In water treatment, virus removal using ultrafiltration is a major step towards better water quality. In this paper, we study virus filtration efficiency using surrogate virus particles and via statistical surface-response approach. We focus on the effect of particle size (20-100 nm range) as a key factor along with the effects of transmembrane pressure (20-60 kPa range) and feed flowrate (0.3-1.0 L/min range) on the filtration virus removal efficiency (LRV). The particle size is shown to impart a great deal of influence on surrogate particle removal. The effect of particle-to-pore-size ratio is reported for comparison of membrane molecular weight cut off (MWCO) performance. It was shown experimentally and through the developed empirical re...
To overcome the severer droughts in recent climate change, direct potable water reuse has been in pr...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Background: Purification of virus particles for vaccines and viral vectors for gene therapy is a maj...
Products of human and animal origin (biologicals and pharmaceuticals) and drinking water pose unique...
To overcome the severer droughts in recent climate change, direct potable water reuse has been in pr...
International audienceRemoval of pathogenic microorganisms as viruses during drinking water producti...
International audienceRemoval of pathogenic microorganisms as viruses during drinking water producti...
Large scale purification of viruses and viral vectors for gene therapy applications and viral vaccin...
Concentration and retention of a rod-shaped virus during tangential flow ultrafiltration (UF) was as...
Concentration and retention of a rod-shaped virus during tangential flow ultrafiltration (UF) was as...
Microorganisms are retained by ultrafiltration (UF) membranes mainly due to size exclusion. The size...
Ultrafiltration membranes are increasingly used in potabilization to remove viral particles. This re...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Here, we evaluated the efficacy of direct microfiltration (MF) and ultrafiltration (UF) to remove th...
To overcome the severer droughts in recent climate change, direct potable water reuse has been in pr...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Background: Purification of virus particles for vaccines and viral vectors for gene therapy is a maj...
Products of human and animal origin (biologicals and pharmaceuticals) and drinking water pose unique...
To overcome the severer droughts in recent climate change, direct potable water reuse has been in pr...
International audienceRemoval of pathogenic microorganisms as viruses during drinking water producti...
International audienceRemoval of pathogenic microorganisms as viruses during drinking water producti...
Large scale purification of viruses and viral vectors for gene therapy applications and viral vaccin...
Concentration and retention of a rod-shaped virus during tangential flow ultrafiltration (UF) was as...
Concentration and retention of a rod-shaped virus during tangential flow ultrafiltration (UF) was as...
Microorganisms are retained by ultrafiltration (UF) membranes mainly due to size exclusion. The size...
Ultrafiltration membranes are increasingly used in potabilization to remove viral particles. This re...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Here, we evaluated the efficacy of direct microfiltration (MF) and ultrafiltration (UF) to remove th...
To overcome the severer droughts in recent climate change, direct potable water reuse has been in pr...
Pore-size distribution (PSD) is the most critical parameter for size-exclusion virus removal filters...
Background: Purification of virus particles for vaccines and viral vectors for gene therapy is a maj...