Walter Xavier Alexis, Santoro Carlo, Greenman John, Ieropoulos Ioannis
Bristol BioEnergy Centre, Bristol Robotics Laboratory, T-Block, Frenchay Campus, University of the West of England (UWE), Bristol, BS16 1QY, United Kingdom.
Int J Hydrogen Energy. 2019 Feb 15;44(9):4524-4532. doi: 10.1016/j.ijhydene.2018.07.033.
Power generation of bioelectrochemical systems (BESs) is a very important electrochemical parameter to consider particularly when the output has to be harvested for practical applications. This work studies the effect of cathode immersion on the performance of a self-stratified membraneless microbial fuel cell (SSM-MFC) fuelled with human urine. Four different electrolyte immersion heights, i.e. , , and fully submerged were considered. The SSM-MFC performance improved with increased immersion up to . The output dropped drastically when the cathode was fully submerged with the conditions becoming fully anaerobic. SSM-MFC with submerged cathode had a maximum power output of 3.0 mW followed by 2.4 mW, 2.0 mW, and 0.2 mW for the , and fully submerged conditions. Durability tests were run on the best performing SSM-MFC with cathode immersed and showed an additional increase in the electrochemical output by 17% from 3.0 mW to 3.5 mW. The analysis performed on the anode and cathode separately demonstrated the stability in the cathode behaviour and in parallel an improvement in the anodic performance during one month of investigation.
生物电化学系统(BESs)的发电是一个非常重要的电化学参数,特别是当需要为实际应用收集输出电能时,尤其需要考虑。这项工作研究了阴极浸没对以人尿为燃料的自分层无膜微生物燃料电池(SSM-MFC)性能的影响。考虑了四种不同的电解质浸没高度,即 、 、 和完全浸没。随着浸没高度增加到 ,SSM-MFC的性能得到改善。当阴极完全浸没时,输出功率急剧下降,条件变为完全厌氧。阴极浸没 的SSM-MFC最大功率输出为3.0 mW,其次是阴极浸没 、 和完全浸没条件下的2.4 mW、2.0 mW和0.2 mW。对性能最佳的阴极浸没 的SSM-MFC进行了耐久性测试,结果表明电化学输出从3.0 mW额外增加了17%,达到3.5 mW。在为期一个月的研究中,分别对阳极和阴极进行的分析表明,阴极行为稳定,同时阳极性能有所改善。