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用于高效催化氧化去除抗生素污染物的高柔性、介孔结构、金属 Cu 掺杂的 C/SiO 纳米纤维膜。

Highly flexible, mesoporous structured, and metallic Cu-doped C/SiO nanofibrous membranes for efficient catalytic oxidative elimination of antibiotic pollutants.

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Textiles, Donghua University, Shanghai 201620, China.

出版信息

Nanoscale. 2019 Aug 8;11(31):14844-14856. doi: 10.1039/c9nr04118d.

Abstract

The development of inorganic membranous catalysts with both large mesopores and superb flexibility is extremely favorable for the enhancement of their catalytic oxidation activity for the degradation of antibiotic pollutants in wastewater via sulfate radical-based advanced oxidation processes; however, there still exists a huge challenge for inorganic materials to simultaneously realize these two properties. Herein, metallic copper-doped carbon/silica nanofibrous membranes (Cu@C/SiO2 NFMs) with large mesopores, superb flexibility, and robust mechanical strength were fabricated through a sol-gel electrospinning and subsequent in situ carbonization reduction method. The synthesized Cu nanoparticles were homogeneously distributed throughout the mesoporous C/SiO2 nanofiber matrix, which enabled the resultant Cu@C/SiO2 NFMs to be applied as heterogeneous catalysts, and their catalytic performance was systematically assessed through activating persulfate for the elimination of tetracycline hydrochloride (TCH) in water. The fabricated Cu@C/SiO2 NFMs provided outstanding catalytic performance towards TCH with a high removal efficiency of 95% in 40 min and a rapid removal speed of 0.054 min-1. Moreover, the membranes could be facilely recycled through being directly separated from water without any post-processing. Such a facile strategy for preparing mesoporous and flexible metal-doped inorganic nanofibrous membranes may offer novel insights for designing new types of heterogeneous catalysts for antibiotic-containing wastewater treatment or other potential applications.

摘要

开发具有大介孔和优异柔韧性的无机膜催化剂对于提高其通过基于硫酸根自由基的高级氧化工艺对废水中抗生素污染物的催化氧化活性极为有利;然而,对于无机材料来说,同时实现这两个特性仍然存在巨大挑战。在此,通过溶胶-凝胶静电纺丝和随后的原位碳化还原方法制备了具有大介孔、优异柔韧性和强机械强度的金属铜掺杂碳/二氧化硅纳米纤维膜(Cu@C/SiO2 NFMs)。合成的 Cu 纳米颗粒均匀分布在介孔 C/SiO2 纳米纤维基质中,这使得所得的 Cu@C/SiO2 NFMs 可用作多相催化剂,并通过激活过硫酸盐来评估其在水中消除盐酸四环素(TCH)的催化性能。所制备的 Cu@C/SiO2 NFMs 对 TCH 表现出优异的催化性能,在 40 min 内去除效率高达 95%,去除速度快,为 0.054 min-1。此外,通过直接从水中分离出来,无需任何后处理,就可以轻松回收膜。这种制备介孔和柔性金属掺杂无机纳米纤维膜的简便策略可能为设计用于处理含抗生素废水或其他潜在应用的新型多相催化剂提供新的思路。

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