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Immobilization of Anodophilic Biofilms for Use in Aerotolerant Bioanodes of Microbial Fuel Cells

机译:固定化用于微生物燃料电池耐气生物阳极的厌氧生物膜。

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摘要

The anodophilic bacteria in the anodes of microbial fuel cells (MFCs) used to catalyze carbon oxidation are anaerobes and require anaerobic conditions; their bioelectrocatalytic activity will be greatly suppressed upon direct exposure to O-2. In this study, an aerotolerant bioanode was fabricated for the first time by immobilization of anodophilic bacteria for use in MFCs operating under aerobic conditions. The fabrication of the aerotolerant bioanode was realized through the electrochemically induced penetration and propagation of anodophilic bacteria in a three-dimensional hydrogel scaffold. Under the protection of the hydrogel scaffold, the anodophilic bacteria exhibited excellent bioelectrocatalytic activity under continuous O-2 aeration and delivered a current density comparable to that under anaerobic conditions. The MFC equipped with the aerotolerant bioanode has the potential to be applied to traditionally aerobic wastewater treatment (WWT) technology. This study offers new insight into the application of MFCs for WWT.
机译:用于催化碳氧化的微生物燃料电池(MFCs)阳极中的厌氧细菌是厌氧菌,需要厌氧条件。直接暴露于O-2会大大抑制其生物电催化活性。在这项研究中,首次通过固定厌氧细菌来制造好氧的生物阳极,以便在有氧条件下运行的MFC中使用。通过在三维水凝胶支架中通过电化学诱导的厌氧细菌的渗透和繁殖,实现了耐氧生物阳极的制备。在水凝胶支架的保护下,厌氧细菌在连续的O-2曝气下表现出出色的生物电催化活性,并提供了与厌氧条件下相当的电流密度。配备了耐氧生物阳极的MFC有潜力应用于传统的好氧废水处理(WWT)技术。这项研究为MFC在WWT中的应用提供了新的见识。

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