4.7 Article

Neonicotinoids and carbendazim in indoor dust from three cities in China: Spatial and temporal variations

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 695, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2019.133790

关键词

Neonicotinoids; Carbendazim; Indoor dust; Human exposure; Acetamiprid

资金

  1. Fund of Health and Family Planning Commission of Wuhan Municipality [WG14B14, WG18A05]
  2. Hubei Province Health and Family Planning Scientific Research Project [numberWJ2019Q004]
  3. Special Project of Chinese Ministry of Environmental Protection [2111101-03, 211110104]
  4. National Natural Science Foundation of China [21407117, 21437002]

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Neonicotinoid insecticides (NNIs) are a relatively new class of insecticides, and carbendazim (CBDZ) is a representative antifungal biocide. The occurrence of them in indoor dust was not documented in China. In this study, 336 indoor dust samples were collected from 3 cities, including Taiyuan (October 2016), Wuhan (October 2016 and 2018), and Shenzhen (February 2019), located in North, Central, and South China, for determination of the residues of six NNIs, two of their metabolites, and CBDZ. Acetamiprid (ACE), imidacloprid (IMI), and CBDZ were found to be the major target analytes in dust samples from all selected cities with detection frequencies of 98.8%, 99.7%, and 95.2%, respectively. At least one target NNI was detected for all of the dust samples, with the median concentration of 25.8 ng/g for the imidacloprid-equivalent total neonicotinoids (IMIeq: generated by the relative potency factor method), and the median for CBDZ was 35.8 ng/g. Higher levels of several NNIs and CBDZ were found in urban areas of Taiyuan and Wuhan than those in rural areas. A significant increase of the NNI residues was observed in dust of Wuhan from 2016 to 2018 (while not significant for CBDZ). Finally, the estimated daily intake (EDI) of IMIeq and CBDZ for infants and toddlers were higher than that found in other age groups through dust ingestion, which indicated that infants and toddlers may be susceptible to current residue of NNIs and CBDZ in indoor dust, and dust ingestion of NNIs might be be <1% of that reported for dietary intakes in China. This is the first study to report the residue levels of NNIs and CBDZ in dust samples from indoor environment in China. (c) 2019 Elsevier B.V. All rights reserved.

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