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Investigating the specific role of external load on the performance versus stability trade-off in microbial fuel cells

机译:研究外部负荷对微生物燃料电池中外部负荷对稳定性折衷的特定作用

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摘要

The performance and behavior of microbial fuel cells (MFCs) are influenced by among others the external load (R-ext). In this study, the anode-surface biofilm formation in MFCs operated under different R-ext selection/tracking-strategies was assessed. MFCs were characterized by electrochemical (voltage/current generation, polarization tests, EIS), molecular biological (microbial consortium analysis) and bioinformatics (principal component analysis) tools. The results indicated that the MFC with dynamic R-ext adjustment (as a function of the actual MFC internal resistance) achieved notably higher performance but relatively lower operational stability, mainly due to the acidification of the biofilm. The opposite (lower performance, increased stability) could be observed with the static (low or high) R-ext application (or OCV) strategies, where adaptive microbial processes were assumed. These possible adaptation phenomena were outlined by a theoretical framework and the significant impact of R-ext on the anode colonization process and energy recovery with MFCs was concluded.
机译:微生物燃料电池(MFC)的性能和行为受外部载荷(R-EXT)的影响。在该研究中,评估了在不同R-EXT选择/跟踪策略下操作的MFC中的阳极表面生物膜形成。通过电化学(电压/电流产生,偏振试验,EIS),分子生物学(微生物分析)和生物信息学(主要成分分析)工具的特征在于MFC。结果表明,具有动态R-EXT调节的MFC(作为实际MFC内部电阻的函数)实现了显着的性能,但操作稳定性相对较低,主要是由于生物膜的酸化。可以使用静态(低或高)R-EXT应用(或OCV)策略来观察到相反的(性能,增加的稳定性),其中假设自适应微生物过程。通过理论框架概述了这些可能的适应现象,结束了R-ext对阳极定植过程和MFC的能量回收的显着影响。

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