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    • 87. 发明授权
    • Method of driving fuel cell device
    • 驱动燃料电池装置的方法
    • US08227118B2
    • 2012-07-24
    • US12190412
    • 2008-08-12
    • Terumasa NagasakiTakahiro SuzukiRyoichi Sebori
    • Terumasa NagasakiTakahiro SuzukiRyoichi Sebori
    • H01M8/04
    • H01M8/1011H01M8/04007H01M8/04194H01M8/04201H01M8/0432H01M8/04447H01M8/04589H01M8/04753H01M2250/30Y02B90/18Y02E60/523
    • According to one embodiment, a method of driving a fuel cell device includes calculating a fuel shortage based on a difference between the fuel concentration detected by a concentration sensor element and a predetermined desired fuel concentration, and obtaining an efficiency of electricity generation of an electromotive section based on the temperature of the electromotive section detected by a temperature sensor element and the load current measured by a control section. The method includes calculating a fuel consumption by the electromotive section for electricity generation based on the output of the electromotive section and the obtained electricity generation efficiency, and replenishing by a supply section a mixing tank with an amount of fuel equivalent to the sum of the calculated fuel shortage and the calculated fuel consumption, thereby controlling the concentration of the fuel supplied to the electromotive section.
    • 根据一个实施例,一种驱动燃料电池装置的方法包括基于由浓度传感器元件检测的燃料浓度与预定的期望燃料浓度之间的差异来计算燃料短缺,并且获得电动部分的发电效率 基于由温度传感器元件检测的电动部分的温度和由控制部分测量的负载电流。 该方法包括基于电动部分的输出和所获得的发电效率计算用于发电的电动部分的燃料消耗,并且由供应部分向混合罐补充相当于计算出的燃料量之和的燃料量 燃料短缺和计算出的燃料消耗,从而控制供应到电动部分的燃料的浓度。
    • 89. 发明申请
    • PHOTOELECTROCHEMICAL CELL AND ENERGY SYSTEM USING THE SAME
    • 光电化学细胞和能量系统
    • US20120028141A1
    • 2012-02-02
    • US13260825
    • 2010-08-05
    • Takaiki NomuraTakahiro SuzukiNobuhiro MiyataKazuhito Hato
    • Takaiki NomuraTakahiro SuzukiNobuhiro MiyataKazuhito Hato
    • H01M8/06C25B9/00
    • H01M14/005C25B1/003H01G9/205Y02E10/542Y02E60/364Y02P20/135
    • A photoelectrochemical cell (100) includes: a semiconductor electrode (120) including a substrate (121), a first n-type semiconductor layer (122) disposed on the substrate (121), and a second n-type semiconductor layer (123) and a conductor (124) disposed apart from each other on the first n-type semiconductor layer (122); a counter electrode (130) connected electrically to the conductor (124); an electrolyte (140) in contact with surfaces of the second n-type semiconductor layer (123) and the counter electrode (130); and a container (110) accommodating the semiconductor electrode (120), the counter electrode (130) and the electrolyte (140). In the semiconductor electrode (120), relative to a vacuum level, (I) band edge levels of a conduction band and a valence band in the second n-type semiconductor layer (123), respectively, are higher than band edge levels of a conduction band and a valence band in the first n-type semiconductor layer (122), (II) a Fermi level of the first n-type semiconductor layer (122) is higher than a Fermi level of the second n-type semiconductor layer (123), and (III) a Fermi level of the conductor (124) is higher than the Fermi level of the first n-type semiconductor layer (122). The photoelectrochemical cell (100) generates hydrogen by irradiation of the second n-type semiconductor layer (123) with light.
    • 光电化学电池(100)包括:包括基板(121),设置在基板(121)上的第一n型半导体层(122)和第二n型半导体层(123))的半导体电极(120) 以及在所述第一n型半导体层(122)上彼此分离设置的导体(124)。 与所述导体(124)电连接的对电极(130)。 与第二n型半导体层(123)和对电极(130)的表面接触的电解液(140); 以及容纳半导体电极(120),对电极(130)和电解质(140)的容器(110)。 在半导体电极(120)中,相对于真空度,第二n型半导体层(123)中的导带和价带的(I)带边缘电平分别高于 导电带和第一n型半导体层(122)中的价带,(II)第一n型半导体层(122)的费米能级高于第二n型半导体层(6)的费米能级 123),(III)导体(124)的费米能级高于第一n型半导体层(122)的费米能级。 光电化学电池(100)通过用光照射第二n型半导体层(123)产生氢。
    • 90. 发明授权
    • Electroconductive endless belt having flame retarding material
    • 具有阻燃材料的导电环形带
    • US08095055B2
    • 2012-01-10
    • US12211148
    • 2008-09-16
    • Takahiro Suzuki
    • Takahiro Suzuki
    • G03G15/20
    • G03G15/162
    • An electroconductive endless belt for use as an intermediate transfer member that is disposed between an image-forming unit and a recording medium, is circularly driven by a drive unit, and temporarily holds a toner image transferred from the image-forming unit and subsequently transfers the toner image onto the recording medium, wherein the electroconductive endless belt has a multilayer structure including at least a surface layer disposed on a base layer, and the base layer is mainly composed of a polyester resin and/or a polyester elastomer and contains a conductive agent, a brominated epoxy resin, and an antimony compound, the polyester elastomer having a melting point of at least 210° C.
    • 用作设置在图像形成单元和记录介质之间的中间转印部件的导电环形带由驱动单元循环驱动,并暂时保持从图像形成单元传送的调色剂图像, 调色剂图像到记录介质上,其中导电环形带具有至少包括设置在基层上的表层的多层结构,并且基层主要由聚酯树脂和/或聚酯弹性体组成,并且含有导电剂 ,溴化环氧树脂和锑化合物,该聚酯弹性体的熔点至少为210℃。