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Effect of the scaling-up the reactions synthesis of the poly(styrene-co-acrylic acid) polyelectrolyte at laboratory level

机译:缩放对实验室水平聚(苯乙烯 - 共丙烯酸)聚电解液的反应合成的影响

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Sulfonated styrene-acrylic acid copolymers have been used as an alternative polyelectrolyte membrane for applications in fuel cells. In this work, the raw copolymer has been prepared by a well studied solution copolymerization reaction method, but at two different capacity reactor conditions: 100 mL and 3 L. The main idea was to scale up the copolymer production for having enough material for future sulfonation reactions. The reaction conditions consisted of styrene/acrylic acid in a 94/6 % mol, BPO as radical initiator in a 0.045 % mol, divinyl benzene (DVB) as crosslinking agent at 0.25 %mol and the solvent diethyl benzene (DEB) in a 50/50 volume ratio with monomers. Temperature was kept at 90 °C and the system stirred at 200 rpm during 2 hours, for both reactors. Molecular weight of copolymers was obtained by means of GPC, glass transition (Tg) by DSC and decomposition temperature (Td) through TGA analysis.
机译:磺化苯乙烯 - 丙烯酸共聚物已被用作替代聚电解质膜,用于燃料电池中的应用。在这项工作中,通过良好研究的溶液共聚反应方法制备了原料共聚物,但在两种不同的容量反应器条件下:100ml和3升。主要思想是扩大用于未来磺化材料的共聚物生产反应。反应条件由94/6%摩尔,BPO中的苯乙烯/丙烯酸,作为0.045℃,二乙烯基苯(DVB)的自由基引发剂,作为0.25×%摩尔和溶剂二乙基苯(DEB)的交联剂。以50/50体积比单体。温度在90℃下保持,并且在2小时内以200rpm搅拌2小时,对于两个反应器。通过DSC和分解温度(TD)通过TGA分析通过GPC,玻璃转变(TG)获得共聚物的分子量。

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