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Scalability of self-stratifying microbial fuel cell: Towards height miniaturisation

机译:自分层微生物燃料电池的可扩展性:朝着高度小型化的方向发展

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摘要

The scalability of bioelectrochemical systems is a key parameter for their practical implementation in the real-world. Up until now, only urine-fed self-stratifying microbial fuel cells (SSM-MFCs) have been shown to be scalable in width and length with limited power density losses. For practical reasons, the present work focuses on the scalability of SSM-MFCs in the one dimension that has not yet been investigated, namely height. Three different height conditions were considered (1 cm, 2 cm and 3 cm tall electrodes). The normalised power density of the 2 cm and 3 cm conditions were similar either during the durability test under a hydraulic retention time of ≈39 h (i.e. 15.74 ± 0.99 μW.cm−3) and during the polarisation experiments (i.e. 27.79 ± 0.92 μW.cm−3). Conversely, the 1 cm condition had lower power densities of 11.23 ± 0.07 μW.cm−3 and 17.73 ± 3.94 μW.cm−3 both during the durability test and the polarisation experiment, respectively. These results confirm that SSM-MFCs can be scaled in all 3 dimensions with minimal power density losses, with a minimum height threshold for the electrode comprised between 1 cm and 2 cm.
机译:生物电化学系统的可扩展性是其在现实世界中实际实施的关键参数。到目前为止,只有尿液喂养的自分层微生物燃料电池(SSM-MFC)在宽度和长度上具有可扩展性,并且功率密度损失有限。出于实际原因,当前工作集中在尚未研究的一个维度(即高度)中,SSM-MFC的可伸缩性。考虑了三种不同的高度条件(1 cm,2 cm和3 cm高的电极)。在≈39h的水力停留时间下的耐久性测试期间(即15.74±0.99 W.cm −3 )和极化期间,2 cm和3 cm条件下的归一化功率密度相似实验(即27.79±0.92μW.cm -3 )。相反,在耐久性测试和极化过程中,1 cm条件的功率密度较低,分别为11.23±0.07 W.cm −3 和17.73±3.94 W.cm −3 分别进行实验。这些结果证实,SSM-MFCs可以在所有3个维度上按比例缩放,而功率密度损失最小,电极的最小高度阈值在1 cm和2 cm之间。

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