首页> 外文会议>World energy conference >Thermodynamic Analysis of the Fuel Cells Efficiency-Thermodynamic Stability Approach
【24h】

Thermodynamic Analysis of the Fuel Cells Efficiency-Thermodynamic Stability Approach

机译:燃料电池效率的热力学分析-热力学稳定性方法

获取原文

摘要

Energy conversion in fuel cells is performed by electrochemical and transport processes in the polymer electrolyte membrane, gas diffusion layers, catalyst layers, and in the pipes transporting hydrogen, oxygen, water and air into and out of the fuel cell. All these processes are analyzed from the point of view of phenomenological thermodynamics, which inherently describes their synergy (namely, the coupling between electric conductivity and diffusivity, electrochemical processes at the electrodes, etc.). The total efficiency of the energy transformation is discussed in two parts: Firstly, reflecting the fuel and waste transport; secondly, the chemical energy conversion into electricity. A cyclic process with constant enthalpy gives an adequate base for derivation of the fundamental relation between actual and theoretical efficiencies, temperatures differences, power density, etc. Moreover, the analysis of transfer coefficients for fuel (Hydrogen and Air) delivery and for waste (water) output yields a relation between activation losses end efficiency drop (Butler-Volmer equation). Comparisons of the analysis to experiments support the obtained general relations, which are transferable to all similar devices transforming the energy by the non-volumetric way (e.g., electrolyzer, photovoltaic cells, etc.)
机译:燃料电池中的能量转换通过高分子电解质膜,气体扩散层,催化剂层以及将氢气,氧气,水和空气进出燃料电池的管道中的电化学和传输过程进行。从现象学热力学的角度分析了所有这些过程,这些现象固有地描述了它们的协同作用(即,电导率和扩散率之间的耦合,电极处的电化学过程等)。能源转换的总效率分为两个部分:第一,反映燃料和废物的运输​​;第二,反映燃料和废物的运输​​。其次,化学能转化为电能。具有恒定焓的循环过程为推导实际效率与理论效率,温度差,功率密度等之间的基本关系提供了足够的基础。此外,还分析了燃料(氢和空气)输送和废物(水)的传递系数)输出产生激活损耗与最终效率下降之间的关系(巴特勒-沃尔默方程式)。将分析与实验进行比较可支持所获得的一般关系,这些关系可转换为通过非体积方式转换能量的所有类似设备(例如,电解器,光伏电池等)

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号