Department of Civil and Environmental Engineering, Syracuse University, 151 Link Hall, Syracuse, New York 13244, United States.
Upstate Freshwater Institute, 224 Midler Park Drive, Syracuse, New York 13206, United States.
Environ Sci Technol. 2021 Nov 16;55(22):15215-15226. doi: 10.1021/acs.est.1c04699. Epub 2021 Nov 3.
Characterizing the occurrence, sources, and fate of organic micropollutants (OMPs) in lake-river systems serves as an important foundation for constraining the potential impacts of OMPs on the ecosystem functions of these critical landscape features. In this work, we combined suspect and nontarget screening with mass balance modeling to investigate OMP contamination in the Onondaga Lake-Three Rivers system of New York. Suspect and nontarget screening enabled by liquid chromatography-high-resolution mass spectrometry led to the confirmation and quantification of 105 OMPs in water samples collected throughout the lake-river system, which were grouped by their concentration patterns into wastewater-derived and mixed-source clusters via hierarchical cluster analysis. Four of these OMPs (i.e., galaxolidone, diphenylphosphinic acid, -butylbenzenesulfonamide, and triisopropanolamine) were prioritized and identified by nontarget screening based on their characteristic vertical distribution patterns during thermal stratification in Onondaga Lake. Mass balance modeling performed using the concentration and discharge data highlighted the export of OMPs from Onondaga Lake to the Three Rivers as a major contributor to the OMP budget in this lake-river system. Overall, this work demonstrated the utility of an integrated screening and modeling framework that can be adapted for OMP characterization, fate assessment, and load apportionment in similar surface water systems.
描述湖泊-河流系统中有机微量污染物(OMPs)的发生、来源和归宿,是约束 OMPs 对这些关键景观特征的生态系统功能产生潜在影响的重要基础。在这项工作中,我们结合可疑物和非靶向筛查与质量平衡模型,研究了纽约的奥农达加湖-三河系统中的 OMP 污染情况。通过液相色谱-高分辨率质谱进行的可疑物和非靶向筛查,证实并定量了在整个湖泊-河流系统采集的水样中 105 种 OMPs,这些 OMPs 根据其浓度模式,通过层次聚类分析分为废水衍生和混合源两类。基于奥农达加湖分层期的特征垂直分布模式,通过非靶向筛查,对其中的 4 种 OMPs(即加洛沙星酮、二苯膦酸、-丁基苯磺酰胺和三异丙醇胺)进行了优先筛选和鉴定。利用浓度和排放量数据进行的质量平衡模型表明,奥农达加湖向三河的 OMP 输出是该湖泊-河流系统 OMP 预算的主要贡献者。总的来说,这项工作展示了一种综合筛查和建模框架的实用性,该框架可以适应类似地表水系统中的 OMP 特征描述、归宿评估和负荷分配。