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    • 21. 发明申请
    • PUMPLESS, FANLESS ELECTROLYTE-CIRCULATION SYSTEM
    • 无泵,无风扇电解循环系统
    • US20130264195A1
    • 2013-10-10
    • US13442986
    • 2012-04-10
    • Qiang ZhouYong ZhouYu HeJason LoftusJonathan ZhouShaojiu Wang
    • Qiang ZhouYong ZhouYu HeJason LoftusJonathan ZhouShaojiu Wang
    • C25B15/02C25B15/08
    • C25B1/08C25B9/20Y02E60/366
    • A pumpless, fanless electrolyte-circulation system comprises an electrolyzer core that generates hydrogen and oxygen gases and includes a water electrolyzer having a plurality of electrolytic serial clusters connected substantially in parallel with each other and assembled into respective sealed reaction cells. Each of the electrolytic serial clusters includes a plurality of electrolytic cells. An electrolyte container includes a plurality of electrolytes in form of a concentration and is substantially separated from and connected to the electrolyzer core with a supply tube and return tube. A frame is substantially resistant to the concentration and separates a plurality of electrodes. Releasing of the gases brings the electrolytes in the electrolyzer core out of the electrolyzer core through the supply tube into the electrolyte container. The return tube allows each of the electrolytes to enter the electrolyzer core such that the electrolyte is forced to circulate by a releasing force of the gases.
    • 无水无风扇电解质循环系统包括产生氢气和氧气的电解器芯,并且包括具有彼此基本上并联连接并组装成相应的密封反应池的多个电解串联簇的水电解器。 每个电解串联簇包括多个电解池。 电解质容器包括多个浓度形式的电解质,并且与供给管和回流管基本上分离并连接到电解槽。 框架基本上抵抗浓度并分离多个电极。 气体的释放使得电解槽中的电解质通过供给管进入电解质容器。 返回管允许每个电解质进入电解器芯,使得电解质被迫通过气体的释放力循环。
    • 24. 发明申请
    • JUNCTION BOX FOR SOLAR BATTERY
    • 太阳能电池接线盒
    • US20120000689A1
    • 2012-01-05
    • US13170966
    • 2011-06-28
    • Jian ShuYong ZhouJinwen LiuWenbiao RenXinyang Liu
    • Jian ShuYong ZhouJinwen LiuWenbiao RenXinyang Liu
    • H02G3/16
    • H02S40/34
    • A junction box for a solar battery comprises a box body in which a plurality of connector bases are fixed, and a plurality of connection assemblies detachably connected with respective ones of the plurality of connector bases. Each connection assembly comprises a bracket and elastic member. The bracket is detachably connected with a respective connector base and configured to form an accommodating space with the respective connector base, and the elastic member is received within the accommodating space. The bracket comprises a first end connectable with an external cable, and a second end connectable with a connection cable of the solar battery. The brackets of immediately adjacent connection assemblies are formed with respective via-holes for insertion of pins of a diode to couple the diode between the respective immediately adjacent connection assemblies, with the pins being capable of being clamped between the respective immediately adjacent connection assemblies.
    • 一种用于太阳能电池的接线盒包括固定有多个连接器基座的盒体,以及可拆卸地与多个连接器基座中的相应连接器基座可拆卸地连接的多个连接组件。 每个连接组件包括支架和弹性构件。 支架与相应的连接器基座可拆卸地连接并且构造成与相应的连接器基座形成容纳空间,并且弹性构件被容纳在容纳空间内。 支架包括可与外部电缆连接的第一端,以及可与太阳能电池的连接电缆连接的第二端。 立即相邻的连接组件的支架形成有用于插入二极管的引脚的相应的通孔,以在相应的紧邻的连接组件之间耦合二极管,并且销能够夹在相应的紧邻的连接组件之间。
    • 26. 发明申请
    • Humidifying devices and methods for proton exchange membranes of fuel cells
    • 用于燃料电池质子交换膜的加湿装置和方法
    • US20060040151A1
    • 2006-02-23
    • US11200707
    • 2005-08-09
    • Chuanfu WangYong Zhou
    • Chuanfu WangYong Zhou
    • H01M8/04B01D11/04
    • H01M8/04164H01M8/04014H01M8/04141H01M2008/1095
    • The present invention discloses methods and devices for humidifying the proton exchange membranes of fuel cells with water obtained from the exhaust of the fuel cells. Humidifying methods include the following steps: cooling the hot and humid exhaust of the fuel cell to condense the water in the exhaust with the intake gas for the fuel cell; separating the water from the rest of the exhaust, and, delivering the water to the intake gas of the fuel cell. Humidifying devices include an outer shell containing a rotating inner shell. The inside of the inner shell forms a chamber where the exhaust is collected and cooled, and water is condensed and separated by the rotation of the inner shell. Openings on the inner shell allow the condensed water to pass through to one or more chambers containing the intake gas. The chambers are formed by the inside of the outer shell and the outside of the inner shell. Humidifying devices methods and devices of this invention can respond to the varying power output of the fuel cell. They also have high humidifying efficiency, low energy consumption, are cheap to operate, and work well during startup at low temperatures.
    • 本发明公开了用于从燃料电池的排气获得的水加湿燃料电池的质子交换膜的方法和装置。 加湿方法包括以下步骤:冷却燃料电池的热和潮湿排气,以与燃料电池的进气冷凝排气中的水; 将水与排气的其余部分分离,并将水输送到燃料电池的进气。 加湿装置包括包含旋转内壳的外壳。 内壳的内部形成了一个室,其中废气被收集和冷却,并且水被内壳的旋转冷凝和分离。 内壳上的开口允许冷凝水通过一个或多个容纳进气的室。 室由外壳的内部和内壳的外部形成。 本发明的加湿装置的方法和装置可以响应燃料电池的变化的功率输出。 它们还具有高加湿效率,低能耗,操作便宜,在低温启动时工作良好。