Single-layer hydrophobic membranes are prone to fouling while subjected to a feed containing hydrophobic contaminants. In this study, using the green solvent Dimethyl sulfoxide (DMSO), dual-layer nanofibrous polyacrylonitrile (PAN)/styrene-acrylonitrile (SAN) membranes were fabricated using the highly productive electroblowing process. Then through a simple hot-pressing process, the desirable hydrophilicity was achieved for PAN/SAN membrane. The water contact angle (WCA) for the top layer fell from 112.2 +/- 1(circle) to 37.5 +/- 1(circle) after hot-pressing, while the WCA for the bottom layer decreased slightly from 147.1 +/- 1(circle) to 142.3 +/- 1(circle) .Moreover, an underwater oil contact angle (UOCA) of 158.1 +/- 1(circle) was achieved for the PAN/SAN membrane. Direct contact membrane distillation (DCMD) tests were performed for synthetic saline water and synthetic saline oily water. While the permeate flux dropped for the single-layer SAN membrane, the dual-layer PAN/SAN membrane, due to underwater superoleophobicity, achieved a stable permeate flux for 24 h with a nearly complete salt rejection (> 99.9 %). This study addresses the pore wetting and declines in the permeate flux of the membrane distillation (MD) application in the treatment of saline oily water by implementing scalable, cost-efficient, and eco-friendly approaches.

A scalable dual-layer PAN/SAN nanofibrous membrane for treatment of saline oily water using membrane distillation / Niknejad, Ali Sallakh; Kargari, Ali; Namdari, Mahsa; Pishnamazi, Mohammad; Barani, Masoud; Ranjbari, Esmaeil; Sallakhniknezhad, Reza; Bazgir, Saeed; Rasouli, Mohsen; Mcavoy, Drew. - In: DESALINATION. - ISSN 0011-9164. - 566:(2023). [10.1016/j.desal.2023.116895]

A scalable dual-layer PAN/SAN nanofibrous membrane for treatment of saline oily water using membrane distillation

Sallakhniknezhad, Reza;
2023

Abstract

Single-layer hydrophobic membranes are prone to fouling while subjected to a feed containing hydrophobic contaminants. In this study, using the green solvent Dimethyl sulfoxide (DMSO), dual-layer nanofibrous polyacrylonitrile (PAN)/styrene-acrylonitrile (SAN) membranes were fabricated using the highly productive electroblowing process. Then through a simple hot-pressing process, the desirable hydrophilicity was achieved for PAN/SAN membrane. The water contact angle (WCA) for the top layer fell from 112.2 +/- 1(circle) to 37.5 +/- 1(circle) after hot-pressing, while the WCA for the bottom layer decreased slightly from 147.1 +/- 1(circle) to 142.3 +/- 1(circle) .Moreover, an underwater oil contact angle (UOCA) of 158.1 +/- 1(circle) was achieved for the PAN/SAN membrane. Direct contact membrane distillation (DCMD) tests were performed for synthetic saline water and synthetic saline oily water. While the permeate flux dropped for the single-layer SAN membrane, the dual-layer PAN/SAN membrane, due to underwater superoleophobicity, achieved a stable permeate flux for 24 h with a nearly complete salt rejection (> 99.9 %). This study addresses the pore wetting and declines in the permeate flux of the membrane distillation (MD) application in the treatment of saline oily water by implementing scalable, cost-efficient, and eco-friendly approaches.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2994649