumption historical data base records each use to store the electricity consumption situation of each electrical equipment in setting time Electric equipment opened by which user, is closed by which or which user's use, by which user;User plays opening/closing electricity consumption and sets User's living habit data, user's real-time position information in standby setting time.
User's living habit database is given birth to record the user for the portable electronic piece terminal storage that user carries at any time Custom data living;The portable electronic piece terminal includes Master control chip, myoelectric sensor, wireless communication module, Master control chip Myoelectric sensor, wireless communication module are connected respectively;Myoelectric sensor records the real-time myoelectricity data of user.
The customer position information acquiring unit is obtaining the real-time position information of user.
Each electrical equipment is respectively provided with user identification unit, the user identification unit to when opening electrical equipment, The user of the electrical equipment is opened, closes in identification when closing electrical equipment, while identifies electrical equipment by which every setting time A or which user uses;The user identification unit is face recognition device.
The user is accustomed to analytic unit to each user for being recorded according to electricity consumption historical data base to each electrical equipment Electricity consumption situation, with reference to user's living habit data of user's living habit data-base recording, therefrom obtain each electrical equipment The rule unlatched and closed;The user is accustomed to analytic unit according to electricity consumption historical data base, judges that set user opens every time The second electrical equipment whether can be opened after first electrical equipment all in setting time or opens the probability of the second electrical equipment More than given threshold;If so, setting data are sent to electricity demand forecasting unit;The electricity demand forecasting unit is known in user When other unit recognizes the user the first electrical equipment of opening, judge that the second electrical equipment is expected to be beaten in setting time It opens;The user is accustomed to analytic unit to judge whether are the service condition of each electrical equipment and user's myoelectricity data variation rule Meet given threshold, if satisfied, being then associated with the service condition of each electrical equipment with user's myoelectricity data variation rule;If occur The look-ahead that identical user's myoelectricity data variation rule is used as the electrical equipment, and it is sent to electricity demand forecasting list Member;The electricity demand forecasting unit when there is corresponding changing rule in the user's myoelectricity data for recognizing myoelectric sensor sensing, The corresponding electrical equipment of prediction is in the service condition of setting time.
The electrical equipment is accustomed to analytic unit to the use of each electrical equipment recorded according to electricity consumption historical data base Electric situation obtains the related information of wherein electrical equipment switch, therefrom obtains the rule that each electrical equipment unlatches and closes;With Electric equipment is accustomed to analytic unit according to electricity consumption historical data base, judges sometime section, each electrical equipment is no to be opened;If It is that setting data are then sent to electricity demand forecasting unit;The electricity demand forecasting unit is carried before time interval arrival Preceding hydrogen storage prepares.
The electricity demand forecasting unit is to according to electricity consumption historical data base, user's living habit database, portable electronic piece Terminal, customer position information acquiring unit, user identification unit, user are accustomed to analytic unit, electrical equipment custom analytic unit Data prediction setting time in electricity consumption situation, if having more than the electric energy of given threshold in prediction setting time needs to consume When, control methanol-water reformation hydrogen production equipment improves hydrogen manufacturing amount, and using hydrogen partial be stored in hydrogen buffering storage container as Electricity consumption buffers;
The electricity demand forecasting unit is additionally provided with electrical equipment Selection Floater, with will in setting time for selection by the user The electrical equipment of opening;After the information for receiving user feedback, given a forecast judgement according to the selection of user.
The hydrogen buffering storage container is follow-up hydrogen to store the hydrogen partial of methanol-water reformation hydrogen production equipment generation Gas power generation is prepared.
Hydrogen gas pressure sensor is equipped in the hydrogen buffering storage container, to sense in hydrogen buffering storage container Air pressure.
The methanol-water reformation hydrogen production equipment includes the hydrogen conveying pump housing, hydrogen delivery controller, hydrogen delivery controller The transmission power of the real-time barometric information control hydrogen conveying pump housing sensed according to the hydrogen gas pressure sensor;Transmission power with It the increase of air pressure in hydrogen buffering storage container and increases, reduced with the reduction of air pressure in hydrogen buffering storage container.
The hydrogen buffering storage container is equipped with volume adjustment mechanism, to adjust the volume of hydrogen buffering storage container, It is made adjustments according to the pressure size in hydrogen buffering storage container;If pressure in hydrogen buffering storage container is more than/less than setting Level pressure is strong, and volume adjustment mechanism increases/reduce the volume of hydrogen buffering storage container by adjusting the position of side wall.
