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公开(公告)号:US20210355590A1
公开(公告)日:2021-11-18
申请号:US17287304
申请日:2019-10-24
Applicant: MITSUBISHI HEAVY INDUSTRIES, LTD. , JAPAN AEROSPACE EXPLORATION AGENCY , KYUSHU UNIVERSITY, NATIONAL UNIVERSITY CORPORATION
Inventor: Atsuko HOMMA , Kenichi NAGAMOTO , Naoki OGAWA , Yuta NAKATSUCHI , Hidehiko TAJIMA , Yusaku NASU , Yoshitsugu SONE , Hiroshige MATSUMOTO
Abstract: A hydrogen-oxygen generation system includes an electrolytic cell configured to generate hydrogen and oxygen by electrolyzing supplied water, and to discharge the generated hydrogen and oxygen as separate generated gasses. An accumulator includes a water storage chamber in which water is stored, and a gas chamber to which pressurized gas is supplied, and the water storage chamber and the gas chamber are separated from each other by an elastic body membrane. The accumulator is configured to transfer water stored in the water storage chamber toward the electrolytic cell at a transfer pressure in accordance with the pressure of the pressurized gas in the gas chamber. A water supply unit is configured to supply water to the water storage chamber, and a gas supply unit is configured to supply the pressurized gas to the gas chamber.
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公开(公告)号:US20230060926A1
公开(公告)日:2023-03-02
申请号:US17797864
申请日:2020-12-22
Applicant: Japan Aerospace Exploration Agency
Inventor: Yoshitsugu SONE , Motohiko SATO
IPC: H01M8/1004 , H01M8/04223 , H01M8/04746 , H01M8/0432 , H01M8/04089 , H01M8/0289
Abstract: A fuel cell system includes: a fuel cell in which an electrolyte membrane is inserted between a fuel electrode and an oxidant electrode, hydrogen is supplied to a hydrogen supply unit of the fuel electrode, and a gas containing oxygen is supplied to a gas supply unit of the oxidant electrode so that power is generated; a hydrogen coating unit disposed to cover the fuel cell and configured to be filled internally with hydrogen; and a hydrogen introduction unit configured to introduce hydrogen into the hydrogen coating unit.
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公开(公告)号:US20200147589A1
公开(公告)日:2020-05-14
申请号:US16632045
申请日:2018-09-07
Applicant: Japan Aerospace Exploration Agency
Inventor: Asuka SHIMA , Yoshitsugu SONE , Omar MENDOZA , Takayuki ABE , Mitsuhiro INOUE
Abstract: In a hydrogen reduction catalyst for carbon dioxide of the present invention, catalytic metal nanoparticles and a metal oxide for suppressing grain growth of the catalytic metal nanoparticles are dispersed and supported on a carrier.
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公开(公告)号:US20240319049A1
公开(公告)日:2024-09-26
申请号:US18578692
申请日:2022-07-15
Applicant: Japan Aerospace Exploration Agency
Inventor: Hajime YANO , Yoshitsugu SONE , Eiji HOSONO , Haruo KISHIMOTO , Hirokazu KITAURA , Daisuke ASAKURA , Tomohiro ISHIYAMA , Ayaka TAKAHASHI , Minoru UMEDA , Sayoko INAGAWA
IPC: G01N1/22
CPC classification number: G01N1/2208
Abstract: An ionized material sample collection device according to the present invention includes one or a plurality of container's main bodies that each has a surrounding wall and a bottom wall and has a sample entrance in an upper portion of the surrounding wall, a sample impact target that is formed in the bottom portion of each of the container's main bodies, and one or more ionized material collection zones that are formed on at least one of the inner surfaces and the bottom surface of the surrounding wall of each of the container's main bodies. It is preferable that a plurality of the ionized material collection zones be formed on the inner surfaces of the surrounding wall and each of the plurality of ionized material collection zones be an ionized material collection zone which has an affinity for a different element.
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5.
公开(公告)号:US20240066504A1
公开(公告)日:2024-02-29
申请号:US18261187
申请日:2022-02-01
Applicant: JAPAN AEROSPACE EXPLORATION AGENCY
Inventor: Asuka SHIMA , Yoshitsugu SONE , Motohiko SATO , Takayuki ABE , Mitsuhiro INOUE
CPC classification number: B01J23/462 , B01J12/007 , B01J19/24 , B01J21/063 , B01J35/0013 , B01J35/1009 , B01J35/1014 , B01J37/0203 , B01J37/0236 , C07C1/12
Abstract: Provided is a technique for molding a functional material without deteriorating the function of the functional material. A method for producing a functional material molded article of the present disclosure includes: dispersing a functional material in a water-alcohol mixed solution to obtain a liquid dispersion; impregnating a porous molding base material with the liquid dispersion to obtain an impregnated product; and drying the impregnated product.
