Usman Muhammad, Kuckelkorn Jochen, Kämpfe Alexander, Zwiener Christian, Wintgens Thomas A, Linnemann Volker
Institute of Environmental Engineering, Environmental Analytical Laboratory, RWTH Aachen University, Mies-van-der-Rohe-Str.1, 52056 Aachen, Germany.
German Environment Agency, Toxicology of Drinking Water and Swimming Pool Water, Heinrich-Heine-Str. 12, 08645 Bad Elster, Germany.
J Hazard Mater. 2023 May 5;449:130981. doi: 10.1016/j.jhazmat.2023.130981. Epub 2023 Feb 9.
The discovery of new disinfection by-products (DBPs) is still a rarely investigated research area in past studies. In particular, compared to freshwater pools, therapeutic pools with their unique chemical composition have rarely been investigated for novel DBPs. Here we have developed a semi-automated workflow that combines data from target and non-target screening, calculated and measured toxicities into a heat map using hierarchical clustering to assess the pool's overall potential chemical risk. In addition, we used complementary analytical techniques such as positive and negative chemical ionization to demonstrate how novel DBPs can be better identified in future studies. We identified two representatives of the haloketones (pentachloroacetone, and pentabromoacetone) and tribromo furoic acid detected for the first time in swimming pools. Non-target screening combined with target analysis and toxicity assessment may help to define risk-based monitoring strategies in the future, as required by regulatory frameworks for swimming pool operations worldwide.
新消毒副产物(DBPs)的发现仍是过去研究中鲜少被探究的领域。特别是,与淡水泳池相比,具有独特化学成分的治疗性泳池很少被研究以寻找新型消毒副产物。在此,我们开发了一种半自动工作流程,该流程将来自目标和非目标筛查的数据、计算得出的毒性和测量得出的毒性通过层次聚类整合到热图中,以评估泳池的整体潜在化学风险。此外,我们使用了诸如正化学电离和负化学电离等互补分析技术,以展示在未来研究中如何能更好地识别新型消毒副产物。我们鉴定出了卤代酮的两种代表物(五氯丙酮和五溴丙酮)以及首次在游泳池中检测到的三溴糠酸。非目标筛查与目标分析及毒性评估相结合,可能有助于在未来根据全球游泳池运营监管框架的要求确定基于风险的监测策略。