CN209401750U - A kind of fuel cell hybrid generation system based on methanol - Google Patents

A kind of fuel cell hybrid generation system based on methanol Download PDF

Info

Publication number
CN209401750U
CN209401750U CN201920143957.XU CN201920143957U CN209401750U CN 209401750 U CN209401750 U CN 209401750U CN 201920143957 U CN201920143957 U CN 201920143957U CN 209401750 U CN209401750 U CN 209401750U
Authority
CN
China
Prior art keywords
unit
sofc
hydrogen
methanol
gas
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn - After Issue
Application number
CN201920143957.XU
Other languages
Chinese (zh)
Inventor
李海宾
康磊
周辉
宋文婉
韩敏芳
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Qingda Innovation Research Institute Co ltd
Guangdong Suote Energy Technology Co ltd
Original Assignee
Guangdong Souter Energy Technology Co Ltd
Tsinghua Innovation Center in Dongguan
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Souter Energy Technology Co Ltd, Tsinghua Innovation Center in Dongguan filed Critical Guangdong Souter Energy Technology Co Ltd
Priority to CN201920143957.XU priority Critical patent/CN209401750U/en
Application granted granted Critical
Publication of CN209401750U publication Critical patent/CN209401750U/en
Withdrawn - After Issue legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/50Fuel cells

Landscapes

  • Fuel Cell (AREA)

Abstract

The utility model discloses a kind of fuel cell hybrid generation systems based on methanol, reform the methanol pre-treatment component of gas, for carrying out separating-purifying to reformation gas to obtain the hydrogen purification component and hydrogen gas combustor of hydrogen to obtain including PEMFC, SOFC, for carrying out reforming reaction to methanol;The reformation gas entrance for reforming gas outlet connection hydrogen purification component of methanol pre-treatment component;The anode inlet of the hydrogen outlet connection PEMFC of hydrogen purification component;When fuel cell hybrid generation system is in scheduled stable operation stage, the anode inlet of the anode export connection SOFC of PEMFC, the gas access of the anode export connection hydrogen gas combustor of SOFC.The system is generated electricity using PEMFC and SOFC simultaneously, and PEMFC and SOFC is run under low temperature, high temperature respectively, and the cascade utilization of hydrogen may be implemented, and improves the fuel availability of hydrogen, improves system generating efficiency.