The base transceiver station, base station controller are respectively equipped with temperature sensor, water-cooling heat radiating device, water-cooling heat radiating device Including being set to base transceiver station, the heat dissipation pipeline in base station controller;Heat dissipation pipeline connects storage container, and heat dissipation pipeline is equipped with Valve, valve connecting valve controller;Valve positioner connection base transceiver station, the temperature sensor of base station controller setting, The switch of corresponding valve is controlled according to the temperature information of corresponding temperature sensor sensing;
Respective information is sent to same control centre by the base transceiver station, base station controller, water hydrogen generator, altogether Information is enjoyed, is uniformly controlled.
Embodiment eight
The difference between this embodiment and the first embodiment lies in the present embodiment, the reformer further includes quick start and fills It puts;The device for rapidly starting provides the startup energy for methanol-water reformation hydrogen production equipment.The device for rapidly starting includes first Starter, the second starter.First starter includes the first heating arrangements, the first gasification pipe, the first gasification The internal diameter of pipeline is 1~2mm, and the first gasification pipe is closely wound on the first heating arrangements;First gasification pipe One end connects storage container, and methanol is sent into the first gasification pipe by raw material conveying device;First gasification pipe it is another End exports vaporized methanol, then passes through ignition mechanism ignition;Alternatively, the other end of the first gasification pipe is exported by gas The methanol of change, and the methanol temperature exported reaches self-ignition point, methanol is from direct spontaneous combustion after the output of the first gasification pipe.Described second Starter includes the second gasification pipe, and the main body of the second gasification pipe is set to the reformer chamber, the first gasification pipe or/ The second gasification pipe is heated while heating with the methanol of the second gasification pipe output for reformer chamber, it will be in the second gasification pipe Methanol gasifying;The reformer chamber inner wall is equipped with heating pipeline, heats in pipeline and is placed with catalyst;The device for rapidly starting passes through The heating pipeline is heated to attach most importance to the heating of whole room;After the hydrogen generating system starts, hydrogen generating system passes through hydrogen made from hydrogen producer The energy of the air lift needed for for operation.
The initial start energy of the device for rapidly starting can be several solar energy starting modules, solar energy starting module Including sequentially connected solar panel, solar energy-electric energy conversion circuit, solar cell;Solar energy starting module is first Heating arrangements provide electric energy;Alternatively, the initial start energy of the device for rapidly starting is manual generator, manual generator will The power storage sent out is in battery.
Embodiment nine
The difference between this embodiment and the first embodiment lies in the present embodiment, the hydrogen producer includes electromagnetic heater (being used for heating for reformer chamber, separation chamber, the combustion heating of methanol or hydrogen is replaced by electrical heating);The hydrogen gas generation is set Standby connection hydrogen producer, hydrogen producer is delivered to by the Partial DC electricity sent out;Hydrogen producer passes through oneself direct current obtained Drive electromagnetic heater is reformer chamber, separation chamber is heated;Meanwhile the direct current sent out is also delivered to each equipment of system, It is run for each equipment, while also supplies hydrogen generating equipment self-operating.
Electromagnetic heater includes the separation cylinder body reformed cylinder body, form separation chamber for forming reformer chamber, is set to reformation The first heating coil outside cylinder body, detach cylinder body outside the second heating coil, reform cylinder body, separation cylinder body in temperature sensing Device, pressure sensor and electromagnetic controller;The data that electromagnetic controller is sensed according to temperature sensor, pressure sensor The electric current of the first heating coil, the second heating coil is controlled, reformer chamber, separation chamber can be made moment to reach set temperature.
In conclusion the water hydrogen power generation base station proposed by the present invention for being automatically injected raw material, using methanol-water reformation hydrogen production The electric energy work sent out, can power in the place of no power grid for communication base station, improve the convenience of arrangement of base stations, reduction pair The pollution of environment;It can automatically be noted to the setting storage container of hydrogen producer when raw material needed for hydrogen manufacturing is less than setting value simultaneously Enter raw material, ensure equipment steady operation, while reduce cost of labor.In addition, the present invention can effectively utilize natural energy resources hair Electricity, and extra electric energy can be stored in a manner of methanol, it can be generated electricity on power supply peak by methanol.The present invention is more advantageous to filling Divide ground using the energy, energy conservation and environmental protection.
