Bristol BioEnergy Centre, Bristol Robotics Laboratory, T-Block, Frenchay Campus, University of the West of England (UWE), Bristol BS16 1QY, United Kingdom.
Bioelectrochemistry. 2020 Jun;133:107491. doi: 10.1016/j.bioelechem.2020.107491. Epub 2020 Feb 19.
The scalability of Microbial fuel cells (MFCs) is key to the development of stacks. A recent study has shown that self-stratifying membraneless MFCs (S-MFCs) could be scaled down to 2 cm without performance deterioration. However, the scaling-up limit of S-MFC is yet unknown. Here the study evaluates the scale-up height of S-MFCs treating urine, from 2 cm, 4 cm to 12 cm high electrodes. The electrochemical properties of the S-MFCs were investigated after steady-states were established, following a 70-days longevity study. The electrochemical properties of the 2 cm and 4 cm conditions were similar (5.45 ± 0.32 mW per cascade). Conversely, the 12 cm conditions had much lower power output (1.48 ± 0.15 mW). The biofilm on the 12 cm cathodes only developed on the upper 5-6 cm of the immersed part of the electrode suggesting that the cathodic reactions were the limiting factor. This hypothesis was confirmed by the cathode polarisations showing that the 12 cm S-MFC had low current density (1.64 ± 9.53 µA cm, at 0 mV) compared to the other two conditions taht had similar current densities (192.73 ± 20.35 µA cm, at 0 mV). These results indicate that S-MFC treating urine can only be scaled-up to an electrode height of around 5-6 cm before the performance is negatively affected.
微生物燃料电池 (MFC) 的可扩展性是堆栈发展的关键。最近的一项研究表明,无膜自分层微生物燃料电池 (S-MFC) 可以在不降低性能的情况下缩小到 2 cm。然而,S-MFC 的扩展极限尚不清楚。本研究评估了从 2 cm、4 cm 到 12 cm 高电极处理尿液的 S-MFC 的扩展高度。在建立稳定状态后,对 S-MFC 的电化学性质进行了研究,这是一项为期 70 天的耐久性研究。2 cm 和 4 cm 条件下的电化学性能相似(每级 5.45±0.32 mW)。相反,12 cm 条件下的功率输出要低得多(1.48±0.15 mW)。12 cm 阴极上的生物膜仅在电极浸入部分的上 5-6 cm 处发育,表明阴极反应是限制因素。这一假设通过阴极极化得到了证实,结果表明,与其他两种条件相比,12 cm S-MFC 的电流密度较低(1.64±9.53 µA cm,在 0 mV 时),而其他两种条件的电流密度相似(192.73±20.35 µA cm,在 0 mV 时)。这些结果表明,S-MFC 处理尿液的电极高度只能扩展到 5-6 cm 左右,否则性能会受到负面影响。