Citation: | Xiong Mao, Yi Huang, Zhi-tao Huo, Jun Guo, Cong Li, Feng-cun Huang, 2025. Occurrence, migration, and ecological risk assessment of Neonicotinoid insecticides in water and sediments of Dongting Lake, China, China Geology, 8, 550-559. doi: 10.31035/cg20250037 |
Neonicotinoid insecticides (NEOs) have become an integral part of the global insecticide market due to their high efficiency and low toxicity. However, their environmental persistence has raised significant ecological concerns. Dongting Lake represents a vital freshwater lake in China, and its ecosystem health directly affects regional ecological balance and people’s livelihoods. This study systematically investigated the occurrence characteristics and ecological risks of NEOs in water bodies and sediments across the Dongting Lake basin. Based on surface water and sediment samples collected from 26 representative sampling sites, this study quantified nine NEOs using liquid chromatography triple quadrupole mass spectrometry. Furthermore, it assessed ecological risks posed by the NEOs using the risk quotient (RQ) method and fugacity modeling. The results revealed the presence of six NEOs in the water bodies: imidacloprid (IMI), acetamiprid (ACE), clothianidin (CLO), thiamethoxam (THIA), flonicamid (FLO), and dinotefuran (DIN). The total concentrations of these six NEOs averaged 275.11 ng/L. Five predominant NEOs (i.e., IMI, THIA, ACE, CLO, and DIN) were identified in the sediments, with a mean concentration of 0.31 ng/g. The NEO concentrations in the water bodies across the Dongting Lake basin increased in the order of the Xiangjiang, Zishui, Yuanjiang, and Lishui rivers (collectively referred to as the Four Rivers), the mainstream of Dongting Lake, the Xinqiang River, the Miluo River, and the Hudu, Ouchi, and Songzi rivers (collectively referred to as the Three Outlets). Sediments from tributaries progressively accumulate in the lake. The ecological risk assessment identified IMI and DIN as the highest-risk compounds (RQ > 1), with high-risk areas concentrated in the mainstream of Dongting Lake and the Ouchi, Miluo, and Hudu rivers. The fugacity model showed that IMI, ACE, and THIA are prone to diffuse from sediments to water bodies in most areas, with fugacity fractions (ff) values of greater than 0.5. In contrast, the mainstream of Dongting Lake acts as a sink of CLO and DIN (ff values: < 0.5). Sediments at the lake’s outlet emerge as an important sink of NEOs. Based on the results of this study, it is advisable to strengthen the supervision of NEO applications in agricultural areas and to implement zonal control strategies. These measures will help reduce ecological risks and protect the safety of water ecosystems in the Dongting Lake region.
Casillas A, De La Torre A, Navarro I, Sanz P, De Los Ángeles Martínez M. 2022. Environmental risk assessment of neonicotinoids in surface water. Science of the Total Environment, 809, 151161. doi: 10.1016/j.scitotenv.2021.151161. |
Chen YC, Zang L, Liu MD, Zhang CL, Shen GF, Du W, Sun Z, Fei J, Yang LY, Wang YH. 2019a. Ecological risk assessment of the increasing use of the neonicotinoid insecticides along the east coast of China. Environment International, 127, 550–557. doi: 10.1016/j.envint.2019.04.010. |
Chen YC, Zang L, Shen GF, Liu MD, Du W, Fei J, Yang LY, Chen L, Wang XJ, Liu WP, Zhao MR. 2019b. Resolution of the ongoing challenge of estimating nonpoint source neonicotinoid pollution in the Yangtze River Basin using a modified mass balance approach. Environmental Science and Technology, 53(5), 2539–2548. doi: 10.1021/acs.est.8b06096. |
