Simultaneous determination of eight neonicotinoid insecticides and five metabolites in water samples by liquid chromatography‐tandem mass spectrometry unveils an overlooked risk

Author:

Wu Yan1,Ma Li23,Xiong Zengheng1,Huang Danyu1,Zhang Mingshan1,Yang Xinrui1,Cheng Long4,He Shuhai1,Lin Huan2ORCID

Affiliation:

1. Hainan Ecological Environmental Monitoring Center Haikou P. R. China

2. State Key Laboratory of Marine Resource Utilization in South China Sea Hainan University Haikou P. R. China

3. School of Ecology and Environment Hainan University Haikou P. R. China

4. LC‐MS Application Support Department SCIEX Analytical Instrument Trading Co. Ltd. Shanghai P. R. China

Abstract

AbstractNeonicotinoids (NEOs), highly selective toward insect nicotinic acetylcholine receptors, are extensively used due to their effectiveness against pests and relative non‐toxicity to vertebrates. However, their prolonged persistence in soil and water has led to frequent detection in food and environmental samples, posing significant environmental and health concerns. Recent research indicates these pesticides infiltrate aquatic ecosystems, threatening aquatic life and human health. Here, we improved the ultra‐performance liquid chromatography‐mass spectrometry method for detecting NEOs in water samples, increasing its sensitivity to fulfill forthcoming detection needs. This approach enables the simultaneous quantification of eight NEOs and five NEO metabolites in diverse water sources, including tap, surface, groundwater, sewage, and seawater. Our method achieves remarkably low detection limits for direct injection (0.78–1.7 ng/L) and solid‐phase extraction methods (0.13–0.25 ng/L). Critically, our findings reveal that boiling domestic drinking water doesn't degrade NEOs; instead, it increases their concentration due to water evaporation. A 6‐min boiling period can amplify pesticide concentration by 4–5 times, presenting a significant hazard in culinary practices of specific regions where prolonged cooking could lead to alarmingly high levels of these insecticides. This research underscores the importance of monitoring and mitigating NEO contamination in water sources to safeguard environmental and public health.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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