Description

A kind of fuel cell hybrid generation system based on methanol
Technical field
The utility model relates to field of batteries more particularly to a kind of fuel cell hybrid generation systems based on methanol.
Background technique
Hydrogen is as a kind of clean energy, and the discharge of contamination-free during utilization, being known as 21 century pole has out Send out the new cleaning fuel of Utilization prospects;And the calorific value of hydrogen is high, source is extremely wide, can be by traditional fossil energy coal Preparation, can also be prepared by renewable energy power generations such as solar energy, wind energies, can also pass through the industries such as purification chemical industry, metallurgy It is prepared by industrial waste gas.Hydrogen is used for fuel cell power generation and only produces water without the discharge of other pollutants, is a kind of The generation mode of clean and effective.
For traditional fuel cell distributed electricity generation system, using coal hydrogen manufacturing, renewable energy hydrogen manufacturing or Industry Waste Gas hydrogen manufacturing obviously is difficult to match with the scale of distributed generation system, and uses methanol steam reformation hydrogen production joint fuel cell hair Electricity can supply hydrogen fuel well for fuel cell distributed electricity generation system;And the reaction of methanol steam reformation hydrogen production has Temperature is lower, hydrogen content it is high convenient for purification, reaction condition be mildly easily achieved the advantages that.
The hydrogen of methanol steam reforming preparation can be used as Proton Exchange Membrane Fuel Cells (PEMFC) and soild oxide combustion The fuel of material battery (SOFC) generates electricity, wherein PEMFC reaction temperature is lower so that hydrogen conversion is lower and generating efficiency It is lower, but its starting is very fast;And SOFC reaction temperature is higher, and generating efficiency and hydrogen conversion can be improved when using hydrogen as fuel Rate, but SOFC reaction temperature height causes the starting time longer.The existing fuel cell system using hydrogen generally only utilizes One kind in PEMFC or SOFC unavoidably has corresponding defect.
Utility model content
The purpose of this utility model is to provide a kind of fuel cell hybrid generation system based on methanol, pass through by PEMFC and SOFC combination, the conversion ratio and system generating efficiency of Lai Tigao hydrogen and the starting time for reducing system.
For this purpose, the utility model uses following technical scheme:
A kind of fuel cell hybrid generation system based on methanol, including PEMFC, SOFC, for being reformed to methanol Reaction reforms the methanol pre-treatment component of gas to obtain, for carrying out separating-purifying to reformation gas to obtain the hydrogen purification of hydrogen Component and hydrogen gas combustor;
The reformation gas entrance of the methanol pre-treatment component reformed gas outlet and connect the hydrogen purification component;The hydrogen The hydrogen outlet of the pure component of air lift connects the anode inlet of the PEMFC;
When the fuel cell hybrid generation system is in scheduled stable operation stage, the anode export of the PEMFC The anode inlet of the SOFC is connected, the anode export of the SOFC connects the gas access of the hydrogen gas combustor.
Optionally, the fuel cell hybrid generation system further include air supply unit, sofc cathode preheating unit and SOFC anode preheating unit;The air outlet slit of the air supply unit connects the cathode inlet and sofc cathode of the PEMFC The air intake of preheating unit;
When the fuel cell hybrid generation system is in scheduled stable operation stage, the cathode outlet of the PEMFC The air intake of the sofc cathode preheating unit is connected, the air outlet slit of the sofc cathode preheating unit connects the SOFC Cathode inlet;
The anode export of the PEMFC connects the hydrogen inlet of the SOFC anode preheating unit, and the SOFC anode is pre- The hydrogen outlet of hot cell connects the anode inlet of the SOFC;
The anode export and cathode outlet of the SOFC are all connected with the gas access of the hydrogen gas combustor, the hydrogen combustion The high-temperature flue gas outlet of burner connects the smoke inlet of the SOFC anode preheating unit and sofc cathode preheating unit.
