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A method based on impedance spectroscopy for predicting the behavior of novel ionic liquid-polymer inclusion membranes in microbial fuel cells

机译:基于阻抗谱的预测微生物燃料电池中新型离子液体-聚合物夹杂物膜行为的方法

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MFCs (microbial fuel cells) are an emerging technology for simultaneous treatment of wastewater and energy recovery. These devices exploit microbial metabolism to generate electricity from organic matter. The separator is a critical factor in the design of MFCs as it plays a crucial role in the transport of protons from the anode to the cathode, affecting the performance of the cell. It is thus of interest to develop a method to predict the behavior of a separator before being used in MFCs. The present work proposes a new method based on spectroscopy to calculate the internal resistance of several PIMs (polymer inclusion membranes) based on ILs (ionic liquids) and predict their behavior as novel proton exchange membranes in MFCs. Four types of PIMs based on three different groups of ionic liquids were prepared and electrochemically characterized: Methyltrioctyl ammonium chloride, [OMIM+][Cl-], 1-methyl-3-octylimidazolium hexafluorophosphate, [OMIM][PF6-](]), Tri-butylmethylphosphonium methylsulphate, [P-4,P-4,P-4,P-1+1]MeSO4-], and Triisobutyl-(methyl)-phosphonium tosylate, [P-I4,I4,I4,1(+)][TOS-], some of whichwere patented by our research group to be used as separator in MFCs (P201330453). Finally, the PIMs were evaluated in MFCs for energy production and wastewater treatment and compared with Naflon (R) 117. The results show that the [P-I4,P-I4,P-I4,P-11[TOS-]-based membrane outperformed the rest of separators in terms of power output. (C) 2015 Elsevier Ltd. All rights reserved.
机译:MFC(微生物燃料电池)是同时处理废水和回收能源的新兴技术。这些设备利用微生物的新陈代谢从有机物中产生电能。隔板是MFC设计中的关键因素,因为它在质子从阳极到阴极的传输中起着至关重要的作用,从而影响电池的性能。因此,令人感兴趣的是开发一种在MFC中使用之前预测隔板行为的方法。本工作提出了一种基于光谱的新方法,可以计算基于ILs(离子液体)的几种PIM(聚合物包裹膜)的内阻,并预测它们在MFC中作为新型质子交换膜的行为。基于三种不同类型的离子液体,制备了四种类型的PIM,并进行了电化学表征:甲基三辛基氯化铵,[OMIM +] [Cl-],1-甲基-3-辛基咪唑六氟磷酸盐,[OMIM] [PF6-](]),甲基硫酸三丁基甲基phosph [P-4,P-4,P-4,P-1 + 1] MeSO4-]和甲苯磺酸三异丁基-(甲基)-,[P-I4,I4,I4,1(+ )] [TOS-],我们的研究小组已将其中的一些专利申请用作MFC中的分隔器(P201330453)。最后,在MFC中对PIM进行了能源生产和废水处理评估,并与Naflon(R)117进行了比较。结果表明,基于[P-I4,P-I4,P-I4,P-11 [TOS-]膜在功率输出方面优于其他分离器。 (C)2015 Elsevier Ltd.保留所有权利。

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