Here description of the invention and application are illustrative, are not wishing to limit the scope of the invention to above-described embodiment In.The deformation and change of embodiments disclosed herein are possible, real for those skilled in the art The replacement and equivalent various parts for applying example are well known.It should be appreciated by the person skilled in the art that not departing from the present invention Spirit or essential characteristics in the case of, the present invention can in other forms, structure, arrangement, ratio and with other components, Material and component are realized.In the case where not departing from scope and spirit of the present invention, can to embodiments disclosed herein into The other deformations of row and change.

Claims (7)

1. a kind of water hydrogen power generation base station for being automatically injected raw material, which is characterized in that including at least a water hydrogen generator, base station sheet Body, main storage container;The base station ontology includes base station towers, antenna for base station, base transceiver station, base station controller;On base station towers Antenna for base station is set, and base transceiver station connects antenna for base station, base station controller respectively;The water hydrogen generator is distinguished by cable Connect base transceiver station, base station controller, antenna for base station;
The water hydrogen generator includes methanol-water device for producing hydrogen, hydrogen fuel cell, air pump, control circuit board;Methanol-water hydrogen manufacturing Device includes delivery pump, heat exchanger, reformer, membrane separator, and methanol-water device for producing hydrogen is also connected with storage container, for storing first Alcohol water raw material, each storage container connect main storage container respectively;
The main storage container includes master controller, the conveying pump housing, connecting line, the master controller connection conveying pump housing;The storage Container is deposited equipped with the first liquid level recognition unit, to identify the liquid level of storage container, the connection main control of the first liquid level recognition unit Device;Valve is respectively equipped between each storage container and main storage container, each valve connects the master controller respectively;
Hydrogen is made in the methanol-water reformation hydrogen production equipment utilization methanol-water raw material, and hydrogen fuel cell is sent out using hydrogen obtained Electricity;
The methanol-water storage container is equipped with the first temperature sensor, liquid level sensor, and being equipped with second temperature in heat exchanger senses Device, first flow sensor, reformer is interior to be equipped with third temperature sensor, air flow inlet, the air stream outlet point of hydrogen fuel cell It She Zhi not pressure sensor and solenoid valve;
The control circuit board connects delivery pump respectively, and second temperature sensor, first flow sensor in heat exchanger are reformed Third temperature sensor in device, the pressure sensor and solenoid valve of hydrogen fuel cell, and control the work of all parts;
The methanol-water raw material of liquid is stored in the methanol-water storage container;The delivery pump is used for methanol-water storage container In methanol-water raw material the reformer chamber of reformer is pumped to by conveyance conduit;The heat exchanger is installed on the defeated of methanol-water raw material It send on pipeline, methanol-water raw material exchanges heat in heat exchanger with the high-temperature hydrogen of reformer output, methanol-water material temperature liter Height, hydrogen temperature reduce;Methanol-water raw material carries out reformation hydrogen production reaction in reformer chamber and hydrogen-containing gas is made, and passes through membrane separator Obtain hydrogen;Air pump connects hydrogen fuel cell, pumps air into hydrogen fuel cell;Hydrogen passes through hydrogen with the oxygen in air Fuel cell occurs redox reaction and produces electricl energy.
2. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The reformer chamber includes hollow housing, and catalyst is equipped in hollow housing;The part or all of setting of heating and gasifying pipeline It is wrapped up in hollow housing, by catalyst.
3. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The main storage container further includes the second liquid level recognition unit, to identify the liquid level of main storage container;Second liquid level is known Other unit connects master controller.
4. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The storage container is equipped with sub-controller, sub- wireless communication unit, and sub-controller connects the first liquid level recognition unit, sub- nothing Line communication unit;
The main storage container is equipped with main wireless communication unit, and master controller is led to by main wireless communication unit with sub-controller News obtain the liquid level data of each storage container.
5. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The storage container is equipped with the first temperature sensor, liquid level sensor, and second temperature sensor, first are equipped in heat exchanger Flow sensor, reformer is interior to be equipped with third temperature sensor, and air flow inlet, the air stream outlet of hydrogen fuel cell set pressure respectively Force snesor and solenoid valve;
The control circuit board connects delivery pump respectively, and second temperature sensor, first flow sensor in heat exchanger are reformed Third temperature sensor in device, the pressure sensor and solenoid valve of hydrogen fuel cell, and control the work of all parts;
The methanol-water raw material of liquid is stored in the methanol-water storage container;The delivery pump is used for methanol-water storage container In methanol-water raw material the reformer chamber of reformer is pumped to by conveyance conduit;The heat exchanger is installed on the defeated of methanol-water raw material It send on pipeline, methanol-water raw material exchanges heat in heat exchanger with the high-temperature hydrogen of reformer output, methanol-water material temperature liter Height, hydrogen temperature reduce;Methanol-water raw material carries out reformation hydrogen production reaction in reformer chamber and hydrogen-containing gas is made, and passes through membrane separator Obtain hydrogen;Air pump connects hydrogen fuel cell, pumps air into hydrogen fuel cell;Hydrogen passes through hydrogen with the oxygen in air Fuel cell occurs redox reaction and produces electricl energy.
6. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The hydrogen gas generation equipment further includes hydrogen conveying monitoring module, generated energy monitoring modular, electricity demand monitoring modular, electricity Judgment module, power supply handover module, charge control module, extra electricity conveyor module;
The hydrogen conveying monitoring module is monitoring the amounts of hydrogen of methanol-water reformation hydrogen production equipment conveying;
The generated energy monitoring modular is conveyed to monitor the fuel cell system using the methanol-water reformation hydrogen production equipment Hydrogen electricity obtained in real time;
The electricity demand monitoring modular is monitoring real-time power demand;
The electricity judgment module compares to the data for obtaining the generated energy monitoring modular with electricity demand monitoring modular It is right, judge electricity obtained in real time and the relationship of real-time power demand, and comparison result is fed back into power supply handover module, extra Electricity conveyor module;
The power supply handover module is to when electricity judgment module obtains that electricity obtained is less than real-time power demand in real time, control Buffered sources processed are the power supply for electrical equipment for having power demand;
The extra electricity conveyor module is more than real-time power demand to obtain electricity obtained in real time in electricity judgment module When, charging for buffered sources or/and part electricity is delivered to the methanol-water reformation hydrogen production extra electric energy sets It is standby, electric installation is needed to provide electric energy for the methanol-water reformation hydrogen production equipment;The methanol-water reformation hydrogen production equipment needs Denso Put electric heater and control circuit board, each sensor including being heated for reformer chamber;
The fuel cell system connects low-temperature cogeneration unit, and low-temperature cogeneration unit utilizes the heat of fuel cell system Energy, the residual air temperature of the methanol-water reformation hydrogen production equipment and residual air combustion power generation;
The low-temperature cogeneration unit connects generating set switch control unit, and the connection of generating set switch control unit is several Temperature sensor, when the data of each temperature sensor senses meet sets requirement, control low-temperature cogeneration unit is opened; When the data of each temperature sensor senses meet sets requirement, control low-temperature cogeneration unit is closed.
7. the water hydrogen power generation base station according to claim 1 for being automatically injected raw material, it is characterised in that:
The water hydrogen generator further includes electricity demand forecasting module, hydrogen buffering storage container;
The electricity demand forecasting module is to according in the consumption habit of historical data or/and different user prediction setting time Electricity consumption;
The electricity demand forecasting module includes electricity consumption historical data base, user's living habit database, customer position information and obtains Unit, user identification unit, user are accustomed to analytic unit, electrical equipment custom analytic unit, electricity demand forecasting unit;
The electricity consumption historical data base records each electricity consumption and sets to store the electricity consumption situation of each electrical equipment in setting time It is standby to be opened by which user, closed by which or which user's use, by which user;User beats opening/closing electrical equipment and sets User's living habit data, user's real-time position information in fixing time;
User's living habit database is practised to record the user for the portable electronic piece terminal storage that user carries at any time life Used data;The portable electronic piece terminal includes Master control chip, myoelectric sensor, wireless communication module, Master control chip difference Connect myoelectric sensor, wireless communication module;Myoelectric sensor records the real-time myoelectricity data of user;
The customer position information acquiring unit is obtaining the real-time position information of user;
Each electrical equipment is respectively provided with user identification unit, and the user identification unit is to when opening electrical equipment, closing Identification opens, closes the user of the electrical equipment during electrical equipment, at the same every setting time identify electrical equipment by which or Which user uses;The user identification unit is face recognition device;
