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    • 82. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US09515329B2
    • 2016-12-06
    • US14407462
    • 2014-02-20
    • PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
    • Shigenori OnumaKunihiro UkaiTakehiro Maruyama
    • H01M8/04H01M8/06H01M8/12
    • H01M8/04014H01M8/04074H01M8/0618H01M8/0675Y02E60/50
    • A fuel cell system including a fuel cell; a cathode air heat exchanger configured to perform heat exchange between a cathode exhaust gas and the air to be supplied to the cathode to transfer a part of heat energy of the cathode exhaust gas to the air; a desulfurization unit configured to remove a sulfur component from a raw material supplied to the desulfurization unit; and a reformer configured to generate a reformed gas which is the fuel from steam and the raw material from which the sulfur component has been removed by the desulfurization unit; and the cathode exhaust gas which has lost a part of the heat energy by the heat exchange in at least the cathode air heat exchanger, is supplied to the desulfurization unit, to heat the desulfurization unit by the heat energy of the cathode exhaust gas.
    • 一种燃料电池系统,包括燃料电池; 阴极空气热交换器,被配置为执行阴极排气和要供应到阴极的空气之间的热交换,以将阴极废气的一部分热能传递到空气; 脱硫单元,被配置为从供给到脱硫单元的原料中除去硫成分; 以及重整器,其构造成从蒸汽和由脱硫单元除去了硫成分的原料产生作为燃料的重整气体; 至少在阴极空气热交换器中通过热交换而损失一部分热能的阴极废气被供给到脱硫单元,以通过阴极废气的热能来加热脱硫单元。
    • 84. 发明授权
    • Method of production of fresh water
    • 淡水生产方法
    • US09499418B2
    • 2016-11-22
    • US14675269
    • 2015-03-31
    • Jeffrey W. Akers
    • Jeffrey W. Akers
    • C02F1/44C02F1/461C02F103/08C02F103/36H01M8/06
    • C02F1/441C02F1/46176C02F2103/08C02F2103/365H01M8/0606Y02A20/131Y02P70/56
    • Salt rich undrinkable water can be freshened by, and by adjustment of various factors can indeed be freshened to the point of being drinkable by, introducing galvanic couple particles in the salt rich undrinkable water within inside a main processor, controlling pressure inside the main processor to build substantial internal pressurization due to the reaction of the salt rich undrinkable water with the galvanic couple particles into a metallic compound while releasing hydrogen and while releasing heat of reaction, and, collecting a water stream from the main processor through reverse osmosis media that is pressurized due to the internal pressurization inside the main processor. Whereby the water stream that is collected past the reverse osmosis media is fresher than the inputted salt rich undrinkable water.
    • 盐丰富的不含水的水可以被清洗,并且通过调整各种因素,实际上可以通过在主处理器内部的电荷偶联颗粒引入电荷耦合的颗粒在不含盐的不饱和的水中,使主处理器内的压力控制在 由于富含盐的不可水的水与电偶耦合颗粒在释放氢气的同时释放氢并同时释放反应热量,由于富含盐的不可水的水与金属化合物的反应而产生显着的内部加压,并且通过反渗透介质从主处理器收集水流,该反渗透介质被加压 由于主处理器内部加压。 所以通过反渗透介质收集的水流比输入的富含盐的不可水的水更新鲜。
    • 90. 发明申请
    • POWER PRODUCING GAS SEPARATION SYSTEM AND METHOD
    • 电力生产气体分离系统和方法
    • US20160248110A1
    • 2016-08-25
    • US14631239
    • 2015-02-25
    • FUELCELL ENERGY, INC.
    • Hossein Ghezel-Ayagh
    • H01M8/06H01M8/14
    • H01M8/0668H01M8/04014H01M2008/147H01M2250/40Y02E60/526Y02E60/56Y02P90/40
    • A power producing system adapted to be integrated with a flue gas generating assembly, the flue gas generating assembly including one or more of a fossil fueled installation, a fossil fueled facility, a fossil fueled device, a fossil fueled power plant, a boiler, a combustor, a furnace and a kiln in a cement factory, and the power producing system utilizing flue gas containing carbon dioxide and oxygen output by the flue gas generating assembly and comprising: a fuel cell comprising an anode section and a cathode section, wherein inlet oxidant gas to the cathode section of the fuel cell contains the flue gas output from the flue gas generating assembly; and a gas separation assembly receiving anode exhaust output from the anode section of the fuel cell and including a chiller assembly for cooling the anode exhaust to a predetermined temperature so as to liquefy carbon dioxide in the anode exhaust, wherein waste heat produced by the fuel cell is utilized to drive the chiller assembly.
    • 一种适于与烟道气发生组件集成的发电系统,所述烟道气发生组件包括化石燃料装置,化石燃料设施,化石燃料装置,化石燃料发电厂,锅炉, 燃烧器,水泥厂中的炉子和窑炉,以及利用由烟道气发生组件输出的含有二氧化碳和氧气的烟道气的发电系统,包括:燃料电池,其包括阳极部分和阴极部分,其中入口氧化剂 燃料电池的阴极部分的气体包含从烟道气发生组件输出的烟气; 以及气体分离组件,其接收从燃料电池的阳极部分输出的阳极废气,并且包括用于将阳极废气冷却至预定温度的冷却器组件,以便液化阳极排气中的二氧化碳,其中由燃料电池产生的废热 用于驱动冷却器组件。