Introduction
Membrane-based Sustainable Separation Solutions Laboratory (MS3L) develops membrane-based technologies for energy-efficient ion and liquid separations in sustainable chemical processes, circular resource systems, and energy applications.
Our research integrates separation science, process design, and membrane engineering to build practical low-energy solutions for chemically demanding liquid systems.
Research Priorities
- Sustainable biorefinery and product recovery
- Circular plastic and solvent systems
- Resource recovery from complex liquid streams
- Membrane-enabled energy and electrochemical separations
From membrane science to process impact
MS3L connects molecular-scale membrane design to scalable process performance in chemically demanding liquid systems.
Molecular selectivity
Designing membranes and interfaces for challenging ion and organic-liquid separations.
Process integration
Linking membrane performance to practical recovery, purification, and recycle schemes.
Circular systems
Applying separation science to biorefinery, recycling, and energy-related resource loops.
Scale-up relevance
Connecting lab-scale membrane insight to robust operating windows, modules, and deployable process conditions.