In-Situ Modification of Nanofiltration Membranes Using Carbon Nanotubes for Water Treatment

Membranes (Basel). 2023 Jun 21;13(7):616. doi: 10.3390/membranes13070616.

Abstract

Modification of thin-film composite (TFC) nanofiltration (NF) membranes to increase permeability and improve separation performance remains a significant challenge for water scarcity. This study aimed to enhance the permeability and selectivity of two commercial polyamide (PA) NF membranes, NF90 and NF270, by modifying them with carbon nanotubes (CNTs) using microwave (MW)-assisted in-situ growth. The conducting polymer, polypyrrole (Ppy), and a ferrocene catalyst were used to facilitate the growth process. Chemical and morphological analyses confirmed that the surface of both membranes was modified. The NF270-Ppy-CNT membrane was selected for ion rejection testing due to its superior permeability compared to the NF90-Ppy-CNT. The modified NF270 membrane showed a 14% increase in ion rejection while maintaining constant water permeability. The results demonstrated that it is feasible to attach CNTs to a polymeric surface without compromising its functional properties. The Spliegler-Kedem model was employed to model the rejection and permeate flux of NF270-Ppy-CNT and NF270 membranes, which indicated that diffusive transport contributes to the modification to increase NaCl rejection. The present study provides a promising approach for modifying membranes by in-situ CNT growth to improve their performance in water treatment applications, such as desalination.

Keywords: Spielger-Kedem model; carbon nanotubes; membrane filtration; nanofiltration (NF) modification; poptube.

Grants and funding

This research was funded by project FONDEF (ID18I10070); National Agency for Research and Development of Chile (ANID) by scholarships ANID-PCHA/National Doctorate 2018—21181057, ANID-PFCHA/National Doctorate 2018—21180569), and ANID FONDECYT Posdoctorado 2022—3220371; FONDEQUIP Project No EQM150139; Project VRID No 2021-000-005P; project Grant No 1190469.