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PMO 通过对苯二胺合成和功能化作为新型纳米填充剂用于 PES 纳滤膜基质中,用于有效处理废水中的有机染料、重金属和盐。

PMO synthesized and functionalized by p-phenylenediamine as new nanofiller in PES-nanofiltration membrane matrix for efficient treatment of organic dye, heavy metal, and salts from wastewater.

机构信息

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.

出版信息

Chemosphere. 2021 Jan;263:128088. doi: 10.1016/j.chemosphere.2020.128088. Epub 2020 Aug 24.

DOI:10.1016/j.chemosphere.2020.128088
PMID:33297086
Abstract

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%).

摘要

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。

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