Patents by Inventor Akihiko Ono
Akihiko Ono has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 10494726Abstract: An electrolytic device of an embodiment has a solution or gas containing water and carbon dioxide, a first electrode oxidizing the water to produce oxygen, a second electrode and a third electrode reducing the carbon dioxide to produce a carbon compound, and a power supply applying current across the first electrode and the second and third electrodes. A composing material of the second electrode has an ionization tendency larger than a composing material of the third electrode. The third electrode mainly reduces the carbon dioxide to produce a first carbon compound, and the second electrode mainly reduces the first carbon compound to produce a second carbon compound.Type: GrantFiled: August 30, 2016Date of Patent: December 3, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Yuki Kudo, Satoshi Mikoshiba, Akihiko Ono, Jun Tamura, Ryota Kitagawa, Masakazu Yamagiwa, Yoshitsune Sugano
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Patent number: 10494724Abstract: According to one embodiment, a photochemical reaction device includes: a solar cell; an electrolytic tank having a first tank storing a first solution including an oxidant and/or reductant of a redox medium and a second tank storing a second solution including water and/or proton; a first electrode set in the first tank, connected to a positive electrode of the solar cell through a first switching element, and connected to a negative electrode of the solar cell through a second switching element; and a second electrode set in the second tank, connected to the positive electrode of the solar cell through a third switching element, and connected to the negative electrode of the solar cell through a fourth switching element.Type: GrantFiled: September 9, 2016Date of Patent: December 3, 2019Assignee: Kabushiki Kaisha ToshibaInventors: Akihiko Ono, Satoshi Mikoshiba, Yuki Kudo, Ryota Kitagawa, Jun Tamura, Chingchun Huang
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Patent number: 10483047Abstract: An electrochemical reaction device includes: an electrolytic solution tank including a first storage part storing a first electrolytic solution and a second storage part storing a second electrolytic solution; a reduction electrode immersed in the first electrolytic solution; and an oxidation electrode immersed in the second electrolytic solution. The second electrolytic solution contains a substance to be oxidized. The first electrolytic solution has a first liquid phase containing water and a second liquid phase containing an organic solvent and being in contact with the first liquid phase. At least one liquid phase of the first liquid phase or the second liquid phase contains a substance to be reduced and is in contact with the reduction electrode.Type: GrantFiled: April 26, 2019Date of Patent: November 19, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko Ono, Satoshi Mikoshiba, Ryota Kitagawa, Jun Tamura, Yoshitsune Sugano
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Patent number: 10472724Abstract: Disclosed here is a method of operating a chemical reaction device that includes the steps of determining the presence of surplus power more than a demand, and determining the presence of solar energy.Type: GrantFiled: January 24, 2019Date of Patent: November 12, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko Ono, Satoshi Mikoshiba, Yuki Kudo, Ryota Kitagawa, Jun Tamura, Chingchun Huang
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Patent number: 10465303Abstract: A producing system of reduction product of carbon dioxide includes a chemical reaction apparatus including an oxidation reaction electrolytic bath and a reduction reaction electrolytic bath, the chemical reaction apparatus configured to generate a reduction product by reducing carbon dioxide, an electrolytic solution supply unit supplying an electrolytic solution to the reduction reaction electrolytic bath, a carbon dioxide supply unit configured to dissolve carbon dioxide into the electrolytic solution, the carbon dioxide supply unit serving to sustain a reduction reaction in the reduction reaction electrolytic bath, and a separation unit configured to separate the reduction product from the electrolytic solution.Type: GrantFiled: September 9, 2016Date of Patent: November 5, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Jun Tamura, Satoshi Mikoshiba, Yuki Kudo, Akihiko Ono, Ryota Kitagawa, Masakazu Yamagiwa, Yoshitsune Sugano