Optionally, the fuel cell hybrid generation system further includes sequentially connected nitrogen supply (NS) unit and nitrogen preheating Unit;
When the fuel cell hybrid generation system is in scheduled startup stage, the sky of the sofc cathode preheating unit Gas outlet connects the cathode inlet of the SOFC, and the anode that the nitrogen outlet of the nitrogen preheating unit connects the SOFC enters Mouthful;
The cathode outlet and anode export of the PEMFC are all connected with the gas access of the hydrogen gas combustor, the hydrogen The high-temperature flue gas outlet of burner connects the smoke inlet of the sofc cathode preheating unit and nitrogen preheating unit.
Optionally, the methanol pre-treatment component includes sequentially connected methanol aqueous solution supply unit, methanol aqueous solution Gasification unit and methanol steam reformer unit.
Optionally, the hydrogen purification component includes sequentially connected separative unit, CO for removing first alcohol and water excellent Initial oxidation unit and CO2Removal unit;
The reformation gas entrance of the methanol steam reformer unit reformed gas outlet and connect the separative unit, the CO2 The hydrogen outlet of removal unit connects the anode inlet of the PEMFC.
It optionally, further include methanol supply unit and methanol combustion chamber;
The air supply unit and the methanol supply unit are all connected with the gas access of the methanol combustion chamber;It is described The high-temperature flue gas outlet of methanol combustion chamber connects the methanol steam reformer unit, methanol aqueous solution gasification unit and the preferential oxygen of CO Change the smoke inlet of unit.
Optionally, the flue gas that the high-temperature flue gas outlet of the methanol combustion chamber connects the methanol steam reformer unit enters Mouthful, the exhanst gas outlet of the methanol steam reformer unit connects the smoke inlet of the methanol aqueous solution gasification unit, the first The exhanst gas outlet of alcohol solution gasification unit connects the smoke inlet of the CO preferential oxidation unit.
Optionally, when the fuel cell hybrid generation system is in scheduled stable operation stage, the combustion of hydrogen The high-temperature flue gas outlet of device connects the smoke inlet of the sofc cathode preheating unit, the flue gas of the sofc cathode preheating unit Outlet connects the smoke inlet of the SOFC anode preheating unit.
Optionally, when the fuel cell hybrid generation system is in scheduled startup stage, the hydrogen gas combustor High-temperature flue gas outlet connects the smoke inlet of the sofc cathode preheating unit, the exhanst gas outlet of the sofc cathode preheating unit Connect the smoke inlet of the nitrogen preheating unit.
Compared with prior art, the utility model has the following beneficial effects:
Fuel cell hybrid generation system provided by the utility model, while being generated electricity using PEMFC and SOFC, PEMFC and SOFC is run under low temperature, high temperature respectively, and the cascade utilization of hydrogen may be implemented, and improves the fuel availability of hydrogen, Raising system generating efficiency.It burns in addition, the tail gas of SOFC is delivered to hydrogen gas combustor, further improves the benefit of hydrogen With rate.
Detailed description of the invention
In order to illustrate the embodiment of the utility model or the technical proposal in the existing technology more clearly, below will be to embodiment Or attached drawing needed to be used in the description of the prior art is briefly described, it should be apparent that, the accompanying drawings in the following description is only It is some embodiments of the utility model, for those of ordinary skill in the art, before not making the creative labor property It puts, can also be obtained according to these attached drawings other attached drawings.
Fig. 1 is the schematic diagram that fuel cell hybrid generation system provided by the embodiment of the utility model is in startup stage.
Fig. 2 is the signal that fuel cell hybrid generation system provided by the embodiment of the utility model is in stable operation stage Figure.
