质子交换膜燃料电池的反应传输过程

Ting Min, Ruiyuan Zhang, Li Chen, Qiang Zhou
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引用次数: 0

摘要

质子交换膜燃料电池是将化学能直接转化为电能的装置。氢氧化反应发生在阳极侧,产生质子和电子。在阴极中,发生涉及氧、质子和电子的氧还原反应,产生水和热。PEMFC中的含水量应保持在合理的量,以避免水淹或膜脱水。PEMFC的热管理和水管理对于PEMFC的高效和稳定运行是重要的。在PEMFC的多尺度空间内,同时发生相变、传热和传质、质子和电子传导以及电化学反应的多相流,这对PEMFC的性能、寿命和成本起着重要作用。为了更好地设计PEMFC并改进热管理和水管理,应该充分理解这些过程。
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Reactive Transport Processes in Proton Exchange Membrane Fuel Cells
Proton exchange membrane fuel cells are devices that directly convert chemical energy to electricity. A hydrogen oxidation reaction takes place on the anode side, generating protons and electrons. In the cathode, oxygen reduction reaction involving oxygen, proton and electron occurs, producing water and heat. The water content in PEMFCs should be maintained at a reasonable amount to avoid water flooding or membrane dehydration. The thermal management and water management of PEMFCs are important for an efficient and stable operation of PEMFCs. Inside the multiscale spaces of PEMFCs, multiphase flow with a phase change, heat and mass transfer, proton and electron conduction, and electrochemical reaction simultaneously take place, which play important roles in the performance, lifetime and cost of PEMFCs. These processes should be well understood for better designing PEMFCs and improving the thermal management and water management.
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