AI Article Synopsis

  • Broccoli was chosen to study how sulfoxaflor disperses, distributes, and degrades in different growing conditions for ecological risk assessment.
  • Sulfoxaflor levels peaked in broccoli roots one day post-application, and its degradation half-life varied from 2.3 to 19.8 days across plant parts, with the longest duration noted in a greenhouse in Heilongjiang.
  • Thirteen transformation products were identified involving several chemical bond cleavages and modifications, providing insights for safely applying sulfoxaflor in agriculture.

Article Abstract

Broccoli was selected as the research object in this paper to reveal the dissipation, distribution, and degradation pathway of sulfoxaflor under greenhouse and open-field cultivation conditions for the ecological risk assessment of sulfoxaflor. Results showed that the dissipation of sulfoxaflor in broccoli leaves, flowers, stems, roots, and the whole broccoli was in accordance with the first-order kinetic equation. The sulfoxaflor concentration in broccoli roots reached the maximum value after 1 day of application and then gradually decreased. The degradation half-lives of sulfoxaflor in the roots, leaves, flowers, stems, and whole broccoli were between 2.3 and 19.8 days. The longest degradation half-life of sulfoxaflor was in Heilongjiang under greenhouse cultivation. The terminal residue of sulfoxaflor in broccoli was in the range of 0.005-0.029 mg/kg, and the proportion of sulfoxaflor residue in broccoli leaves was the largest. Thirteen transformation products were separated and identified by ultrahigh-performance liquid chromatography-quadrupole time-of-flight mass spectrometry, and their kinetic evolution was studied. The cleavage of the N = S bond, C-S bond, C-O bond, and cyanide, as well as glucosylation, hydroxylation, SO extrusion, elimination, sulfhydrylation, ketonization, defluorination, and rearrangement, was inferred as the mechanism. Overall, these results can provide guidance for the supervision of the safe application of sulfoxaflor.

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Source
http://dx.doi.org/10.1007/s11356-022-20037-zDOI Listing

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