Enhancement of mass and charge transport in scaled-up microbial fuel cell by using innovative configuration of bioanode

被引:6
|
作者
Thung, W. -E. [1 ,3 ]
Ong, S. -A. [1 ,2 ]
Ho, L. -N. [2 ]
Wong, Y. -S. [1 ]
Ridwan, F. [1 ]
Oon, Y. -L. [1 ]
Oon, Y. -S. [1 ]
Lehl, H. K. [1 ]
机构
[1] Univ Malaysia Perlis, Sch Environm Engn, Water Res Grp WAREG, Arau 02600, Perlis, Malaysia
[2] Univ Malaysia Perlis, Sch Mat Engn, Arau 02600, Perlis, Malaysia
[3] UCSI Univ, Fac Engn Technol & Built Environm, Kuala Lumpur 56000, Malaysia
关键词
Anode configuration; Directional fluid flow; Mass transfer; Membrane-less; MFC; Up-flow; WASTE-WATER TREATMENT; ELECTRICITY-GENERATION; AIR-CATHODE; BIOELECTRICITY GENERATION; MEMBRANE; BIOREACTOR; REMOVAL; FLOW; TECHNOLOGIES; SYSTEM;
D O I
10.1007/s13762-019-02390-8
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The effectiveness of electron and proton transport to anode and cathode is the key criteria in microbial fuel cell technology in order to improve the electricity generation. An innovative linked anode was designed to enhance the mass transfer of protons and electrons in the scaled-up up-flow membrane-less microbial fuel cell. The common cube anode was used to compare with the linked anode. The performance of voltage output for the cube anode and the linked anode was examined by various hydraulic retention times and the electrode spacing distances. The maximum power density of the linked anode was almost identical at all electrode spacing distances. Meanwhile, this result demonstrated that the configuration of linked anode has better directional fluid flow, mass transfer of protons and electrons, and voltage output (stationary phase) than those of the cube anode at all hydraulic retention times. The finding could suggest that the different configuration of bioanode in an up-flow membrane-less microbial fuel cell is an important factor to be considered for future real application.
引用
收藏
页码:8175 / 8184
页数:10
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