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Concentrations and dissipation of difenoconazole and fluxapyroxad residues in apples and soil, determined by ultrahigh-performance liquid chromatography electrospray ionization tandem mass spectrometry

机译:超高效液相色谱电喷雾电离串联质谱法测定苹果和土壤中苯甲康唑和氟虫嘧啶残留的浓度和消散

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A new combined difenoconazole and fluxapyroxad fungicide formulation, as an 11.7 % suspension concentrate (SC), has been introduced as part of a resistance management strategy. The dissipation of difenoconazole and fluxapyroxad applied to apples and the residues remaining in the apples were determined. The 11.7 % SC was sprayed onto apple trees and soil in Beijing, Shandong, and Anhui provinces, China, at an application rate of 118 g a.i. ha(-1), then the dissipation of difenoconazole and fluxapyroxad was monitored. The residual difenoconazole and fluxapyroxad concentrations were determined by ultrahigh-performance liquid chromatography tandem mass spectrometry. The difenoconazole half-lives in apples and soil were 6.2-9.5 and 21.0-27.7 days, respectively. The fluxapyroxad half-lives in apples and soil were 9.4-12.6 and 10.3-36.5 days, respectively. Difenoconazole and fluxapyroxad residues in apples and soil after the 11.7 % SC had been sprayed twice and three times, with 10 days between applications, at 78 and 118 g a.i. ha(-1) were measured. Representative apple and soil samples were collected after the last treatment, at preharvest intervals of 14, 21, and 28 days. The difenoconazole residue concentrations in apples and soil were 0.002-0.052 and 0.002-0.298 mg kg(-1), respectively. The fluxapyroxad residue concentrations in apples and soil were 0.002-0.093 and 0.008-1.219 mg kg(-1), respectively. The difenoconazole and fluxapyroxad residue concentrations in apples were lower than the maximum residue limits (0.5 and 0.8 mg kg(-1), respectively). An application rate of 78 g a.i. ha(-1) is therefore recommended to ensure that treated apples can be considered safe for humans to consume.
机译:作为抗药性管理策略的一部分,已经引入了一种新的联合复方敌苯康唑和fluxapyroxad杀菌剂配方,其浓度为11.7%的悬浮剂(SC)。确定了对苹果施用的二苯并呋喃唑和fluxapyroxad的耗散量以及残留在苹果中的残留物。在北京,山东和安徽省的苹果树和土壤上喷洒11.7%的SC,施用量为118 g a.i. ha(-1),然后监测苯乙康唑和fluxapyroxad的消散。通过超高效液相色谱串联质谱法测定残留的二苯并呋喃唑和氟虫嘧啶浓度。苹果和土壤中的苯乙康唑的半衰期分别为6.2-9.5天和21.0-27.7天。苹果和土壤中的fluxapyroxad半衰期分别为9.4-12.6天和10.3-36.5天。苹果和土壤中的Difenoconazole和fluxapyroxad残留物在78和118 g a.i喷施10天后分别喷洒了两次和三次,两次在苹果和土壤中喷洒了两次,两次。 ha(-1)被测量。最后一次处理后,以收获前的14天,21天和28天的时间收集代表性的苹果和土壤样品。苹果和土壤中的二苯并噻唑残留量分别为0.002-0.052和0.002-0.298 mg kg(-1)。苹果和土壤中的fluxapyroxad残留浓度分别为0.002-0.093和0.008-1.219 mg kg(-1)。苹果中的苯乙康唑和fluxapyroxad残留浓度低于最大残留限量(分别为0.5和0.8 mg kg(-1))。 a.i.的施用量为78 g因此,建议使用ha(-1)以确保经过处理的苹果可以被认为对人类食用是安全的。

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