In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by precipitating a weak polyelectrolyte from a concentrated aqueous solution using a pH switch. This has proven to be a versatile and more sustainable method compared to conventional approaches as it significantly reduces the use of organic solvents. Poly(styrene-alt-maleic acid) (PSaMA) is a polymer that has been extensively investigated for APS and has been the basis for both open and dense membranes with good performances. These membranes are chemically crosslinked and, in this work, we further investigated ultrafiltration (UF) and nanofiltration (NF) membranes prepared with PSaMA for their stability in various organic solvents and under differe...
The styrene-maleic acid (SMA) copolymer is rapidly gaining attention as a tool in membrane research,...
Membrane technology is a well-developed technology and membranes are used in a wide range of applica...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
pH shift induced Aqueous phase separation (APS) is a novel and more sustainable water-based approach...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous pha...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
The aqueous phase separation (APS) technique allows membrane fabrication without use of unsustainabl...
In recent work, Aqueous Phase Separation (APS) based on pH change induced polyelectrolyte complexati...
Long-term pH stability is critical for nanofiltration membranes in many applications, e.g. dairy and...
The styrene-maleic acid (SMA) copolymer is rapidly gaining attention as a tool in membrane research,...
Membrane technology is a well-developed technology and membranes are used in a wide range of applica...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
pH shift induced Aqueous phase separation (APS) is a novel and more sustainable water-based approach...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous pha...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
The aqueous phase separation (APS) technique allows membrane fabrication without use of unsustainabl...
In recent work, Aqueous Phase Separation (APS) based on pH change induced polyelectrolyte complexati...
Long-term pH stability is critical for nanofiltration membranes in many applications, e.g. dairy and...
The styrene-maleic acid (SMA) copolymer is rapidly gaining attention as a tool in membrane research,...
Membrane technology is a well-developed technology and membranes are used in a wide range of applica...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...