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    • 1. 发明授权
    • Fuel containment and recycling system
    • 燃油遏制和回收系统
    • US07226676B2
    • 2007-06-05
    • US10429935
    • 2003-05-05
    • Sadeg M. FarisTsepin TsaiWenbin YaoYuen-Ming Chang
    • Sadeg M. FarisTsepin TsaiWenbin YaoYuen-Ming Chang
    • H01M8/04H01M2/00H01M2/02
    • H01M6/5011H01M2/40H01M4/02H01M6/5077H01M8/18H01M8/225H01M10/4214H01M12/06H01M2300/0014
    • An energy conversion system, comprising: a reservoir container including at least two chambers of inversely variable volume for respectively storing a quantity of fuel and receiving a quantity of exhaust; a means for decreasing the volume of the first chamber while concurrently increasing the volume of the second chamber; at least one energy conversion device; first means for communicating fuel between the at least one energy conversion device and a first of the chambers in the reservoir container; and second means for communicating exhaust between the at least one energy conversion device and a second of the chambers in the reservoir container. The reservoir container may be transported to a recharging/refilling station or recharged in-situ. A particular application for metal-air fuel cell power systems is shown and described.
    • 一种能量转换系统,包括:容器容器,其包括至少两个反向容积的室,用于分别储存一定量的燃料并接收一定数量的排气; 用于减小第一室的体积同时增加第二室的体积的装置; 至少一个能量转换装置; 用于在所述至少一个能量转换装置和所述储存容器中的所述室中的第一室之间连通燃料的第一装置; 以及用于在所述至少一个能量转换装置和所述储存器容器中的第二室之间连通排气的第二装置。 储存容器可以运送到充电/再填充站或原位充电。 金属 - 空气燃料电池电力系统的特殊应用被显示和描述。
    • 2. 发明授权
    • Fuel containment and recycling system
    • 燃油遏制和回收系统
    • US06558825B1
    • 2003-05-06
    • US09570798
    • 2000-05-12
    • Sadeg M. FarisTsepin TsaiWayne YaoYuen-Ming Chang
    • Sadeg M. FarisTsepin TsaiWayne YaoYuen-Ming Chang
    • H01M806
    • H01M6/5011H01M2/40H01M4/02H01M6/5077H01M8/18H01M8/225H01M10/4214H01M12/06H01M2300/0014
    • An energy conversion system, comprising: a reservoir container including at least two chambers of inversely variable volume for respectively storing a quantity of fuel and receiving a quantity of exhaust; a means for decreasing the volume of the first chamber while concurrently increasing the volume of the second chamber; at least one energy conversion device; first means for communicating fuel between the at least one energy conversion device and a first of the chambers in the reservoir container; and second means for communicating exhaust between the at least one energy conversion device and a second of the chambers in the reservoir container. The reservoir container may be transported to a recharging/refilling station or recharged in-situ. A particular application for metal-air fuel cell power systems is shown and described.
    • 一种能量转换系统,包括:容器容器,其包括至少两个反向容积的室,用于分别储存一定数量的燃料并接收一定数量的排气; 用于减小第一室的体积同时增加第二室的体积的装置; 至少一个能量转换装置; 用于在所述至少一个能量转换装置和所述储存容器中的所述室中的第一室之间连通燃料的第一装置; 以及用于在所述至少一个能量转换装置和所述储存器容器中的第二室之间连通排气的第二装置。 储存容器可以运送到充电/再填充站或原位充电。 金属 - 空气燃料电池电力系统的特殊应用被显示和描述。
    • 7. 发明授权
    • Metal-air fuel cell battery system employing substantially planar metal-fuel cards of rigid construction insertable into a power generation bay of the system
    • 金属空气燃料电池系统采用基本平坦的刚性结构的金属 - 燃料卡,可插入系统的发电间隔
    • US06309771B1
    • 2001-10-30
    • US09143895
    • 1998-08-31
    • Sadeg M. FarisYuen-Ming ChangTsepin TsaiWayne Yao
    • Sadeg M. FarisYuen-Ming ChangTsepin TsaiWayne Yao
    • H01M470
    • H01M4/42B60L11/1883B60L11/1892B60L11/1898B60L2200/26B60L2210/40H01M2/1673H01M4/8605H01M6/5011H01M8/184H01M8/186H01M8/22H01M10/4214H01M10/44H01M12/06H01M12/08H01M2004/024H01M2300/0085H02J7/00Y02E60/128Y02T10/7241Y02T90/34
    • Improved metal-air fuel cell battery systems having metal-fuel realized in the form of substantially planar metal-fuel cards of rigid construction, which can be either manually or automatically inserted within the power generation bay of the system. The power generation bay includes at least one electrically-conductive cathode element supported by a cathode support structure in a stationary position with respect to the cathode support structure, and at least one electrically-conductive anode-contacting element supported by an anode contacting structure in a stationary position with respect to the anode contacting structure. In order to produce a range of output voltages, the power generation bay includes a plurality of cells comprising cathode elements spatially arranged with anode contacting elements, and each metal-fuel card has a plurality of electrically-isolated metal-fuel strips that are spatially arranged with these cells when the metal-fuel card is inserted to the power generation bay. An output voltage configuration subsystem is provided for configuring the voltages produced by the individual cells to produce a desired output. A subsystem is provided for detecting oxide formation on the metal-fuel strips so that only metal-fuel that has been oxidized is reduced during recharging operations. A subsystem is also provided for controlling the flow of oxygen into the power generation head in order to control the power output from the system.
    • 改进的具有金属燃料的金属 - 空气燃料电池系统,其实现为具有刚性结构的基本平坦的金属 - 燃料卡的形式,其可以手动地或自动地插入系统的发电间隔中。 发电间隔包括至少一个由相对于阴极支撑结构处于静止位置的阴极支撑结构支撑的导电阴极元件,以及由阳极接触结构支撑的至少一个导电阳极接触元件, 相对于阳极接触结构的静止位置。 为了产生一定范围的输出电压,发电室包括多个单元,其包括空间上布置有阳极接触元件的阴极元件,并且每个金属 - 燃料卡具有空间上布置的多个电隔离的金属 - 燃料带 当金属 - 燃料卡被插入发电舱时,这些电池。 提供输出电压配置子系统用于配置由各个单元产生的电压以产生期望的输出。 提供了一种用于检测金属 - 燃料条上的氧化物形成的子系统,使得在再充电操作期间仅减少已被氧化的金属 - 燃料。 还提供了一个子系统,用于控制进入发电头的氧气流,以便控制从系统输出的功率。