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Sustainable Hypersaline Microbial Fuel Cells: Inexpensive Recyclable Polymer Supports for Carbon Nanotube Conductive Paint Anodes

机译:可持续的哌碱微生物燃料电池:廉价的可回收聚合物支撑碳纳米管导电涂料阳极

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摘要

Microbial fuel cells are an emerging technology for wastewater treatment, but to be commercially viable and sustainable, the electrode materials must be inexpensive, recyclable, and reliable. In this study, recyclable polymeric supports were explored for the development of anode electrodes to be applied in single-chamber microbial fuel cells operated in field under hypersaline conditions. The support was covered with a carbon nanotube (CNT) based conductive paint, and biofilms were able to colonize the electrodes. The single-chamber microbial fuel cells with Pt-free cathodes delivered a reproducible power output after 15days of operation to achieve 12 +/- 1mWm(-2) at a current density of 69 +/- 7mAm(-2). The decrease of the performance in long-term experiments was mostly related to inorganic precipitates on the cathode electrode and did not affect the performance of the anode, as shown by experiments in which the cathode was replaced and the fuel cell performance was regenerated. The results of these studies show the feasibility of polymeric supports coated with CNT-based paint for microbial fuel cell applications.
机译:微生物燃料电池是一种用于废水处理的新兴技术,但在商业上可行和可持续,电极材料必须廉价,可回收和可靠。在该研究中,探索了可回收的聚合物支撑件用于在阳极条件下在现场操作的单室微生物燃料电池中施加阳极电极。用基于碳纳米管(CNT)的导电涂料覆盖载体,并且生物膜能够定植电极。单室微生物燃料电池,具有PT的阴极,在15天的操作之后提供可再现的功率输出,以实现12 +/- 1MWm(-2),其电流密度为69 +/- 7mam(-2)。长期实验中性能的降低大多数与阴极电极上的无机沉淀物相关,并且不影响阳极的性能,如通过替换阴极的实验所示,再生燃料电池性能。这些研究的结果表明,用于微生物燃料电池应用的CNT基涂料的聚合物支撑件的可行性。

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