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Polyethylene-based radiation grafted anion-exchange membranes for alkaline fuel cells

机译:用于碱性燃料电池的聚乙烯基辐射接枝阴离子交换膜

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摘要

Vinyl benzyl chloride was grafted onto ultra-high molecular weight polyethylene powder (UHMWPE) by radiation grafting. The grafted powder was subsequently fabricated into membrane by melt pressing. The effect of absorbed radiation dose on the degree of grafting (DG) is discussed. The melt-flow properties of PVBC grafted PE with low degree of grafting was conducive to forming homogeneous pore-free membranes, which was confirmed by scanning electron microscopic analysis. The grafted polytheylene membranes were post functionalized with trimethylamine, followed by alkalization to obtain anion-exchange membranes (AEMs). The structures of the resulting AEMs were characterized by Fourier transform infrared spectroscopy, which showed that the grafted membranes were successfully functionalized. The properties of the AEMs, including ion exchange capacity, water uptake, in-plane swelling, methanol uptake, methanol permeability, and hydroxide ion conductivity were investigated. The AEMs showed reasonably good chemical stability, as evidenced by the ion exchange capacity being maintained for a ong duration, even in highly alkaline conditions. The membranes exhibited a maximum ionic conductivity of 47.5 mS cm(-1) at 90 degrees Celsius (30 mS cm(-1) at 60 degrees Celsius). Methanol permeability was found to be in the order of 10(-8) cm(sq) s(-1), which is considerably lower than that of Nafion (registered). The membranes have useful properties consistent with anion exchange membranese suitable for alkaline fuel cells.
机译:通过辐射接枝将乙烯基苄基氯接枝到超高分子量聚乙烯粉末(UHMWPE)上。随后通过熔融压制将接枝的粉末制成膜。讨论了吸收辐射剂量对接枝度(DG)的影响。低接枝度的PVBC接枝PE的熔体流动特性有利于形成均匀的无孔膜,这通过扫描电子显微镜分析得到了证实。将接枝的聚乙烯膜用三甲胺后官能化,然后碱化以获得阴离子交换膜(AEM)。所得AEM的结构通过傅里叶变换红外光谱表征,表明接枝的膜已成功地功能化。研究了AEM的特性,包括离子交换容量,吸水率,面内溶胀,甲醇吸收,甲醇渗透性和氢氧根离子电导率。 AEMs表现出相当好的化学稳定性,即使在高碱性条件下,离子交换能力也能保持很长一段时间,这一点证明了这一点。膜在90摄氏度下显示最大离子电导率为47.5 mS cm(-1)(在60摄氏度下显示为30 mS cm(-1))。发现甲醇的渗透率约为10(-8)cm(sq)s(-1),远低于Nafion(已注册)的甲醇渗透率。该膜具有与适用于碱性燃料电池的阴离子交换膜酶一致的有用性质。

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