It illustrates: 10, PEMFC;20,SOFC;21, SOFC anode preheating unit;22, sofc cathode preheating unit;31, Methanol aqueous solution supply unit;32, methanol aqueous solution gasification unit;33, methanol steam reformer unit;41, separative unit;42, CO preferential oxidation unit;43,CO2Removal unit;50, hydrogen gas combustor;60, air supply unit;70, methanol supply unit; 71, methanol supply unit;81, nitrogen supply (NS) unit;82, nitrogen preheating unit.
Specific embodiment
It, below will knot to enable the purpose of utility model, feature, advantage of the utility model more obvious and understandable The attached drawing in the utility model embodiment is closed, the technical scheme in the utility model embodiment is clearly and completely described, Obviously, the embodiments described below are only the utility model a part of the embodiment, and not all embodiment.Based on this reality It is obtained by those of ordinary skill in the art without making creative efforts all other with the embodiment in novel Embodiment is fallen within the protection scope of the utility model.
In the description of the present invention, it should be understood that term " on ", "lower", "top", "bottom", "inner", "outside" etc. The orientation or positional relationship of instruction is to be based on the orientation or positional relationship shown in the drawings, and is merely for convenience of description the utility model It is described with simplifying, rather than the device or element of indication or suggestion meaning must have a particular orientation, with specific orientation structure It makes and operates, therefore should not be understood as limiting the present invention.It should be noted that when a component is considered as " even Connect " another component, it can be directly to another component or may be simultaneously present the component being centrally located.
Further illustrate the technical solution of the utility model below with reference to the accompanying drawings and specific embodiments.
Present embodiments provide a kind of fuel cell hybrid generation system based on methanol, including scheduled startup stage and Stable operation stage.When fuel cell hybrid generation system just starts starting, it is in scheduled startup stage, when in system When the temperature of SOFC20 is warming up to 600-800 DEG C, system switches to stable operation stage.
Referring to FIG. 1, the connection relationship of each component is shown when Fig. 1 is that fuel cell hybrid generation system is in startup stage It is intended to.
Fuel cell hybrid generation system includes PEMFC10, SOFC20, for carrying out reforming reaction to methanol to obtain weight The methanol pre-treatment component of whole gas, the hydrogen purification component for obtaining hydrogen to gas progress separating-purifying is reformed, air confession Answer unit 60 and hydrogen gas combustor 50.
The reformation gas entrance for reforming gas outlet connection hydrogen purification component of methanol pre-treatment component.Hydrogen purification component Hydrogen outlet connects the anode inlet of PEMFC10, and air supply unit 60 connects the cathode inlet of PEMFC10.
Wherein, methanol pre-treatment component includes sequentially connected methanol aqueous solution source, the first pump, methanol aqueous solution supply list Member 31, methanol aqueous solution gasification unit 32 and methanol steam reformer unit 33.Methanol and deionized water are mixed in methanol aqueous solution source It closes and obtains methanol aqueous solution.
Hydrogen purification component includes sequentially connected for removing separative unit 41, the CO preferential oxidation unit of first alcohol and water 42 and CO2Removal unit 43.The reformation gas entrance for reforming gas outlet connection separative unit 41 of methanol steam reformer unit 33, CO2 The anode inlet of the hydrogen outlet connection PEMFC10 of removal unit 43.Methanol aqueous solution supply unit 31 can control methanol water-soluble The flow of liquid.
Fuel cell hybrid generation system further includes sequentially connected methanol source, the second pump, methanol supply unit 70 and first Alcohol supply unit 71.Air supply unit 60 and methanol supply unit 70 are all connected with the gas access of methanol supply unit 71.First It is preferential that the high-temperature flue gas outlet of alcohol supply unit 71 connects methanol steam reformer unit 33, methanol aqueous solution gasification unit 32 and CO The smoke inlet of oxidation unit 42.Methanol supply unit 70 can control the flow of methanol.
