Pu Changcheng, Cavarra Benjamin R, Zeng Teng
Department of Civil and Environmental Engineering, Syracuse University, 151 Link Hall, Syracuse, New York 13244, United States.
Environ Sci Technol. 2024 Sep 10;58(38):17081-91. doi: 10.1021/acs.est.4c06555.
Monitoring the prevalence and persistence of -nitrosamines and their precursors in wastewater treatment plants (WWTPs) and effluent-receiving aquatic compartments is a priority for utilities practicing wastewater recycling or exploiting wastewater-impacted source waters. In this work, we developed an analytical framework that combines liquid chromatography-high-resolution mass spectrometry (LC-HRMS) with acidic triiodide-chemiluminescence analysis to characterize the composition and fate of total -nitrosamines (TONO) and their precursors along the treatment trains of eight WWTPs in New York. Through the parallel application of LC-HRMS and chemiluminescence methods, the TONO scores for 41 -nitrosamines containing structurally diverse substituents on their amine nitrogen were derived based on their solid-phase extraction recoveries and conversion efficiencies to nitric oxide. Correcting the compositional analysis of TONO using the TONO scores of target -nitrosamines refined the assessment of the reduction or accumulation of TONO and their precursors across treatment steps in WWTPs. Nontargeted analysis prioritized seven additional -nitrosamines for confirmation by reference standards, including three previously uncharacterized species: -nitroso--butylphenylamine, -nitroso-2-pyrrolidinmethanol, and -nitrosodesloratadine, although they only served as minor components of TONO. Overall, our study establishes an adaptable methodological framework for advancing the quantitative and qualitative analysis of specific and unknown components of TONO across water treatment and reuse scenarios.
监测污水处理厂(WWTPs)及受纳废水的水生区域中亚硝胺及其前体的流行情况和持久性,对于实施废水循环利用或开发受废水影响的水源水的公用事业公司而言是一项优先事项。在这项工作中,我们开发了一种分析框架,将液相色谱-高分辨率质谱(LC-HRMS)与酸性三碘化碘化学发光分析相结合,以表征纽约八个污水处理厂处理流程中总亚硝胺(TONO)及其前体的组成和去向。通过并行应用LC-HRMS和化学发光方法,基于41种胺氮上含有结构多样取代基的亚硝胺的固相萃取回收率和转化为一氧化氮的效率,得出了它们的TONO分数。使用目标亚硝胺的TONO分数校正TONO的成分分析,完善了对污水处理厂各处理步骤中TONO及其前体的减少或积累的评估。非靶向分析确定了另外七种亚硝胺作为参考标准进行确认,其中包括三种以前未表征的物质:亚硝基-对丁基苯胺、亚硝基-2-吡咯烷甲醇和亚硝基去氯雷他定,尽管它们只是TONO的次要成分。总体而言,我们的研究建立了一个适应性强的方法框架,以推进水处理和回用场景中TONO特定和未知成分的定量和定性分析。