Abstract:
PROBLEM TO BE SOLVED: To provide a reactor capable of reducing heat loss by heightening vacuum in a vacuum heat insulating structure, and miniaturizing. SOLUTION: A micro-reactor module 1 is provided with an heat insulating package 200, a low temperature reaction part 6 housed in the heat insulating package 200 and having reformers 506, 510 together with a combustor 508, and a connecting pipe 8 built between the low temperature reaction part 6 and a high temperature reaction part 4. Then, a getter material 188 is provided between the low temperature reaction part 6 and the high temperature reaction part 4 in an inner space 201 of the heat insulating package 200 wherein the inner space 201 is made a vacuum state. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an electronic device and a generator which do away with an optimal designing of a fuel cell or the like for each model. SOLUTION: The electronic device 100 includes a body 1, a fuel container 10 detachable from the body 1, and a power generation module 20 detachable from the body 1 and performing power generation. The power generation module 20 is equipped integrally with a reaction unit for generating a product by making the fuel reacted, a fuel cell for generating electric energy by an electrochemical reaction between the product generated by the reaction unit and oxygen, a detection driving part which sends the fuel from the fuel container 10 to the reaction unit and sends air to the fuel cell, and a controlling part 4 for controlling the driving part. Moreover, two power generation modules 20 can be loaded on a body of another electronic device. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To uniformize temperature distribution in a carbon monoxide remover and to promote the efficiency of removal of carbon monoxide. SOLUTION: A reactor includes: a reformer; a carbon monoxide remover in which a reaction at a temperature lower than that in the reformer is conducted; and a connecting section which connects the reformer and the carbon monoxide remover. A vaporizer which vaporizes fuel confronts at least one face of the carbon monoxide remover, and a face of the vaporizer confronting the carbon monoxide remover and the face of the carbon monoxide remover confronting the vaporizer have the substantially same area. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To stabilize the production quantity of a product produced in a reaction zone by stabilizing the temperature of the reaction zone. SOLUTION: A reactor includes: a main unit of the reaction apparatus having a reaction zone in which a reactant is reacted to produce a product; a basal plate which is disposed at one end of the main unit and supports the main unit; and a connecting section which connects one end of the main unit and the basal plate. The reactor further includes a heating part which is disposed in at least part of a region corresponding to the connecting section on the basal plate and heats the connecting section. Thus, the temperature of the reaction zone is stabilized, so that the production quantity of a product produced in the reaction zone can be stabilized. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a reactor which is capable of reducing the thickness of a substrate to form a reaction vessel while maintaining the strength of the reaction vessel in the structure to form the reaction vessel.SOLUTION: The reactor 600 is provided with the reaction vessel to cause the reaction of reactants. The partition plate 220 has a corrugated configuration which is the triangular winding fold. That is, the partition plate 220 is prepared by alternately folding back a strip and the connection place between a first partition part 222 of the partition plate 220 and a second partition part 224 constitutes a ridgeline that is folded back. The partition plate 220 is stored in a space between the floor board 250 and the top board 512 so that the wave height direction becomes parallel to the side plates 513-516. One folded ridgeline of the partition plate 220 is brought into line-contact with the top board 512 of the box 511 and bonded by welding or brazing. The partition plate 240 has the same structure.
Abstract:
PROBLEM TO BE SOLVED: To prevent displacement which occurs in a reformer and a carbon monoxide remover by welding. SOLUTION: A reactor includes: a first reaction zone; a second reaction zone in which a reaction at a temperature lower than that in the first reaction zone is conducted; and a connecting section which connects the first reaction zone and the second reaction zone. A plate for sealing an internal passage is joined by welding to at least one of the first reaction zone and the second reaction zone. As the connecting section, a plurality of connecting sections are arranged on the confronting respective faces of the first reaction zone and the second reaction zone at predetermined intervals in the height directions of the first reaction zone and the second reaction zone. COPYRIGHT: (C)2010,JPO&INPIT
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:
PROBLEM TO BE SOLVED: To reduce pressure loss of a passage in a power generation cell to downsize a fuel cell, a fuel cell stack, a fuel cell device and an electronic apparatus. SOLUTION: The fuel cell 8 includes: a unit cell 80 in which a fuel electrode 82 is formed on one face of an electrolyte 81 while an oxygen electrode 83 is formed on the other face of the electrolyte; a fuel electrode separator 84 which is arranged on the fuel electrode 82 side and in which a fuel supply passage 86 to supply the fuel gas to the fuel electrode 82 is formed; and an oxygen electrode separator 85 which is arranged on the oxygen electrode 83 side and in which an oxygen supply passage 87 to supply oxygen to the oxygen electrode 83 is formed. Since at least either the fuel supply passage 86 or the oxygen supply passage 87 is nearly rectangular, pressure loss of the passages in the power generation cell can be reduced. Since it is in line symmetry to a line segment connecting an inflow part and an outflow part of gas or point symmetry to the midpoint of the line segment, fuel and oxygen in the air can be supplied uniformly as a whole. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To easily perform bonding between a lead wire and a pad, and to minimize thermal stress generated in the lead wire. SOLUTION: Members 31 to 43 are laminated, a catalyst is held in a laminated body 23, caps 44 to 47 are joined to the member 31, caps 48, 49 are joined under the member 43, electric heating patterns 68a, 68b, an electric heating pattern 69, wiring 68c, 68d, pads 68e to 68j, and pads 69a, 69b are patterned on the caps 48, 49, a hole 24a is formed at a frame 24 of the laminated body 23, lead wires 61 to 66 are passed through the hole 24a, vertical positions of tips of the lead wires 61 to 66 are aligned on the lower surface of a reactor body 25, and the lead wires 61 to 64 are bonded to the pads 68g to 68j by a wire bonding method. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a reactor in which heat is restrained from being radiated from a plurality of reaction parts set at different temperatures, to secure temperature differences among the plurality of reaction parts. SOLUTION: A microreactor module 600 is provided with: a high-temperature reaction part 604 in which a reaction of reactants is caused; a low-temperature reaction part 606 in which the reaction of the reactants is caused at the temperature lower than that of the high-temperature reaction part 604; an insulated package 791 in which the high-temperature reaction part 604 and the low-temperature reaction parts 606 are housed and the internal space of which is kept in a decompressed state; and a partition wall 795 arranged in the internal space to divide the high-temperature reaction 604 from the low-temperature reaction part 606. COPYRIGHT: (C)2009,JPO&INPIT