Houchins Cassidy, Kleen Greg J, Spendelow Jacob S, Kopasz John, Peterson David, Garland Nancy L, Ho Donna Lee, Marcinkoski Jason, Martin Kathi Epping, Tyler Reginald, Papageorgopoulos Dimitrios C
SRA International, Inc., Fairfax, VA 22033, USA.
Department of Energy, Washington, DC 20585, USA.
Membranes (Basel). 2012 Dec 18;2(4):855-78. doi: 10.3390/membranes2040855.
Low cost, durable, and selective membranes with high ionic conductivity are a priority need for wide-spread adoption of polymer electrolyte membrane fuel cells (PEMFCs) and direct methanol fuel cells (DMFCs). Electrolyte membranes are a major cost component of PEMFC stacks at low production volumes. PEMFC membranes also impose limitations on fuel cell system operating conditions that add system complexity and cost. Reactant gas and fuel permeation through the membrane leads to decreased fuel cell performance, loss of efficiency, and reduced durability in both PEMFCs and DMFCs. To address these challenges, the U.S. Department of Energy (DOE) Fuel Cell Technologies Program, in the Office of Energy Efficiency and Renewable Energy, supports research and development aimed at improving ion exchange membranes for fuel cells. For PEMFCs, efforts are primarily focused on developing materials for higher temperature operation (up to 120 °C) in automotive applications. For DMFCs, efforts are focused on developing membranes with reduced methanol permeability. In this paper, the recently revised DOE membrane targets, strategies, and highlights of DOE-funded projects to develop new, inexpensive membranes that have good performance in hot and dry conditions (PEMFC) and that reduce methanol crossover (DMFC) will be discussed.
对于聚合物电解质膜燃料电池(PEMFC)和直接甲醇燃料电池(DMFC)的广泛应用而言,具有高离子传导率的低成本、耐用且选择性的膜是优先需求。在低产量时,电解质膜是PEMFC电池组的主要成本组成部分。PEMFC膜还对燃料电池系统的运行条件施加限制,这增加了系统复杂性和成本。反应气体和燃料透过膜会导致PEMFC和DMFC的燃料电池性能下降、效率损失以及耐久性降低。为应对这些挑战,美国能源部(DOE)能源效率和可再生能源办公室的燃料电池技术计划支持旨在改进燃料电池离子交换膜的研发工作。对于PEMFC,工作主要集中在开发用于汽车应用中更高温度运行(高达120°C)的材料。对于DMFC,工作重点是开发具有降低甲醇渗透率的膜。本文将讨论美国能源部最近修订的膜目标、策略以及由美国能源部资助的项目亮点,这些项目旨在开发在高温干燥条件下具有良好性能(PEMFC)且能降低甲醇穿透率(DMFC)的新型廉价膜。