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Adsorption Of Selected Pharmaceuticals And An Endocrine Disrupting Compound By Granular Activated Carbon. 1. Adsorption Capacity And Kinetics

机译:颗粒状活性炭吸附所选药物和破坏内分泌的化合物。 1.吸附容量和动力学

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摘要

The adsorption of two representative PhACs (naproxen and carbamazepine) and one EDC (nonylphenol) were evaluated on two granular activated carbons (GAC). The primary objective was to investigate preloading effects by natural organic matter (NOM) on adsorption capacity and kinetics under conditions and concentrations (i.e., ng/L) relevant for drinking watertreatment. Isotherms demonstrated that all compounds were significantly negatively impacted by NOM fouling. Adsorption capacity reduction was most severe for the acidic naproxen, followed by the neutral carbamazepine and then the more hydrophobic nonylphenol. The GAC with the wider pore size distribution had considerably greater NOM loading, resulting in lower adsorption capacity. Different patterns forthe change in Freundlich K_F and 1/η with time revealed different competitive mechanisms for the different compounds. Mass transport coefficients determined by short fixed-bed (SFB) tests with virgin and preloaded GAC demonstrated that film diffusion primarily controls mass transfer on virgin and preloaded carbon. Naproxen suffered the greatest deteriorative effect on kinetic parameters due to preloading, followed by carbamazepine, and then nonylphenol. A type of surface NOM/biofilm, which appeared to add an additional mass transfer resistance layer and thus reduce film diffusion, was observed. In addition, electrostatic interactions between NOM/biofilm and the investigated compounds are proposed to contribute to the reduction of film diffusion. A companion paper building on this work describes treatability studies in pilot-scale GAC adsorbers and the effectiveness of a selected fixed-bed model.
机译:在两种颗粒状活性炭(GAC)上评估了两种代表性PhAC(萘普生和卡马西平)和一种EDC(壬基酚)的吸附。主要目的是研究在与饮用水处理有关的条件和浓度(即ng / L)下,天然有机物(NOM)对吸附容量和动力学的预载影响。等温线表明,所有化合物均受到NOM结垢的不利影响。酸性萘普生的吸附能力下降最为严重,其次是中性卡马西平,然后是疏水性更高的壬基酚。孔径分布较宽的GAC的NOM含量要大得多,导致吸附能力降低。 Freundlich K_F和1 /η随时间变化的不同模式揭示了不同化合物的不同竞争机制。通过使用原始碳纤维和预加载的GAC进行的简短固定床(SFB)测试确定的传质系数表明,薄膜扩散主要控制原始碳纤维和预加载的碳的质量传递。由于预加载,萘普生对动力学参数的影响最大,其次是卡马西平,然后是壬基苯酚。观察到一种表面NOM /生物膜,该表面似乎增加了额外的传质阻力层,从而减少了膜扩散。此外,建议在NOM /生物膜和研究的化合物之间进行静电相互作用,以有助于减少膜扩散。在此工作的基础上,另一篇论文描述了中试规模的GAC吸附器的可处理性研究以及所选固定床模型的有效性。

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  • 来源
    《Environmental Science & Technology》 |2009年第5期|1467-1473|共7页
  • 作者单位

    NSERC Chair in Water Treatment, Department of Civil and Environmental Engineering, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada, N2L 3G1;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 14:04:22

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