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Characterization of residue dissipation of hexaconazole in Chinese cabbage and spring scallionopen access

Authors
Lee Ji WonKim Jin-SeongPark Ji HyunNoh Hyun HoOh Min SeokKim Jin-HyoSon Kyeong-Ae
Issue Date
May-2025
Publisher
한국응용생명화학회
Keywords
Chinese cabbage; Hexaconazole residue; Residue dissipation; Residue degradation; Sequential application; Spring scallion
Citation
Applied Biological Chemistry, v.68, no.1, pp 1 - 8
Pages
8
Indexed
SCIE
SCOPUS
KCI
Journal Title
Applied Biological Chemistry
Volume
68
Number
1
Start Page
1
End Page
8
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/78677
DOI
10.1186/s13765-025-00995-x
ISSN
2468-0834
2468-0842
Abstract
The characterization of hexaconazole residues was evaluated through both single and sequential applications in Chinese cabbage and spring scallion. Maximum residue levels following foliar application were determined to be 1.14 mg kg − 1 in the cabbage and 0.04 mg kg − 1 in the scallion, whereas the soil application contributed minimally. Notably, the initial residue in the cabbage was 28 times greater than that observed in the scallion. Fourteen days after the final foliar application, the cabbage exhibited a 3.6-fold increase in fresh weight, compared to a 1.4-fold increase in the scallion. The degradation rates of hexaconazole were calculated at 0.089 day − 1 for the cabbage and 0.207 day − 1 for the scallion, corresponding with degradation half-lives (T 1/2 ) of 7.8 days for the cabbage, which was more than double the 3.4 days for the scallion. Biological T 1/2 s in vitro were 210 min for the scallion, while the degradation was not detected in the cabbage. Finally, the 50% dissipation times (DT 50 ) were 3.6–3.8 days for the cabbage and 2.0-3.7 days for the scallion after foliar and sequential applications. In addition, hexaconazole exhibited persistence in soil under greenhouse conditions, resulting in the translocation of residues to rotational crops with detected concentrations reaching up to 0.013 mg kg − 1 .
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농업생명과학대학 (환경생명화학과)
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