A novel three-dimensional porous carbon nanotube sponge (CNTS) with high electrical conductivity was prepared, characterized and investigated as the catalytic cathode for oxygen reduction and employed for an electro-Fenton process to degrade dimethyl phthalate (DMP) in aqueous solution. For comparison, the conventional electro-Fenton cathode, graphite gas diffusion electrode (GDE) and graphite electrode, was also tested. Experiments showed that the side reaction of H2 evolution was avoided and the H2O2 accumulation concentration arrived at the maximal value at CNTS cathode as the cathode potential was set at -0.5V (vs. SCE). The apparent rate constant for DMP degradation was 0.057min-1 at CNTS cathode, much higher than 0.005min-1 at graphit...
Catalyst-coated carbon electrodes require two preparation stages: electrode assembly using carbon an...
There is great interest in electrochemical water splitting for the efficient utilization of sustaina...
One of the bottlenecks often encountered in electro-Fenton technology is its low ability to produce ...
Nowadays, advanced electrochemical oxidation processes are promising methods for the treatment of wa...
Carbon-coated nickel foam (C@NF) electrodes are prepared via a simple and effective method, hydrothe...
Bio-electro-Fenton microbial fuel cells generate energy through the decomposition of organic matter ...
The electro-Fenton system has the ability to degrade wastewater and has received attention from many...
Herein, a carbon felt (CF) cathode modified by the acidic oxidized carbon nanotubes (OCNTs) exhibite...
A new cathodic material for electro-Fenton (EF) process was prepared based on a macroscopic fiber (C...
In the present investigation, graphite felt (GF) activated by KOH at high temperature is adopted as ...
International audienceThe highest total organic carbon (TOC) and color removal efficiency of Acid Or...
The increasing awareness of water pollution with organic compounds, such as dyes, and their long te...
Electro-Fenton (EF) represents an eco-friendly and cost-effective advanced oxidation process that ca...
In this study, we proposed a new concept of utilizing the biological electrons produced from a micro...
Degradation of diclofenac (DCF)from aqueous solution was investigated by the heterogeneous electro-F...
Catalyst-coated carbon electrodes require two preparation stages: electrode assembly using carbon an...
There is great interest in electrochemical water splitting for the efficient utilization of sustaina...
One of the bottlenecks often encountered in electro-Fenton technology is its low ability to produce ...
Nowadays, advanced electrochemical oxidation processes are promising methods for the treatment of wa...
Carbon-coated nickel foam (C@NF) electrodes are prepared via a simple and effective method, hydrothe...
Bio-electro-Fenton microbial fuel cells generate energy through the decomposition of organic matter ...
The electro-Fenton system has the ability to degrade wastewater and has received attention from many...
Herein, a carbon felt (CF) cathode modified by the acidic oxidized carbon nanotubes (OCNTs) exhibite...
A new cathodic material for electro-Fenton (EF) process was prepared based on a macroscopic fiber (C...
In the present investigation, graphite felt (GF) activated by KOH at high temperature is adopted as ...
International audienceThe highest total organic carbon (TOC) and color removal efficiency of Acid Or...
The increasing awareness of water pollution with organic compounds, such as dyes, and their long te...
Electro-Fenton (EF) represents an eco-friendly and cost-effective advanced oxidation process that ca...
In this study, we proposed a new concept of utilizing the biological electrons produced from a micro...
Degradation of diclofenac (DCF)from aqueous solution was investigated by the heterogeneous electro-F...
Catalyst-coated carbon electrodes require two preparation stages: electrode assembly using carbon an...
There is great interest in electrochemical water splitting for the efficient utilization of sustaina...
One of the bottlenecks often encountered in electro-Fenton technology is its low ability to produce ...