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Energy efficiency improvements by investigating the water flooding management on proton exchange membrane fuel cell (PEMFC)

机译:通过研究质子交换膜燃料电池(PEMFC)的水洪水管理来改进能源效率

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This paper presents a broad study of research work associated with the effect of water flooding and management in Proton Exchange Membrane Fuel Cells (PEMFC) which operates at relatively low temperatures at conditions that could allow the accumulation of water that degrade cell performance.Recent studies confirm the importance of proper water balance during cell operation to avoid both dehydration and flooding. Condition to ensure the PEM remains hydrated while excessive water condensation is prevented are identified and analysed.The work review current literature and examines the different mechanisms of water transport in PEMFCs and their relative importance and impact on cell operation. The work analyse the effect of water accumulation at both the anode and the cathode regions and discusses the impact on cell efficiency of each.This work reviews recent development in this field and examines the approaches used such as improved flow field designs, improved membrane chemical formulation to increase hydrophilicity, manipulation of operating pressure, optimisation of operating temperature, the level of humidification, optimisation of gas flow rate and mechanical modification of the membrane structure among other techniques.The work examines recent advances in the techniques for non-intrusive in-situ water detection, monitoring and characterisation and compares their effectiveness.The work concludes by a critical review of recent studies that examined different strategies that could prevent water flooding and promote proper water management in PEM fuel cells. This includes water management control strategies designed to improve the voltage and current density at specific operating conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了与质子交换膜燃料电池(PEMFC)的水淹和管理效果相关的研究工作的广泛研究,该方法在可能允许降低细胞性能的情况下累积水的含量相对较低的温度下操作。研究细胞手术过程中适当水平衡的重要性,以避免脱水和洪水。确保PEM保持水合的条件,同时防止了过度的水冷凝,并进行了分析。工作审查当前文献,并检查PEMFC中的水运不同机制及其对细胞手术的相对重要性和影响。该工作分析了阳极和阴极区的水积累的影响,并探讨了对每种工作的影响对细胞效率的影响。本域内最近的发展,并检查了改进的流场设计,改善膜化学品等方法。为了提高亲水性,操纵操作压力,操作温度优化,加湿水平,气体流速的优化和其他技术的膜结构的机械改性。工作期近期侵扰原位技术的进步水检测,监测和表征并比较了它们的效率。工作结束了对最近研究的批判性审查,检查了可能预防水淹水和促进PEM燃料电池中的适当水管理的不同策略。这包括用于在特定操作条件下提高电压和电流密度的水管理控制策略。 (c)2019 Elsevier Ltd.保留所有权利。

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