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三维硼砂结构碳纳米管海绵耦合 AgPO 超声可见光辐射下四环素降解。

3D Bombax-structured carbon nanotube sponge coupling with AgPO for tetracycline degradation under ultrasound and visible light irradiation.

机构信息

Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education/Institute for Advanced Ocean Study, Ocean University of China, Qingdao 266100, China.

Petroleum Engineering College, China University of Petroleum (East China), Qingdao, Shandong, China.

出版信息

Sci Total Environ. 2019 Dec 10;695:133694. doi: 10.1016/j.scitotenv.2019.133694. Epub 2019 Jul 31.

Abstract

A novel photocatalytic carbon nanotube sponge with three-dimensional Bombax-structure was fabricated by a facile chemical vapor deposition followed by in situ ion-exchange approach. The as-prepared sponge achieved both high-efficiency adsorption and photocatalysis towards antibiotics, which can remove up to 90% of tetracycline within an hour. The morphology and mechanism of the photocatalytic CNT sponge were explored by multiple measures. Results show the functional groups and high specific surface area of CNT sponge play vital roles in preparing this Bombax-structured AgPO/CNT sponge, the band gap of which can be tuned by varying the ration between AgPO and CNT. The photodegradation experiments of tetracycline with the assistance of ultrasound irradiation were performed, AgPO/CNT sponge exhibits preferable photocatalytic activity, which can be attributed to both the enhancement of specific surface area of AgPO and the cavitation effect on CNT surface. The efficiency contributed by ultrasound could account for more than half of the degradation efficiency when the ultrasound power was 100 W. The improvement in transfer efficiency and the delay in charge recombination of AgPO/CNT sponge were further verified by Electrochemical impedance spectra (EIS) and Photoluminescence tests (PL). Reactive free-radical species were detected by the Electron Spin Resonance (ESR). The intermediates and possible pathway were analyzed by gas chromatography-mass spectrometer (GC-MS) technique.

摘要

一种新型的具有三维 Bombax 结构的光催化碳纳米管海绵,通过简便的化学气相沉积法结合原位离子交换法制备而成。所制备的海绵对抗生素具有高效的吸附和光催化性能,可在一小时内去除高达 90%的四环素。通过多种手段对光催化 CNT 海绵的形态和机理进行了探讨。结果表明,CNT 海绵的官能团和高比表面积在制备这种具有 Bombax 结构的 AgPO/CNT 海绵中起着至关重要的作用,其带隙可以通过改变 AgPO 和 CNT 的比例来调节。在超声辐射的辅助下进行了四环素的光降解实验,AgPO/CNT 海绵表现出较好的光催化活性,这归因于 AgPO 的比表面积的提高和 CNT 表面的空化效应。当超声功率为 100 W 时,超声的效率可以占到降解效率的一半以上。通过电化学阻抗谱(EIS)和光致发光测试(PL)进一步验证了 AgPO/CNT 海绵的转移效率的提高和电荷复合的延迟。通过电子顺磁共振(ESR)检测到了活性自由基。通过气相色谱-质谱联用(GC-MS)技术分析了中间产物和可能的途径。

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