微生物燃料电池(MFC)中质子交换膜的替代品SPEEK/PES复合膜

W. R. Daud, M. Ghasemi, Poh She Chong, J. Jahim, Swee Su Lim, M. Ismail
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引用次数: 7

摘要

将磺化聚醚醚酮(SPEEK)加入聚醚砜(PES)中,合成了用于微生物燃料电池(MFC)发电的固体聚合物电解质(SPE)膜。采用相转化法制备了SPEEK与PES混合质量为5%的复合膜,并通过质子电导率、氧扩散、水交叉和生物污染水平的测定对其进行了表征。采用热压法制备膜电极组件(MEA),并在膜的一侧负载pt阴极。采用单室MFC对有效面积为9 cm2的MEA进行了测试。SPEEK/PES混合膜具有较低的水交叉电阻率和氧扩散电阻率,而与Nafion和PES膜相比具有较高的电导率。在24小时的进料间歇循环中,复合膜的MFC产生的平均功率密度为140 mW m−2,是使用Nafion膜的MFC产生的功率密度的两倍。实验结果表明,SPEEK/PES复合膜可以替代昂贵的全氟磺酸膜作为MFC系统中的质子交换膜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SPEEK/PES composite membranes as an alternative for proton exchange membrane in microbial fuel cell (MFC)
A solid polymer electrolyte (SPE) membranes were synthesized by incorporation of sulfonated poly(ether ether ketone) (SPEEK) in poly(ether sulfone) (PES) for electricity generation in microbial fuel cells (MFC). The composite membranes were prepared at 5% percent weight of SPEEK mixed with PES by phase inversion method and characterized by measuring proton conductivity, oxygen diffusion, water crossover and level of biofouling. Membrane electrode assemblies (MEA) were made by hot pressing the composite membranes with a Pt-loaded cathode on one side of membranes. The MEA, with effective area of 9 cm2, were tested using single chamber MFC. The blended SPEEK/PES membrane had low resistivity to water crossover and oxygen diffusion while high in conductivity compared to Nafion and PES membranes. The MFC using the composite membranes generated an average power density of 140 mW m−2 which was double that produced by MFC using Nafion membranes in every fed-batch cycle which lasted for 24 hours. The experimental results suggested that SPEEK/PES composite membrane could be a promising alternative to costly perfluorosulfonate membranes as proton exchange membrane in MFC system.
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