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Electrospun Nafion ? /Polyphenylsulfone Composite Membranes for Regenerative Hydrogen Bromine Fuel Cells

机译:电纺Nafion? /用于再生氢溴燃料电池的聚苯砜复合膜

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The regenerative H 2 /Br 2 -HBr fuel cell, utilizing an oxidant solution of Br 2 in aqueous HBr, shows a number of benefits for grid-scale electricity storage. The membrane-electrode assembly, a key component of a fuel cell, contains a proton-conducting membrane, typically based on the perfluorosulfonic acid (PFSA) ionomer. Unfortunately, the high cost of PFSA membranes and their relatively high bromine crossover are serious drawbacks. Nanofiber composite membranes can overcome these limitations. In this work, composite membranes were prepared from electrospun dual-fiber mats containing Nafion ? PFSA ionomer for facile proton transport and an uncharged polymer, polyphenylsulfone (PPSU), for mechanical reinforcement, and swelling control. After electrospinning, Nafion/PPSU mats were converted into composite membranes by softening the PPSU fibers, through exposure to chloroform vapor, thus filling the voids between ionomer nanofibers. It was demonstrated that the relative membrane selectivity, referenced to Nafion ? 115, increased with increasing PPSU content, e.g., a selectivity of 11 at 25 vol% of Nafion fibers. H 2 -Br 2 fuel cell power output with a 65 μm thick membrane containing 55 vol% Nafion fibers was somewhat better than that of a 150 μm Nafion ? 115 reference, but its cost advantage due to a four-fold decrease in PFSA content and a lower bromine species crossover make it an attractive candidate for use in H 2 /Br 2 -HBr systems.
机译:利用Br 2在HBr水溶液中的氧化剂溶液的可再生H 2 / Br 2 -HBr燃料电池对电网规模的储能显示出许多好处。膜电极组件是燃料电池的关键组件,包含质子传导膜,通常基于全氟磺酸(PFSA)离聚物。不幸的是,PFSA膜的高成本及其相对较高的溴交换是严重的缺点。纳米纤维复合膜可以克服这些限制。在这项工作中,复合薄膜是用含有Nafion®的电纺双纤维毡制成的。 PFSA离聚物用于质子传递,而不带电荷的聚合物聚苯砜(PPSU)用于机械增强和溶胀控制。静电纺丝后,通过暴露在氯仿蒸汽中使PPSU纤维软化,将Nafion / PPSU毡转变为复合膜,从而填充离聚物纳米纤维之间的空隙。已经证明,相对于Nafion的膜选择性。 115,随PPSU含量的增加而增加,例如,在25%(体积)的Nafion纤维上,选择性为11。具有包含55%(体积)Nafion纤维的65μm厚膜的H 2 -Br 2燃料电池的功率输出要比150μmNafion?的输出更好。参考文献115,但由于PFSA含量降低了四倍且溴种类的交叉降低而带来的成本优势,使其成为用于H 2 / Br 2 -HBr系统的有吸引力的候选者。

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