Gajda Iwona, Greenman John, Ieropoulos Ioannis
Bristol BioEnergy Centre, Bristol Robotics Laboratory, University of the West of England, Bristol BS16 1QY, UK.
Department of Applied Sciences, University of the West of England, Bristol BS16 1QY, UK.
Appl Energy. 2020 Mar 15;262:114475. doi: 10.1016/j.apenergy.2019.114475.
The chemical energy contained in urine can be efficiently extracted into direct electricity by Microbial Fuel Cell stacks to reach usable power levels for practical implementation and a decentralised power source in remote locations. Herein, a novel type of the anode electrode was developed using powdered activated carbon (PAC) applied onto the carbon fibre scaffold in the ceramic MFC stack to achieve superior electrochemical performance during 500 days of operation. The stack equipped with modified anodes (MF-CV) produced up to 37.9 mW (21.1 W m) in comparison to the control (CV) that reached 21.4 mW (11.9 W m) showing 77% increase in power production. The novel combination of highly porous activated carbon particles applied onto the conductive network of carbon fibres promoted simultaneously electrocatalytic activity and increased surface area, resulting in excellent power output from the MFC stack as well as higher treatment rate. Considering the low cost and simplicity of the material preparation, as well as the outstanding electrochemical activity during long term operation, the resulting modification provides a promising anode electrocatalyst for high-performance MFC stacks to enhance urine and waste treatment for the purpose of future scale-up and technology implementation as an applied off-grid energy source.
尿液中所含的化学能可通过微生物燃料电池堆有效地转化为直流电,以达到实际应用所需的可用功率水平,并成为偏远地区的分散式电源。在此,开发了一种新型阳极电极,该电极采用粉末活性炭(PAC)涂覆在陶瓷微生物燃料电池堆中的碳纤维支架上,以便在500天的运行过程中实现卓越的电化学性能。配备改性阳极的电池堆(MF-CV)产生的功率高达37.9毫瓦(21.1瓦/平方米),相比之下,对照组(CV)产生的功率为21.4毫瓦(11.9瓦/平方米),功率输出提高了77%。将高度多孔的活性炭颗粒与碳纤维的导电网络相结合,同时促进了电催化活性并增加了表面积,从而使微生物燃料电池堆产生出色的功率输出以及更高的处理速率。考虑到材料制备成本低且工艺简单,以及长期运行过程中出色的电化学活性,由此产生的改性为高性能微生物燃料电池堆提供了一种很有前景的阳极电催化剂,可用于增强尿液和废物处理,以便未来扩大规模并作为应用离网能源实施该技术。