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Characterization of a new composite membrane for point of need paper-based micro-scale microbial fuel cell analytical devices

机译:新复合膜的表征在需要纸纸微型微级微生物燃料电池分析装置的表征

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Microbial fuel cells (MFCs) can evolve in a viable technology if environmentally sound materials are developed and became available at low cost for these devices. This is especially important not only for the designing of large wastewater treatment systems, but also for the fabrication of low-cost, single-use devices. In this work we synthesized membranes by a simple procedure involving easily-biodegradable and economic materials such as poly (vinyl alcohol) (PVA), chitosan (CS) and the composite PVA:CS. Membranes were chemical and physically characterized and compared to Nafion ? . Performance was studied using the membrane as separator in a typical H-Type MFCs showing that PVA:CS membrane outperform Nafion ? 4 times (power production) while being 75 times more economic. We found that performance in MFC depends over interactions among several membrane characteristics such as oxygen permeability and ion conductivity. Moreover, we design a paper-based micro-scale MFC, which was used as a toxicity assay using 16 μL samples containing formaldehyde as a model toxicant. The PVA:CS membrane presented here can offer low environmental impact and become a very interesting option for point of need single-use analytical devices, especially in low-income countries where burning is used as disposal method, and toxic fluoride fumes (from Nafion ? ) can be released to the environment.
机译:微生物燃料电池(MFC)可以在可行的技术中在可行的技术中发展,并且对于这些设备以低成本而变得可用。这对于设计大型污水处理系统的设计尤其重要,而且尤其重要,也很重要,也是为了制造低成本,单用装置。在这项工作中,通过一种简单的程序合成膜,涉及易生物降解的和经济材料,如聚(乙烯醇)(PVA),壳聚糖(Cs)和复合PVA:Cs。膜是化学品和物理性的,与Nafion相比? 。在典型的H型MFC中使用膜作为分离器研究了性能,显示PVA:CS膜优于Nafion? 4次(电力生产),虽然经济更高75倍。我们发现MFC中的性能取决于几个膜特性的相互作用,例如透氧性和离子传导性。此外,我们设计了一种基于纸的微级MFC,其使用含有甲醛作为模型毒物的16μl样品用作毒性测定。 PVA:此处呈现的CS膜可以提供低的环境影响,并成为需要的单一使用分析设备的点的非常有趣的选择,特别是在燃烧的低收入国家,以及毒性氟化物烟雾(来自Nafion? )可以释放到环境中。

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