Felsot AS, Cone W, Yu J, Ruppert JR. 1998. Distribution of imidacloprid in soil following subsurface drip chemigation. Bulletin of Environmental Contamination and Toxicology. |
Hallmann CA, Foppen RP, Van Turnhout CA, De Kroon H, Jongejans E. 2014. Declines in insectivorous birds are associated with high neonicotinoid concentrations. Nature, 511(7509), 341–343. doi: 10.1038/nature13531. |
Huang ZB, Li HZ, Wei YL, Xiong JJ, You J. 2020. Distribution and ecological risk of neonicotinoid insecticides in sediment in South China: Impact of regional characteristics and chemical properties. Science of the Total Environment, 714, 136878. doi: 10.1016/j.scitotenv.2020.136878. |
Jiang CB, Yin LS, Wen XF, Du CY, Wu LX, Long YN, Liu YZ, Ma Y, Yin QD, Zhou ZY, Pan HM. 2018. Microplastics in sediment and surface water of West Dongting Lake and South Dongting Lake: abundance, source and composition. International Journal of Environmental Research and Public Health, 15(10), 2164. doi: 10.3390/ijerph15102164. |
Lu CS, Lu ZB, Lin S, Dai W, Zhang Q. 2020. Neonicotinoid insecticides in the drinking water system–Fate, transportation, and their contributions to the overall dietary risks. Environmental Pollution, 258, 113722. doi: 10.1016/j.envpol.2019.113722. |
Liu ZK, Cui S, Zhang LM, Zhang ZL, Hough R, Fu Q, Li YF, An LH, Huang MZ, Li KY, Ke YX, Zhang FX. 2021. Occurrence, variations, and risk assessment of neonicotinoid insecticides in Harbin section of the Songhua River, northeast China. Environmental Science and Ecotechnology, 8, 100128. doi: 10.1016/j.ese.2021.100128. |
Liu ZK, Zhang LM, Zhang ZL, An LH, Hough R, Hu P, Li YF, Zhang FX, Wang S, Zhao YQ, Ke YX, Cui S. 2022. A review of spatiotemporal patterns of neonicotinoid insecticides in water, sediment, and soil across China. Environmental Science and Pollution Research, 29(37), 55336–55347. doi: 10.1007/s11356-022-21226-6. |
Mahai G, Wan YJ, Xia W, Wang AZ, Shi LS, Qian X, He ZY, Xu SQ. 2021. A nationwide study of occurrence and exposure assessment of neonicotinoid insecticides and their metabolites in drinking water of China. Water Research, 189, 116630. doi: 10.1016/j.watres.2020.116630. |
Main AR, Headley JV, Peru KM, Michel NL, Cessna AJ, Morrissey CA. 2014. Widespread use and frequent detection of neonicotinoid insecticides in wetlands of Canada's Prairie Pothole Region, PloS one, 9(3), e92821. doi: 10.1371/journal.pone.0092821. |
Morrissey CA, Mineau P, Devries JH, Sanchez-Bayo F, Liess M, Cavallaro MC, Liber K. 2015. Neonicotinoid contamination of global surface waters and associated risk to aquatic invertebrates: a review. Environment International, 74, 291–303. doi: 10.1016/j.envint.2014.10.024. |
Rundlöf M, Andersson GKS, Bommarco R, Fries I, Hederström V, Herbertsson L, Jonsson O, Klatt BK, Pedersen TR, Yourstone J, Smith HG. 2015. Seed coating with a neonicotinoid insecticide negatively affects wild bees. Nature, 521(7550), 77–80. doi: 10.1038/nature14420. |
Sánchez-Bayo F, Goka K, Hayasaka D. 2016. Contamination of the aquatic environment with neonicotinoids and its implication for ecosystems, Frontiers in Environmental Science, 4, 71. doi: 10.3389/fenvs.2016.00071. |
Shao XS, Liu ZW, Xu XY, Li Z, Qian XH. 2013. Overall status of neonicotinoid insecticides in China: production, application and innovation, Journal of Pesticide Science, 38(1), 1–9. doi: 10.1584/jpestics.D12-037. |