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Patent number: 10458024Abstract: An electrochemical reaction device in an embodiment includes: a reaction vessel including a first accommodating part to accommodate a first electrolytic solution containing carbon dioxide, and a second accommodating part to accommodate a second electrolytic solution containing water; a reduction electrode disposed in the first accommodating part; an oxidation electrode disposed in the second accommodating part; a power supply electrode connected to the reduction electrode and the oxidation electrode; and a third accommodating part to mix a first gas component produced in the first accommodating part with the first electrolytic solution after the first gas component is produced.Type: GrantFiled: September 13, 2017Date of Patent: October 29, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Ryoto Kitagawa, Satoshi Mikoshiba, Akihiko Ono, Yuki Kudo, Jun Tamura, Eishi Tsutsumi, Yoshitsune Sugano, Asahi Motoshige, Masakazu Yamagiwa, Arisa Yamada
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Patent number: 10443136Abstract: An electrochemical reaction device comprises: an electrolytic solution tank including a first region, a second region, and a path; a reduction electrode disposed in the first region; an oxidation electrode disposed in the second region; and a power source connected to the reduction electrode and oxidation electrode; and a plurality of ion exchange membranes separating the first region and the second region.Type: GrantFiled: January 23, 2017Date of Patent: October 15, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko Ono, Satoshi Mikoshiba, Jun Tamura, Norihiro Yoshinaga, Yoshitsune Sugano
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Delivery management system, information processing apparatus, delivery management method and program
Patent number: 10417600Abstract: A delivery management system includes: a first accepting unit which accepts provisional information corresponding to true information regarding a delivery destination, and being different information from the true information; a first specifying unit which specifies a first identification information based on the provisional information accepted by the first accepting unit, with referring the first storage unit storing the first identification information and the provisional information while associating them; a second specifying unit which specifies a second identification information based on the first identification information specified by the first specifying unit, with referring the second storage unit storing the second identification information and the first identification information while associating them; and a third specifying unit which specifies the true information based on the second identification information specified by the second specifying unit, with referring a third storage unit storinType: GrantFiled: August 21, 2015Date of Patent: September 17, 2019Assignee: NS Solutions CorporationInventors: Masakazu Sakoda, Akihiko Ono -
Publication number: 20190252128Abstract: An electrochemical reaction device includes: an electrolytic solution tank including a first storage part storing a first electrolytic solution and a second storage part storing a second electrolytic solution; a reduction electrode immersed in the first electrolytic solution; and an oxidation electrode immersed in the second electrolytic solution. The second electrolytic solution contains a substance to be oxidized. The first electrolytic solution has a first liquid phase containing water and a second liquid phase containing an organic solvent and being in contact with the first liquid phase. At least one liquid phase of the first liquid phase or the second liquid phase contains a substance to be reduced and is in contact with the reduction electrode.Type: ApplicationFiled: April 26, 2019Publication date: August 15, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko ONO, Satoshi MIKOSHIBA, Ryota KITAGAWA, Jun TAMURA, Yoshitsune SUGANO
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Publication number: 20190249318Abstract: A reduction electrode of an embodiment includes a metal base material and a plurality of metal nanowires provided on the metal base material. The plurality of metal nanowires include metal nanowires whose average height of contour curve of surface is 20 nm or less for 50% or more in a number ratio. The plurality of metal nanowires are formed by reducing a plurality of metal oxides each having a nanowire shape formed on the metal base material by an electrochemical reduction method. A reduction process of the metal oxides includes a first process of passing a current under a constant current condition where an absolute value is 5 mA/cm2 or more through the plurality of metal oxides, and a second process of passing a current under a constant potential condition through the plurality of metal oxides.Type: ApplicationFiled: April 25, 2019Publication date: August 15, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Yuki Kudo, Satoshi Mikoshiba, Akihiko Ono, Jun Tamura, Ryota Kitagawa, Masakazu Yamagiwa, Yoshitsune Sugano
