A three-dimensional (3D) anode is essential for high-performance microbial fuel cells (MFCs). In this study, 3D porous carbon monoliths from a wax gourd (WGCM) were obtained by freeze-drying and carbonization. Nano-TiO2 was further coated onto the surface of WGCM to obtain a nano-TiO2/WGCM anode. The WGCM anode enhanced the maximum power density of MFCs by 167.9% compared with the carbon felt anode, while nano-TiO2/WGCM anode additionally increased the value by 45.8% to achieve 1396.2 mW/m2. WGCM enhancement was due to the 3D porous structure, the good conductivity and the surface hydrophilicity, which enhanced electroactive biofilm formation and anodic electron transfer. In addition, nano-TiO2 modification enhanced the enrichment of Acinet...
Microbial fuel cell (MFC) is a prospective technology that allows oxidizing organic and inorganic ma...
Microbial fuel cell (MFC) is of great interest as a promising green energy source to harvest electri...
ABSTRACT Microbial fuel cells (MFCs) harness the metabolism of microorganisms, converting chemical e...
As the carrier of electroactive bacteria and part of the electron migration path, the anode is a res...
Anode design is highly significant for microbial fuel cells, since it simultaneously serves as the s...
Finite resources of the world's fossil fuel give rise to the irresistible urge to explore alternativ...
The poor wettability and high cost of the carbonaceous electrodes materials prohibited the practical...
Microbial fuel cells (MFCs) are a promising technology to recover electrical energy from different t...
The modification of anode materials is important to enhance the power generation of MFCs (microbial ...
We investigated the effects of the heat-treatment atmosphere on the current generation of Ti electro...
There is a global need for sustainable and clean technologies that can actively contribute to reach ...
Microbial fuel cells (MFCs) are a promising clean energy source to directly convert waste chemicals ...
<p>Anode materials and structures are of critical importance for microbial fuel cells (MFCs) recover...
This research focuses on developing novel nanostructured anode materials and engineered bacterial st...
A fast and convenient bacterial immobilization method was proposed as an attempt to improve the anod...
Microbial fuel cell (MFC) is a prospective technology that allows oxidizing organic and inorganic ma...
Microbial fuel cell (MFC) is of great interest as a promising green energy source to harvest electri...
ABSTRACT Microbial fuel cells (MFCs) harness the metabolism of microorganisms, converting chemical e...
As the carrier of electroactive bacteria and part of the electron migration path, the anode is a res...
Anode design is highly significant for microbial fuel cells, since it simultaneously serves as the s...
Finite resources of the world's fossil fuel give rise to the irresistible urge to explore alternativ...
The poor wettability and high cost of the carbonaceous electrodes materials prohibited the practical...
Microbial fuel cells (MFCs) are a promising technology to recover electrical energy from different t...
The modification of anode materials is important to enhance the power generation of MFCs (microbial ...
We investigated the effects of the heat-treatment atmosphere on the current generation of Ti electro...
There is a global need for sustainable and clean technologies that can actively contribute to reach ...
Microbial fuel cells (MFCs) are a promising clean energy source to directly convert waste chemicals ...
<p>Anode materials and structures are of critical importance for microbial fuel cells (MFCs) recover...
This research focuses on developing novel nanostructured anode materials and engineered bacterial st...
A fast and convenient bacterial immobilization method was proposed as an attempt to improve the anod...
Microbial fuel cell (MFC) is a prospective technology that allows oxidizing organic and inorganic ma...
Microbial fuel cell (MFC) is of great interest as a promising green energy source to harvest electri...
ABSTRACT Microbial fuel cells (MFCs) harness the metabolism of microorganisms, converting chemical e...