Specifically, the smoke inlet of the high-temperature flue gas outlet connection methanol steam reformer unit 33 of methanol supply unit 71, The smoke inlet of the exhanst gas outlet connection methanol aqueous solution gasification unit 32 of methanol steam reformer unit 33, methanol aqueous solution gasification The smoke inlet of the exhanst gas outlet connection CO preferential oxidation unit 42 of unit 32, to carry out gradient heat supply.
Fuel cell hybrid generation system further includes sofc cathode preheating unit 22, SOFC anode preheating unit 21, and Sequentially connected nitrogen supply (NS) unit 81 and nitrogen preheating unit 82.The air outlet slit of air supply unit 60 connects sofc cathode The air intake of preheating unit 22.
When fuel cell hybrid generation system is in scheduled startup stage, the cathode outlet and anode export of PEMFC10 It is all connected with the gas access of hydrogen gas combustor 50, the high-temperature flue gas outlet of hydrogen gas combustor 50 connects sofc cathode preheating unit 22 With the smoke inlet of nitrogen preheating unit 82, to provide heat.The air outlet slit of sofc cathode preheating unit 22 connects SOFC20 Cathode inlet, nitrogen preheating unit 82 nitrogen outlet connection SOFC20 anode inlet.
Burning, which is carried out, using unreacted hydrogen in the tail gas of PEMFC10 and air as a result, generates high-temperature flue gas, high temperature cigarette Gas provides heat for air and nitrogen, and the air and nitrogen after recycling heating are respectively the cathode and anode preheating of SOFC20, So that SOFC20 heats up.
Specifically, the smoke inlet of the high-temperature flue gas outlet connection sofc cathode preheating unit 22 of hydrogen gas combustor 50, The smoke inlet of the exhanst gas outlet connection nitrogen preheating unit 82 of sofc cathode preheating unit 22.
In the startup stage of fuel cell hybrid generation system:
1, the molar ratio of methanol and water is preferably 1:1~1:3 in methanol aqueous solution.
2, the burning of methanol supply unit 71 generates high-temperature flue gas, and the main component of the high-temperature flue gas at this is CO2It is steamed with water Gas.It is respectively that methanol steam reformer unit 33, methanol aqueous solution gasification unit 32 and CO preferential oxidation are de- using the high-temperature flue gas Except unit carries out step heat supply, after step heat supply, the temperature of high-temperature flue gas, which is reduced, becomes low-temperature flue gas, and low-temperature flue gas directly empties.
3, reaction temperature < 850 DEG C of methanol supply unit 71, pressure < 5bar.
4, methanol and vapor obtain after reforming reaction in methanol steam reformer unit 33 reforms gas, reforms in gas Including methanol, water, CO2, hydrogen and CO.
5, separative unit 41 is plate heat exchanger, by water and reforms gas and exchange heat unreacted in isolated reformation gas Methanol and water, temperature < 50 DEG C of isolated methanol and water, the main component of the gas after separation is CO+CO2+ hydrogen.
6, the gas after separating enters CO preferential oxidation reaction member, reaction temperature < 200 DEG C of the unit, the reaction Heat supply, concentration < 10ppm of CO after reaction are carried out by the flue gas that methanol burning generates.
7, the reformation gas after CO preferential oxidation reaction member enters CO2Removal unit 43 removes CO therein2It is acid Gas, by CO2CO in gas is reformed after removal unit 432Concentration < 100ppm.
8, by CO2High-purity hydrogen is prepared after removal unit 43, hydrogen, which enters in the anode of PEMFC10, to be sent out Electricity, reaction temperature are 80-200 DEG C, and unreacted hydrogen is delivered to hydrogen gas combustor 50 and burns in anode, obtains after burning High-temperature flue gas be respectively that the nitrogen of air and anode for entering SOFC20 cathode is heated.Wherein, hydrogen gas combustor 50 Temperature at 850-1000 DEG C, reaction pressure 1-2bar.The temperature of air is 700~850 DEG C after heating, the temperature of nitrogen It is 700-850 DEG C;By after heating air and nitrogen be delivered to the cathode and anode of SOFC20 respectively, SOFC20 is risen Temperature, start-up course is completed when the temperature of SOFC20 is warming up to 600-800 DEG C, and system cuts stable operation stage.
