首页> 外文会议>International Conference on Fuel Cell Science, Engineering and Technology; 20040614-20040616; Rochester,NY; US >ANALYSIS OF THE CO-GENERATION POTENTIAL OF A 5 KW PEMFC FROM EXPERIMENTALLY DETERMINED PERFORMANCE DATA
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ANALYSIS OF THE CO-GENERATION POTENTIAL OF A 5 KW PEMFC FROM EXPERIMENTALLY DETERMINED PERFORMANCE DATA

机译:通过实验确定的性能数据分析5 KW PEMFC的发电潜力

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A 5 kW proton exchange membrane fuel cell (PEMFC) with a reformer has been installed and tested at the Pontifical Catholic University of Rio de Janeiro (PUC-Rio), Brazil, aiming the experimental determination of its performance and co-generation potential to increase the fuel chemical energy usage. The unit uses a fuel processor to convert energy from natural gas into hydrogen rich reformate. The fuel cell is totally instrumented, supplying data for calculating the overall system efficiency (total efficiency), reformer efficiency, stack efficiency, conversion efficiency (DC/AC), and co-generation potential, at previously set up output powers of 2,5 kW and 4 kW. The paper details the equations required for calculating the parameters, both theoretically, from thermodynamics and electrochemics points of view, and experimentally, from mass and energy balances, comparing the results. Steady state data were taken at 13 different days, resulting in reformer, stack, conversion and total average efficiencies, together with the calculated standard deviation. It was also found that the energy loss in the reformer and in the stack are approximately the same. The co-generation potential was estimated by calculating the heat rejected by the stack and the heat rejected in the reformer, giving a value of 67,5% and 68.9%. respectively for 2,5 kW and 4 kW. Therefore, co-generation can substantially reduce the fuel cell energy cost, and thus increasing the feasibility of its use.
机译:带有重整器的5 kW质子交换膜燃料电池(PEMFC)已在巴西里约热内卢天主教大学(PUC-Rio)进行安装和测试,旨在通过实验确定其性能并提高热电联产的潜力燃料化学能的使用。该装置使用燃料处理器将天然气中的能源转化为富氢重整产品。燃料电池经过全面检测,以预先设置的2.5的输出功率提供数据,以计算总体系统效率(总效率),重整器效率,烟囱效率,转换效率(DC / AC)和热电势。 kW和4 kW。本文从理论上从热力学和电化学的角度,从实验上从质量和能量的平衡出发,详细计算了计算参数所需的方程,并对结果进行了比较。在13天不同的时间获取稳态数据,得出重整器,烟囱,转化率和总平均效率,以及计算出的标准偏差。还发现重整器和烟囱中的能量损失大致相同。通过计算烟囱排出的热量和重整炉中排出的热量,估算了热电联产潜力,得出的热值分别为67.5%和68.9%。分别为2.5 kW和4 kW。因此,热电联产可以大大降低燃料电池的能源成本,从而增加其使用的可行性。

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