A hydrogen fuel supply system comprising a methanol aqueous solution particulates generator, spark-plasma heater, catalytic reactor, hydrogen separation unit, hydro-evaporating cooler, hydrogen compressor, hydrogen injection system, etc. By properly mixing methanol and water to form a methanol aqueo
A hydrogen fuel supply system comprising a methanol aqueous solution particulates generator, spark-plasma heater, catalytic reactor, hydrogen separation unit, hydro-evaporating cooler, hydrogen compressor, hydrogen injection system, etc. By properly mixing methanol and water to form a methanol aqueous solution, then vibrated by a methanol aqueous solution particulates generator to form micro to nano sized particulates of aqueous-methanol, and the micro to nano sized particulates is then heated in high temperature by a spark-plasma heater, then through a catalytic reactor to form a gaseous mixture of hydrogen, carbon dioxide, and nitrogen. Then the hydrogen is separated by a hydrogen separation unit. Finally, the hydrogen is chilled by a hydro-evaporation cooler and then compressed by a hydrogen compressor. The resulting hydrogen can be supplied to hydrogen internal-combustion engines or hydrogen power generators by hydrogen injection systems.
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What is claimed is: 1. A hydrogen fuel supply system comprising: a water tank for storage of water; a methanol tank for storage of methanol; a programmable logic controller for controlling the mixture ratio of methanol and water; a methanol aqueous solution particulates generator including an oscil
What is claimed is: 1. A hydrogen fuel supply system comprising: a water tank for storage of water; a methanol tank for storage of methanol; a programmable logic controller for controlling the mixture ratio of methanol and water; a methanol aqueous solution particulates generator including an oscillator and wherein said oscillator is a chip consisting of piezoelectric trasducers for oscillating a mixture of water and methanol to form methanol micro-particulates wherein said methanol aqueous solution particulates generator is a micro-injector for outputting high frequency electric energy by said oscillator to convert the methanol aqueous solution into micro and nano sized mists with particulates of less than 3 μm; a spark plasma heater for heating said generated micro-particulates; a catalyst reactor for reacting said heated methanol micro-particulates to form a gaseous mixture of hydrogen, carbon dioxide and nitrogen; a hydrogen separation unit for separating hydrogen out of said gaseous mixture; a hydrogen cooler for decreasing the temperature of said separated hydrogen to reduce the activation of hydrogen; a hydrogen compressor for increasing the pressure of said separated hydrogen to increase the higher mass-flow rate; and an injection system for injecting said separated hydrogen into hydrogen engines as fuels and wherein the installation angle for said chip having functions of oscillators and piezoelectric transducers is adjustable between 6° to about 45° with respect to the corresponding position of the spark plasma heater adjacent to said chip; and wherein the volume ratio of said methanol in said methanol aqueous solution is controlled between 57.1% to about 75.5%, to control the optimal condition of H2 production under proper temperature. 2. The hydrogen fuel supply system of claim 1, wherein said methanol micro-particulates of aqueous-methanol are injected into a plasma region formed due to discharging between electrode gaps of a spark plug, then the heating of plasma collision and combustion are performed, and the reaction is generated; such that the high temperature gases perform a further ionization, and re-organizing reaction is accelerated. 3. The hydrogen fuel supply system of claim 1, wherein said catalyst reactor uses Ni catalyst at an operating temperature of 300° C. to about 460° C. 4. The hydrogen fuel supply system of claim 3, wherein when said catalyst reactor operates under reaction conditions of 300° C. to about 460° C., 50 to about 300 μsec, and the micro-particulates of methanol aqueous solution shall produce 56.3 to about 65.1% H2+20.7 to about 23.7% CO2+11.1 to about 21.1% N2. 5. The hydrogen fuel supply system of claim 1, in which said programmable logic controller has a control program for controlling a process. 6. The hydrogen fuel supply system of claim 1, wherein said system comprises a power supply to supply electricity needed by spark ignition and electric appliances. 7. The hydrogen fuel supply system of claim 1, wherein said system comprises a micro fan to provide oxygen needed for partial oxidation reaction. 8. The hydrogen fuel supply system of claim 1, wherein said system also comprises a gas inlet controller for precisely controlling the molecular ratio of air needed for partial oxidation reaction in the range of 25.3 to 44.2%. 9. The hydrogen fuel supply system of claim 1, wherein said system also comprises a battery package to store the electricity for starting. 10. The hydrogen fuel supply system of claim 1, wherein said system also comprises a ignition system for continuous ignition. 11. The hydrogen fuel supply system of claim 1, wherein said system also comprises a hydro-evaporation cooler for cooling hydrogen. 12. The hydrogen fuel supply system of claim 1, wherein said system also comprises at least one hydrogen compressor, to compress hydrogen after it is chilled by said cooler. 13. The hydrogen fuel supply system of claim 1, wherein said system also comprises at least one air conditioner to get denser air for higher mass-flow rate and resulting in increased power generator output and efficiency.
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이 특허에 인용된 특허 (5)
Kobayashi, Kazuto; Fujimoto, Yoshimasa, Apparatus for producing hydrogen.
Isomura Manabu,JPX ; Soma Takao,JPX ; Takahashi Tomonori,JPX, System for production of high-purity hydrogen, process for production of high-purity hydrogen, and fuel cell system.
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