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静电纺丝制备肾形多孔 H-PPAN/rGO--PAO@Ag/Ag 复合纳米纤维膜对多组分废水的高效净化。

Highly Efficient Purification of Multicomponent Wastewater by Electrospinning Kidney-Bean-Skin-like Porous H-PPAN/rGO--PAO@Ag/Ag Composite Nanofibrous Membranes.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes , Tianjin 300387 , China.

School of Materials Science and Engineering , Tianjin Polytechnic University , Tianjin 300387 , China.

出版信息

ACS Appl Mater Interfaces. 2019 Dec 18;11(50):46920-46929. doi: 10.1021/acsami.9b16889. Epub 2019 Dec 6.

Abstract

Due to the complexity of harmful wastewater components, environmental and multifunctional materials are required for sewage purification. In this paper, a novel kidney-bean-skin-like hydrophilic porous polyacrylonitrile/reduced graphene oxide--poly(amidoxime)-loaded Ag (H-PPAN/rGO--PAO@Ag/Ag) composite nanofiber membrane was fabricated by combining electrospinning and hydrolysis methods. The spinning solution was pumped at a rate of 0.4 mL/h with the voltage set at a constant value of 23 kV. Then, some of the -CN groups switched to hydrophilic -COOH groups via a hydrolysis method, which acts as a linker of GO--PAN, Ag, and the polyacrylonitrile (PAN) matrix. A further step of chelation and thermal treatment were used for generating Schottky junctions between rGO--PAO@Ag and Ag. After five-cycle tests, it exhibited outstanding mechanical properties ensuring the filtration and purification performance of the H-PPAN/rGO--PAO@Ag/Ag composite nanofiber membrane (i.e., the tensile strength was still 7.21 MPa, and the elongation was 61.53%) for simulated wastewater. The methods of thermal treatment and high-pressure Hg lamp irradiation promoted the reduction of GO to rGO and Ag to Ag particles, which endows the final product H-PPAN/rGO--PAO@Ag/Ag with excellent photocatalytic and bactericidal properties. Its catalytic efficiency for dyes benzoic acid (BA), Rhodamine B (RhB), methylene blue (MB), and methyl orange (MO) was up to 99.8, 98, 95, and 91%. The antibacterial rate was 100% against and 99% against . More importantly, the photocatalytic and antibacterial PAN-based nanofiber membrane can be simply scaled up, which provides the membrane with great potential in highly efficient wastewater treatment and augmenting water supply.

摘要

由于有害废水成分复杂,因此需要环境友好型多功能材料来进行污水净化。本文通过静电纺丝和水解方法制备了一种新型的肾豆皮状亲水多孔聚丙烯腈/还原氧化石墨烯-负载银的聚(偕胺肟)(H-PPAN/rGO-PAO@Ag/Ag)复合纳米纤维膜。纺丝溶液以 0.4 mL/h 的速度泵送,电压设定为 23 kV 的恒定值。然后,通过水解方法将部分 -CN 基团转化为亲水性 -COOH 基团,-COOH 基团作为 GO-PAN、Ag 和聚丙烯腈(PAN)基质的连接体。进一步的螯合和热处理步骤用于在 rGO-PAO@Ag/Ag 和 Ag 之间产生肖特基结。经过五次循环测试,该膜表现出优异的机械性能,确保了 H-PPAN/rGO-PAO@Ag/Ag 复合纳米纤维膜的过滤和净化性能(即拉伸强度仍为 7.21 MPa,伸长率为 61.53%),可用于模拟废水。热处理和高压汞灯照射的方法促进了 GO 还原为 rGO 和 Ag 还原为 Ag 颗粒,这使得最终产物 H-PPAN/rGO-PAO@Ag/Ag 具有优异的光催化和杀菌性能。其对染料苯甲酸(BA)、罗丹明 B(RhB)、亚甲基蓝(MB)和甲基橙(MO)的催化效率高达 99.8%、98%、95%和 91%。对 和 的抑菌率均为 100%。更重要的是,基于 PAN 的光催化和抗菌纳米纤维膜可以简单放大,这为该膜在高效废水处理和增加供水中提供了巨大的潜力。

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