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Investigation of patterned and non-patterned poly(26-dimethyl 14-phenylene) oxide based anion exchange membranes for enhanced desalination and power generation in a microbial desalination cell

机译:图案化和非图案化聚(26-二甲基14-亚苯基)氧化物基阴离子交换膜在微生物脱盐池中增强脱盐和发电的研究

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摘要

Quaternary ammonium poly(2,6-dimethyl 1,4-phenylene oxide) (QAPPO) anion exchange membranes (AEMs) with topographically patterned surfaces were assessed in a microbial desalination cell (MDC) system. The MDC results with these QAPPO AEMs were benchmarked against a commercially available AEM. The MDC with the non-patterned QAPPO AEM (Q1) displayed the best desalination rate (a reduction of salinity by 53 ± 2.7%) and power generation (189 ± 5 mW m− 2) when compared against the commercially available AEM and the patterned AEMs. The enhanced performance with the Q1 AEM was attributed to its higher ionic conductivity and smaller thickness leading to a reduced area specific resistance. It is important to note that Real Pacific Ocean seawater and activated sludge were used into the desalination chamber and anode chamber respectively for the MDC – which mimicked realistic conditions. Although the non-patterned QAPPO AEM displayed better performance over the patterned QAPPO AEMs, it was observed that the anodic overpotential was smaller when the MDCs featured QAPPO AEMs with larger lateral feature sizes. The results from this study have important implications for the continuous improvements necessary for developing cheaper and better performing membranes in order to optimize the MDC.
机译:在微生物脱盐池(MDC)系统中评估了具有地形图案化表面的季铵化聚(2,6-二甲基1,4-亚苯基氧)(QAPPO)阴离子交换膜(AEM)。这些QAPPO AEM的MDC结果以市售AEM为基准。与非模式QAPPO AEM(Q1)相比,MDC显示出最佳的脱盐率(盐度降低53±2.7%)和发电量(189±5 mW m −2 )市售AEM和带图案的AEM。 Q1 AEM的性能增强归因于其较高的离子电导率和较小的厚度,从而导致面积比电阻减小。重要的是要注意,MDC分别在海水淡化室和阳极室中使用了真实的太平洋海水和活性污泥,它们模仿了实际情况。尽管未构图的QAPPO AEM的性能优于构图的QAPPO AEM,但可以观察到,当MDC具有横向特征尺寸较大的QAPPO AEM时,阳极过电势较小。这项研究的结果对于开发更便宜,性能更好的膜以优化MDC所必需的持续改进具有重要意义。

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