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Stability of Ionic-Covalently Cross-Linked PBI-Blended Membranes for so_2 electrolysis at Elevated Temperatures

机译:在升高温度下离子共价交联的PBI混纺膜的稳定性

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In this study, the effect of component composition on the chemical stability of the developed ionic-covalently cross-linked PBI-blended membrane concept from earlier studies for application in SO_2 electrolysis at elevated temperatures (>100°C) is further investigated. Three different acid-base ratios were studied by blending a partially fluorinated sulfonated arylene main-chain polymer (SFS) with polybenzimidazole (F_6PBI) and a partially or non-fluorinated bromo-methylated polymer (BrPAE). In addition two different alkylated imidazoles (EMIm and TMIm) were included as quaternization agents. Accordingly, twelve different PBI-blended membranes were used in this study. The suitability of these membranes for SO_2 electrolysis at elevated temperatures was determined in terms of i) the H_2SO_4 stability (80 wt% H_2SO_4 at 100°C for 120 hours), (ii) the oxidative stability (Fenton's test, FT) and (iii) the organic solvent stability (extraction in N,N-Dimethylacetamide). Membranes were characterized in terms of the percentage weight, the ion exchange capacity (IEC) and the thermal stability (TGA-FTIR) changes, before and after the various treatments. Although all blended membrane types were sufficiently stable during H_2SO_4 treatment, proton conductivity measurements indicated that the blends containing only partially fluorinated blend components displayed superior stability (better compatibility) as well as conductivity. Cell voltages showed an improvement of up to 190 mV for operations at 120°C compared to earlier studies conducted at 80°C for similar PBI-blended membranes. It was established that both chemically stable and conductive PBI-blended membranes, suitable for SO_2 electrolysis above 100°C, could be obtained by varying the composition of selected polymer components.
机译:在该研究中,进一步研究了组分组合物对升高的温度(> 100℃)的早期研究中发育离子共价交联的PBI混合膜构建膜概念的化学稳定性的影响。通过将部分氟化的磺化亚甲烷主链聚合物(SFS)与聚苯并咪唑(F_6PBI)和部分或非氟化的溴 - 甲基化聚合物(BRPAE)混合来研究三种不同的酸碱比例。此外,还包括两个不同的烷基化咪唑(emim和Tmim)作为季铵化剂。因此,本研究使用12种不同的PBI混合膜。这些膜在升高的温度下为SO_2电解的适用性在I)H_2SO_4稳定性(在100℃下为120小时的80wt%H_2SO_4,(ii)氧化稳定性(FENTON的测试,FT)和(III )有机溶剂稳定性(在N,N-二甲基乙酰胺中提取)。在各种处理之前和之后的重量百分比重量,离子交换能力(IEC)和热稳定性(TGA-FTIR)的变化而表征膜。尽管在H_2SO_4处理期间,所有混合膜类型足够稳定,但质子电导率测量表明,仅含有部分氟化的共混物组分的共混物显示出优异的稳定性(更好的相容性)以及电导率。与在80℃的早期研究相比,电池电压显示出在120℃下的操作,在80℃下进行的60℃,对于类似的PBI混合膜。建立了化学稳定和导电的PBI混合膜,适用于高于100℃的SO_2电解,可以通过改变选定的聚合物组分的组成来获得。

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