Department of Environmental Science, Faculty of Environmental and Natural Resources, University of Birjand, Birjand, Iran.
Environmental Sciences Research Institute, Shahid Beheshti University, 1983969411, Tehran, Iran.
Chemosphere. 2021 Jan;263:128088. doi: 10.1016/j.chemosphere.2020.128088. Epub 2020 Aug 24.
Highly ordered periodic mesoporous organosilica (PMO) with large-pores (9.3 nm) synthesized using novel and cost-effective route. The synthesized PMO was then functionalized by p-phenylenediamine (PPD) and incorporated in polyethersulfone (PES) nanofiltration membrane with various dosage using phase inversion method. The prepared membranes were characterized with FT-IR/ATR, FE-SEM and EDX techniques. The overall porosity, the mean of pore radius, water contact angle, fouling, permeation, and rejection were computed. As a result, the hydrophilicity and the pure water flux of membranes were significantly enhanced after modification with PMO-PPD due to its high hydrophilic nature as nanofiller. Ultimately, the modified membrane with 0.25 wt% of PPD was found the ideal membrane with water contact angle of 54.2%, pure water flux of 33.7 L/m h, porosity of 74.1%, and mean pore radius of 4.96 nm. This membrane showed the maximum increase in water flux and superlative anti-fouling growth when compared to the other studied membranes. Moreover, among modified membranes with various quantity of PPD, the performance of the PES-PMO-PPD 0.25 wt% was the best for rejection of MO dye (96.7%), Pb(II) (93.1%), NaSO (73.0%), MgSO (41.6%), and NaCl (33.7%).
采用新颖且经济高效的路线合成具有大孔(9.3nm)的高度有序的周期性介孔有机硅(PMO)。然后通过对苯二胺(PPD)对合成的 PMO 进行功能化,并通过相转化法将其以各种剂量掺入聚醚砜(PES)纳滤膜中。使用 FT-IR/ATR、FE-SEM 和 EDX 技术对制备的膜进行了表征。计算了总孔隙率、平均孔径、水接触角、污染、渗透和截留。结果,由于纳米填料具有高亲水性,因此用 PMO-PPD 改性后,膜的亲水性和纯水通量得到了显著提高。最终,发现 0.25wt%PPD 改性膜的水接触角为 54.2%、纯水通量为 33.7L/m h、孔隙率为 74.1%、平均孔径为 4.96nm,是理想的膜。与其他研究的膜相比,该膜的水通量增加最大,抗污染性能最佳。此外,在具有不同数量 PPD 的改性膜中,PES-PMO-PPD 0.25wt%对 MO 染料(96.7%)、Pb(II)(93.1%)、NaSO(73.0%)、MgSO(41.6%)和 NaCl(33.7%)的截留性能最佳。