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盐酸四环素在磁性碳包覆氧化钴纳米粒子上的强吸附作用。

Strong adsorption of tetracycline hydrochloride on magnetic carbon-coated cobalt oxide nanoparticles.

机构信息

College of Materials and Energy, South China Agricultural University, Guangzhou, 510643, China.

Analytical and Testing Center, South China University of Technology, Guangzhou, 510640, PR China.

出版信息

Chemosphere. 2020 Jan;239:124831. doi: 10.1016/j.chemosphere.2019.124831. Epub 2019 Sep 10.

Abstract

The overuse of antibiotics, including tetracycline hydrochloride (TC), seriously threatens human health and ecosystems. In this work, magnetic carbon-coated cobalt oxide nanoparticles (CoO@C) were prepared by one-step annealing method and used as an adsorbent for efficient removal of TC from aqueous solution. The characteristic of the materials was studied by SEM, TEM, and XRD, revealing CoO nanoparticles (≤10 nm) were coated by carbon layer. Several influencial parameters, such as annealing temperature and pH on adsorption of TC, were explored, and found that the maximum adsorption capacity of CoO@C on TC reached as high as 769.43 mg g. Furthermore, CoO@C displayed excellent stability and reusability. After four repeated use of the adsorbent, the adsorption capacity still remained at 90% of the initial capacity. The pseudo-second order model and Temkin model proved that it was an exothermic chemical adsorption process. Furthermore, after analysis of FT-IR, Zeta-potential, XPS, the positive charge on the surface of CoO@C forms a strong electrostatic interaction with TC, and in addition, a surface bond is formed between the adsorbent and the TC molecule. This work provides a novel and efficient adsorbent for the purification of TC-containing wastewater.

摘要

抗生素的过度使用,包括盐酸四环素(TC),严重威胁着人类健康和生态系统。在这项工作中,通过一步退火法制备了磁性碳涂层氧化钴纳米粒子(CoO@C),并将其用作从水溶液中高效去除 TC 的吸附剂。通过 SEM、TEM 和 XRD 研究了材料的特性,表明 CoO 纳米粒子(≤10nm)被碳层包裹。探讨了退火温度和 pH 等几个影响吸附 TC 的参数,发现 CoO@C 对 TC 的最大吸附容量高达 769.43mg/g。此外,CoO@C 表现出优异的稳定性和可重复使用性。在重复使用吸附剂四次后,其吸附容量仍保持在初始容量的 90%。准二级模型和 Temkin 模型证明这是一个放热的化学吸附过程。此外,通过 FT-IR、Zeta-电位、XPS 分析,CoO@C 表面的正电荷与 TC 形成强烈的静电相互作用,并且在吸附剂和 TC 分子之间形成表面键。这项工作为含 TC 废水的净化提供了一种新颖、高效的吸附剂。

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