Referring to FIG. 2, the connection of each component is closed when Fig. 2 is that fuel cell hybrid generation system is in stable operation stage It is schematic diagram.
When fuel cell hybrid generation system is in stable operation stage, nitrogen preheating unit 82 disconnects the sun with SOFC20 The connection of pole, PEMFC10 disconnect the connection with hydrogen gas combustor 50, and the exhanst gas outlet of sofc cathode preheating unit 22 disconnects and nitrogen The connection of gas preheating unit 82.
At this point, the cathode outlet and air supply unit 60 of PEMFC10 are all connected with the air of sofc cathode preheating unit 22 Entrance, the cathode inlet of the air outlet slit connection SOFC20 of sofc cathode preheating unit 22.The anode export of PEMFC10 connects The anode of the hydrogen inlet of SOFC anode preheating unit 21, the hydrogen outlet connection SOFC20 of SOFC anode preheating unit 21 enters Mouthful.
The anode export and cathode outlet of SOFC20 are all connected with the gas access of hydrogen gas combustor 50, hydrogen gas combustor 50 The smoke inlet of high-temperature flue gas outlet connection SOFC anode preheating unit 21 and sofc cathode preheating unit 22.
Specifically, the smoke inlet of the high-temperature flue gas outlet connection sofc cathode preheating unit 22 of hydrogen gas combustor 50, The smoke inlet of the exhanst gas outlet connection SOFC anode preheating unit 21 of sofc cathode preheating unit 22.
In the stable operation stage of fuel cell hybrid generation system:
1, the connection of methanol pre-treatment component and hydrogen purification component has not been changed, the preparation method and startup stage phase of hydrogen Together, by methanol aqueous solution through overflash, reformation, the oxidation of CO, CO2Hydrogen is obtained after the processing such as removing.
2, the unreacted air of the cathode of PEMFC10 enters the cathode of SOFC20 after heat exchange.It is not anti-as PEMFC10 When answering the content deficiency of the oxygen in air, then the air that replenishes the supply is carried out by air supply unit 60, the sky after preheating Temperature degree is at 500-800 DEG C.
3, the hydrogen of the anode end reaction of PEMFC10 enters the anode of SOFC20 after preheating.Fuel gas after preheating Temperature is at 500-800 DEG C.
4, unreacted hydrogen and air enter hydrogen gas combustor 50, the high-temperature flue gas generated after burning after SOFC20 power generation It is delivered to sofc cathode preheating unit 22 and SOFC anode preheating unit 21, respectively air and hydrogen is preheated.
Fuel cell hybrid generation system provided in this embodiment has the advantages that
1, PEMFC10 and SOFC20 is run under low temperature, high temperature respectively, and the cascade utilization of hydrogen may be implemented, and improves hydrogen The fuel availability of gas, and improve system generating efficiency.
2, the hydrogen recycling of the anode end reaction of SOFC20 is burnt, and the heat for release of burning is to input SOFC20 cathode Air and the hydrogen of SOFC20 anode preheated, energy utilization efficiency can be improved.
3, the preferential oxidation reaction temperature of CO is low, it can be achieved that the self-heating of reaction maintains, and the methanation reaction compared to CO removes CO can reduce the consumption of energy, and match with the reaction temperature of subsequent PEMFC10, without reducing gas group with heat exchanger The temperature divided.
4, the preferential oxidation of CO can be enriched with CO2, pass through subsequent CO2Removal unit 43 obtains high-purity CO2, can be to CO2 Trapping utilization is carried out, the discharge of carbon is reduced.
The above, above embodiments are only to illustrate the technical solution of the utility model, rather than its limitations;Although ginseng The utility model is described in detail according to previous embodiment, those skilled in the art should understand that: it is still It is possible to modify the technical solutions described in the foregoing embodiments, or part of technical characteristic is equally replaced It changes;And these are modified or replaceed, various embodiments of the utility model technical solution that it does not separate the essence of the corresponding technical solution Spirit and scope.

