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Development of Composite Membranes of PVA -TEOS doped KOH for Alkaline Membrane Fuel Cell

机译:PVA -TeoS掺杂KOH的复合膜的研制碱性膜燃料电池

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Anion exchange membranes (AEMs) play an important role in separating fuel and oxygen (or air) in the Alkaline Membrane Fuel Cells. Preparation of hybrid organic inorganic materials of Polyvinylalcohol (PVA) - Tetraethylorthosilicate (TEOS) composite membrane doped KOH for direct alcohol alkaline fuel cell application has been investigated. The sol-gel method has been used to prepare the composite membrane of PVA-TEOS through crosslinking step and catalyzed by concentrated of hydrochloric acid. The gel solution was cast on the membrane plastic plate to obtain membrane sheets. The dry membranes were then doped by immersing in various concentrations of KOH solutions for about 4 hours. Investigations of the cross-linking process and the presence of hydroxyl group were conducted by FTIR as shown for frequency at about 1600 cm~(-1) and 3300 cm~(-1) respectively. The degree of swelling in ethanol decreased as the KOH concentration for membrane soaking process increased. The ion exchange capacity (IEC) of the membrane was 0.25meq/g. This composite membranes display significant ionic conductivity of 3.23 x 10~(-2) S/cm in deionized water at room temperature. In addition, the morphology observation by scanning electron microscope (SEM) of the membrane indicates that soaking process of membrane in KOH increased thermal resistant.
机译:阴离子交换膜(AEMS)在将燃料和氧(或空气)分离在碱性膜燃料电池中的燃料和氧(或空气)发挥着重要作用。研究了聚氯乙醇(PVA) - 四乙酯硅酸盐(TEOS)复合膜掺杂KOH的杂化有机无机材料的制备已经研究过掺杂醇碱性燃料电池应用。溶胶 - 凝胶法已通过交联步骤制备PVA-TEOS的复合膜,并通过浓盐酸浓缩催化。将凝胶溶液浇铸在膜塑料板上以获得膜片。然后通过浸入各种浓度的KOH溶液中掺杂干膜约4小时。通过在约1600cm〜(-1)和3300cm〜(-1)的频率下所示,通过FTIR进行交联过程和羟基存在的研究。随着膜浸湿过程的koh浓度增加,乙醇中溶胀程度降低。膜的离子交换能力(IEC)为0.25meq / g。该复合膜在室温下在去离子水中显示出3.23×10〜(-2)S / cm的显着离子电导率。另外,膜的扫描电子显微镜(SEM)的形态观察表明,KOH中膜的浸泡过程增加了热阻。

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