Abstract:
A power supply system using a fuel cell comprises a chemical reaction section (100) including, a evaporation section (103, 112, 114) that receives a power generation fuel and water supplied to it, heating at least the water supplied to it to evaporate it and a reaction section (105, 107) that generates a power generation gas on the basis of the steam generated by the evaporation section and the power generation fuel, a fuel supply section (P1, V1) that supplies the power generation fuel to the chemical reaction section, a water supply section (P2, V2) that supplies water to the chemical reaction section and a control section (130) that controls the operation of the system so as to stop supply of the power generation fuel from the fuel supply section to the chemical reaction section when the evaporation section is not in a condition suitable for evaporating operation. The power supply system suppresses any rise of the carbon monoxide concentration at the time of starting and stopping the system and prevents the power generation performance of the system from degrading.
Abstract:
A power generation module for generating electric power by using fuel has a fuel package accommodating portion capable of accommodating a fuel package which has a fuel supply hole and a collection hole having a shape or size different from that of the fuel supply hole, and in which the fuel can be sealed. A fuel supply port can be connected to the fuel supply hole of the fuel package. A collection port having a shape or size different from that of the fuel supply port can be connected to the collection hole of the fuel package. The power generation module further includes a power generator which generates electric power by using fuel supplied from the fuel supply port.
Abstract:
A power generation type power supply for supplying electric power to a device includes a power generation module. The module includes a power generation portion for generating power by using supplied power generation fuel, a fuel pack accommodating section which can accommodate a plurality of fuel packs capable of packing the power generation fuel, and from which the plurality of fuel packs can be independently removed, and a control portion which performs control such that, while the power generation fuel is supplied from one of the plurality of fuel packs accommodated in the fuel pack accommodating section, the power generation fuel is not supplied from the other fuel pack of the plurality of fuel packs.
Abstract:
A reactor including a high-temperature reaction unit which causes a reaction of a first reaction material to create a second reaction material and a product, and a low-temperature reaction unit which causes a reaction of the second reaction material at a temperature lower than in the high-temperature reaction unit. A coupling pipe is interposed between the high-temperature reaction unit and the low-temperature reaction unit and transfers the first reaction material and the product created with the reaction material between the high-temperature reaction unit and the low-temperature reaction unit. An external flow pipe is joined to the low-temperature reaction unit at its having one end. The external flow pipe has a plurality of flow pathways including a flow pathway for supplying the first reaction material to the high-temperature reaction unit through the low-temperature reaction unit and a flow pathway for discharging the product from the high-temperature reaction unit through the low-temperature reaction unit.
Abstract:
Disclosed are a compact reactor capable of reducing pressure loss and supporting a lot of catalysts, and a power generator having the reactor. A reformer (5) includes a reactor main body (501) having inner space formed therein, and a channel structure (502) retained in the reactor main body (502). The channel structure (502) has a base plate (505) as its basic structure. A plurality of through holes (506) are formed in the base plate (505) to connect an area (510) to an area (511) in the reactor main body (501). The surface layer of the base plate (505) is anodized to be altered to a porous metal oxide, and a catalyst component is supported on that surface layer.
Abstract:
A chemical reactor includes a first reaction section which has a first flow path and causes a first reaction in the first flow path. A heating section heats the first reaction section. A second reaction section has a second flow path and causes a second reaction in the second flow path by heat of the heating section transmitted via the first reaction section.
Abstract:
A power generation type power supply for supplying electric power to a device includes a power generation module. The module includes a power generation portion for generating power by using supplied power generation fuel, a fuel pack accommodating section which can accommodate a plurality of fuel packs capable of packing the power generation fuel, and from which the plurality of fuel packs can be independently removed, and a control portion which performs control such that, while the power generation fuel is supplied from one of the plurality of fuel packs accommodated in the fuel pack accommodating section, the power generation fuel is not supplied from the other fuel pack of the plurality of fuel packs.
Abstract:
A by-product elimination device used in a power generation system includes a fuel pack provided with a fuel charged portion having a power generation fluid fuel containing hydrogen, and a power generation module which detachably attached to the fuel pack, the module including a reforming portion which transforms the power generation fuel supplied from the charged portion into first gas containing hydrogen gas and carbon dioxide, and a fuel cell which generates an electrical energy by using the hydrogen gas. The device includes an absorbent charged portion which selectively absorbs carbon dioxide contained in the first gas and feeds second gas whose carbon dioxide concentration is lowered by the first gas to the fuel cell.
Abstract:
A display device includes an EL element for signal light which is based on the segment matrix drive scheme and causes a plurality of areas to emit signal light containing light in a wavelength range other than the visible range, a photoconductive layer which generates carriers upon incidence of signal light, and an EL element for display light which is adjacent to the photoconductive layer. Signal light is irradiated onto desired areas of the photoconductive layer. Carriers are injected from the irradiated areas into the EL layer to emit display light containing visible light.
Abstract:
A power supply system generates supply electric power by using a power generation fuel. The system includes a fuel charged portion in which the power generation fuel is charged, a power generator which generates power generation electric power by using the power generation fuel, an output controller which operates or stops the power generator and, a start-up controller which supplies start-up electric power used for operating the output controller to the output controller.