The user is accustomed to analytic unit to the use according to each user that electricity consumption historical data base records to each electrical equipment Electric situation with reference to user's living habit data of user's living habit data-base recording, therefrom show that each electrical equipment is opened And the rule closed;The user is accustomed to analytic unit according to electricity consumption historical data base, judges that set user opens first every time The probability of the second electrical equipment of the second electrical equipment or opening whether can be opened after electrical equipment all in setting time is more than Given threshold;If so, setting data are sent to electricity demand forecasting unit;The electricity demand forecasting unit identifies single in user When member recognizes the user the first electrical equipment of opening, judge that the second electrical equipment is expected to be opened in setting time;Institute It states user and is accustomed to analytic unit to judge whether the service condition of each electrical equipment meets with user's myoelectricity data variation rule Given threshold, if satisfied, being then associated with the service condition of each electrical equipment with user's myoelectricity data variation rule;If occur identical The look-ahead that is used as the electrical equipment of user's myoelectricity data variation rule, and be sent to electricity demand forecasting unit;Institute Electricity demand forecasting unit is stated when the user's myoelectricity data for recognizing myoelectric sensor sensing have corresponding changing rule, prediction pair Using electric equipment setting time service condition;
The electrical equipment is accustomed to analytic unit to the electricity consumption feelings of each electrical equipment recorded according to electricity consumption historical data base Condition obtains the related information of wherein electrical equipment switch, therefrom obtains the rule that each electrical equipment unlatches and closes;Electricity consumption is set Standby custom analytic unit judges sometime section, each electrical equipment is no to be opened according to electricity consumption historical data base;If so, Setting data are then sent to electricity demand forecasting unit;The electricity demand forecasting unit does before time interval arrival and stores up in advance Hydrogen prepares;
The electricity demand forecasting unit to according to electricity consumption historical data base, user's living habit database, portable electronic piece terminal, Customer position information acquiring unit, user identification unit, user is accustomed to analytic unit, electrical equipment is accustomed to the data of analytic unit Predict the electricity consumption situation in setting time, if predict that the electric energy that given threshold is had more than in setting time needs consumption, control Methanol-water reformation hydrogen production equipment processed improves hydrogen manufacturing amount, and hydrogen partial is stored in hydrogen buffering storage container and is delayed as electricity consumption Punching;
The electricity demand forecasting unit is additionally provided with electrical equipment Selection Floater, with will be opened in setting time for selection by the user Electrical equipment;After the information for receiving user feedback, given a forecast judgement according to the selection of user;
The hydrogen buffering storage container is sent out to store the hydrogen partial of methanol-water reformation hydrogen production equipment generation for follow-up hydrogen Electric equipment power generation is prepared;
Hydrogen gas pressure sensor is equipped in the hydrogen buffering storage container, to sense the gas in hydrogen buffering storage container Pressure;
The methanol-water reformation hydrogen production equipment include hydrogen conveying the pump housing, hydrogen delivery controller, hydrogen delivery controller according to The transmission power of the real-time barometric information control hydrogen conveying pump housing of the hydrogen gas pressure sensor sensing;Transmission power is with hydrogen The increase of air pressure in gas buffer-stored container and increase, reduced with the reduction of air pressure in hydrogen buffering storage container;
The hydrogen buffering storage container is equipped with volume adjustment mechanism, to adjust the volume of hydrogen buffering storage container, according to Pressure size in hydrogen buffering storage container makes adjustments;If pressure in hydrogen buffering storage container is more than/less than setting pressure By force, volume adjustment mechanism increases/reduces the volume of hydrogen buffering storage container by adjusting the position of side wall.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108258286A (en) * 2016-12-28 2018-07-06 广东能态科技投资有限公司 A kind of water hydrogen power generation base station with remote monitoring function
CN109188935A (en) * 2018-07-10 2019-01-11 长沙国通电力科技有限公司 A kind of low pressure overbottom pressure cogeneration machine unit automatic generation method and system