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Patent number: 10378116Abstract: A photoelectrochemical reaction device of an embodiment includes: a first stack including a first electrode, a second electrode, and a photovoltaic layer provided therebetween; a second stack including a third electrode electrically connected to the first electrode, a fourth electrode electrically connected to the second electrode, and an ion migration layer provided therebetween; and an electrolytic solution tank storing a first electrolytic solution in which the third electrode is immersed and a second electrolytic solution in which the fourth electrode is immersed. One of the third and fourth electrodes causes an oxidation reaction, and the other of the third and fourth electrodes causes a reduction reaction. The third and fourth electrodes have ion permeability. An area of the second stack is larger than that of the first stack.Type: GrantFiled: August 26, 2016Date of Patent: August 13, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Yuki Kudo, Satoshi Mikoshiba, Akihiko Ono, Jun Tamura, Eishi Tsutsumi, Ryota Kitagawa, Chingchun Huang, Yoshitsune Sugano
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Patent number: 10344388Abstract: According to one embodiment of a CO2 reduction catalyst of the present invention, a conductive material is immersed in an aqueous solution containing a gold source, and a current or a potential is applied, whereby a highly active CO2 reduction catalyst can be formed in a wide range portion on a surface of the conductive material. According to one embodiment of a CO2 reduction catalyst of the present invention, in a CO2 reduction reaction apparatus including a CO2 reduction electrode having the CO2 reduction catalyst, CO2 is reduced.Type: GrantFiled: September 12, 2016Date of Patent: July 9, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Yoshitsune Sugano, Ryota Kitagawa, Akihiko Ono, Jun Tamura, Yuki Kudo, Masakazu Yamagiwa, Eishi Tsutsumi, Satoshi Mikoshiba, Asahi Motoshige, Arisa Yamada
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Publication number: 20190194815Abstract: An electrochemical reaction device includes: a first electrolytic solution tank having a first storage part and a second storage part; a second electrolytic solution tank having a third storage part and a fourth storage part; a first reduction electrode layer immersed in a first electrolytic solution; a first oxidation electrode layer immersed in a second electrolytic solution; a first generator electrically connected to the first reduction electrode and the first oxidation electrode layer; a second reduction electrode layer immersed in a third electrolytic solution; a second oxidation electrode layer immersed in a fourth electrolytic solution; a second generator electrically connected to the second reduction electrode and the second oxidation electrode layer; and at least one flow path out of a first flow path connecting the first storage part and the fourth storage part and a second flow path connecting the second storage part and the third storage part.Type: ApplicationFiled: February 27, 2019Publication date: June 27, 2019Applicant: Kabushiki Kaisha ToshibaInventors: Akihiko ONO, Satoshi MIKOSHIBA, Jun TAMURA, Ryota KITAGAWA, Yuki KUDO, Eishi TSUTSUMI, Masakazu YAMAGIWA, Yoshitsune SUGANO
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Publication number: 20190169760Abstract: Disclosed here is a method of operating a chemical reaction device that includes the steps of determining the presence of surplus power more than a demand, and determining the presence of solar energy.Type: ApplicationFiled: January 24, 2019Publication date: June 6, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko ONO, Satoshi MIKOSHIBA, Yuki KUDO, Ryota KITAGAWA, Jun TAMURA, Chingchun HUANG
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Patent number: 10308574Abstract: According to one embodiment, a reduction catalyst includes a current collector including a metal layer; and organic molecules including a quaternary nitrogen cation, which are bonded to the metal layer. The organic molecules are represented by any of the following general formulae I to V.Type: GrantFiled: September 7, 2017Date of Patent: June 4, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Jun Tamura, Satoshi Mikoshiba, Yuki Kudo, Akihiko Ono, Ryota Kitagawa, Masakazu Yamagiwa, Eishi Tsutsumi, Yoshitsune Sugano
