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Transport properties of proton-exchange membranes: Effect of supercritical-fluid processing and chemical functionality.

机译:质子交换膜的传输特性:超临界流体处理和化学功能的影响。

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摘要

NafionRTM membranes commonly used in direct methanol fuel cells (DMFC), are tipically limited by high methanol permeability (also known as the cross-over limitation). These membranes have phase segregated sulfonated ionic domains in a perfluorinated backbone, which makes processing challenging and limited by phase equilibria considerations. This study used supercritical fluids (SCFs) as a processing alternative, since the gas-like mass transport properties of SCFs allow a better penetration into the membranes and the use of polar co-solvents influenced their morphology, fine-tuning the physical and transport properties in the membrane. Measurements of methanol permeability and proton conductivity were performed to the NafionRTM membranes processed with SCFs at 40ºC and 200 bar and the co-solvents as: acetone, tetrahydrofuran (THF), isopropyl alcohol, HPLC-grade water, acetic acid, cyclohexanone. The results obtained for the permeability data were of the order of 10 -8-10-9 cm2/s, two orders of magnitude lower than unprocessed Nafion.;Proton conductivity results obtained using AC impedance electrochemical spectroscopy was between 0.02 and 0.09 S/cm, very similar to the unprocessed Nafion. SCF processing with ethanol as co-solvent reduced the methanol permeability by two orders of magnitude, while the proton conductivity was only reduced by 4%. XRD analysis made to the treated samples exhibited a decreasing pattern in the crystallinity, which affects the transport properties of the membrane. Also, SAXS profiles of the Nafion membranes processed were obtained with the goal of determining changes produced by the SCF processing in the hydrophilic domains of the polymer.;With the goal of searching for new alternatives in proton exchange membranes (PEMs) triblock copolymer of poly(styrene-isobutylene-styrene) (SIBS) and poly(styrene-isobutylene-styrene) SEBS were studied. These sulfonated tri-block copolymers had lower methanol permeabilities, but also lower proton conductivity, even with blends of these and blends with Nafion membranes. Other alternative studied was the functionalization of the membranes SIBS with metallic cations, which decreased the methanol permeability in the membranes containing the cations Mg2+, Zn2+ and Al 3+, while the proton conductivity was maintained more or less constant. The permeation of methanol vapor was investigated and the behavior through the membranes studied followed a pattern of Fick's Law, while the pattern shown by the permeation in liquid phase was non-Fickian.
机译:通常,直接甲醇燃料电池(DMFC)中使用的NafionRTM膜受到高甲醇渗透性的限制(也称为交叉限制)。这些膜在全氟化主链中具有相分离的磺化离子域,这使工艺具有挑战性,并受到相平衡因素的限制。这项研究使用超临界流体(SCF)作为加工替代品,因为SCF的气体状传质特性使其能够更好地渗透到膜中,并且极性助溶剂的使用影响了它们的形貌,从而微调了物理和传输特性在膜上。甲醇渗透性和质子传导性的测量是在40°C和200 bar的SCF和共溶剂为丙酮,四氢呋喃(THF),异丙醇,HPLC级水,乙酸,环己酮的条件下对NafionRTM膜进行的。渗透率数据的结果约为10 -8-10-9 cm2 / s,比未处理的Nafion低两个数量级;使用交流阻抗电化学光谱法获得的质子电导率结果在0.02至0.09 S / cm之间,与未处理的Nafion非常相似。用乙醇作为助溶剂的SCF处理将甲醇渗透率降低了两个数量级,而质子传导率仅降低了4%。对处理过的样品进行的XRD分析显示出结晶度下降的模式,这会影响膜的传输性能。同样,获得Nafion膜的SAXS分布图是为了确定由SCF处理在聚合物的亲水性区域中产生的变化。目的是在质子交换膜(PEM)的三嵌段共聚物中寻找新的替代品。研究了(苯乙烯-异丁烯-苯乙烯)(SIBS)和聚(苯乙烯-异丁烯-苯乙烯)SEBS。这些磺化三嵌段共聚物具有较低的甲醇渗透性,但也具有较低的质子传导性,即使将它们与Nafion膜共混也是如此。其他研究的替代方法是用金属阳离子对SIBS膜进行功能化,这会降低含阳离子Mg2 +,Zn2 +和Al 3+的膜中甲醇的渗透性,而质子传导率则基本保持恒定。研究了甲醇蒸气的渗透,并且通过膜的行为遵循菲克定律的模式,而液相中渗透所显示的模式是非菲克定的。

著录项

  • 作者

    Pulido Ayazo.;

  • 作者单位

    University of Puerto Rico, Mayaguez (Puerto Rico).;

  • 授予单位 University of Puerto Rico, Mayaguez (Puerto Rico).;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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