首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Removal of Tetracycline by Hydrous Ferric Oxide: Adsorption Kinetics Isotherms and Mechanism
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Removal of Tetracycline by Hydrous Ferric Oxide: Adsorption Kinetics Isotherms and Mechanism

机译:含水三氧化二铁去除四环素的吸附动力学等温线和机理

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摘要

The removal of tetracycline (TC) from solution is an important environmental issue. Here we prepared an adsorbent hydrous ferric oxide (HFO) by adjusting a FeCl ·6H O solution to neutral pH. HFO was characterized by a surface area analyzer, X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS), and was used to remove TC from solution. The influence of pH, solid-to-liquid ratio, ionic type, and strength on TC removal was investigated. Adsorption kinetics and isotherms were also determined. HFO after adsorption of TC was analyzed by FTIR and XPS to investigate the adsorption mechanism. The results showed that the adsorption of TC increased from 88.3% to 95% with increasing pH (3.0–7.0) and then decreased. K ions had little effect on TC adsorption by HFO. However, Ca and Mg reduced the adsorption of TC on HFO. When the concentrations of Ca and Mg were increased, the inhibitory effect was more obvious. Pseudo-second-order kinetics and the Langmuir model fitted the adsorption process well. The maximum adsorption capacity of TC on HFO reached 99.49 mg·g . The adsorption process was spontaneous, endothermic, and increasingly disordered. Combination analysis with FTIR and XPS showed that the mechanism between TC and HFO involved electrostatic interactions, hydrogen interactions, and complexation. Therefore, the environmental behavior of TC could be affected by HFO.
机译:从溶液中去除四环素(TC)是一个重要的环境问题。在这里,我们通过将FeCl·6H O溶液调节至中性pH来制备吸附性含水三氧化二铁(HFO)。 HFO通过表面积分析仪,X射线衍射(XRD),傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)进行表征,并用于从溶液中去除TC。研究了pH,固液比,离子类型和强度对TC去除的影响。还确定了吸附动力学和等温线。用FTIR和XPS分析了TC吸附后的HFO,以研究其吸附机理。结果表明,随着pH值(3.0-7.0)的增加,TC的吸附率从88.3%增加到95%,然后下降。 K离子对HFO对TC的吸附影响很小。但是,Ca和Mg降低了TC在HFO上的吸附。当Ca和Mg浓度增加时,抑制作用更加明显。伪二级动力学和Langmuir模型很好地拟合了吸附过程。 TC在HFO上的最大吸附量达到99.49 mg·g。吸附过程是自发的,吸热的,并且越来越无序。 FTIR和XPS的组合分析表明TC和HFO之间的机理涉及静电相互作用,氢相互作用和络合。因此,TC的环境行为可能会受到HFO的影响。

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