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首页> 外文期刊>International journal of hydrogen energy >Methanol reformer integrated phosphoric acid fuel cell (PAFC) based compact plant for field deployment
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Methanol reformer integrated phosphoric acid fuel cell (PAFC) based compact plant for field deployment

机译:基于甲醇重整器的集成磷酸燃料电池(PAFC)的紧凑型工厂,用于现场部署

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摘要

Naval Material Research Laboratory (NMRL), based on the firm confidence of her core competence on material development, started an ambitious program on development of fuel cells for various Defense and non-Defense application in early nineties. The primary emphasis of this program is to develop phosphoric acid fuel cell (PAFC) based power plants integrated with hydrogen generators along with other accessories. In the process of development, it is understood that online generation of hydrogen from a liquid fuel is the key to success. Methanol, a liquid fuel, can be reformed easily with few side products and the resultant hydrogen rich reformer gas can be directly fed to a PAFC. Such configuration keeps the basic system simple and free of complicated filters and instrumentation. NMRL has developed a series of catalytic burners with high efficiency as the primary heat transfer source from the hot catalytic surface is based on conduction rather than convection as is done normally. Vaporizer is a coiled arrangement and reformer is hollow sections filled with Cu/Al_2O_3ZnO catalyst, and the same is integrated with catalytic burners. Such arrangement is modular in nature and each reformer has hydrogen generation capacity of 90 lpm and start-up time is around half an hour. Modular design of reformer reactor allow them to used in different capacity plants such as a 2 kW plant configured with a reformer reactor with two vaporizer and 15 kW plant configured with seven nos. of reformer reactors and seven no. of vaporizer. The waste heat of the fuel cell and the same from the reformer burner flue is used to meet most of the reformer heat load. The catalytic burner of the reformer burns both waste hydrogen and methanol with very little excess air. PAFC being tolerant to CO (up to 1%) can be directly operated with the hydrogen rich reformer gas and the lean gas from the fuel cell is burnt into the reformer system. The raw DC output power is converted into either 100 VDC or 220 V single phase, 50 Hz sinusoidal AC power through appropriate power electronics. These configurations give overall efficiency of the plant to around 35-40 % based on LHV of Hydrogen. A battery bank is also incorporated to cater for the plant start-up and other temporary auxiliary power which get charged from the fuel cell output. Such configuration lead to the development of methanol reformer integrated PAFC based power plants of capacity ranging from 2 kW to 15 kW. The system is designed for continuous power production in the field. These plants are suitable for remote area, distributed power generation and application such as battery charging, domestic load etc.
机译:海军材料研究实验室(NMRL)基于她对材料开发的核心能力的坚定信心,于90年代初开始了一项雄心勃勃的燃料电池开发计划,以用于各种国防和非国防应用。该计划的主要重点是开发与氢发生器以及其他附件集成在一起的基于磷酸燃料电池(PAFC)的发电厂。在开发过程中,可以理解,从液体燃料在线生成氢是成功的关键。甲醇(一种液体燃料)可以很容易地以很少的副产物进行重整,生成的富氢重整气可以直接供入PAFC。这种配置使基本系统保持简单,并且没有复杂的过滤器和仪器。 NMRL开发了一系列高效的催化燃烧器,因为来自热催化表面的主要传热源基于传导而非对流,而通常是基于对流的。蒸发器是盘绕的,重整器是填充有Cu / Al_2O_3ZnO催化剂的空心部分,并与催化燃烧器集成在一起。这种布置本质上是模块化的,每个重整器具有90 lpm的氢气产生能力,启动时间约为半小时。重整反应器的模块化设计允许它们用于不同容量的工厂,例如配置有带两个汽化器的重整反应器的2 kW装置和配置有7个NO的15 kW装置。重整反应器和七个蒸发器。燃料电池的废热以及来自重整器燃烧器烟道的废热被用来满足大部分重整器的热负荷。重整器的催化燃烧器燃烧的废氢和甲醇几乎没有过量的空气。耐CO(最高1%)的PAFC可以直接与富氢重整器气体一起运行,并将来自燃料电池的贫气燃烧到重整器系统中。原始的直流输出功率通过适当的电力电子设备转换为100 VDC或220 V单相,50 Hz正弦交流电。这些配置基于氢气的LHV,使电厂的整体效率达到35-40%左右。还集成了一个电池组,以适应工厂的启动以及从燃料电池输出中充电的其他临时辅助电源。这种配置导致开发了甲醇重整器集成的基于PAFC的发电厂,容量从2 kW到15 kW不等。该系统专为在现场连续发电而设计。这些工厂适用于偏远地区,分布式发电以及电池充电,家庭负载等应用。

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