Membraneless water filtration using CO$_2$

ORAL

Abstract

Water purification technologies such as ultrafiltration and reverse osmosis utilize porous membranes to remove suspended particles and solutes. These membranes, however, cause many drawbacks such as a high pumping cost and a need for periodic replacement due to fouling. Here we show an alternative membraneless method for separating suspended particles by exposing the colloidal suspension to CO$_2$. Dissolution of CO$_2$ into the suspension creates solute gradients that drive phoretic motion of particles, or so-called diffusiophoresis. Due to the large diffusion potential built up by the dissociation of carbonic acid, colloidal particles move either away from or towards the gas-liquid interface depending on their surface charge. Our findings suggest a means to separate particles without membranes or filters, thus reducing operating and maintenance costs. Using the directed motion of particles induced by exposure to CO$_2$, we demonstrate a scalable, continuous flow, membraneless particle filtration process that exhibits very low pressure drop and is essentially free from fouling.

Authors

  • Sangwoo Shin

    • Princeton University
    • Princeton Univ
  • Orest Shardt

    • Princeton University
  • Patrick Warren

    • Unilever R&D Port Sunlight
  • Howard Stone

    • Princeton University
    • Department of Mechanical and Aerospace Engineering, Princeton University, USA
    • Department of Mechanical and Aerospace Engineering, Princeton University
    • Princeton University, Department of Mechanical and Aerospace Engineering
    • Princeton Univ