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首页> 外文期刊>Applied Energy >Hydrogen storage in a two-liter adsorbent prototype tank for fuel cell driven vehicles
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Hydrogen storage in a two-liter adsorbent prototype tank for fuel cell driven vehicles

机译:用于燃料电池驱动车辆的两升吸附原型罐中的储氢

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摘要

A two-liter prototype hydrogen adsorbent tank, filled with MOF-5 material, was built, tested and modeled as part of the work carried out within the U.S. Department of Energy Hydrogen Storage Engineering Center of Excellence. The hydrogen was stored adopting the flow-through cooling concept. This approach exploits the characteristics of low temperature recirculating hydrogen to provide the cooling power required to adsorb the gas. The heating power, required to discharge hydrogen, was provided adopting a honeycomb finned heat transfer system, powered with a resistive heater. The system demonstrated the ability to achieve excess adsorption capacities on the order of 6.5 wt% at 77 K and at pressures between 40 bar and 80 bar. Adopting the flow-through cooling charging approach, gravimetric and volumetric capacities of 12 wt% and 31 g/L (on a material basis) were achieved, respectively, in approximately 10 min, at temperatures of about 90 K and pressures of 80 bar. The hydrogen discharging tests were carried out at pressures between 80 bar and 2.5 bar with a single resistive rod operating at an electric power on the order of 40 W. The prototype system demonstrated the ability to drive continuously a fuel cell of approximately 1 kW (corresponding to the prototype scale), at its nominal power for about 1 h 10 min.
机译:填充有MOF-5材料的两升原型氢吸附罐,被建造,测试和建模,作为美国能源储氢工程中心卓越系列中的作品的一部分。氢气储存采用流通冷却概念。该方法利用低温再循环氢的特性,以提供吸附气体所需的冷却功率。提供排出氢气所需的加热功率,采用蜂窝翅片传热系统,电阻加热器供电。该系统证明了在77 k的6.5wt%的阶数下实现过量的吸附容量,在40巴和80巴之间的压力下。采用流通冷却充电方法,重量和体积容量为12wt%和31克/升(在物质基础上),在约10分钟内,在约90k的温度和80巴的压力下进行。在80巴和2.5巴之间的压力下进行氢气排放测试,用电力按照40W的电力操作,原型系统表现出了连续驱动约1 kW的燃料电池的能力(对应到原型刻度),在其标称功率下约1小时10分钟。

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