Controlling membrane fouling: An electrocatalytic reactor with a TiO 2/C membrane that functions both as filter and anode was designed for industrial wastewater treatment. During wastewater treatment, the TiO 2/C membrane generates microflows that alleviate concentration polarization and reactive intermediates that decompose organic foulants on the membrane surface or in pores into CO2 and H2O or small biodegradable products (see picture). © 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
A nano-structured TiO2 membrane having desired pore structure has been prepared by the anodization t...
In recent years, the technical-scientific community has been paying increasing attention to the pres...
The emergence of non-biodegradable and persistent compounds in European surface waters calls for the...
Industrial wastewater has become a global issue due to its high concentration of pollutants, especia...
In this study, an externally hybrid membrane photocatalytic oxidation (MPCO) bubbling reactor system...
The control of membrane fouling is still the biggest challenge that membrane bioreactor (MBR) for wa...
Electro-catalytic membrane reactor exhibiting electro-oxidation degradation of organic pollutants on...
The application of semiconductor photocatalysis in treating wastewater has attracted growing interes...
The use of microbial fuel cells (MFCs) as a bioelectrochemical system (BES) for the treatment of tex...
Toxic organics, pharmaceuticals and antibiotics are currently only partially or not at all removed f...
An advanced concept of aerobic membrane bioreactors (MBRs) for highly efficient wastewater treatment...
Several emerging technologies for treatment or resource recovery from wastewater are based on the co...
In this work, an electrocatalytic membrane was prepared to degrade aqueous tetracycline (TC) using a...
Membrane filtration was coupled with heterogeneous Fenton-like catalytic oxidation to resolve the co...
Membrane bioreactor (MBR) technology is becoming increasingly popular as wastewater treatment due to...
A nano-structured TiO2 membrane having desired pore structure has been prepared by the anodization t...
In recent years, the technical-scientific community has been paying increasing attention to the pres...
The emergence of non-biodegradable and persistent compounds in European surface waters calls for the...
Industrial wastewater has become a global issue due to its high concentration of pollutants, especia...
In this study, an externally hybrid membrane photocatalytic oxidation (MPCO) bubbling reactor system...
The control of membrane fouling is still the biggest challenge that membrane bioreactor (MBR) for wa...
Electro-catalytic membrane reactor exhibiting electro-oxidation degradation of organic pollutants on...
The application of semiconductor photocatalysis in treating wastewater has attracted growing interes...
The use of microbial fuel cells (MFCs) as a bioelectrochemical system (BES) for the treatment of tex...
Toxic organics, pharmaceuticals and antibiotics are currently only partially or not at all removed f...
An advanced concept of aerobic membrane bioreactors (MBRs) for highly efficient wastewater treatment...
Several emerging technologies for treatment or resource recovery from wastewater are based on the co...
In this work, an electrocatalytic membrane was prepared to degrade aqueous tetracycline (TC) using a...
Membrane filtration was coupled with heterogeneous Fenton-like catalytic oxidation to resolve the co...
Membrane bioreactor (MBR) technology is becoming increasingly popular as wastewater treatment due to...
A nano-structured TiO2 membrane having desired pore structure has been prepared by the anodization t...
In recent years, the technical-scientific community has been paying increasing attention to the pres...
The emergence of non-biodegradable and persistent compounds in European surface waters calls for the...