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利用高分辨率质谱进行非靶向分析,研究河岸过滤过程。

Non-targeted analysis with high-resolution mass spectrometry for investigation of riverbank filtration processes.

机构信息

Department of Chemistry, Institute of Analytical Chemistry, University of Natural Resources and Life Sciences, Vienna, Muthgasse 18, 1190, Vienna, Austria.

Department of Water, Atmosphere and Environment, Institute of Sanitary Engineering and Water Pollution Control, University of Natural Resources and Life Sciences, Vienna, Muthgasse 18, 1190, Vienna, Austria.

出版信息

Environ Sci Pollut Res Int. 2022 Sep;29(43):64568-64581. doi: 10.1007/s11356-022-20301-2. Epub 2022 Apr 26.

Abstract

A fully non-targeted analytical workflow for the investigation of a riverbank filtration site located at the river Danube has been developed and applied. Variations of compound intensities at different sampling locations of the riverbank filtration site and, for a single production well, over a monitoring period of one year have been investigated using liquid chromatography combined with time-of-flight-mass spectrometry followed by evaluation via non-targeted data analysis. Internal standardization and appropriate quality control strategies have been implemented into the workflow for reduction of possible methodological biases influencing data interpretation. Emphasis was placed on the assessment of different blank elimination steps and the final blank elimination strategy is reported. The spatial study of the selected riverbank filtration site revealed a homogenous composition of the filtered water sampled at 11 different locations across the 32,000 m site, except for one sampling location in a zone of the aquifer, which was only weakly connected to the well field in terms of hydrogeological conditions. The examination of time-dependent changes of the composition of surface and groundwater obtained at the riverbank filtration system revealed that the non-targeted workflow is fit-for-purpose regarding the assessment the stability of filtration efficiency and compound residence time in the riverbank filtration compartment. In total, 677 compounds were selected for the investigation of the time-dependent variations of the filtration process. Analysis of the signal intensities of these compounds revealed that the riverbank filtration is significantly reducing the intensity and number of compounds present in surface water over a wide polarity range. In addition, the method enabled the determination of compound residence times in the riverbank filtration system ranging from 5 to 7 days.

摘要

已开发并应用了一种完全非靶向的分析工作流程,用于研究位于多瑙河河岸的过滤场地。使用液相色谱-飞行时间质谱联用技术,并通过非靶向数据分析进行评估,研究了河岸过滤场地不同采样点和单个生产井在一年监测期内化合物强度的变化。在工作流程中实施了内部标准化和适当的质量控制策略,以减少可能影响数据解释的方法学偏差。重点评估了不同的空白消除步骤,报告了最终的空白消除策略。对所选河岸过滤场地的空间研究表明,在 32000 米长的场地中,从 11 个不同位置采集的过滤水成分均匀,除了含水层中一个与水井场水力地质条件仅弱相关的采样位置。对河岸过滤系统中地表水和地下水组成的时间依赖性变化的检查表明,该非靶向工作流程适用于评估过滤效率和化合物在河岸过滤区停留时间的稳定性。总共选择了 677 种化合物来研究过滤过程的时间依赖性变化。分析这些化合物的信号强度表明,在宽极性范围内,河岸过滤显著降低了地表水的化合物强度和数量。此外,该方法还能够确定河岸过滤系统中化合物的停留时间,范围从 5 到 7 天。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/64cc/9481508/bab7e88df5d4/11356_2022_20301_Fig1_HTML.jpg

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