杀虫剂
探索者
农药残留
恶二唑虫
噻虫啉
化学
色谱法
残余物
残留物(化学)
噻虫嗪
数学
益达胺
有机化学
农学
算法
生物
作者
Hyun Ho Noh,Seung-Hyeon Jo,Hyeon-Woo Shin,Dong‐Ju Kim,Young-Jin Ham,Junyoung Kim,Dan‐Bi Kim,Hyeyoung Kwon,Kee-Sung Kyung
出处
期刊:Foods
[MDPI AG]
日期:2022-01-31
卷期号:11 (3): 416-416
被引量:5
标识
DOI:10.3390/foods11030416
摘要
Pesticides which are diluted and sprayed according to the pre-harvest interval (PHI) are generally decomposed and lost through various factors and pathways, and the leftover pesticides are known as residual pesticides. This study aims to determine the dissipation of residual amounts of dinotefuran, fluazinam, indoxacarb, and thiacloprid in persimmon and the changes in the concentration of various processing products. Pesticide spraying is performed in accordance with the GAP (good agricultue practice) of Korea, and the processed products are manufactured using a conventional method after removing the skin of persimmons. The modified QuEchERS (Quick, Easy, Cheap, Effective, Rugged, and Safe) method and an optimized method using LC-MS/MS (liquid chromatography mass spectrometry) is implemented to analyze the residual pesticides. The linearity, recovery, and LOQ (limit of quantitation) are presented to verify the analysis method. The amount of residual pesticides tested decreases significantly in a time-dependent manner, regardless of the minimal dilution effect present due to growth. The residual concentration does not vary significantly during the processing stage despite the removal of the systemic pesticides, dinotefuran and thiacloprid. The residues of non-systemic pesticides, fluazinam and indoxacarb, are typically removed by the peeling removal and processing methods. The reduction factor of dinotefuran, whose residual concentration is increased, is less than 1, and the absolute amount of pesticides is decreased through processing. The results of this study can be used as the scientific basis data to ensure the safety of residual pesticides in processed products in the future.
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