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Adsorption-desorption of oxytetracycline on marine sediments: Kinetics and influencing factors

机译:土霉素对土霉素的吸附-解吸动力学及影响因素

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摘要

To reveal the kinetics and mechanisms of antibiotic adsorption/desorption processes, batch and stirred flow chamber (SFC) experiments were carried out with oxytetracycline (OTC) on two marine sediments. The OTC adsorption capacities of the marine sediments were relatively weak and related to their organic carbon (OC) and contents of fine particles. Sorption isotherms of OTC on marine sediment can be well described by both the Langmuir and Freundlich models. Langmuir adsorption maxima (q(max)) and Freundlich distribution coefficients (K-f) increased with the decrease of salinity and pH, which indicated the importance of variable charged sites on sediment surfaces. A second order kinetic model successfully described adsorption and desorption kinetics of OTC and well reproduced the concentration change during stop-flow. The adsorption kinetic rates (k(a)) for OTC under different experimental conditions ranged from 2.00 x 10(-4) to 1.97 x 10(-3) L (mg min)(-1). Results of SFC experiments indicated that diffusive mass transfer was the dominant mechanism of the time-dependent adsorption of OTC and its release from marine sediment was mildly hysteretic. The high desorption percentage (43-75% for LZB and 58 -75% for BHB) implied that binding strength of OTC on two marine sediments was weak. In conclusion, marine sediment characteristics and environmental factors such as salinity, pH, and flow rate are critical factors determine extent of OTC sorption on marine sediment and need to be incorporated in modeling fate and transport of OTC in marine environment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了揭示抗生素吸附/解吸过程的动力学和机理,使用土霉素(OTC)对两种海洋沉积物进行了分批和搅拌流动室(SFC)实验。海洋沉积物的OTC吸附能力相对较弱,并且与其有机碳(OC)和细颗粒含量有关。 Langmuir和Freundlich模型都可以很好地描述OTC在海洋沉积物上的吸附等温线。 Langmuir吸附最大值(q(max))和Freundlich分布系数(K-f)随着盐度和pH值的降低而增加,这表明沉积物表面上带电位置的重要性。二级动力学模型成功地描述了OTC的吸附和解吸动力学,并很好地再现了停流过程中的浓度变化。 OTC在不同实验条件下的吸附动力学速率(k(a))为2.00 x 10(-4)至1.97 x 10(-3)L(mg min)(-1)。 SFC实验结果表明,扩散传质是OTC随时间变化吸附的主要机理,其从海洋沉积物中的释放具有中等滞后性。高解吸率(LZB为43-75%,BHB为58 -75%)表明OTC在两种海洋沉积物上的结合强度较弱。总之,海洋沉积物的特性和环境因素(例如盐度,pH和流速)是决定OTC在海洋沉积物上吸附程度的关键因素,需要在模拟OTC在海洋环境中的命运和运输过程中加以考虑。 (C)2016 Elsevier Ltd.保留所有权利。

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  • 作者

    Li, J; Zhang, H;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 英语
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