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Design and development of gas diffusion layers with pore forming agent for proton exchange membrane fuel cells at various relative humidity conditions

机译:用于质子交换膜燃料电池在各种相对湿度条件下孔隙成型剂气体扩散层的设计与开发

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摘要

Membrane electrode assemblies are developed by incorporating gas diffusion layers (GDL) to improve the lower and higher relative humidity performance of proton exchange membrane fuel cells (PEMFCs). In the present study, gas diffusion layer samples containing microporous layers, are fabricated using carbon paper substrate, PUREBLACK (R) carbon powder and polyethylene glycol as pore forming agent. The GDLs are studied in single cell fuel cell, to evaluate the effect of porosity of the micro-porous layer on the performance at different operating relative humidity conditions and compared with commercial GDLs. Scanning electron microscopy and contact angle measurements indicate crack-free surface morphology and hydrophobic characteristics of the PUREBLACK (R) based GDLs, respectively. By varying the wt. % of PEG, fuel cell performance is evaluated under relative humidity conditions of 60 and 100% using H-2/O-2 and H-2/Air at 70 degrees C and the durability is also evaluated for the GDL samples without and with 30% PEG. The fuel cell performance of the GDL with 30% pore forming agent (with a pore volume of 1.72 cc.g(-1)) exhibited higher performance (444 and 432 mW cm(-2) at 60 and 100% RH conditions, respectively using H-2 and air) compared to that without pore forming agent (436 and 397 mW cm(-2)). (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:膜电极组件是通过掺入气体扩散层(GDL)来开发的,以改善质子交换膜燃料电池(PEMFC)的较低且较高的相对湿度性能。在本研究中,使用碳纸基材,纯纤维(R)碳粉和聚乙二醇作为孔成型剂,制造含有微孔层的气体扩散层样品。在单细胞燃料电池中研究了GDL,以评估微多孔层的孔隙率对不同操作相对湿度条件下的性能的影响,并与商业GDL进行比较。扫描电子显微镜和接触角测量表示分别基于纯细胞(R)GDL的无裂缝表面形态和疏水性特性。改变wt。 PEG的百分比,在60℃的H-2 / O-2和H-2 /空气下在60和100%的相对湿度条件下评价燃料电池性能,并且还评估了GDL样品的耐用性,但没有30℃ %peg。具有30%孔形成剂的Gd1的燃料电池性能(具有1.72cc.g(-1)的孔体积),分别在60和100%RH条件下表现出更高的性能(444和432mm(-2)与没有孔形成剂的情况相比,使用H-2和空气(436和397mm(-2))。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2021年第9期|6835-6844|共10页
  • 作者单位

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA;

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA|Royal Inst Technol Sch Engn Sci Appl Phys Chem Teknikringen 30 SE-10044 Stockholm Sweden;

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA;

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA;

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA|Natl Inst Technol Dept Chem Tiruchirappalli 620015 Tamil Nadu India;

    Natl Inst Technol Dept Chem Tiruchirappalli 620015 Tamil Nadu India;

    Anton Paar QuantaTec Inc 1900 Corp Dr Boynton Beach FL 33426 USA;

    Arizona State Univ Polytech Sch Ira A Fulton Sch Engn Fuel Cell Lab Mesa AZ 85212 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PUREBLACK (R); Microporous layer; Gas diffusion layer; Membrane-electrodes assembly; PEM Fuel cell;

    机译:pureBlack(R);微孔层;气体扩散层;膜电极组件;PEM燃料电池;
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