首页> 外文期刊>International journal of hydrogen energy >Application of graft-type poly(ether ether ketone)-based polymer electrolyte membranes to electrochemical devices - Fuel cells and electrolytic enrichment of tritium
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Application of graft-type poly(ether ether ketone)-based polymer electrolyte membranes to electrochemical devices - Fuel cells and electrolytic enrichment of tritium

机译:接枝型聚醚醚酮基聚合物电解质膜在电化学装置中的应用燃料电池和electrolytic的电解富集

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The polymer electrolyte membrane consisting of poly(styrenesulfonic acid)-grafted polytether ether ketone) (PEEK-PEM) was investigated for application to two electrochemical devices; a fuel cell and electrolytic enrichment of tritium. For fuel cells, high temperature operation has been required from the viewpoints of simplification of cooling systems, heat recovery systems and so forth, and durability is one critical issue affecting practical use. We performed a long term durability test for PEEK-PEM (ion exchange capacity = 2.4 mmol/ g, conductivity = 0.15 S/cm) under the condition of 110 degrees C and 50% relative humidity, and achieved a lifetime of 1500 h at a constant current of 0.3 A/cm(2). The cell voltage maintained 97% of initial voltage after 1300 h of operation. There have been only a few reports that PEMs exhibit longer lifetime than 1000 h at temperatures above 100 degrees C. For quantitative evaluation of tritium concentration in low-level tritiated water such as environmental water, the tritium enrichment by a solid polymer electrolysis (SPE) method is required prior to the tritium concentration measurements. The SPE device composed of PEEK-PEMs with IECs of 0.9-1.2 mmol/g showed a tritium enrichment ratio of 1.35 at 30 degrees C, which is 20% higher than that of Nation. Higher tritium enrichment ratios in PEEK-PEM are explained by the smaller amount of transported water. The water transport coefficient in PEEK-PEM is similar to 1, which is a half value of Nation. In addition, the water transport coefficient of PEEK-PEM shows less temperature dependence, at least, up to 60 degrees C. These features have advantages in electrolytic enrichment of tritium for practical use. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:研究了由聚(苯乙烯磺酸)接枝的聚醚醚酮(PEEK-PEM)组成的聚合物电解质膜在两种电化学装置中的应用。燃料电池和electrolytic的电解浓缩。对于燃料电池,从简化冷却系统,热回收系统等的观点出发,需要高温操作,并且耐久性是影响实际使用的关键问题之一。我们在110摄氏度和50%相对湿度的条件下对PEEK-PEM进行了长期耐用性测试(离子交换容量= 2.4 mmol / g,电导率= 0.15 S / cm),并在250℃的条件下达到了1500 h的使用寿命。恒定电流为0.3 A / cm(2)。在运行1300小时后,电池电压保持初始电压的97%。仅有少数报道称PEM在高于100摄氏度的温度下具有超过1000小时的寿命。为定量评估低浓度tri化水(例如环境水中)中的concentration浓度,可通过固态聚合物电解(SPE)富集tri在测量concentration浓度之前需要使用该方法。由PEEK-PEM组成的SPE装置,IEC值为0.9-1.2 mmol / g,在30摄氏度下的1.富集比为1.35,比国家高20%。 PEEK-PEM中较高的tri富集率是因为输送的水量较少。 PEEK-PEM中的水传输系数类似于1,是Nation的一半。此外,PEEK-PEM的水传输系数显示出较小的温度依赖性,至少达到60摄氏度。这些特征在实际使用中的electrolytic的电解富集方面具有优势。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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