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Sulfonated polyether ether ketone (SPEEK)-based composite proton exchange membrane reinforced with nanoflbers for microbial electrolysis cells

机译:纳米纤维增强的磺化聚醚醚酮(SPEEK)基复合质子交换膜,用于微生物电解槽

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摘要

A nanofiber-reinforced composite proton exchange membrane (NFR-PEM), based on sulfonated polyether ether ketone (SPEEK) as a proton conductor, was prepared and studied for microbial electrolysis cells (MECs). The poor dimensional stability of conventional SPEEK membrane was overcome by embedding a polyimide nanofiber substrate in the centre of the polymer matrix, without sacrificing proton conductivity. This novel membrane showed lower gas and fuel crossovers, with higher proton conductivity, compared to a Nafion membrane. The installation of NFR-PEM into MECs improved hydrogen gas production at the cathode, with an overall hydrogen efficiency (e~ to hydrogen) of 86.4 ±14.7%, as compared to 77.2 ±10.3% of Nafion. In particular, higher proton selectivity of the NFR-PEM remarkably mitigated the anodic pH decrease harmful for anode bacteria, by facilitating selective proton transfer rather than other competing cations, which led to overall improved hydrogen gas yield in the MEC as the NFR-PEM was installed.
机译:制备了基于磺化聚醚醚酮(SPEEK)作为质子导体的纳米纤维增强复合质子交换膜(NFR-PEM),并对其进行了研究,以用于微生物电解池(MEC)。通过将聚酰亚胺纳米纤维基材嵌入聚合物基体的中心,而又不牺牲质子传导性,可以克服常规SPEEK膜尺寸稳定性差的问题。与Nafion膜相比,这种新颖的膜显示出较低的气体和燃料交叉,具有较高的质子传导性。将NFR-PEM安装到MEC中可改善阴极处的氢气产生,总氢气效率(对氢气)为86.4±14.7%,而Nafion为77.2±10.3%。尤其是,NFR-PEM的更高质子选择性通过促进选择性质子转移而不是其他竞争性阳离子,显着减轻了对pH降低对阳极细菌有害的阳极pH值,这导致了MEC中氢气产率的总体提高,因为NFR-PEM已安装。

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