Intelligent feeding system used for passive direct methanol fuel cell

A methanol fuel cell and feeding system technology, applied in the direction of fuel cell additives, etc., can solve the problems of blocked two-phase mass transfer at the two poles of the battery, limit the performance of DMFC, and low reaction temperature, so as to promote vaporization and boiling, facilitate installation and use, and speed up The effect of responsiveness

Active Publication Date: 2015-06-03
SOUTH CHINA UNIV OF TECH +1
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  • Claims
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Problems solved by technology

Although my country has achieved certain research results in the research and development of DMFC at this stage, they all use liquid methanol solution as raw material, which inevitably encounters the following problems: (1) serious methanol breakthrough; (2) low concentration of methanol , methanol reaching the anode is diluted; (3) low reaction temperature leads to low battery activity; (4) two-phase mass transfer is hindered at both poles of the battery
The above factors work together to greatly limit the performance of DMFC, making people have to continue to explore the use of steam supply to provide fuel for DMFC

Method used

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  • Intelligent feeding system used for passive direct methanol fuel cell
  • Intelligent feeding system used for passive direct methanol fuel cell

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Embodiment Construction

[0024] The present invention will be further described below in conjunction with specific examples.

[0025] see figure 1 and figure 2 As shown, the intelligent feeding system for passive direct methanol fuel cells described in this embodiment includes a feeding unit 1, a single-chip microcomputer control unit 2, a temperature control unit 3, and an evaporation unit 4, wherein the feeding unit 1 Connect the spray nozzle 401 of the evaporating unit 4 through the infusion joint 101, so that the liquid fuel delivered to the evaporating unit 4 can be sprayed in the form of mist. The evaporating unit 4 is provided with a boiling enhancement plate 402, and the boiling enhancement plate 402 is formed The heating rod 403 of the evaporating unit 4 is heated to increase the temperature, which can vaporize the mist fuel into steam fuel; the single-chip microcomputer control unit 2 is respectively connected with the pressure sensor 404 of the evaporating unit 4 and the feeding unit 1, a...

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Abstract

The invention discloses an intelligent feeding system used for a passive direct methanol fuel cell. The intelligent feeding system comprises a feeding unit, a singlechip control unit, a temperature control unit and an evaporation unit; the feeding unit is connected with a spraying nozzle of the evaporation unit through an infusion pipe; the evaporation unit is provided with a boiling strengthening plate which is heated by a heating rod of the evaporation unit; the singlechip control unit is connected with a pressure sensor of the evaporation unit and the feeding unit; the pressure sensor detects the internal pressure of the evaporation unit, and generated electrical signals are fed back to the singlechip control unit; the temperature control unit is connected with the heating rod of the evaporation unit and a thermocouple; the thermocouple detects the temperature of the evaporation unit, and generated electrical signals are fed back to the temperature control unit; the temperature control unit regulates the heating temperature of the heating rod according to the fed electrical signals. The intelligent feeding system can supply material for the passive direct methanol fuel cell according to actual requirements, flexibly controls the running time of the cell and improves the fast reaction capacity of the cell.

Description

technical field [0001] The invention relates to the technical field of fuel cells, in particular to an intelligent feeding system for passive direct methanol fuel cells. Background technique [0002] Direct methanol fuel cell (Direct Methanol Fuel Cell, hereinafter referred to as DMFC) is a fuel cell that directly uses methanol aqueous solution as fuel and oxygen or air as oxidant. [0003] The half-cell and total reactions of DMFC can be expressed as follows: [0004] The anode reaction is CH 3 OH+H 2 O→6H + +6e - +CO 2 [0005] The cathode reaction is 3 / 2O 2 +6H + +6e - →3H 2 o [0006] The total reaction of the battery is CH 3 OH+3 / 2O 2 →2H 2 O+CO 2 [0007] Due to its high energy density, readily available fuel, convenient use, simple equipment, and environmental protection, DMFC is considered by the industry to be a type of fuel cell with the most potential to be marketed first. Although my country has achieved certain research results in the research a...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H01M8/04
CPCY02E60/50
Inventor 袁伟张兆春汤勇李远茂
Owner SOUTH CHINA UNIV OF TECH
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