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A solid-phase extraction approach for the identification of pharmaceutical-sludge adsorption mechanisms

机译:固相萃取法确定药物污泥的吸附机理

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摘要

It is important to understand the adsorption mechanism of chemicals and active pharmaceu-tical ingredients (API) on sewage sludge since wastewater treatment plants are the last barrier before the release of these compounds to the environment. Adsorption models were developed considering mostly hydrophobic API-sludge interaction. They have poor predictive ability, especially with ionisable compounds. This work proposes a solid-phase extraction (SPE) approach to estimate rapidly the API-sludge interaction. Sludge-filled SPE cartridges could not be percolated with API spiked mobile phases so different powders were tested as SPE sludge supports. Polytetrafluoroethylene (PTFE) was selected and tested at different PTFE/sludge ratios under eight different adsorption conditions with three API ionisable compounds. The PTFE/sludge mixtures with 50% or less sludge could be used in SPE mode for API sorption studies with methanol/water liquid phases. The results gave insights into API-sludge interactions. It was found that π-π, hydrogen-bonding and charge-charge interactions were as important as hydrophobicity in the adsorption mechanism of charged APIs on sludge.
机译:重要的是要了解化学物质和活性药物成分(API)在污水污泥上的吸附机理,因为废水处理厂是这些化合物向环境释放之前的最后障碍。吸附模型的开发主要考虑疏水性API-污泥的相互作用。它们的预测能力较差,尤其是对于可离子化的化合物。这项工作提出了一种固相萃取(SPE)方法来快速估计API-污泥的相互作用。填充有污泥的SPE滤芯无法用API加标流动相进行渗滤,因此对不同的粉末作为SPE污泥载体进行了测试。选择了聚四氟乙烯(PTFE),并在三种不同的吸附条件下,使用三种API可离子化的化合物,在不同的PTFE /污泥比率下进行了测试。污泥含量小于或等于50%的PTFE /污泥混合物可以在SPE模式下用于甲醇/水液相的API吸附研究。结果提供了对API-污泥相互作用的见解。研究发现,在污泥中带电API的吸附机理中,π-π,氢键和电荷-电荷相互作用与疏水性一样重要。

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  • 来源
    《药物分析学报(英文)》 |2014年第002期|117-124|共8页
  • 作者单位

    AstraZeneca Brixham Environmental Laboratory, Freshwater Quarry, Brixham, Devon TQ5 8BA, UK;

    AstraZeneca Brixham Environmental Laboratory, Freshwater Quarry, Brixham, Devon TQ5 8BA, UK;

    School of Pharmacy and Biomedical Sciences, University of Portsmouth, Portsmouth, Hampshire, P01 2DT, UK;

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  • 入库时间 2022-08-19 03:45:48
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