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公开(公告)号:US20230124256A1
公开(公告)日:2023-04-20
申请号:US17795911
申请日:2020-12-22
Applicant: Japan Aerospace Exploration Agency
Inventor: Yoshitsugu SONE , Motohiko SATO
IPC: H01M8/04223 , H01M8/04089 , H01M8/04082
Abstract: A method of controlling a fuel cell device includes: a step of purging a hydrogen supply unit of a fuel electrode and purging a gas supply unit of an oxidant electrode when an operation of the fuel cell device ends; a step of measuring a voltage between the fuel electrode and the oxidant electrode and determining whether the voltage is greater than a predetermined threshold; a step of continuing power generation in the fuel cell device when the voltage is greater than the predetermined threshold; and a step of depressurizing the hydrogen supply unit and the gas supply unit when the voltage is equal to or less than the predetermined threshold.
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公开(公告)号:US20230092461A1
公开(公告)日:2023-03-23
申请号:US17798350
申请日:2020-12-22
Applicant: Japan Aerospace Exploration Agency
Inventor: Yoshitsugu SONE , Motohiko SATO
IPC: H01M8/04302 , H01M8/04537 , H01M8/04858
Abstract: A method of controlling a fuel cell device includes: a step of supplying hydrogen to a hydrogen supply unit; a step of measuring a voltage between a fuel electrode and an oxidant electrode and determining whether the voltage is equal to or greater than a reference voltage; and a step of discharging a gas containing oxygen from the gas supply unit to the outside while supplying the gas to the gas supply unit when the voltage is equal to or greater than the reference voltage.
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公开(公告)号:US20230084323A1
公开(公告)日:2023-03-16
申请号:US17798359
申请日:2020-12-22
Applicant: Japan Aerospace Exploration Agency
Inventor: Yoshitsugu SONE , Motohiko SATO
IPC: H01M8/1004 , H01M8/04746 , H01M8/04701 , H01M8/04858
Abstract: A method of controlling a fuel cell device includes: a step of determining whether impedance between a fuel electrode and an oxidant electrode is greater than a predetermined threshold during a steady operation of the fuel cell device; a step of decreasing a flow rate of a gas circulating via a circulation passage connecting a gas introduction passage of the gas supply unit to a gas discharge passage when the impedance is greater than the predetermined threshold; a step of measuring the voltage between the fuel electrode and the oxidant electrode when the impedance is equal to or less than the predetermined threshold, and determining whether the voltage is equal to or less than a first predetermined threshold; and a step of increasing the flow rate of the gas circulating via the circulation passage when the voltage is equal to or less than the first predetermined threshold.
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公开(公告)号:US20210257122A1
公开(公告)日:2021-08-19
申请号:US17269402
申请日:2019-08-21
Applicant: Japan Aerospace Exploration Agency
Inventor: Yoshitsugu SONE , Hitoshi KUNINAKA , Takeshi TAKASHIMA , Takashi WATANABE
Abstract: A generator (100) of the present invention has a heat source (101) containing a radioisotope substance precursor that becomes a radioisotope substance by irradiation with a neutron and a controller (108) that controls the irradiation with the neutron.
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10.
公开(公告)号:US20190252708A1
公开(公告)日:2019-08-15
申请号:US16344824
申请日:2017-11-01
Applicant: Japan Aerospace Exploration Agency , KYUSHU UNIVERSITY, NATIONAL UNIVERSITY CORPORATION , KYOCERA CORPORATION
Inventor: Yoshitsugu SONE , Hiroshige MATSUMOTO , Yuki TERAYAMA , Takamasa HAJI , Riichi SASAMORI , Motohiko SATO
IPC: H01M8/18 , H01M8/0656 , C25B1/10 , H01M8/04082
CPC classification number: H01M8/186 , C25B1/10 , H01M8/04201 , H01M8/0656 , Y02E60/366
Abstract: A cell for water electrolysis/fuel cell power generation which includes a flow path configured to supply or discharge water in a first direction substantially perpendicular to a stacking direction of the cell; an oxygen-containing gas flow path configured to discharge or supply an oxygen-containing gas in a second direction substantially perpendicular to the stacking direction of the cell; and a hydrogen-containing gas flow path configured to discharge or supply the hydrogen-containing gas in a third direction substantially perpendicular to the stacking direction of the cell. Each of the oxygen-side electrode layer and the hydrogen-side electrode layer is an electrode layer having water repellency.
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