Chemical and Environmental Bioprocess Engineering Group, Natural Resources Institute (IRENA), Universidad de León, Avda. de Portugal 41, Leon, 24009, Spain.
Department of Electrical Engineering and Automatic Systems, Universidad de León, Campus de Vegazana s/n, 24071, León, Spain.
Sci Rep. 2017 Oct 23;7(1):13726. doi: 10.1038/s41598-017-14200-7.
This study seeks to assess the impact that the anodic electrodeposition of graphene oxide (GO) has on the start-up process and on the development of microbial communities on the anode of BESs. The GO electrodeposited electrodes were characterised in abiotic conditions to verify the extent of the modification and were then transferred to a bioelectrochemical reactor. Results showed that the modified electrode allowed for a reduced start-up time compared to the control electrode. After three months, high throughput sequencing was performed, revealing that electrochemically reduced graphene oxide acts as a selective agent toward exoelectrogenic bacteria as Geobacter. Overall, this study shows that GO modified electrodes enhance biofilm build up in BES.
本研究旨在评估阳极氧化石墨烯(GO)的电沉积对 BES 阳极微生物群落的启动过程和发展的影响。对非生物条件下电沉积的 GO 电极进行了特征描述,以验证修饰的程度,然后将其转移到生物电化学反应器中。结果表明,与对照电极相比,修饰电极允许启动时间更短。三个月后,进行高通量测序,结果表明电化学还原氧化石墨烯(rGO)对 Geobacter 等外生菌具有选择性作用。总的来说,这项研究表明 GO 修饰电极增强了 BES 中的生物膜形成。