bioRxiv · 10.1101/351890
High-performance biodegradable membrane for point of need paper-based micro-scale microbial fuel cell analytical devices
Abstract
One limiting aspect to make microbial fuel cells (MFCs) a viable technology is to obtain low cost and environmentally sound materials for their components. In this work we synthesized membranes by a simple procedure involving low price and biodegradable materials such as poly (vinyl alcohol) (PVA), chitosan (CS) and PVA:CS, all cross-linked with sulfuric acid; they were compared to Nafion(R), as our reference/control membrane. PVA:CS show lower oxygen permeability in comparison to Nafion(R) membranes, a strong advantage in order to maintain anaerobic conditions in the anodic compartment of MFCs. Membranes were characterized in typical H-Type MFCs, and results show that PVA:CS membranes outperform Nafion(R) 4 times (power production) while being 75 times more economic. Moreover, we design a paper-based micro-scale MFC, which was assayed as a toxicity biosensor; we obtained results in less than 20 min using 16 L volume samples containing formaldehyde as a model toxicant. The PVA:CS membrane presented here can offer low environmental impact (materials, fabrication and disposal) and become a very interesting option for point of need single use disposable analytical devices.
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Gonzalez-Pabon, M. J., Figueredo, F., Martinez-Casillas, D. C., Corton, E.. 2018-06-20. High-performance biodegradable membrane for point of need paper-based micro-scale microbial fuel cell analytical devices. https://doi.org/10.1101/351890
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