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Residual fate of fenazaquin (10EC) in apple fruit and soil

机译:苹果树水果与土壤中芬崎(10EC)的剩余命运

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ObjectivesA field trial was carried out in Kashmir valley to determine the persistence of fenazaquin 10EC (Magister) in Red Delicious variety of apple at recommended (0.004%) and double the recommended (0.008%) application rates.MethodsThe spray was conducted one month prior to harvest. The plants treated with simple tap water were treated as control. Samples were collected at 0, 3, 7, 10, 15, 20?days and harvest. The procedure followed for extraction and cleanup was that of Luke et al. (1985) modified by Sharma (2007) and the final analysis was carried out on a Varian 450 (Walnut Creek, CA, USA) gas chromatograph (GLC) equipped with Thermionic Specific detector (TSD).ResultsAfter computation of data, the initial deposit was recorded as 3.18?±?0.03?μg?g???1 and 6.98?±?0.08?μg?g???1 at two concentrations, respectively. Fenazaquin (0.004%) dissipated to 96.91 per cent in 20?days after application and was not detectable beyond this period. Fenazaquin (0.008%) however, persisted upto 30?days recording 95.84 per cent dissipation at that time.ConclusionsThe progressive dissipation of fenazaquin (0.004%) and fenazaquin (0.008%) residues down to their tolerance limits suggested a waiting period of 18.55 and 30.49?days with a half-life period of 3.62 and 4.12?days, respectively. The terminal residue of fenazaquin at the lower rate was below maximum residue limit (MRL) set by European Union, however above MRL at the higher rate.
机译:在克什米尔山谷进行了象征灭绝试验,以确定芬萨奎恩10EC(Magister)在推荐(0.004%)的红色美味品种的苹果中的持久性,并推荐的(0.008%)申请率。在此之前进行了一个月的喷雾剂收成。用简单的自来水处理的植物被视为对照。在0,3,7,10,15,20?天和收获的样品收集样品。提取和清理的程序是Luke等人的过程。 (1985)由Sharma(2007)修改,并在配备恒温特定探测器(TSD)的Varian 450(核桃小溪,CA,USA)气相色谱仪(GLC)上进行最终分析。ResultSco.ResultSco.ResultSafter计算数据,初始存款被记录为3.18?±0.03Ω·μg??? 1和6.98?±0.08Ω·μg??? 1分别为两个浓度。菲达奎因(0.004%)在申请后20个月散发至96.91%,并且在此期间没有检测到。然而,芬佐奎因(0.008%)持续到30日录音95.84吨度当时耗散95.84%。结论春崎(0.004%)和Fenazaquin(0.008%)残留到其公差限制的逐渐消散,建议等待18.55和30.49 ?半衰期的天数为3.62和4.12?天数。芬祖奎因在较低速率下的末端残留物低于欧盟设定的最大残留物极限(MRL),然而MRL以较高的速率。

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