会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • Ion-removing apparatus
    • 离子去除装置
    • US20070000791A1
    • 2007-01-04
    • US11453559
    • 2006-06-15
    • Yasunari AraiAkishi MoritaNobuhiko NakagakiHiroyuki Sekine
    • Yasunari AraiAkishi MoritaNobuhiko NakagakiHiroyuki Sekine
    • C02F1/461
    • C02F1/42C02F2001/422C02F2001/425C02F2201/002H01M8/04097H01M8/04164
    • An ion-removing apparatus includes a housing, a first ion-removing unit and a second ion-removing unit. The housing includes an inlet port, a liquid discharge port and a gas discharge port. The first ion-removing unit is disposed within the housing, so that the fluid that has entered the housing via the inlet port flows through the first ion-removing unit. The first ion-removing unit serves to remove a first ion, such anions, contained in the fluid. The second ion-removing unit is disposed within the housing, so that the fluid that has flown though the first ion-removing unit flows through the first ion-removing unit. The second ion-removing unit serves to remove a second ion, such as cations contained in the fluid. The liquid contained in the fluid that has flown through the second ion-removing unit is discharged from the liquid discharge port. The gas contained in the fluid that has flown through the second ion-removing unit is discharged from the gas discharge port.
    • 离子去除装置包括壳体,第一离子去除单元和第二离子去除单元。 壳体包括入口,排液口和排气口。 第一离子去除单元设置在壳体内,使得经由入口进入壳体的流体流过第一离子去除单元。 第一离子去除单元用于去除包含在流体中的第一离子,这种阴离子。 第二离子去除单元设置在壳体内,使得流过第一离子去除单元的流体流过第一离子去除单元。 第二离子去除单元用于去除第二离子,例如包含在流体中的阳离子。 包含在流过第二离子去除单元的流体中的液体从液体排出口排出。 包含在流过第二离子去除单元的流体中的气体从气体排出口排出。
    • 4. 发明授权
    • Ion-removing apparatus
    • 离子去除装置
    • US07837870B2
    • 2010-11-23
    • US11453559
    • 2006-06-15
    • Yasunari AraiAkishi MoritaNobuhiko NakagakiHiroyuki Sekine
    • Yasunari AraiAkishi MoritaNobuhiko NakagakiHiroyuki Sekine
    • B01D15/04B01D35/01
    • C02F1/42C02F2001/422C02F2001/425C02F2201/002H01M8/04097H01M8/04164
    • An ion-removing apparatus includes a housing, a first ion-removing unit and a second ion-removing unit. The housing includes an inlet port, a liquid discharge port and a gas discharge port. The first ion-removing unit is disposed within the housing, so that the fluid that has entered the housing via the inlet port flows through the first ion-removing unit. The first ion-removing unit serves to remove a first ion, such anions, contained in the fluid. The second ion-removing unit is disposed within the housing, so that the fluid that has flown though the first ion-removing unit flows through the first ion-removing unit. The second ion-removing unit serves to remove a second ion, such as cations contained in the fluid. The liquid contained in the fluid that has flown through the second ion-removing unit is discharged from the liquid discharge port. The gas contained in the fluid that has flown through the second ion-removing unit is discharged from the gas discharge port.
    • 离子去除装置包括壳体,第一离子去除单元和第二离子去除单元。 壳体包括入口,排液口和排气口。 第一离子去除单元设置在壳体内,使得经由入口进入壳体的流体流过第一离子去除单元。 第一离子去除单元用于去除包含在流体中的第一离子,这种阴离子。 第二离子去除单元设置在壳体内,使得流过第一离子去除单元的流体流过第一离子去除单元。 第二离子去除单元用于去除第二离子,例如包含在流体中的阳离子。 包含在流过第二离子去除单元的流体中的液体从液体排出口排出。 包含在流过第二离子去除单元的流体中的气体从气体排出口排出。
    • 7. 发明授权
    • Fuel cell system with heater
    • 带加热器的燃料电池系统
    • US08697298B2
    • 2014-04-15
    • US12503349
    • 2009-07-15
    • Koji KumeAkishi MoritaYasunari Arai
    • Koji KumeAkishi MoritaYasunari Arai
    • H01M8/06
    • H01M8/04149H01M8/04029H01M8/04141
    • A first rectangular pipe is connected along a path of an oxidation gas supply pipe that supplies an oxidation gas from a pump to an oxidant pole of a fuel cell. A second rectangular pipe is connected to an oxidation off-gas pipe connected to an outlet of the oxidant pole. A lower surface of the first rectangular pipe is contacted with an upper surface of the second rectangular pipe. A connecting path is provided to the contact surface, and a vapor permeable membrane is disposed at the connecting path. An upper surface of a third rectangular pipe is provided in surface contact with a lower surface of the second rectangular pipe, the third rectangular pipe being provided to a coolant out-pipe connected to a cooling jacket of the fuel cell. Generated water in the second pipe is heated and evaporated by a coolant heated in the third rectangular pipe. The water vapor then permeates the vapor permeable membrane, and is directed inside the first rectangular pipe so as to humidify the oxidation gas.
    • 第一矩形管沿着将氧化气体从泵提供给燃料电池的氧化剂极的氧化气体供给管的路径连接。 第二矩形管连接到连接到氧化剂极的出口的氧化废气管。 第一矩形管的下表面与第二矩形管的上表面接触。 连接路径设置在接触面上,透气膜设置在连接路径上。 第三矩形管的上表面设置成与第二矩形管的下表面接触,第三矩形管设置在连接到燃料电池的冷却套的冷却剂外管上。 第二管中产生的水被第三矩形管中加热的冷却剂加热并蒸发。 然后水蒸气渗透蒸气渗透膜,并被引导到第一矩形管内部以便加湿氧化气体。