CN109638316A (en) * 2018-11-06 2019-04-16 德州新动能铁塔发电有限公司 Vehicle-mounted water hydrogen machine methanol-water raw material is for method of completing the square and system
CN111564884A (en) * 2020-05-28 2020-08-21 重庆宗申氢能源动力科技有限公司 Distributed power generation system and control method thereof

Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5141823A (en) * 1984-03-03 1992-08-25 Vickers Shipbuilding And Engineering Limited Electrical generating plant
US20060019135A1 (en) * 2003-12-01 2006-01-26 Curello Andrew J Fuel cell with fuel monitoring system and method of use
US20060068246A1 (en) * 2003-09-09 2006-03-30 Shiro Matsuo Energy stations
US20070042241A1 (en) * 2005-08-17 2007-02-22 Shiro Matsuo Energy stations
US20070190380A1 (en) * 2005-08-03 2007-08-16 Devries Peter D Reformer and fuel cell system control and method of operation
US20070224469A1 (en) * 2005-03-30 2007-09-27 Yoshiyuki Isozaki Fuel reforming apparatus and fuel cell system
US20070243433A1 (en) * 2006-04-14 2007-10-18 Ju-Yong Kim Reformer with a plurality of heaters and fuel cell system using the same
WO2015154529A1 (en) * 2014-04-10 2015-10-15 上海合既得动氢机器有限公司 Electric system for generating power using methanol-water reforming, and control method
CN204905991U (en) * 2015-08-04 2015-12-23 李航伟 Fuel cell basic station stand -by power supply system of methyl alcohol hydrogen manufacturing energy storage
CN105244518A (en) * 2015-10-22 2016-01-13 上海合既得动氢机器有限公司 Water hydrogen monitoring equipment
CN205039206U (en) * 2015-10-22 2016-02-17 上海合既得动氢机器有限公司 Water hydrogen computer
WO2016095392A1 (en) * 2014-12-17 2016-06-23 广东合即得能源科技有限公司 System and method for generating electricity via hydrogen generation from methanol-water
CN105789666A (en) * 2016-04-11 2016-07-20 上海合既得动氢机器有限公司 Water hydrogen charging system circularly utilizing tail gas
CN106252692A (en) * 2016-10-11 2016-12-21 广东能态科技投资有限公司 A kind of methanol-water reformation hydrogen production electromotor for communication base station
CN206541890U (en) * 2016-12-28 2017-10-03 广东能态科技投资有限公司 A kind of water hydrogen generating base station for being automatically injected raw material

Patent Citations (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5141823A (en) * 1984-03-03 1992-08-25 Vickers Shipbuilding And Engineering Limited Electrical generating plant
US20060068246A1 (en) * 2003-09-09 2006-03-30 Shiro Matsuo Energy stations
US20060019135A1 (en) * 2003-12-01 2006-01-26 Curello Andrew J Fuel cell with fuel monitoring system and method of use
US20070224469A1 (en) * 2005-03-30 2007-09-27 Yoshiyuki Isozaki Fuel reforming apparatus and fuel cell system
US20070190380A1 (en) * 2005-08-03 2007-08-16 Devries Peter D Reformer and fuel cell system control and method of operation
US20070042241A1 (en) * 2005-08-17 2007-02-22 Shiro Matsuo Energy stations
US20070243433A1 (en) * 2006-04-14 2007-10-18 Ju-Yong Kim Reformer with a plurality of heaters and fuel cell system using the same
WO2015154529A1 (en) * 2014-04-10 2015-10-15 上海合既得动氢机器有限公司 Electric system for generating power using methanol-water reforming, and control method
WO2016095392A1 (en) * 2014-12-17 2016-06-23 广东合即得能源科技有限公司 System and method for generating electricity via hydrogen generation from methanol-water
CN204905991U (en) * 2015-08-04 2015-12-23 李航伟 Fuel cell basic station stand -by power supply system of methyl alcohol hydrogen manufacturing energy storage
CN105244518A (en) * 2015-10-22 2016-01-13 上海合既得动氢机器有限公司 Water hydrogen monitoring equipment
CN205039206U (en) * 2015-10-22 2016-02-17 上海合既得动氢机器有限公司 Water hydrogen computer
CN105789666A (en) * 2016-04-11 2016-07-20 上海合既得动氢机器有限公司 Water hydrogen charging system circularly utilizing tail gas
CN106252692A (en) * 2016-10-11 2016-12-21 广东能态科技投资有限公司 A kind of methanol-water reformation hydrogen production electromotor for communication base station
CN206541890U (en) * 2016-12-28 2017-10-03 广东能态科技投资有限公司 A kind of water hydrogen generating base station for being automatically injected raw material

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108258286A (en) * 2016-12-28 2018-07-06 广东能态科技投资有限公司 A kind of water hydrogen power generation base station with remote monitoring function
CN108258286B (en) * 2016-12-28 2024-06-04 广东能态科技投资有限公司 Water hydrogen power generation base station with remote monitoring function
CN109188935A (en) * 2018-07-10 2019-01-11 长沙国通电力科技有限公司 A kind of low pressure overbottom pressure cogeneration machine unit automatic generation method and system
CN109638316A (en) * 2018-11-06 2019-04-16 德州新动能铁塔发电有限公司 Vehicle-mounted water hydrogen machine methanol-water raw material is for method of completing the square and system
CN111564884A (en) * 2020-05-28 2020-08-21 重庆宗申氢能源动力科技有限公司 Distributed power generation system and control method thereof
CN111564884B (en) * 2020-05-28 2023-03-31 重庆宗申氢能源动力科技有限公司 Distributed power generation system and control method thereof

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