Back to Search Start Over

A novel wholly-Tröger's Base-based polyamide nanofiltration membrane constructed for the separation application in strong acidic condition via acid-induced segregation.

Authors :
Dong, Bei-Na
Gong, Liu-Yang
Xia, Li
Zhang, Nian
Liu, Li-Fen
Source :
Journal of Membrane Science. Feb2024, Vol. 693, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

In this study, a new kind of wholly-Tröger's base-based polyamide (w TB-PA) thin film composite (TFC) nanofiltration (NF) membrane was successfully fabricated for the separation application in strong acidic condition via the acid-induced segregation (AIS) effect. Firstly, the self-synthesized Tröger's base diamine monomer — 2,8-diamino-4,10-dimethyl-6H,12H-5,11-methanodibenzo [1,5]-diazocine (TBDA) was added in the polyethersulfone (PES) casting solution to prepare the TBDA-based PES substrate by synchronously coupling the non-solvent-induced phase transformation (NIPs) and AIS, and then the TBDA molecules on the PES substrate surface further reacted with trimesoyl chloride (TMC) via interfacial polymerization (IP) to obtain the w TB-PA TFC NF membranes. Meanwhile, the acid-induced segregation effect of on the microstructure and separation performance of the w TB-PA TFC NF membrane were systematically investigated. As compared with the conventional poly(piperazine amide) NF membrane (M PIP-TMC), the w TB-PA NF membranes exhibited thinner, smoother but more hydrophobic surface as well as lower isoelectric point, and especially showed much higher tolerance to 20 wt% H 2 SO 4 after soaking 63 days and favorable dye rejection (~99.9 %). Thereinto, the acid segregation agent of citric acid monohydrate (CA) endowed the w TB-PA TFC NF membrane with relatively optimal acid resistance and SO 4 2−/Cl− separation selectivity (about 11.8) than glacial acetic acid (AC), nitric acid (HNO 3) and hydrochloric acid (HCl). Moreover, this w TB-PA NF membrane based on CA-induced segregation had higher recovery of the cationic dye of crystal violet (CV) (>98.0 %) in acidic condition. Therefore, the w TB-PA TFC NF membranes have great potential for the separation application in the strong acidic condition in the future. A new kind of wholly-TB-based polyamide (wTB-PA) thin-film composite (TFC) nanofiltration (NF) membrane was fabricated with a self-synthesized TB-based diamine monomer TBDA by coupling the non-solvent-induced phase transformation (NIPs), acid-induced segregation (AIS) and interfacial polymerization (IP) processes. The resultant wTB-PA TFC NF membrane exhibited thinner and smoother surface, and especially showed much higher tolerance to 20 wt% H 2 SO 4 after soaking for 63 days and high recovery of the cationic dye of crystal violet (CV) (>98.0 %) in acidic condition. [Display omitted] • The new wholly-Tröger's base-based polyamide thin film composite nanofiltration membrane was fabricated successfully. • The acid-induced segregation was combined with NIPs and IP processes to fabricate the w TB-PA TFC NF membrane. • The w TB-PA TFC NF membrane exhibited much higher tolerance to 20 % H 2 SO 4 after soaking for 63 days. • The w TB-PA TFC NF membrane showed higher recovery rate of cationic dye of CV in acid condition. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03767388
Volume :
693
Database :
Academic Search Index
Journal :
Journal of Membrane Science
Publication Type :
Academic Journal
Accession number :
174796308
Full Text :
https://doi.org/10.1016/j.memsci.2023.122379