Patents by Inventor Shinobu Takenaka

Shinobu Takenaka 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).

  • Publication number: 20130280623
    Abstract: The present invention has been achieved to provide a metal-air battery that allows removal of a metallic compound without suspending power supply. The metal-air battery of the present invention includes: first and second electrolytic tanks for storing an electrolytic solution; a metallic electrode to serve as an anode provided in the first electrolytic tank; and an air electrode to serve as a cathode, wherein the metallic electrode is formed of a metal which becomes a metallic ion or composes a metallic compound in the electrolytic solution with progress of a battery reaction, the first and second electrolytic tanks are communicated with each other for allowing the electrolytic solution in the first electrolytic tank to move into the second electrolytic tank, and the metallic ion or the metallic compound in the electrolytic solution is precipitated as a metallic compound precipitate in the second electrolytic tank.
    Type: Application
    Filed: April 15, 2013
    Publication date: October 24, 2013
    Applicant: Sharp Kabushiki Kaisha
    Inventors: Akihito YOSHIDA, Hirotaka MIZUHATA, Tomohisa YOSHIE, Masaki KAGA, Shinobu TAKENAKA, Tomoharu ARAI
  • Publication number: 20130052555
    Abstract: Provided is an alkaline fuel cell, including: a membrane electrode assembly including an anion conductive electrolyte membrane, an anode electrode stacked on a first surface of the anion conductive electrolyte membrane, and a cathode electrode stacked on a second surface opposite to the first surface of the anion conductive electrolyte membrane; a first separator stacked on the anode electrode, at least including a fuel receiving portion for receiving a fuel; a second separator stacked on the cathode electrode, at least including an oxidant receiving portion for receiving an oxidant; and an alkaline aqueous solution supply portion for bringing an alkaline aqueous solution into contact with only the anion conductive electrolyte membrane of the membrane electrode assembly.
    Type: Application
    Filed: August 27, 2012
    Publication date: February 28, 2013
    Inventors: Hirotaka MIZUHATA, Akihito Yoshida, Shinobu Takenaka, Shunsuke Sata
  • Publication number: 20130034793
    Abstract: Provided is a fuel battery including: a fuel battery cell assembly having at least two fuel battery cells coplanarly disposed, the fuel battery cell including a membrane electrode assembly having an anode, an electrolytic membrane, and a cathode stacked on one another in this order, and a flow channel plate provided on an anode side and having on an anode-side surface thereof an in-cell fuel flow channel through which liquid fuel flows; and a fuel distributor having an out-cell fuel flow channel connected to each of the in-cell fuel flow channels to distribute the liquid fuel to the fuel battery cells.
    Type: Application
    Filed: August 3, 2012
    Publication date: February 7, 2013
    Inventors: Takenori ONISHI, Tomohisa YOSHIE, Hirotaka MIZUHATA, Mutsuko KOMODA, Shinobu TAKENAKA, Masashi MURAOKA
  • Publication number: 20130029242
    Abstract: A membrane electrode assembly having a temperature responsive layer whose material permeability is reduced with temperature rise, on a laminate including an anode catalyst layer, an electrolyte membrane and a cathode catalyst layer in this order, and a fuel cell using the same are provided. The temperature responsive layer may be composed of a porous layer containing a temperature responsive material whose moisture content changes at a phase transition temperature. It is possible to repress increase in fuel supply amount to the anode catalyst layer in association with temperature rise, and moisture evaporation from the electrolyte membrane in association with temperature rise, and to prevent excessive temperature rise and thermal runaway of the fuel cell.
    Type: Application
    Filed: February 3, 2011
    Publication date: January 31, 2013
    Applicant: SHARP KABUSHIKI KAISHA
    Inventors: Hirotaka Mizuhata, Tomohisa Yoshie, Shinobu Takenaka, Takenori Onishi, Masashi Muraoka
  • Publication number: 20120135278
    Abstract: A redox flow battery comprising an electrode cell including a negative electrode cell, a positive electrode cell and a separator for separating them, in which at least one of the negative electrode cell and the positive electrode cell includes a slurry type electrode solution, a porous current collector and a casing; a tank for storing the slurry type electrode solution; and a pipe for circulating the slurry type electrode solution between the tank and the electrode cell.
    Type: Application
    Filed: June 8, 2010
    Publication date: May 31, 2012
    Inventors: Tomohisa Yoshie, Naoto Nishimura, Yoshihiro Tsukuda, Hisayuki Utsumi, Yuki Watanabe, Akihito Yoshida, Shunsuke Sata, Shinobu Takenaka, Masaki Kaga