首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Norfloxacin adsorption on montmorillonite and carbon/montmorillonite hybrids: pH effects on the adsorption mechanism, and column assays
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Norfloxacin adsorption on montmorillonite and carbon/montmorillonite hybrids: pH effects on the adsorption mechanism, and column assays

机译:NORFLOXACIN在蒙脱石和碳/蒙脱石杂交物上吸附:对吸附机制的pH效应,以及柱测定

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摘要

The presence of norfloxacin antibiotic (NFX) in drinking water raises significant scientific concern due to the health and environmental problems that may cause. This study aimed to evaluate the NFX removal: 1) in batch adsorption at different pH values on montmorillonite (M) and montmorillonite-carbon hybrids (M-HC); 2) in continuous columns experiments, to assess the technological application of these hybrids as domestic filters, using one M-HC as adsorbent material ranging from 1% to 5%. Batch experiments showed that adsorption occurred in all the samples, being M the material with the highest adsorption capacity (95% of adsorption for cationic NFX). For theM-HC the adsorption seemed to be not strongly dependent of the pH (20%- 41% of adsorption). The characterization of adsorbents and NFX adsorption products (FTIR, XRD, and zeta potential analysis) disclosed that adsorption occurs at both the external surface and the interlayer space of M. For the M-HC synthesized without activation, the interlayer space seemed to be predominantly responsible; while for the activated M-HC the adsorption occurred at the external surface (its interlayer was destroyed). The column experiments revealed that the best adsorption capacity and highest flow were attained using 1% of adsorbent material in the column packing.
机译:由于可能导致的健康和环境问题,诺氟沙星抗生素(NFX)在饮用水中存在显着的科学关注。本研究旨在评估NFX清除:1)在蒙脱石(M)和蒙脱石 - 碳杂交种(M-HC)上的不同pH值下的批量吸附; 2)在连续柱实验中,评估这些杂种作为国内过滤器的技术应用,使用1%至5%的吸附材料。分批实验表明,在所有样品中发生吸附,是具有最高吸附能力的材料(阳离子NFX的95%的吸附)。对于它们 - HC,吸附似乎没有强烈依赖于pH(20%-41%的吸附)。吸附剂和NFX吸附产物(FTIR,XRD和Zeta电位分析)的表征公开了在外表面上发生吸附和M的内层空间。对于在没有激活的情况下合成的M-HC,中间间隙似乎主要是主要的负责任的;在用于活化的M-HC的同时,在外表面发生的吸附(其中间层被破坏)。柱实验表明,在柱填料中使用1%的吸附材料获得了最佳吸附容量和最高流动。

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