International audienceThe aim of the present study is to confirm the extent to which smooth membrane surface (A2) improves antifouling characteristics compared with rough membrane surface (A1) during microfiltration. In the study, two membranes have similar physicochemical characteristics, except surface roughness (difference of 107.206 nm). The membranes with a rough surface (A1) and with a smooth surface (A2), respectively, were prepared by phase inversion under similar preparation conditions in order to obtain similar physicochemical properties such as material, average pore size, pore size distribution (PSD) and water contact angle values, for accurate and reliable comparisons of antifouling property. Based on the results, it was eviden...
Reduction in water transport (flux) due to fouling is one of the largest costs associated with membr...
The hydrophilic/hydrophobic properties of the membrane material have an important influence on the m...
Atomic force microscopy (AFM) has a wide range of applications and is rapidly growing in research an...
Determination of the surface roughness by AFM is crucial to the study of particle fouling in nanofil...
International audienceOne of the critical issues in the successful development of the ultrafiltratio...
The control of surface roughness of polyvinylidene fluoride (PVDF), polyethersulfone (PES), polysulf...
Membrane-based separation processes are very susceptible to flux decline because of concentration po...
Recent studies have shown that membrane surface morphology and structure influence permeability, rej...
Membrane surface roughness alters the surface area accessible to foulants and may influence macrosco...
Recent studies have shown that membrane surface morphology and structure influence permeability, rej...
The hydrophilicity of polyetherimide-polyvinylpyrrolidone (PEI-PVP) microfiltration membranes can be...
Fouling characteristics of various thin film composite polyamide reverse osmosis (RO) and nanofiltra...
We aimed to investigate the relationship between membrane material and the development of membrane f...
In this work, several ultrafiltration (UF) membranes with enhanced antifouling properties were fabri...
Conventional membranes are used in membrane emulsification to generate highly uniform droplets over ...
Reduction in water transport (flux) due to fouling is one of the largest costs associated with membr...
The hydrophilic/hydrophobic properties of the membrane material have an important influence on the m...
Atomic force microscopy (AFM) has a wide range of applications and is rapidly growing in research an...
Determination of the surface roughness by AFM is crucial to the study of particle fouling in nanofil...
International audienceOne of the critical issues in the successful development of the ultrafiltratio...
The control of surface roughness of polyvinylidene fluoride (PVDF), polyethersulfone (PES), polysulf...
Membrane-based separation processes are very susceptible to flux decline because of concentration po...
Recent studies have shown that membrane surface morphology and structure influence permeability, rej...
Membrane surface roughness alters the surface area accessible to foulants and may influence macrosco...
Recent studies have shown that membrane surface morphology and structure influence permeability, rej...
The hydrophilicity of polyetherimide-polyvinylpyrrolidone (PEI-PVP) microfiltration membranes can be...
Fouling characteristics of various thin film composite polyamide reverse osmosis (RO) and nanofiltra...
We aimed to investigate the relationship between membrane material and the development of membrane f...
In this work, several ultrafiltration (UF) membranes with enhanced antifouling properties were fabri...
Conventional membranes are used in membrane emulsification to generate highly uniform droplets over ...
Reduction in water transport (flux) due to fouling is one of the largest costs associated with membr...
The hydrophilic/hydrophobic properties of the membrane material have an important influence on the m...
Atomic force microscopy (AFM) has a wide range of applications and is rapidly growing in research an...