基于 TiO2 催化剂的浮动光催化球提高海水中四环素光降解性能及其机理

IF 6.7 2区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Environmental Technology & Innovation Pub Date : 2024-07-11 DOI:10.1016/j.eti.2024.103742
Renhua Zheng , Diwen Jia , Haiqin Yang , ZhiYuan Chen , Jiayi Chen , Jingle Chen , Haichang Guo , Cheng Hu , Huali Chen , Ting Wang
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引用次数: 0

摘要

为实现对海水中低浓度抗生素污染物的有效去除,本研究制备了以掺镱二氧化钛负载还原型氧化石墨烯(掺镱TiO2/RGO)为活性催化组分的浮动光催化球体,并对其在模拟海水中降解四环素(TC)进行了测试。通过吸附层纳米反应器合成法制备的掺镱 TiO2/RGO 粉末催化剂采用了三种溶热还原工艺来促进 TiO2 结晶,同时实现了活性组分中 GO 载体的表面改性。掺杂镱和溶热处理过程中的还原反应将 TiO2 中的少量 Ti4+ 离子转化为 Ti3+,并引入了低含量的晶格氧空位,从而扩展了掺镱 TiO2/RGO 的可见光响应区域。在弱可见光激发下,三种掺镱 TiO2/RGO 样品及其相应的聚氨酯(PU)海绵填充光催化球体能有效降解模拟海水中的 TC,其中粉末活性组分的降解率最高,达 92%(5 小时内),光催化浮球的降解率最高,达 81%(15 小时内)。以乙醇和乙二醇为溶剂进行热处理后,掺镱 TiO2/RGO 粉末活性组分的亲水基团显著减少,有效提高了其在海水中的 TC 吸附性能。本研究提出的环保型聚氨酯海绵填充光催化球在有效去除海水中的有机污染物方面具有广阔的应用前景。
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Performance enhancement and mechanism of tetracycline photodegradation in seawater by TiO2-based catalyst-loaded floating photocatalytic spheres

To achieve the effective removal of low-concentration antibiotic pollutants present in seawater, floating photocatalytic spheres loaded with ytterbium-doped titania-loaded reduced graphene oxide (Yb-doped TiO2/RGO) as active catalytic components were prepared and tested for the degradation of tetracycline (TC) in simulated seawater. Three solvothermal reduction processes were employed to promote TiO2 crystallization in the Yb-doped TiO2/RGO powder catalyst prepared via adsorption-layer nanoreactor synthesis, while simultaneously achieving the surface modification of the GO carrier in the active component. Doping with Yb and reduction reaction during solvothermal treatment converted a small amount of Ti4+ ions in TiO2 into Ti3+ and introduced a low content of lattice oxygen vacancies, which extended the visible light response region of Yb-doped TiO2/RGO. Under weak visible light excitation, the three Yb-doped TiO2/RGO samples and their corresponding polyurethane (PU) sponge-filled photocatalytic spheres could effectively degrade TC in simulated seawater, with the highest degradation rates of 92 % (within 5 h) for the powder active component and 81 % (within 15 h) for the photocatalytic floating spheres. Use of ethanol and ethylene glycol as solvents led to the significant reduction in the hydrophilic groups of the Yb-doped TiO2/RGO powder active component after heat treatment, effectively enhancing their TC adsorption performance in seawater. The eco-friendly PU sponge-filled photocatalytic spheres presented in this study exhibit a promising potential for effective removal of organic pollutants from seawater.

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来源期刊
Environmental Technology & Innovation
Environmental Technology & Innovation Environmental Science-General Environmental Science
CiteScore
14.00
自引率
4.20%
发文量
435
审稿时长
74 days
期刊介绍: Environmental Technology & Innovation adopts a challenge-oriented approach to solutions by integrating natural sciences to promote a sustainable future. The journal aims to foster the creation and development of innovative products, technologies, and ideas that enhance the environment, with impacts across soil, air, water, and food in rural and urban areas. As a platform for disseminating scientific evidence for environmental protection and sustainable development, the journal emphasizes fundamental science, methodologies, tools, techniques, and policy considerations. It emphasizes the importance of science and technology in environmental benefits, including smarter, cleaner technologies for environmental protection, more efficient resource processing methods, and the evidence supporting their effectiveness.
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