Concurrent hydrogen (H2) production and phosphorus (P) recovery were investigated in dual chamber microbial electrolysis cells (MECs). The aim of the study was to explore and understand the influence of applied voltage and influent COD concentration on concurrent H2 production and P recovery in MEC. P was efficiently precipitated at the cathode chamber and the precipitated crystals were verified as struvite, using X-ray diffraction and scanning electron microscopy analysis. The maximum P precipitation efficiency achieved by the MEC was 95%, and the maximum H2 production rate was 0.28 m3-H2/m3-d. Response surface methodology showed that applied voltage had a great influence on H2 production and P recovery, while influent COD concentration ha...
Microbial electrolysis cells (MEC) invented on the basis of microbial fuel cells (MFC) provide a nov...
Majority of energy is derived from fossil fuels, which are non-sustainable resources that may exhaus...
The use of electrochemically active bacteria to break down organic matter, combined with the additio...
Concurrent hydrogen (H2) production and phosphorus (P) recovery were investigated in dual chamber mi...
Concurrent hydrogen (H2) production and phosphorus (P) recovery were investigated in dual chamber mi...
This study investigated the mechanism and key factors influencing concurrent phosphorus (P) recovery...
This study investigated the mechanism and key factors influencing concurrent phosphorus (P) recovery...
A cathode-on-top single-chamber microbial electrolysis cell (MEC) was constructed by putting the cat...
This study focused on the exploration, assessment and experimental investigation of bio-electrochem...
A sleeve-shape microbial electrolysis cell (MEC) was designed by making the anode surround the catho...
The organic matter consumption and hydrogen production rate were evaluated in a two-chamber microbia...
The concern about energy demand due to the limited fossil fuels resource and the continuous consumpt...
This study demonstrates, for the first time, the proof-of-principle of an MEC in which both the anod...
A sleeve-shape microbial electrolysis cell (MEC) was designed by making the anode surround the catho...
We investigated the use of a Microbial Electrolysis Cell (MEC) for the ammonium removal, COD removal...
Microbial electrolysis cells (MEC) invented on the basis of microbial fuel cells (MFC) provide a nov...
Majority of energy is derived from fossil fuels, which are non-sustainable resources that may exhaus...
The use of electrochemically active bacteria to break down organic matter, combined with the additio...
Concurrent hydrogen (H2) production and phosphorus (P) recovery were investigated in dual chamber mi...
Concurrent hydrogen (H2) production and phosphorus (P) recovery were investigated in dual chamber mi...
This study investigated the mechanism and key factors influencing concurrent phosphorus (P) recovery...
This study investigated the mechanism and key factors influencing concurrent phosphorus (P) recovery...
A cathode-on-top single-chamber microbial electrolysis cell (MEC) was constructed by putting the cat...
This study focused on the exploration, assessment and experimental investigation of bio-electrochem...
A sleeve-shape microbial electrolysis cell (MEC) was designed by making the anode surround the catho...
The organic matter consumption and hydrogen production rate were evaluated in a two-chamber microbia...
The concern about energy demand due to the limited fossil fuels resource and the continuous consumpt...
This study demonstrates, for the first time, the proof-of-principle of an MEC in which both the anod...
A sleeve-shape microbial electrolysis cell (MEC) was designed by making the anode surround the catho...
We investigated the use of a Microbial Electrolysis Cell (MEC) for the ammonium removal, COD removal...
Microbial electrolysis cells (MEC) invented on the basis of microbial fuel cells (MFC) provide a nov...
Majority of energy is derived from fossil fuels, which are non-sustainable resources that may exhaus...
The use of electrochemically active bacteria to break down organic matter, combined with the additio...