Fabrication of Electro Spun Nylon6.12/Chitosan @PES Nanofibrous UF Membrane Towards Dyes Rejection From Synthetic Wastewater

Author:

Taha Eman Omar1ORCID,Mubarak Mahmoud F.2,Selim Hanaa3,Elshypany Rania3

Affiliation:

1. EPRI: Egyptian Petroleum Research Institute

2. Department of Analysis and Evaluation, Egyptian Petroleum Research Institute, Cairo, Nasr city P.B. 11727, Egypt.

3. Department of Petroleum Applications, Egyptian Petroleum Research Institute, Cairo, Nasr city P.B. 11727, Egypt.

Abstract

Abstract Nanofibrous ultrafilter of nylon6.12/chitosan@Poly ether sulfone (N6.12/CS@PES) membrane were fabricated by chitosan casted PES membrane and coated with nylon6.12 thin layer using electrospinning technique for dye rejection. The membranes were characterized by scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FT-IR), and X-ray diffraction (XRD). Both of cationic and anionic dye rejection capability of the membrane was investigated for basic blue dye41 and alizarin red dye, respectively, as dyes were investigated with respect to solution parameters (pH, Zeta potential, pressure, dye concentration and different electrolyte) through filtration system. In addition, the effect of parameters and their possible interactions on dye rejection have been studied. An enhanced hydrophilicity and antifouling property was observed for the composite membrane as compared to pristine PES ultrafiltration membranes. The results show that the rejection of dyes increase with the decreases of operating pressure. At optimum condition of PH=7, and pressure=10 bar and concentration=220 mg/L, the rejection ratio improves from 75.3 to 99.5% and 71 to 82% for basic blue dye41 and alizarin red dye, respectively. Dye rejection are not changed after 7 cycles and not change separation efficiency of dyes. The mechanical and electrical properties were investigated for PES and N6.12 / CS@PES composite membrane. The results showed that the N6.12 / CS@PES composite membrane exhibited the highest mechanical properties and the highest dielectric constant especially at low frequencies with low dielectric loss. This study demonstrated that the developed nanofibrous composite membrane were successfully characterized and proved to be a good rejection for dyes from aqueous solutions.

Publisher

Research Square Platform LLC

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