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A review on membraneless laminar flow-based fuel cells

机译:无膜层流式燃料电池研究进展

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摘要

The review article provides a methodical approach for understanding membraneless laminar flow-based fuel cells (LFFCs), also known as microfluidic fuel cells. Membraneless LFFCs benefit from the lamination of multiple streams in a microchannel. The lack of convective mixing leads to a well-defined liquid-liquid interface. Usually, anode and cathode are positioned at both sides of the interface. The liquid-liquid interface is considered as a virtual membrane and ions can travel across the channel to reach the other side and complete the ionic conduction. The advantage of membraneless LFFC is the lack of a physical membrane and the related issues of membrane conditioning can be eliminated or becomes less important. Based on the electrode architectures, membraneless LFFCs in the literature can be categorized into three main types: flow-over design with planar electrodes, flow-through design with three-dimensional porous electrodes, and membraneless LFFCs with air-breathing cathode. Since this paper focuses on reviewing the design considerations of membraneless LFFCs, a concept map is provided for understanding the cross-related problems. The impacts of flow and electrode architecture on cell performance and fuel utilization are discussed. In addition, the main challenges and key issues for further development of membraneless LFFCs are discussed.
机译:这篇综述文章提供了一种了解无膜层流式燃料电池(LFFC)(也称为微流燃料电池)的系统方法。无膜LFFC得益于微通道中多个流的分层。缺乏对流混合导致定义明确的液-液界面。通常,阳极和阴极位于界面的两侧。液-液界面被视为虚拟膜,离子可以穿过通道传播,到达另一侧并完成离子传导。无膜LFFC的优点是缺乏物理膜,膜调节的相关问题可以消除或变得不那么重要。基于电极体系结构,文献中的无膜LFFC可以分为三种主要类型:具有平面电极的流通设计,具有三维多孔电极的流通设计以及具有呼吸阴极的无膜LFFC。由于本文的重点是回顾无膜LFFC的设计考虑因素,因此提供了一个概念图来理解交叉相关的问题。讨论了流量和电极结构对电池性能和燃料利用率的影响。此外,还讨论了进一步发展无膜LFFC的主要挑战和关键问题。

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