Autor: |
Yun HY; Institute of Marine and Atmospheric Sciences, Hanyang University, Ansan 15588, Korea., Kim IS; Department of Agricultural Chemistry, Chonnam National University, Gwangju 61186, Korea., Shin KH; Institute of Marine and Atmospheric Sciences, Hanyang University, Ansan 15588, Korea. |
Jazyk: |
angličtina |
Zdroj: |
Journal of agricultural and food chemistry [J Agric Food Chem] 2024 May 29; Vol. 72 (21), pp. 11980-11989. Date of Electronic Publication: 2024 May 17. |
DOI: |
10.1021/acs.jafc.4c00640 |
Abstrakt: |
Compound-specific isotope analysis stands as a promising tool for unveiling the behavior of pesticides in agricultural environments. Using the commercial formulations of persistent fungicide procymidone (PRO) and less persistent insecticide diazinon (DIA), respectively, we analyzed the concentration and carbon isotope composition (δ 13 C) of the residual pesticides through soil incubation experiments in a greenhouse (for 150 days) and lab conditions (for 50-70 days). Our results showed that the magnitude of δ 13 C variation depends on pesticide specificity, in which PRO in the soil exhibited little variation in δ 13 C values over the entire incubation times, while DIA demonstrated an increased δ 13 C value, with the extent of δ 13 C variability affected by different spiking concentrations, plant presence, and light conditions. Moreover, the pesticides extracted from soils were isotopically overlapped with those from crop lettuce. Ultimately, the isotope composition of pesticides could infer the degradation and translocation processes and might contribute to identifying the source(s) of pesticide formulation in agricultural fields. |
Databáze: |
MEDLINE |
Externí odkaz: |
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