Claims (9)

1. a kind of fuel cell hybrid generation system based on methanol, which is characterized in that including PEMFC, SOFC, for methanol Reforming reaction is carried out to obtain and reform the methanol pre-treatment component of gas, for carrying out separating-purifying to reformation gas to obtain hydrogen Hydrogen purification component and hydrogen gas combustor;
The reformation gas entrance of the methanol pre-treatment component reformed gas outlet and connect the hydrogen purification component;The hydrogen mentions The hydrogen outlet of pure component connects the anode inlet of the PEMFC;
When the fuel cell hybrid generation system is in scheduled stable operation stage, the anode export of the PEMFC is connected The anode inlet of the SOFC, the anode export of the SOFC connect the gas access of the hydrogen gas combustor.
2. fuel cell hybrid generation system according to claim 1, which is characterized in that further include air supply unit, Sofc cathode preheating unit and SOFC anode preheating unit;The air outlet slit of the air supply unit connects the PEMFC's The air intake of cathode inlet and sofc cathode preheating unit;
When the fuel cell hybrid generation system is in scheduled stable operation stage, the cathode outlet of the PEMFC is connected The air outlet slit of the air intake of the sofc cathode preheating unit, the sofc cathode preheating unit connects the yin of the SOFC Pole entrance;
The anode export of the PEMFC connects the hydrogen inlet of the SOFC anode preheating unit, the SOFC anode preheating list The hydrogen outlet of member connects the anode inlet of the SOFC;
The anode export and cathode outlet of the SOFC are all connected with the gas access of the hydrogen gas combustor, the hydrogen gas combustor High-temperature flue gas outlet connect the smoke inlet of the SOFC anode preheating unit and sofc cathode preheating unit.
3. fuel cell hybrid generation system according to claim 2, which is characterized in that further include sequentially connected nitrogen Supply unit and nitrogen preheating unit;
When the fuel cell hybrid generation system is in scheduled startup stage, the air of the sofc cathode preheating unit goes out Mouth connects the cathode inlet of the SOFC, and the nitrogen outlet of the nitrogen preheating unit connects the anode inlet of the SOFC;
The cathode outlet and anode export of the PEMFC are all connected with the gas access of the hydrogen gas combustor, the combustion of hydrogen The high-temperature flue gas outlet of device connects the smoke inlet of the sofc cathode preheating unit and nitrogen preheating unit.
4. fuel cell hybrid generation system according to claim 2, which is characterized in that the methanol pre-treatment component packet Include sequentially connected methanol aqueous solution supply unit, methanol aqueous solution gasification unit and methanol steam reformer unit.
5. fuel cell hybrid generation system according to claim 4, which is characterized in that the hydrogen purification component includes The sequentially connected separative unit, CO preferential oxidation unit and CO for being used to remove first alcohol and water2Removal unit;
The reformation gas entrance of the methanol steam reformer unit reformed gas outlet and connect the separative unit, the CO2Removing is single The hydrogen outlet of member connects the anode inlet of the PEMFC.
6. fuel cell hybrid generation system according to claim 5, which is characterized in that further include methanol supply unit and Methanol combustion chamber;
The air supply unit and the methanol supply unit are all connected with the gas access of the methanol combustion chamber;The methanol The high-temperature flue gas outlet of combustion chamber connects the methanol steam reformer unit, methanol aqueous solution gasification unit and CO preferential oxidation list The smoke inlet of member.
7. fuel cell hybrid generation system according to claim 6, which is characterized in that the high temperature of the methanol combustion chamber Exhanst gas outlet connects the smoke inlet of the methanol steam reformer unit, the exhanst gas outlet connection of the methanol steam reformer unit The smoke inlet of the methanol aqueous solution gasification unit, it is excellent that the exhanst gas outlet of the methanol aqueous solution gasification unit connects the CO The smoke inlet of initial oxidation unit.
8. fuel cell hybrid generation system according to claim 2, which is characterized in that the energy recovery generator When system is in scheduled stable operation stage, the high-temperature flue gas outlet of the hydrogen gas combustor connects the sofc cathode preheating The smoke inlet of unit, the flue gas that the exhanst gas outlet of the sofc cathode preheating unit connects the SOFC anode preheating unit enter Mouthful.
9. fuel cell hybrid generation system according to claim 3, which is characterized in that the energy recovery generator When system is in scheduled startup stage, the high-temperature flue gas outlet of the hydrogen gas combustor connects the sofc cathode preheating unit Smoke inlet, the exhanst gas outlet of the sofc cathode preheating unit connects the smoke inlet of the nitrogen preheating unit.
CN201920143957.XU 2019-01-28 2019-01-28 A kind of fuel cell hybrid generation system based on methanol Withdrawn - After Issue CN209401750U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920143957.XU CN209401750U (en) 2019-01-28 2019-01-28 A kind of fuel cell hybrid generation system based on methanol

