伊本磷和三环唑在水稻种植环境中的消亡情况

H. Lee, Gunhee Jung, Hyanghee Kim, Juhyeon Min, Taekkyum Kim
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摘要

目标:本研究旨在确定水稻种植过程中土壤和稻田水中异丙苯磷和三环唑的去向,并确定其进入地表水的途径。方法:按照农药安全使用指南,在两个样本点喷洒异丙苯磷和三环唑。样本中的残留物。在施药后 28 天内收集土壤、稻田水和排水样本。结果与讨论:异丙磷和三环唑这两种农药在水稻种植环境中的去向受土壤半衰期、Koc、水溶性、剂型和沉淀模式等因素的影响。在排水口附近的水稻田中,异丙苯磷和三环唑的初始浓度分别为 5,774 μg/L 和 307 μg/L,而在排水口附近的水稻田中,异丙苯磷和三环唑的初始浓度分别为 1,850 μg/L 和 182 μg/L。施药四天后,稻田水和排水中的异丙苯磷和三环唑残留浓度分别从未检测到 5.6 μg/L 和未检 测到 56 μg/L,显示出迅速下降的趋势。结论:三环唑在土壤和水中的半衰期超过了异丙苯磷,导致其浓度降低速度较慢。三环唑的 Koc 值较低,表明降雨导致土壤解吸作用增强,增加了其在稻田中的浓度。地表水中存在异丙苯磷和三环唑可能是由于农药施用过程中的分散作用。虽然当水从稻田流向地表水时,浓度会因稀释效应而降低,但据推测,在施药后七天内,径流可能会影响附近的溪水。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fate of Iprobenfos and Tricyclazole at Paddy Cultivation Environment
Objectives : This study aimed to identify the fate of iprobenfos and tricyclazole in the soil and paddy water during the rice cultivation process and to identify their exposure pathways into surface water.Methods : Both iprobenfos and tricyclazole were sprayed onto two sample sites following the pesticide safety usage guidelines. Residues in the samples. Soil, paddy water, and drainage water samples were collected for 28 days after post-application. Residues were subsequently analyzed using LC-MS/MS.Results and Discussion : The fate of the two pesticides, iprobenfos and tricyclazole, in the rice cultivation environment was influenced by factors such as soil half-life, Koc, water solubility, formulation, and precipitation patterns. Initial concentrations of iprobenfos and tricyclazole in the paddy field near the drainage were 5,774 μg/L and 307 μg/L, respectively, while concentrations in the drain water were 1,850 μg/L and 182 μg/L. Four days after application, the residual concentrations of iprobenfos and tricyclazole in both paddy and drain water ranged from N.D. (Not Detected) to 5.6 μg/L and N.D. to 56 μg/L, respectively, indicating a rapid decline. During the experimental period, the average concentration reduction ratios in drain water near the drainage compared to the drain water were higher for tricyclazole (90%) than for iprobenfos (52%).Conclusion : The soil and water half-life of tricyclazole exceeded that of iprobenfos, leading to a slower rate of concentration reduction. The lower Koc value for tricyclazole suggests enhanced soil desorption due to rainfall, increasing its concentration in paddy fields. The presence of iprobenfos and tricyclazole in surface water is likely due to dispersion during pesticide application. While concentrations diminish owing to the dilution effect when water moves from paddy fields to surface water, it's posited that runoff could affect nearby stream water within seven days post-application.
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