Stehle S, Ovcharova V, Wolfram J, Bub S, Herrmann LZ, Petschick LL, Schulz R. 2023. Neonicotinoid insecticides in global agricultural surface waters–exposure, risks and regulatory challenges. Science of the Total Environment, 867, 161383. doi: 10.1016/j.scitotenv.2022.161383. |
Sur R, Stork A. 2003. Uptake, translocation and metabolism of imidacloprid in plants. Bulletin of insectology, 56, 35–40. |
Wang J, Yin L. 2022. Research Progress of Microplastics and OHCs Occurrence in Dongting Lake. Environmental Monitoring and Forewarning, 14(3), 35–42. doi: 10.3969/j.issn.1674-6732.2022.03.006. |
Wu C, Huang FL, Liu XG, Fan QQ, Lu HN, Li QW, Guo Q, Li Y, Peng YC, Li F. 2024. Distributions and potential risks of antibiotic resistance genes in soils around Dongting Lake Basin, China. China Environmental Science. 44(3). 1575–1583. |
Yi XH, Zhang C, Liu HB, Wu RR, Tian D, Ruan JJ, Zhang T, Huang MZ, Ying GG. 2019. Occurrence and distribution of neonicotinoid insecticides in surface water and sediment of the Guangzhou section of the Pearl River, South China. Environmental Pollution, 251, 892–900. doi: 10.1016/j.envpol.2019.05.062. |
Yu Z, Li XF, Wang S, Liu LY, Zeng EY. 2021. The human and ecological risks of neonicotinoid insecticides in soils of an agricultural zone within the Pearl River Delta, South China, Environmental Pollution, 284, 117358. doi: 10.1016/j.envpol.2021.117358. |
Yuan BD, Fu LN, Zou YA, Zhang SQ, Chen XS, Li F, Deng ZM, Xie YH. 2021. Spatiotemporal change detection of ecological quality and the associated affecting factors in Dongting Lake Basin, based on RSEI. Journal of Cleaner Production, 302, 126995. doi: 10.1016/j.jclepro.2021.126995. |
Zhang C, Tian D, Yi XH, Zhang T, Ruan JJ, Wu RR, Chen C, Huang MZ, Ying GG. 2019. Occurrence, distribution and seasonal variation of five neonicotinoid insecticides in surface water and sediment of the Pearl Rivers, South China. Chemosphere, 217, 437–446. doi: 10.1016/j.chemosphere.2018.11.024. |
Zhang C, Yi XH, Chen C, Tian D, Liu HB, Xie LT, Zhu XP, Huang MZ, Ying GG. 2020. Contamination of neonicotinoid insecticides in soil-water-sediment systems of the urban and rural areas in a rapidly developing region: Guangzhou, South China. Environment international, 139, 105719. doi: 10.1016/j.envint.2020.105719. |
Zhang XX, Cao YX, Cao JC, Li Q, Yan YB. 2023a. Occurrence, source, and risk assessment of neonicotinoid insecticides in the Huai River, China. Environmental Pollution, 333, 122068. doi: 10.1016/j.envpol.2023.122068. |
Zhang XD, Huang YH, Chen WJ, Wu SY, Lei QQ, Zhou Z, Zhang WP, Mishra S, Bhatt P, Chen SH. 2023b. Environmental occurrence, toxicity concerns, and biodegradation of neonicotinoid insecticides. Environmental Research, 218, 114953. doi: 10.1016/j.envres.2022.114953. |
Zhang XL, Shi S, Jiang JM, Liu H, Hong WJ, Li MJ, Guo LH, Zhou XY, Ye C, Wu HG, Luo HW. 2025. Neonicotinoid Insecticides in the Qiantang River: Occurrence, Sources, and Ecological Risks for Sustainable Water Resources. Sustainability, 17(2), 697. doi: 10.3390/su17020697. |
Spatial distributions of NEOs in water (a) and sediments (b) of Dongting Lake.
Levels of NEO concentration in water and sediments of Dongting Lake.
Concentrations of individual NEOs in water and sediments of Dongting Lake.
Heatmap of RQ values of NEOs in water of Dongting Lake.
Violins showing the fugacity fraction distributions of NEOs in the Dongting Lake basin.
Clustering of the fugacity fraction values of NEOs in the Dongting Lake basin.