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920143957.XU CN209401750U (en) 2019-01-28 2019-01-28 A kind of fuel cell hybrid generation system based on methanol

Publications (1)

Publication Number Publication Date
CN209401750U true CN209401750U (en) 2019-09-17

Family

ID=67899295

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920143957.XU Withdrawn - After Issue CN209401750U (en) 2019-01-28 2019-01-28 A kind of fuel cell hybrid generation system based on methanol

Country Status (1)

Country Link
CN (1) CN209401750U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109638331A (en) * 2019-01-28 2019-04-16 广东索特能源科技有限公司 A kind of fuel cell hybrid generation system based on methanol

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109638331A (en) * 2019-01-28 2019-04-16 广东索特能源科技有限公司 A kind of fuel cell hybrid generation system based on methanol
CN109638331B (en) * 2019-01-28 2024-04-05 广东索特能源科技有限公司 Fuel cell hybrid power generation system based on methanol

Similar Documents

Publication Publication Date Title
US20200014046A1 (en) Solid-oxide fuel cell systems
CN108483396A (en) The solar energy fuel preparation system and method for electric-thermal chemical cycle coupling
CN109301283A (en) A kind of band CO2The integral coal gasification fuel cell system of trapping
JPH0395867A (en) Solid electrolyte fuel cell
CN102544549A (en) Combined heat and power (CHP) supply system based on fuel cell
CN112864438B (en) High-temperature fuel cell coupling power generation system and method capable of realizing carbon dioxide capture
CN109361001A (en) A kind of integral coal gasification solid oxide fuel cell power generating system and technique
CN108417876A (en) A kind of high-temperature fuel cell coupled electricity-generation system and method
CN209374564U (en) A kind of integral coal gasification fuel cell system of band CO2 trapping
CN104229734A (en) Reforming hydrogen production reactor and hydrogen production method
CN106058287A (en) SOFC (Solid Oxide Fuel Cell) independent power generation system capable of producing hydrogen by reforming natural gas
Wu et al. Methanol to power through high-efficiency hybrid fuel cell system: Thermodynamic, thermo-economic, and techno-economic (3T) analyses in Northwest China
JP4450623B2 (en) Fuel cell system
CN201985204U (en) Heat-power co-generation system based on fuel cell
CN204097081U (en) Reforming hydrogen-preparation reactor
CN209401750U (en) A kind of fuel cell hybrid generation system based on methanol
CN109119660A (en) Thermoelectricity hydrogen polygenerations systeme based on city gas
CN110676493A (en) Photovoltaic coupling solid oxide fuel cell cold-hot electric system and energy supply method
CN208336390U (en) A kind of high-temperature fuel cell coupled electricity-generation system
CN113851671A (en) Solid oxide fuel cell system with zero net emission
CN112864432B (en) System and method for generating power by using synthesis gas high-temperature fuel cell
CN109638331A (en) A kind of fuel cell hybrid generation system based on methanol
CN210516883U (en) Natural gas self-heating reforming proton exchange membrane fuel cell distributed cogeneration system
CN108155402B (en) Power generation system and power generation method of solid oxide fuel cell
CN106356540A (en) Disc type condensation type solid oxide fuel cell power generation system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20231208

Address after: Room 316, Building 1, No.1 Xuefu Road, Songshanhu Park, Dongguan City, Guangdong Province, 523000

Patentee after: GUANGDONG SUOTE ENERGY TECHNOLOGY Co.,Ltd.

Patentee after: Guangdong Qingda Innovation Research Institute Co.,Ltd.

Address before: Room 502, Building G-1, University Innovation City, Songshan Lake High tech Industrial Development Zone, Dongguan City, Guangdong Province, 523808

Patentee before: GUANGDONG SUOTE ENERGY TECHNOLOGY Co.,Ltd.

Patentee before: TSINGHUA INNOVATION CENTER IN DONGGUAN

TR01 Transfer of patent right
AV01 Patent right actively abandoned

Granted publication date: 20190917

Effective date of abandoning: 20240405

AV01 Patent right actively abandoned

Granted publication date: 20190917

Effective date of abandoning: 20240405

AV01 Patent right actively abandoned
AV01 Patent right actively abandoned