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Patent number: 10301724Abstract: An electrochemical reaction device of an embodiment includes: an electrolytic solution tank; a first electrode in the first room; a second electrode in the second room; and a generator. The electrolytic solution tank includes a first room and a second room. The first room is capable of storing a first electrolytic solution containing a first substance including carbon dioxide. The second room is capable of storing a second electrolytic solution containing a second substance. The first electrode reduces the first substance. The second electrode oxidizes the second substance. The generator is electrically connected to the first and second electrodes. The first electrode includes a conductor having a flow path penetrating through the conductor.Type: GrantFiled: March 8, 2017Date of Patent: May 28, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Koji Mizuguchi, Shuichi Uchikoga, Hideyuki Tsuji, Satoshi Mikoshiba, Akihiko Ono
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Publication number: 20190085470Abstract: An electrochemical reaction device, comprises: an anode to oxidize a first substance; a first flow path facing on the anode and through which a liquid containing the first substance flows; a cathode to reduce a second substance; a second flow path facing on the cathode and through which a gas containing the second substance flows; a porous separator provided between the anode and the cathode; and a power supply connected to the anode and the cathode. A thickness of the porous separator is 1 ?m or more and 500 ?m or less. An average fine pore size of the porous separator is larger than 0.008 ?m and smaller than 0.45 ?m. A porosity of the porous separator is higher than 0.5.Type: ApplicationFiled: March 8, 2018Publication date: March 21, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko ONO, Takuya HONGO, Masakazu YAMAGIWA, Yuki KUDO, Satoshi MIKOSHIBA, Norihiro YOSHINAGA, Yuta KANAI, Jun TAMURA
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Publication number: 20190085473Abstract: A reduction catalyst body for carbon dioxide of an embodiment includes a metal layer, and a projection provided on the metal layer. The projection is constituted of an aggregate of fine metal particles, and possesses a polyhedral structure having surfaces of three faces or more of a polygon. The projection has a site of reducing carbon dioxide, as at least a part of the surfaces.Type: ApplicationFiled: March 8, 2018Publication date: March 21, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Yoshitsune SUGANO, Akihiko ONO, Jun TAMURA, Ryota KITAGAWA, Asahi MOTOSHIGE, Yuki KUDO, Masakazu YAMAGIWA, Takayuki TSUKAGOSHI, Satoshi MIKOSHIBA
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Publication number: 20190085477Abstract: A carbon dioxide electrolytic device comprises: an electrolysis cell including a cathode, an anode, a carbon dioxide source to supply carbon dioxide to the cathode, a solution source to supply an electrolytic solution, and a separator separating the anode and the cathode; a power controller connected to the anode and the cathode; a refresh material source including a gas source to supply a gaseous substance, and a solution source to supply a rinse solution; and a controller to control the carbon dioxide source, the solution source, the power controller, and the refresh material source in accordance with request criteria of a performance of the cell and thus stop the supply of the carbon dioxide and the electrolytic solution, and apply the voltage therebetween while supplying the rinse solution thereto.Type: ApplicationFiled: March 13, 2018Publication date: March 21, 2019Applicant: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko ONO, Yuki Kudo, Ryota Kitagawa, Masakazu Yamagiwa, Jun Tamura, Satoshi Mikoshiba, Yoshitsune Sugano
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Patent number: 10233549Abstract: To convert light into a chemical substance with high conversion efficiency. A device, comprising: a photovoltaic layer having a first face and a second face; an oxidation electrode layer electrically connected to the first face of the photovoltaic layer; a reduction electrode layer electrically connected to the second face of the photovoltaic layer; a first electrolytic solution being supplied to the oxidation electrode layer; a second electrolytic solution being supplied to the reduction electrode layer; and a porous layer, provided to in contact with at least one of the first electrolytic solution and the second electrolytic solution, having fine pores through which a product produced by the oxidation reaction or the reduction reaction passes, and being given a temperature gradient wherein the product being purified by the porous layer.Type: GrantFiled: September 2, 2016Date of Patent: March 19, 2019Assignee: KABUSHIKI KAISHA TOSHIBAInventors: Akihiko Ono, Satoshi Mikoshiba, Yuki Kudo, Ryota Kitagawa, Jun Tamura, Eishi Tsutsumi, Yoshitsune Sugano