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首页> 外文期刊>Journal of Environmental Management >Colloid-mediated transport of tetracycline in saturated porous media: Comparison between ferrihydrite and montmorillonite
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Colloid-mediated transport of tetracycline in saturated porous media: Comparison between ferrihydrite and montmorillonite

机译:胶体介导的饱和多孔介质中四环素的转运:Ferrihydrite与蒙脱石之间的比较

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摘要

Given the ubiquitous mineral (e.g., clays and iron oxides) playing critical roles in impacting the fate of antibiotics in the subsurface environment, the effects of two mineral colloids (i.e., ferrihydrite and montmorillonite) on tetracycline (TC, a representative of antibiotic) transport in sand columns were investigated in this study. Interestingly, the results clearly showed that ferrihydrite colloids inhibited TC transport, while montmorillonite colloids enhanced TC mobility under neutral conditions (pH 7.0). This phenomenon resulted from the positively charged ferrihydrite colloids with weak mobility, which assisted TC deposition; besides, providing additional deposition sites for TC by the deposited ferrihydrite colloids was another important mechanism. In contrast, the transport-enhancement effect of montmorillonite on TC was attributed to the strong binding affinity of TC to clay particles as well as the competition between colloids and TC for deposition sites on sand surfaces. Moreover, the transport-inhibition effect of ferrihydrite at pH 7.0 was greater than that at pH 5.0, mainly due to more colloid-associated TC under neutral conditions. Surprisingly, ferrihydrite colloids could act as carriers of antibiotics and enhanced TC transport at pH 9.0. Because the surface charge of colloids was altered to negative and could break through the column. Meanwhile, the transport-enhancement effect of montmorillonite decreased with increasing pH from 5.0 to 9.0, resulting from the decrease of colloid-adsorbed TC. Furthermore, colloid-mediated transport of TC was influenced by ionic strength, which affected the aggregation characteristics of colloids and the binding affinities of TC to minerals. These findings provide critical information for assessing the risks of antibiotics in aquatic ecosystems where abundant natural minerals are present.
机译:鉴于普遍存在的矿物(例如,粘土和氧化铁)在对地下环境中影响抗生素的命运时发挥着关键作用,两个矿物胶体(即,Ferrihydrite和Montmorillonite)对四环素(TC,抗生素代表)运输的影响在本研究中研究了砂柱。有趣的是,结果清楚地表明,Ferrihydrite胶体抑制TC运输,而Montmorillonite胶体在中性条件下增强了TC迁移率(pH7.0)。这种现象由带正电荷的Ferrihydrite胶体具有弱迁移率,这辅助TC沉积;此外,通过沉积的Ferrihydite胶体提供额外的TC的沉积位点是另一种重要机制。相反,蒙脱石对TC的转运增强作用归因于TC对粘土颗粒的强结合亲和力以及胶体和TC在沙子表面上的沉积位点之间的竞争。此外,Ferrihydite在pH7.0下的运输抑制效果大于pH5.0,主要是由于中性条件下的更多胶体相关的Tc。令人惊讶的是,Ferrihydrite胶体可以作为抗生素的载体和pH9.0的增强的Tc传输。因为胶体的表面电荷改变为阴性并且可能会穿过柱子。同时,蒙脱石的运输增强效果随着胶体吸附的Tc减少而导致的pH值增加到5.0至9.0。此外,胶体介导的Tc的转运受离子强度的影响,这影响了胶体的聚集特性和TC对矿物的结合亲和力。这些发现提供了评估水生生态系统中抗生素风险的关键信息,其中存在丰富的天然矿物质。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|113638.1-113638.10|共10页
  • 作者单位

    Henan Joint International Research Laboratory of Environmental Pollution Control Materials College of Chemistry and Chemical Engineering Henan University Kaifeng 475004 China;

    Ecology Institute of the Shandong Academy of Sciences Qilu University of Technology (Shandong Academy of Sciences) Jinan 250353 China;

    Ministry of Education Key Laboratory of Humid Subtropical Eco-geographical Process Fujian Provincial Key Laboratory for Plant Eco-physiology College of Geographical Science Fujian Normal University Fuzhou Fujian 350007 China Department of Hydrology University of Bayreuth Bayreuth D 95440 Germany;

    Henan Joint International Research Laboratory of Environmental Pollution Control Materials College of Chemistry and Chemical Engineering Henan University Kaifeng 475004 China;

    Henan Joint International Research Laboratory of Environmental Pollution Control Materials College of Chemistry and Chemical Engineering Henan University Kaifeng 475004 China;

    Ministry of Education Key Laboratory of Humid Subtropical Eco-geographical Process Fujian Provincial Key Laboratory for Plant Eco-physiology College of Geographical Science Fujian Normal University Fuzhou Fujian 350007 China;

    Henan Joint International Research Laboratory of Environmental Pollution Control Materials College of Chemistry and Chemical Engineering Henan University Kaifeng 475004 China;

    Henan Joint International Research Laboratory of Environmental Pollution Control Materials College of Chemistry and Chemical Engineering Henan University Kaifeng 475004 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tetracycline; Ferrihydrite; Montmorillonite; Colloid; Transport;

    机译:四环素;Ferrihydite;蒙脱石;胶体;运输;

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